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    Showing posts with label Bees. Show all posts
    Showing posts with label Bees. Show all posts

    Beekeeping: Profiting From A Gold Mine

    If you look at fields full of flowering crops or wild flowers in the countryside, or at garden and park flowers in the cities, you are not only looking at beauty but also at gold – thousands of tons of valuable honey. Liquid gold sitting there, all for you! If you don’t go and get it, the flowers will die at the end of the season and all those tons of honey will go to waste. All that money will simply have dried up in front of your eyes. If, on the other hand, you have bees, they will go and get it for you for free, and you can then either eat it or sell it or both.

    Bees are probably the only livestock that use other people’s land without permission – and those landowners welcome them. It is a win-win situation for the bee and for everyone else. Your bees are happy carrying out their work; you can enjoy your hobby or business, and if you want to you can make a profit; the farmers get their crops pollinated and so they make a profit; the shops obtain food to sell and they make a profit; the general public have food to eat; and the government is happy that its agricultural and environmental sectors are running smoothly and that somewhere along the line they will be able to raise some tax.

    Beekeeping Profiting From A Gold MineDon’t forget that governments regard the whole set-up as so important that they are willing to spend millions on ensuring that the status quo does not change and that nothing happens to harm it. Recent research in the USA has valued crops that require pollination by honey-bees at an estimated $24 billion annually, and the value of commercial bee pollination on contracts at around $10 billion annually. These are huge figures by any standard and they show that bees are big business.

    Honey sale value, on the other hand, is much less, at $285 million annually in the USA. However, now that hard clinical trials are showing that certain types of honey can provide antibiotic wound treatments more effectively and with fewer side-effects than conventional treatments, this non-pollination side of beekeeping has become a rapidly growing industry. Active manuka honey has been shown to beat the MRSA super-bug with no side-effects to the patient and is used in burn dressings. Buckwheat honey has been found in clinical trials to be more effective as a cough treatment than many over-the-counter cough medicines. Honey is no longer old Gran’s remedy for colds or an ‘alternative’ therapy. It is now a mainstream medicine available on national health systems and used in hospitals in the UK, the USA and other countries.

    But bees sting, don’t they? And that hurts, doesn’t it? Other than producing honey, bees are best known for their tendency to sting on sight. In fact, it is not in a bee’s interest to sting for the sake of it because they die in the process and they will avoid doing so unless in defence of their nest, which of course is why beekeepers are stung. All beekeepers will be stung during their beekeeping careers. This is a fact and it is also a fact that it is painful. But it is not very painful and the pain doesn’t last for long.

    Beekeeping: Profiting From A Gold MineBee sting ‘cures’ rely on this fact. By the time you apply the patented bee-sting cure bought from the snake oil stall at the market (which, technically, can’t cure anything unless it’s an anaesthetic), the pain would be just about to disappear anyway.

    Most beekeepers will tell you that bee stings are more or less of no concern to them and that, if you are well clothed and use calm bees, stings will be few and far between. For a very few, however, there is a danger. Allergy to insect venom does exist and can be fatal if the person stung goes into anaphylactic shock. This is extremely rare, however, and one statistic indicates that you are more likely to die from a horse falling on you than from a bee sting. Because there is a very remote possibility of suffering a fatal allergic reaction, many beekeepers carry with them an epi-pen injector for emergency use. This requires a prescription in most countries.

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    Bee Venom Can Kill HIV, Study Shows

    Scientists from Washington University School of Medicine in St. Louis have discovered bee venom can kill the HIV virus without harming the body.http://www.agrinfobank
    Bee Venom Can Kill HIV, Study SaysBees could hold the key to preventing HIV transmission. Researchers have discovered that bee venom kills the virus while leaving body cells unharmed, which could lead to an anti-HIV vaginal gel and other treatments.
    Scientists at the Washington University School of Medicine in St. Louis found that melittin, a toxin found in bee venom, physically destroys the HIV virus, a breakthrough that could potentially lead to drugs that are immune to HIV resistance. The study was published Thursday in the journal Antiviral Therapy. http://www.agrinfobank
    "Our hope is that in places where HIV is running rampant, people could use this as a preventative measure to stop the initial infection," Joshua Hood, one of the authors of the study, said in a statement.http://www.agrinfobank
    The researchers attached melittin to nanoparticles that are physically smaller than HIV, which is smaller than body cells. The toxin rips holes in the virus' outer layer, destroying it, but the particles aren't large enough to damage body cells.
    "Based on this finding, we propose that melittin-loaded nanoparticles are well-suited for use as topical vaginal HIV virucidal agents," they write.http://www.agrinfobank
    Theoretically, the particles could also be injected into an HIV-positive person to eliminate the virus in the bloodstream.http://www.agrinfobank
    Because the toxin attacks the virus' outer layer, the virus is likely unable to develop a resistance to the substance, which could make it more effective than other HIV drugs.
    "Theoretically, melittin nanoparticles are not susceptible to HIV mutational resistance seen with standard HIV therapies," they write. "By disintegrating the [virus'] lipid envelope [it's] less likely to develop resistance to the melittin nanoparticles."
    The group plans to soon test the gel in clinical trials.
    Source: usnews.com

