Chapter VIII: Appendix: Testimonials of the Press (2)
The mouth of the bee is a most complex structure, marvellously adapted for its duties, and consists of the mandibles, the ligula, or tongue, also called the proboscis, and other less important parts. The mandibles are the two sides of the upper jaw. Plate I., fig. 1 _d_, shows the mandible of the queen, which, similar to that of the drone (Plate I., fig. 3 _d_), is provided with two teeth, whilst the mandible of the worker (Plate I., fig. 2 _d_) is without teeth. The latter having to manipulate the wax with smoothness, the teeth would doubtless be objectionable. These mandibles are strong, horny, and sharp-pointed, to assist in breaking down food between them, and, in other respects, constitute serviceable tools with which to seize their enemies, destroy the drones, &c. The tongue (Plate II., fig. 3), or proboscis, is a long, slender projection, flattish in form, and about the thickness of a bristle. It has about forty cartilaginous rings, each of which is fringed with minute hairs, having also a small tuft of hair at its extremity, where it is somewhat serrated. The tongue acts by rolling about, sweeping or lapping up, by means of the fringes around it, everything to which it is applied; thus, when a bee alights upon a flower, it pierces the petals and stamina, where the nectar is secreted, deposits its collection on the tongue, which, when withdrawn into the mouth, propels the gathered material into the gullet (Plate I., fig. 2 _c_) at its base, and from thence passes into the various internal organs, to which reference will be made hereafter. At times, in building combs, the tongue is used as a trowel, with which the minute scales of wax are deposited in their appropriate places, and the desired finish is given to the cells. This organ was formerly described by naturalists as a hollow tube, but we now know, by dissection, that this is not the case, but that it acts as a brush, and, by a peculiar muscular contraction externally, draws the liquid into the mouth. Thus, when a bee is imbibing food, the rings of the abdomen have a vibratory motion similar to pumping, showing to the casual observer that suction is rapidly going on in some form or other.
The labial palpi (Plate II., fig. 3 _o_) rise from the base of each side of this lapping instrument, and are also ciliated exteriorly; outside these are the lower jaws, or maxillæ (Plate II., fig. 2 _n_), similarly provided with hairs. When the jaws (Plate II., fig. 3 _n_ and _o_) close on the tongue, they form a sheath or defence thereto.
With the mandibles of the upper jaw opening right and left, and the maxillæ or lower jaws, which serve to hold the object laboured upon, the insect prepares its work for the sweeping-up apparatus of the lower parts. Thus, when combs become mouldy, or in any way unfit receptacles for brood or honey, these tools provided by Nature serve the place of hands, and the bees are able to chop up in small pieces, and remove from their dwelling, whatever lumber of this kind may be offensive to them. The whole of this apparatus, while perfect in action in an expanded state, can be folded or coiled together when not in use, so as to form one strong and well-protected instrument.
The antennæ (Plate I., figs. 1_a_, 2_a_, 3_a_,) are most important instruments, and are planted between or below the eyes and a little below the ocelli, one on either side: they consist of a number of tubular joints, each having a separate motion; being thus jointed throughout their whole length, they are, therefore, capable of every variety of flexure, and their extremities are exquisitely sensitive. With the antennæ, these insects recognise their queen, and appear to communicate to each other their joys and sorrows. For instance, if a colony be deprived of its queen, bees may be seen rushing about the hive, and, with a nervous twinge, crossing their antennæ and conveying the intelligence of their forlorn state. The sense of touch is here most acute. Huber points out a moonlight night as the best time for observing the antennæ in this respect. The bees guarding against the intrusion of moths, and not having light enough to see fully, circumambulate their doors like vigilant sentinels, with the antennæ stretched right before them; and woe to the moth that comes within reach--the instant it is felt, its death follows. The sense of hearing has been denied bees, whilst others contend that these organs are situate in their antennæ. The sounds which bees emit, particularly at swarming time, are conclusive that they possess this faculty; the only reason for arriving at an opposite conclusion seems to be, that no precise organ of hearing can be found. Naturalists are now more united in the opinion that the seat of hearing is here located. The antennæ are said to have also another office, viz., that they act as a barometer, by which bees know the state of the weather and are premonished of storms; so that this pair of horns play an important part, since such useful faculties are thus combined. In the dark recesses of the hive the antennas are exceedingly serviceable, and may truly be denominated "eyes to the blind." Bees possess acutely the senses of taste and smell. In consequence of their being detected occasionally lapping the impure liquids from stable or other fœtid drains, Huber considered the former the least perfect of their senses. It is now ascertained that bees, like most animals, are fond of salt; and in spring, more especially, their instinct teaches them that salt is beneficial for their health after their winter confinement, and they therefore resort to dunghills and Stagnant marshes, from which they are, doubtless, able to extract saline draughts.
It cannot be denied, however, that, according to our ideas, bees' taste is otherwise at fault; it sometimes happens that, where onions and leeks abound and are allowed to run to seed, bees are so anxious to complete their winter stores, that, from feeding on these plants, a disagreeable flavour is communicated to the honey. Again, the fact, well known in history, related by Xenophon in the retreat of the Ten Thousand, that bees in Asia Minor extracted honey from plants which had not only a disagreeable but a poisonous tendency to man, shows that it is quite possible, where such poisonous plants abound, for the bees to extract the juices without any injury to themselves.
The sense of smell, so largely possessed by bees, is extremely serviceable to them. Attracted by the fragrance of flowers, bees may be seen winging their way a considerable distance in an undeviating course, even sometimes in the face of weather which one might have thought they would not have braved.
The thorax or chest approaches in figure to a sphere, and is united to the head by a thread-like ligament. This is the centre of the organs of motion. Here are attached both the muscles that move the legs and wings, and the legs and wings themselves.
In Plate II., fig. 1, _b, b, b_, show the muscles that move the wings; _e, e_, the bases of the wings.
The wings consist of two pairs of unequal size, which are hooked to one another. In Plate I., fig. A, will be seen the margins of the two wings. In fig. B are the eighteen or twenty hooks placed on the anterior margin of the hinder wing, whilst the posterior margin of the fore wing is beautifully folded over to receive them, so that, when distended for flying, the two wings on each side act as one to steady their movements in flight.
The bee has six legs, three on either side. Each leg is composed of several joints, having articulations like a man's arm, for the thigh, the leg, and the foot. The foremost pair of these are the shortest; with them the bee unloads the little pellets from the baskets on her thighs: the middle pair are somewhat longer, and the hindmost the longest of all. On the outside of the middle joint of these last there is, in each leg, a small cavity, in the form of a marrow spoon, called the "pollen basket." In Plate I., fig. 2 _b_ shows the inner side of the hind leg and pollen brush; 2 _b*_, same figure, the outer side and pollen basket.
The legs are covered with hairs, more particularly the edges of the cavity mentioned, in which the kneaded pollen requires to be maintained securely. In this they convey those loads of pollen which are so constantly seen carried into a hive.
This basket, or pollen groove, in the thigh is peculiar to the worker; neither queen nor drone have anything of the kind.
Another provision of the bee's limbs consists in a pair of hooks attached to each foot, with their points opposite to each other, by means of which the bees suspend themselves from the roof or sides of hives, and cling to each other as they do at swarming time or prior to and during the formation of new comb, thus forming a living curtain. In these circumstances, each bee, with its two fore claws, takes hold of the two hinder legs of the one next above it.
This mode of suspension is, no doubt, agreeable to them, although the uppermost bees appear to be dragged by the weight of the whole. Wildman supposed that bees had a power of distending themselves with air, to acquire buoyancy, and thus lessen the burden of the topmost bees. They find no difficulty in extricating themselves from the mass; the most central of the group can make its way without endangering the stability of the grape-like cluster.
Bees are able to walk freely in an inverted position, either on glass or other slippery substances. The peculiar mechanism of their feet, which enables them to do so, consists in their having in the middle of each hook a thin membranous little cup or sucker that is alternately exhausted and filled with air. Flies have the same beautiful apparatus--hence a fly commonly selects the ceiling for a resting-place. These little air-cups, or exhausted receivers, may be seen by applying a strong magnifying-glass to a window that has a bee traversing the reverse side. The edges of these little suckers are serrated, so as to close against any kind of surface to which their legs may be applied. This apparatus may be also serviceable for gathering the pollen before transmitting it to the baskets on the hind legs. Besides these appendages and apparatus of the thorax, that region is traversed by the œsophagus or gullet (the opening to which will be found in Plate I, fig. 2 _c_), on its way to the digestive and other organs, situate in the third part of the insect--viz., the abdomen. The covering of the thorax, with the external covering of the gullet, may be seen in the drawing of the magnified dissected body of the bee (Plate II., fig. 1).
The breathing apparatus of bees is a very remarkable feature: they have no lungs, but, instead, air-vessels or tubes, ramifying through every part of the frame. These openings, called "spiracles," are found in the sides of their bodies, behind the wings. Two of the openings are located in the thorax, and one on each side of the scales of the abdomen.
These air-vessels would be difficult to show in a drawing, the multitude of hairs which protect them are in the way of getting at a very distinct delineation. The writer has traced their oval form by the aid of Messrs. Smith and Beck's "Binocular Microscope," and exceedingly interesting objects they appeared. From the circumstance of bees breathing through these orifices in their bodies, it will not be difficult to understand how sadly the little creatures must be inconvenienced when, by accident, they fall on loose mould, and thus have their breathing pores choked with dust: it also shows how needful it is to prevent bees being besmeared with honey (by using bad appliances for feeding), which is still more injurious to them. These air-vessels are the only real circulating system, as bees have neither lungs, heart, liver, nor blood. It appears, however, that a white fluid matter, called "chyle," which, in degree, answers the purpose of blood, is produced in the intestines, nourishes the body, receives the oxygen from the air-vessels, and generates that animal warmth so necessary for the insect's well-being. Bees have the power of counteracting superabundant heat by perspiration. Not unfrequently, on a hot summer's morning, a good deal of moisture may be noticed at the entrance of a crowded hive, which the inmates have been enabled to throw off. This is a healthy sign, because a sign of great numerical strength.