    Beekeeping: Pests of honey Bees

    I. Introduction
    Honey bees are attacked by a number of enemies and take a heavy toll of bee life and their destructive activities result in desertion of hives by bees. Bee enemies are described under two categories namely insects and vertebrates. The control measures for each of these pests is different as the nature of their damage is different.
    ll. Insects
    Insects like ants, wasps, wax moths etc, pose a serious threat to bees. Ants take virtually everything in the hive, wasps and hornets generally cause the bees to abscond. The wax moth causes damage both to bee-colonies and to the bee products. A brief account of these enemies, with possible suggestions to reduce the loss and to acquaint the bee-keepers with knowledge which may be needed any time, is given here.
    1. Ants
    Beekeeping Pests of honey BeesVarious species of ants i.e.. Conponotus compressus (carpenter ant), Dorglus labiatus (red ant), Monomorium and Solenopsis spp (fire ant), have been reported causing problem to both traditional beekeeping with Apis cerana and to modem beekeeping with Apis mellifera.
    Damages
    Ants are among the most common predators of honey bees in India. Ants being highly social insects, they attack the hive en- masse, taking virtually everything in them. They take away honey, brood, pollen, dead bees and other debris. In addition to this destruction, they also cause nuisance and sometimes pain to the beekeeper as well.
    Control
    Some of the precautions to reduce the damage caused by the ants are given here.
    (i) Maintain the bee colony sufficiently strong enough. Usually populous strong colony succeeds in keeping the ants at bay.
    (ii) As the ants live in underground colonies, their nests should be destroyed by fumigating them with two to four table-spoons of carbon disulphide or by pouring into them 9 -10 litres of BHC suspension or 0.1 % Aldrin emulsion or 0.33 kg of 40% Chlorodane (wettable powder) in 15 litres of water and scaling them with mud. It should preferably be applied at a time when the bees are not active.
    (iii) Bee colonies can be kept free from ants by placing the hives on stands with their legs in earthen cups containing water. Since bees mostly drink from it, the water should be pure.
    (iv) The legs of the hive stand may be painted with used engine oil or wounded round with tape soaked in corrosive sublimate to serve as a good repellent for ants. This needs renewing once or twice a month.
    (v) A newly installed bee-hive should be visited frequently to check the invasion of ants.
    2. Wasps
    Several species of wasps, like Vespa orientals (yellow wasp), Vespa auraia (golden wasp), Vespa magnifica (black wasp), etc. are found in Indian plains and hills. The life cycle of the wasps mostly starts with fecundate female wasps, which starts making new nests in spring. The worker wasps, on emergence help their mothers and take over the field work, since wasps too are social insects like bees. The nest becomes populous during the monsoon and autumn. The population of a nest is at its peak during autumn. At tile end of autumn, all types of wasps, except fecundate females die out. The fecundate females pass their winter under the cover of nooks and crevices and start building nests in coming spring.
    Damages
    Wasps are predaceous by nature and catch bees from blossoms or at the entrance of a hive. Weak colonies become their special targets. The attacking behaviour of the wasps is described in three phases (i) hunting phase, (ii) slaughtering phase and (iii) occupation phase.
    Hunting phase
    Initially a hunting phase is observed, when the wasps capture the slow -flying bees or one bee at a time. It happens usually near the entrance of a weak colony's hive or bee flying near the flowers to collect pollen or nectar.
    Slaughtering phase
    If the colony is found to be weak one, a slaughtering phase sets in. A few wasps 30 -50 in number attack a weak colony en-masse, using their strong jaws to maul the bees and dropping the dead on the ground. If this phase continues long enough the colony under attack would have lost most of its defender workers. The colony becomes very weak to resist any attack by the wasps.
    Occupational phase
    In a very weak colony, the wasps invade and occupy the inside of the hive. They consume, all honey, brood and carry them to their own nest.
    Control
    The following precautionary measures are suggest to reduce tile risk of wasps.
    (i) The best method to get rid of wasps is to kill the fecundate females early in the spring, when they start making new nests. A part time workers team can be arranged by co-operatives or big apiaries or government, for killing queen wasp in an area before the breeding season.
    (ii) Destroying all the nests of the wasps in the vicinity of the apiaries. This can be done in two ways, one by burning with kerosene torch and second by fumigation or spraying or dusting insecticides like 5% benzene hexachloride emulsion or 10% D.D. T. Sometimes it is difficult to find the nest of the wasps, since wasps can fly to a longer distance and come from a considerable distance in search of bees. This creates problem in finding the nest of the wasps. A simple technique to find the nest is to capture the wasp, tie a 15 cm long thread around its thorax and then it is released and followed till it reaches the nest. Then the nest is destroyed as mentioned above.
    (iii) An effort to kill the wasps at the entrance of the hive with the help of fly flappers or wooden strips is sometimes useful in the early spring. But generally it is time consuming and laborious.
    3. Wax moths