The abdomen, attached to the posterior part of the thorax by a slender ligament, has, for an outer covering, six folds or scales of unequal breadth, overlapping each other, and contains the honey-bag, or first stomach, the ventricle, or true stomach (Plate II., figs. 1 and 2_f_), with other intestines, to be hereafter referred to.
The honey-bag (Plate II., figs. 1 and 2, _d_) is an enlargement of the gullet, and, although called the first stomach, no digestion takes place here. In shape it is like a taper oil flask; when full, it is about the size of a small pea, and so transparent that the colour of the honey may be seen through it. This sac, as it is sometimes called, is susceptible of contraction, and so organized as to enable the bee to disgorge a part of its contents at pleasure, to fill the honey-cells of the hive. It has formed a subject of some controversy whether any or what change takes place in the nectar of flowers whilst in the bee's stomach.
A short passage (Plate II., figs. 1 and 2, _f_) leads to the ventricle or true stomach, which is somewhat larger. This receives the food from the honey-bag, for the nourishment of the bee and the secretion of wax. The stomach, like the honey-bag, has a considerable number of muscles, which are brought into play to help the digestive and other organs. The biliary vessels (Plate II., figs. 1 and 2, _h, h_) receive the chyle from the digested food in the stomach, which from thence is conveyed to all parts of the body for its support.
Formerly, naturalists thought that wax was elaborated from pollen; but it is now fully known that it is the animal fat of the bees, and to produce it requires a considerable consumption of honey to supply the drain upon the system. Whilst this secretion is going on, bees keep themselves very still. In order to pass through the pores of the abdomen, the wax is, no doubt, a liquid oily matter, which, on making its appearance outside the abdominal rings, thickens, and exudes from under the four medial rings, in flakes like fish scales, one on either side; so that there are eight of these secreting cavities, which are peculiar to the worker: they are not found either in the queen or drone. The shape of these cavities is that of an irregular pentagon, and the plates of wax, being moulded in them, exhibit accordingly the same form (see Plate II., fig. 5, _w_).
No direct channel of communication between the stomach and these receptacles, or wax-pockets, has yet been discovered; but Huber conjectures that the secreting vessels are contained in the membrane which lines these receptacles, and which is covered with a reticulation of hexagonal meshes, analogous to the inner coat of the second stomach of ruminant quadrupeds.
The little plates of wax are withdrawn by the bee itself, with its hind feet, carried to the mouth with its fore feet, where the wax is made soft and ductile. When a cluster or swarm is placed in a new hive, and the bees suspend themselves in the form of a garland, as before described, it seems feasible that the lower bees pass their secretions up the living ladder to the uppermost ones, to be moulded by them into those beautiful white hexagonal shapes of which new comb is composed. The rapidity with which comb-building progresses at such times would lead to the supposition that there is a division of labour of this kind among them, just as our labourers convey building material to the artisan on the scaffold above. This work of comb-building is carried forward in warm weather; a cold temperature interferes with the secretion of wax.
The last important organ of the abdomen is the sting: this small but effective weapon is situate close to the stomach, and is found in the queen and worker, but is absent in the drone. Our engraving (Plate 11., fig. 4) exhibits the sting of the worker-bee, with its muscles and attachments: _r_ shows the muscles that move the sting, and _q_ the curved base of the sheath that encloses the sting.
Much beautiful mechanism is observed on a microscopic examination of this weapon and its appendages, so powerful in comparison with their bulk. The sting is composed of three separate portions, _i. e._, two sheaths (as seen in Plate II., fig. 4) and the barb. The sheaths, which are attached to the powerful muscles on either side at _s_, are first protruded in the act of stinging, and, clasping the barb, enables the insect to bury it in the flesh to the depth of one-twelfth of an inch; at the same time, by a muscular contraction, the poison is forced along the groove, and the barb enters the wound, causing the well-known painful effects which arise from the sting of a bee.
The darts composing this instrument are furnished with teeth or barbs, set obliquely on their outer side, which give it the appearance of an arrow, and by which it is retained in the wound until the poison has been ejected.
If the sufferer could only command himself so as to remain perfectly passive, the bee might be able to draw in these barbs which protrude beyond the sheath, and would then have a chance of withdrawing the sting: the little insect would consequently inflict less pain, and might perhaps escape paying the penalty of her life. It generally happens, however, that the excitement of both parties is so great, that the poor bee leaves behind the whole apparatus, and even part of her intestines, so that her death is the result, and the wound is more severe. The sting is about the sixth part of an inch long, and is largest at the base. Here are situated the glands or ducts (Plate II., fig. 4, _u_). By these the poison is secreted, and passed into the poison-bag (Plate II., fig. 4, _f_), which acts as a reservoir for retaining it till required.
On the subject of the sting, Paley remarks:--"The action of the sting affords a beautiful example of the union of chemistry and mechanism: of chemistry, in respect to the venom, which in so small a quantity can produce such powerful effects; of mechanism, as the sting is not a simple, but a compound instrument. The machinery would have been comparatively useless had it not been for the chemical process, by which, in the insect's body, honey is converted into poison; and, on the other hand, the poison would have been ineffectual without an instrument to wound, and a syringe to inject the fluid."
As before stated, the drone has no sting, but, in place thereof, the organs of reproduction. And now, in concluding this section, we would remark the wonderful mechanism and finish all the works of the Great Master Builder unfold. In the works of man we see, perhaps, a piece of mechanism of unquestioned beauty and excellence; but there is a bolt here or screw there that might have been dispensed with, and does not possess any definite use, whilst in the works of Nature everything has a place; we may not at once comprehend the exact purpose of some intricate parts, but that only implies that we have not made a thorough investigation. The most minute hair serves its required end. "Canst thou by searching find out God? Canst thou find out the Almighty unto perfection?"
III.--MODERN BEE-HIVES.
NUTT'S COLLATERAL HIVE.
The late Mr. Nutt, author of "Humanity to Honey Bees," may be regarded as a pioneer of modern apiarians; we therefore select his hive wherewith to begin a description of those we have confidence in recommending. Besides, an account of Mr. Nutt's hive will necessarily include references to the various principles which subsequent inventors have kept in view.
Nutt's Collateral Hive consists of three boxes placed side by side (C, A, C), with an octagonal box b on the top, which covers a bell-glass. Each of the three boxes is nine inches high, nine inches wide, and eleven inches from back to front. Thin wooden partitions, in which six or seven openings corresponding with each other are made, divide these compartments, so that free access from one box to the other is afforded to the bees; this communication is stopped, when necessary, by a zinc slide passing down between each box. The octagonal cover B is about ten inches in diameter and twenty high, including the sloping octagonal roof, surmounted with an acorn as a finish. There are two large windows in each of the end boxes, and one in the centre box. Across the latter is a thermometer, scaled and marked so as to be an easy guide to the bee-master, showing him, by the rise in temperature, the increased accommodation required; this thermometer is a fixture, the indicating part being protected by two pieces of glass, to prevent the bees from coming between it and the window, and thereby obstructing the view.
D D are ventilators. In the centre of each of the end boxes is a double zinc tube, reaching down a little below the middle: the outer tube is a casing of plain zinc, with holes, about a quarter of an inch wide, dispersed over it; the inside one is of perforated zinc, with' openings so small as to prevent the escape of the bees; a flange or rim keeps the tubes suspended through a hole made to receive it. The object in having double tubing is to allow the inner one to be drawn up, and the perforations to be opened by pricking out the wax, or rather the propolis, with which bees close all openings in their hives. These tubes admit a thermometer, enclosed in a cylindrical glass, to be occasionally inserted during the gathering season; it requires to be left in the tube for about a quarter of an hour, and on its withdrawal, if found indicating ninety degrees or more, ventilation must be adopted to lower the temperature. The ornamental zinc top D must be left raised, and is easily kept in that position by putting the perforated part a little on one side.
The boxes before described are placed on a raised double floor-board, extending the whole length--viz., about thirty-six inches. The floor-board projects a few inches in front. In the centre is the entrance (as our engraving only shows the back of the hive, we must imagine it on the other side); it is made by cutting a sunken way, of about half an inch deep and three inches wide, in the floor-board, communicating only with the middle box; it is through this entrance alone that the bees find their way into the hive, access to the end boxes and the super being obtained from the inside. An alighting-board is fitted close under the entrance, for the bees to settle upon when returning laden with homey. This alighting-board is removable for the convenience of packing. The centre, or stock-box A, called by Mr. Nutt the _Pavilion of Nature_, is the receptacle for the swarm. For stocking this, it will be necessary to tack the side tins so as to close the side openings in the partition, and to tack some perforated zinc over the holes at top; the swarm may then be hived into it just the same as with a common hive. A temporary bottom board may be used if the box has to be sent any distance, or a cloth may be tied round to close the bottom (the latter plan is best, because allowing plenty of air); and when brought home at night, the bees being clustered at the top, the cloth or temporary bottom must be removed, the box gently placed on its own floor-board, and the hive set in the place it is permanently to occupy. E E are two block fronts, which open with a hinge. A semicircular hole, three inches long and two inches wide in the middle, is cut in the upper bottom-board, immediately under the window of each box; these apertures are closed by separate perforated zinc slides. These blocks, when opened, afford a ready means of reducing the temperature of the side boxes, a current of air being quickly obtained, and are also useful for allowing the bees to throw out any refuse.
The centre F is a drawer, in which is a feeding-trough, so constructed that the bees can descend through the opening before mentioned on to a false bottom of perforated zinc. Liquid food is easily poured in by pulling out the drawer a little way; the bees readily come down on to the perforated zinc, and take the food by inserting their probosces through the perforations, with no danger of being drowned. Care must be exercised that the food is not given in such quantity as to come above the holes; by this means; each hive has a supply of food accessible only to the inmates, with no possibility, when closely shut in, of attracting robber-bees from other hives.
The exterior of these hives is well painted with two coats of lead colour, covered with two coats of green, and varnished. Notwithstanding this preservation, it is absolutely essential to place such a hive under a shed or cover of some sort, as the action of the sun and rain is likely to decay the wood, whilst the extreme heat of a summer sun might cause the combs to fall from their foundations.
Neat and tasteful sheds may be erected, either of zinc supported by iron or wooden rods, or a thatched roof may be sustained in the same manner, and will form a pretty addition to the flower-garden.
When erecting a covering, it will be well to make it a foot or two longer, so as to allow of a cottage hive on either side, as the appearance of the whole is much improved by such an arrangement.
The following directions, with some adaptation, are from "Nutt on Honey-Bees":--
"In the middle box the bees are to be first placed: in it they should first construct their beautiful combs, and under the government of one sovereign, the mother of the hive, carry on their curious work, and display their astonishing architectural ingenuity. In this box, the regina of the colony, surrounded by her industrious, happy, humming subjects, carries on the propagation of her species, deposits in the cells prepared for the purpose by the other bees thousands of eggs, though she seldom deposits more than one egg in a cell at a time: these eggs are nursed up into a numerous progeny by the other inhabitants of the hive. It is at this time, when hundreds of young bees are daily coming into existence, that the collateral boxes are of the utmost importance, both to the bees domiciled in them and to their proprietors; for when the brood become perfect bees in a common cottager's hive, a swarm is the necessary consequence. The queen, accompanied by a vast number of her subjects, leaves the colony, and seeks some other place in which to carry on the work Nature has assigned her. But as swarming may, by proper precaution and attention to this mode of management, generally be prevented, it is good practice to do so, because the time necessarily required to establish a new colony, even supposing the cottager succeeds in saving the swarm, would otherwise be employed in collecting honey, and in enriching the old hive. Here, then, is one of the features of this plan--viz., _the prevention of swarming_. The period when symptoms of swarming begin to present themselves may be known by an unusual noise, the appearance of more than common activity among the bees in the middle box, and, above all, by a sudden rise of temperature, which will be indicated by the quicksilver in the thermometer rising to seventy-five degrees, as scaled on the thermometer in the box; when these symptoms are apparent, the bee-master may conclude that additional space is required. The top sliding tin should now be withdrawn from under the bell-glass, which will open to the bees a new store-room; this they will soon occupy, and fill with combs and honey of pure whiteness, if the weather be favourable for their uninterrupted labour. It may be well here to mention, that if the glass have a small piece of clean worker comb attached to the perforated ventilating tube, the bees will more speedily commence their operations in it. When the glass is nearly filled, which in a good season will be in a very short space of time, the bees will again require increased accommodation; this will also be indicated by the thermometer further rising to eighty-five degrees. The end box, as thereon marked, must now be given them. Previously to drawing up a slide to enlarge their crowded house, the manager should carefully take off the empty end box he intends to open to them, and thoroughly cleanse it, and then smear or dress the inside of it with a little liquid honey. Thus prepared, he must return the box to its proper situation, and then withdraw the sliding tin that hitherto has cut it off from the middle box; by so doing, the store-room is again enlarged. The bees will commence operations in this new apartment. This simple operation, performed at the proper time, generally prevents swarming; by it the queen gains a vast addition to her dominions, and, consequently, increasing space for the multiplying population of her domicile. Provided the weather continue fine, and the thermometer has risen to ninety-five degrees, as marked on the scale, the remaining tin may be also withdrawn, thereby giving the bees admittance to another box. There is now no lack of store-rooms or of employment for our indefatigable labourers. The cylinder thermometer is required to be occasionally dropped into the ventilating tube of the side boxes to ascertain their temperature; for, if exceeding or approaching that of the middle box, it must be reduced by ventilating: this is done by raising the zinc tops, to allow the air to pass through the perforations. The grand object of this system is to keep the end boxes and the bell-glass cooler than the pavilion or middle box, so as to induce the queen to propagate her species there and there only, and not in the depriving part of the hive; by this means the side and upper combs are in no way discoloured by brood. The queen requires a considerable degree of warmth; the middle box does not require more ventilation than the additional openings afford. The bees enjoy coolness in the side boxes, and thereby the whiteness and purity of the luscious store are increased."
After the foregoing directions for the working of the hive, it remains to be told how to obtain possession of the store, and to get rid of our industrious tenants from the super and end boxes, of which the super glass will be almost sure to be filled first, having been first given to them. The operation of taking honey is best performed in the middle of a fine sunny day. The mode we prefer is as follows:--Pass an ordinary table-knife all round underneath the rim of the glass, to loosen the cement, properly called propolis; then take a piece of fine wire, or a piece of string will do, and, having hold of the two ends, draw it under the glass very slowly, so as to allow the bees to get out of the way. Having brought the string through, the glass is now separated from the hive; but it is as well to leave the glass in its place for an hour or so; the commotion of the bees will then have subsided: and another advantage we find is, that the bees suck up the liquid and seal up the cells broken by the cutting off. You can then pass underneath the glass two pieces of tin or zinc; the one may be the proper slide to prevent the inmates of the hive coming out at the apertures, the other tin keeps all the bees in the glass close prisoners. After having confined the bees in the glass for a short time, you must see whether they manifest symptoms of uneasiness, because, if they do not, it may be concluded that the queen is among them. In such a case, replace the glass, and recommence the operation on a future day. It is not often that her majesty is in the depriving hive or glass; but this circumstance does sometimes happen, and the removal at such a time must be avoided. When the bees that are prisoners run about in great confusion and restlessness, the operator may conclude that the queen is absent, and that all is right. The glass may be taken away a little distance off, and placed in a flower-pot or other receptacle, where it will be safe when inverted and the tin taken away: the bees will then be glad to make their escape back to their hive. A little tapping at the sides of the glass will render their tarriance uncomfortable, and the glass may then be taken into a darkened room or out-house, with only a small aperture admitting light, which must be open; the bees, like all insects, make towards the light, and so escape. The bee-master should brush them off with a feather from the comb as they can be reached; but on no account, if there are many bees, should the glass be left, because the bees that are in the glass will gorge themselves to their full, and speedily bring a host of others from the adjacent hives, who, in a very little time, would leave only the empty combs. It is truly marvellous how soon they will carry all the store back again, if allowed to do so. An empty glass should be put on to the hive in place of the full one, as it will attract the bees up, thereby preventing the too close crowding of the hive; and, if the summer be not too far advanced, they will work more honey-comb in it.
The removal of the end boxes is a somewhat similar process, but they should on no account be taken away, at the same time as the glass, or, indeed, at a time when any other hive is being--_robbed_ we were going to say, for it is robbery to the bees: they intended the honey for their winter food, and are much enraged at being deprived of it. First shut down the dividing tin; the bees in the end box are now prisoners separated from the hive; keep them so half an hour, and then take away the box bodily to another part of the garden, or into the dark out-house, as before recommended.
It may not be out of place here to say something respecting the enthusiastic inventor of the collateral hive--Thomas Nutt--who was an inhabitant of Spalding, in Lincolnshire. Having been disabled during a considerable period by rheumatic fever, he devoted all his attention to bees, at a time when bee-culture was but little valued; and, although it must be admitted that two boxes were used side by side long before Mr. Nutt's day, still it is due to him to state that the adoption of three boxes was entirely his own idea, and that, so far as he then knew, the collateral system was his original invention. His statements have been severely criticised, and it does appear almost incredible that the weight of honey which he names could have been produced in one season. But as in the district where he lived there is grown an immense quantity of mustard seed--the flowers of which afford excellent forage for bees--the honey harvests there would, doubtless, be very large. If Mr. Nutt has given his little favourites too much praise, it will be only charitable now to account for his statements by an excess of zeal and enthusiasm in this his study of bee-culture. It may be that the golden harvests he spoke and wrote of have been so far useful that they have induced many to commence bee-keeping, some of whom, whilst they condemned his statements, have themselves written really useful and practical works on the subject, which otherwise might possibly never have appeared. As the monks of old kept the lamp of religion burning, however dimly, until a more enlightened age, so Thomas Nutt may have assisted in a somewhat similar manner by energetically propounding his views, and thereby causing other apiarians to rise up, whose names are now as familiar to us as household words, and whose works posterity will value. The writer of these pages has often accompanied Mr. Nutt on his visits to his patrons in the neighbourhood of London, and seen him perform his operations regardless of the anger of the bees, and free from all fear of their stings. He often expatiated on the cruelty of the brimstone match and suffocation, denouncing the barbarous custom in the following terms: "You may as well kill the cow for her milk, or the hen for her eggs, as the bee for its honey; why continue to light the fatal match, when every cottager in England has the means of saving this most useful and valuable insect?"
NEIGHBOUR'S IMPROVED SINGLE BOX HIVE.
We have introduced the "Single Box Hive" to suit the convenience of those who, though desirous of keeping bees on the improved principle, do not wish to incur the expense or devote the space which is necessary for Nutt's hive.
It consists of a lower or stock-box A, eleven inches square, nine inches deep, with three large windows, a thermometer D, as in Nutt's, being fixed across the front one, protected at the sides by strips of glass, to prevent the bees obscuring the quicksilver from sight, B is a cover the same size as the lower hive, large enough to allow space for a bell-glass nine inches wide, six inches deep. E is the ventilator between the glass and the stock-hive, intended to prevent the queen travelling into the super hive, and also, by cooling the hive, to endeavour to prevent swarming; a sloping pagoda roof, with an acorn top, completes the upper story. A floor-board with a block front, as in Nutt's collateral, forms the base, the entrance being sunk, as before described, and furnished with zinc slides to reduce or close it as may be required. To stock a hive of this description, it is necessary to send the stock-box to the party with whom you have agreed for the supply of a swarm. In the evening of the day the hive is thus tenanted, remove it to the position it is designed permanently to occupy; if the swarm has to be procured from a distance, and is transported by rail or other conveyance, a perforated zinc slide should be substituted for the plain slide that covers the top, and a large piece or perforated zinc must also be tacked to the bottom after the swarm has settled in. Thus securely confined, with a free circulation of air throughout, bees that have been' swarmed the day before may be safely sent any distance that will allow of their being released the day after; because bees, though they provision themselves for a couple of days, cannot with safety be confined in an empty hive much longer.
Having now, we will suppose, procured your swarm, and placed it in a south or south-east aspect, you may, with advantage if the weather be wet, give a little liquid food: the feeding in this hive is performed at the top of the stock-box, where the glass is worked. Our round feeding pan, or the new feeding bottle, may here be used. Any fancy as to the position may be indulged in, but must be settled on by the time the bees are set at liberty, because any alteration afterwards is detrimental to the working of the hive. The bees, on first issuing forth, carefully mark their new abode and the surrounding objects, so that, if a change be made, they are completely thrown out in their observations, which confuses them not a little, and occasions loss. Bees always return to the same spot; it is the locality that they know, and if the hive is moved a less distance than a mile, thousands return to the spot on which the hive has been accustomed to stand.
Allow your bees to collect honey and build their combs for ten days or a fortnight. Much now depends on the weather; if fine, by this time they will require additional room, which will be indicated by the thermometer D rapidly rising; 100 degrees is the swarming point. The hive must be kept below this by ventilation.
Access must now be given to the flat bell-glass at the top, which is done by withdrawing the top slide. In a few hours, sometimes immediately, the work of comb-building begins in the glass--all the sooner, if a piece of clean empty comb be placed therein.
It is of service to keep the glass warm by means of a worsted or baize bag; it prevents the temperature from falling at night, when much comb-building is carried on, providing the heat is not allowed to escape. Probably, if all goes on well, in three weeks the glass will be found filled with fine white honey-comb. When you find that the comb is well sealed up, it is time to take it off; but if the cells are unfilled and unsealed, let the labourers complete their work--a little experience will soon enable the bee-keeper to determine this point.
The plan to be adopted for taking glasses of honey, comb is the same as described for Nutt's hive.
TAYLOR'S AMATEUR SHALLOW BOX OR EIGHT-BAR HIVE.
Taylor's Amateur Hive, as seen by reference to the engraving, consists of three boxes--the lower one, A, is the stock-box, in which the swarm is first placed; B is the first super; and C, the centre box: all three boxes are of the same diameter, viz., thirteen and a half inches square inside, A, the stock-box, is seven and a half inches deep; B, six and a half inches: both are fitted with eight moveable bars, each bar being one inch and an eighth wide, with spaces of half an inch between, and all easily removed by unscrewing the crown-board, in which are two openings closed by zinc slides. The middle box, C, has no bars, and is still shallower than either of the other boxes, being five inches deep. In many localities and seasons, the third box may not be required. Each box has two windows, one at the back and another at the side, a zinc shutter, sliding in a groove, excluding light and retaining warmth. The box C differs from the others in another respect; instead of bars, it has a grating made by seven openings, each half an inch wide and nine inches long: these three boxes stand on a stout floor-board, in which is cut the entrance way, four inches wide and three-eighths of an inch high. The floor-board projects so as to support an outer cover of half-inch wood, surmounted by a sloping roof. This is an effectual protection from the weather, and is necessary when hives are exposed; of course, if placed in a bee-house, such protection may be dispensed with. The outer case is well painted, of a green colour, and when it is used the hive may be placed in any part of the garden. The dimensions of this hive, with outside cover, are eighteen inches square, and two feet six inches high.
Suitable stands are provided, consisting of a stout pedestal with four feet. Stakes should be driven into the ground to secure the whole against wind. Height from the ground, four feet three inches.
The bars before alluded to are for the purpose of inducing the bees to build parallel combs, for without such an arrangement extraction would be impossible. It is a great convenience, in many ways, to be able to take out a bar of comb; it gives such a complete control over the hive.
To ensure comb-building on the bars, pieces of clean worker-comb should always be carefully preserved; and before a swarm is put in, either every bar or, if guide comb is not plentiful, every other bar should have a piece fixed to it in the following manner:--Cut a piece of clean empty comb of the required size, say two inches square, not less; heat a common flat iron, with which slightly warm the bar; then melt a little bees'-wax upon it; draw the comb quickly over the heated iron, hold it down on the centre of the bar, giving a very slight movement backwards and forwards; then leave the wax to grow cold, and, if cleverly managed, the guide will be found firmly attached. Care must be taken that the pitch or inclination of the comb be the same as it is in the hives--upwards from the centre of each comb. A new plan has lately been introduced by Mr. Woodbury, of Exeter, to facilitate the correct construction of parallel combs.
NEIGHBOUR'S IMPROVED COTTAGE HIVE.
Our Improved Cottage Hive is neatly made of straw, bound with cane, and therefore very durable.[9] The lower hive is covered with a wooden top, having in it three holes, through which the bees convey their honey into three middle-sized bell glasses with ventilators, which, when filled, hold about 6 lbs. each. There is a hoop at the bottom, another round the top of the lower hive; to this the wooden crown-board is fastened. These hoops are a great improvement, and are less liable to harbour insects than if straw alone were used. The floor-board, as its name implies, is a wooden board one and a quarter inch thick, with a projection of three or four inches under the entrance to form an alighting place. This entrance is cut out of, or sunk in, the board.
[Footnote 9: This is the hive referred to by the Bee-Master of the _Times_, when he says:--"The second kind of hive I alluded to is made of straw, and may be purchased at Neighbour's, in Holborn.... It is so well made that it will last very long. I have had one in constant use during ten years, and it is still as good as when it was bought."]
There are three windows in the lower hive, each closed with a shutter; these are very useful and interesting for inspecting the progress made. Across the centre window is a thermometer, enclosed at the sides by slips of glass. The window shutters being painted green, add very much to its appearance. The upper hive, which is merely a cover for the glasses, is a conical-topped hive, also made of straw bound with cane; a hoop is worked into the straw, and made sufficiently large to allow the cover to drop over the top hoop of the lower hive, keeping the whole close, and preventing wet from drifting in. A zinc ventilator, ornamentally painted, forms the apex: this is useful in letting the confined hot air pass away in warm weather. The ventilator is opened by raising it. The dimensions of the lower or stock-hive are fifteen inches diameter, nine and a half inches deep outside; its weight, when empty, seven and a half pounds. The cover, or top hive, is twelve inches deep and fifteen inches in diameter; the ornamental zinc top being four inches deep. The whole is about twenty-four inches high. The weight of a hive packed, including glasses, &c., is about 18 lbs.
These hives have a tasteful appearance in the garden, but they require some further protection from the weather in the form of a cover or of a bee-house--contrivances that have yet to be described. In extreme cold weather, a little additional protection, by having matting folded round them, will be advisable.
One of the advantages this hive has over the common cottage hive is, that it affords opportunity for the humane management of bees. The owner has also the power of taking a glass of honey-comb of pure quality, free from the extraneous matter known as "bee-bread," instead of combs that are darkened by having brood hatched in them. By this system, we have combs newly made and used only for depositing the honey first put into them; hence the name "virgin honey." These glasses have a very pretty appearance, and, when nicely filled, are very convenient for home use or for making presents. The lower hive is the receptacle for the bees; when a swarm is placed in this hive, they immediately proceed to fill it with combs, in which to store honey for themselves, and for cells to breed in. This hive remains undisturbed.
The best mode of tenanting a hive of this description is by placing an early and strong swarm in it, which may be generally procured of a neighbouring bee-keeper; if from a distance, considerable care is necessary to admit plenty of air; the shaking attendant upon carriage irritates the bees so much, that, if not well ventilated, there is danger of the swarm being stifled, and the finer the swarm, the greater the danger. For the purpose of ventilation, remove the slides and substitute perforated zinc, wrapping the hive up in a coarse cloth of open texture (dispensing with the floor-board during transit when the distance is great).
It is necessary only to send the lower or stock hive to the party furnishing the swarm, taking the precaution to fix the slides at top with tacks, as the hive has to be inverted to receive the bees. They are shaken into it in the usual manner,[10] as they cluster around the branch of the tree or shrub on which they may have chosen to alight. After the hiving is accomplished, the hive should be left near to catch any stragglers, for there will always be a few; towards evening, close the entrance, and remove them to the exact position they are intended permanently to occupy. Success depends on this, and also on their careful removal on the day or evening of swarming. The following morning the bees labour in the new location, marking well their habitation before they take flight, and to which they will not fail to return, loaded with luscious store.
[Footnote 10: Sometimes swarms alight on trunks of trees or on walls, where it may be difficult to shake or brush them off. In the _Journal of Horticulture_, Mr. Woodbury mentions an instance of this kind, which he experienced last summer:--"A swarm clustered among the large branches of a pear-tree, just at their point of union with the trunk. In this case he merely supported a straw hive just over the swarm with the left hand, whilst he struck the trunk of the tree with the open palm of the right. The vibration thus produced sent the bees up into the hive with great rapidity, and the entire swarm was speedily hived in the most satisfactory manner." A few whiffs of smoke will accelerate upward movement of swarms in such circumstances.]
A fortnight must be allowed for filling the stock-hive; then, if the weather be fine and warm, they will prepare to swarm again, as will be indicated by the thermometer rising rapidly to 100 degrees or upwards. One of the zinc slides on the wooden top must now be withdrawn, and a bell-glass put on, covered and protected by the upper hive; the other glasses may then be given in the same manner, a day or two after which, should the weather continue favourable, all signs of swarming will at once disappear, the bees now having increased store room, which they will readily fill with comb. It is often found useful to attach a piece of clean empty honey-comb to the ventilating tube of the glass; it is an attraction, and induces the bees to commence working in it sooner than they otherwise would do. The ventilator should always remain open during the day, to allow the hot air to pass away from the interior, thereby contributing to the whiteness and beauty of the work; the bees enjoy the refreshment of coolness thereby afforded, and they work the faster for it. At evening, all ventilation should be stopped, and the glasses wrapped round with flannel or some warm material, for the reasons mentioned at page 65.
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The apiary; or, bees, bee-hives, and bee culture [1866]Chapter VIII: Appendix: Testimonials of the Press (2)
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