    A number of moths, like Galleria melionellas (the greater wax- moth), Achroia grisella (the lesser wax-motIl), Ephestia kuhniella (flour moth), Ephestia cantelia (fig moth), Plodia inter-punctela (meal moth), etc, are noticed in combs, but their damage is occasional. The greater wax -moth is by far the most serious threat to combs, while the lesser wax -moth is a comparatively minor pest. The life cycle of the greater wax-moth may be completed in six -weaks to six months. This depend upon climate temperature and nature of the natural food. At normal temperature of 30 -35 0 C, an egg may become an adult in about seven weeks. The pest remains active from March to October. In localities with comparatively warm winters, all stages of the pests are met within hive through out the year. The most probable period of emergence of adults is in March and April. The males and females mate within a day and female then enters the hive usually at night and lay egg-clusters in hidden places like cracks and crevices and sometimes in open surface.
    The incubation period of eggs at 350 C is about a week. Young caterpillars are exceedingly active and cause much damage. How long they live in caterpillar condition depends upon temperature and abundance of proper food. It may vary from a month to five months. The pest hibernates in store combs (honey combs) in the caterpillar form and pupal form. Depending upon the temperature, the adult moths may emerge in a week or after two months.
    Damages
    Wax moths are most destructive in warmer areas. The preferred food of the wax moth larvae is the larval skins and the pupal cases that line the brood cells and pollens. In the process of securing these portions of the comb the larvae tend to destroy the whole comb with bored pathway, and leave a trail of faecal matter and webbing. The grater wax moth larvae do even greater damage when they pupate. Its caterpillar eats old combs, propolis, pollen, cast larval skins and other such proteinaceous matter, but they cannot live on pure bee wax. They have no use of honey or brood but the bees emerged from such larva infected hives are mostly malformed. Larvae may tunnel through newly built comb, but gradually shrink in size and eventually are starved to death because they cannot digest pure beeswax.
    Almost all colonies of Apis indica, Apis dorsata, Apis flora and Apis mellifera are infested with this pest chronically and the caterpillars actively sabotage or undo the work of colonies continuously. They suddenly acquire a dangerous importance during a dearth period and the monsoon and make the colonies desert their nests. The deserted colonies become further source of infection for newly established colonies or swarms.
    The first indication of the entry of the female moth and development of the larvae in the hive or comb is the presence of small masses of minute particles of wax outside the holes of the hive. Later, faint webbings are perceptible over some cells of the comb. When infestation has progressed far enough, silken tunnels with caterpillars wriggling in them are noticed and eventually the whole comb is a mass of webbings in which the excreta of the caterpillars is enmeshed. In severe cases of infestation, further brood rearing is topped, field work is virtually suspended and the colony deserts.
    Control
    No practical chemotherapeutic measures exist for controlling the wax moth in live honey bee colonies. Some of the preventive measures are given here.
    (i) A newly established colony can be kept free from infection by the vigilant beekeepers, who do not allow culprit female moths to enter the colony, by reducing the size of the entrance gate. The bee keeper should be skilled enough to remove the caterpillars and keep the hive clean by removing debris consisting of gnawed pieces of comb, fallen wax scales, loose pollen pellets on the bottom board.
    (ii) Strong populous, colonies are more liable to resist the pest attack. Weak colonies should be strengthened by adding brood frames and their queen replaced.
    (iii) The hive resistance can be increased by keeping the hive tight fitting and by obliterating the cracks and crevices with a mixture or rosin and puttie used for fixing glass panes or moulding clay or bee wax.
    (iv) All tile combs which the bees do not cover with brood should be removed particularly during dearth period.
    (v) All space drawn combs should be kept in empty hive bodies in tiers and closed both at the bottom and top. The joints of hive bodies should be covered by gummed tape or wet clay and the stacks of 4 -5 hive bodies kept moth proof. The new stacks should be disinfected with sulphur fumes by burning sulphur over live charcoal at the rate of one ounce for 3.5 cubic feet space. Fumigation has to be repeated at fortnightly interval.
    (vi) After fumigation, the combs should be stored in moth tight hive bodies and para-dichlorobenzene (PDB) crystals, 103/2 cub. feet, or naphthalene flakes should be spread over the top.
    III. Vertebrates
    Various kinds of animals like toads, frogs, snakes, lizards, bee-eating birds, monkey, badgers, bear etc are enemies of bees and bee colonies. The destructive role of these amphibians, reptiles, birds and mammals is described below.
    1. Amphibians
    Amphibians like Hufa melanastictus (toads) and Rana limnoclzaris (frog) often attack and cause a substantial fall in colony population. The detection of this problem generally requires close observation. When toads and frogs are preying heavily on the bee colonies, they scatter in front of the hive entrance their faecal dark brown droppings. If these dry faecal deposits are spread apart with a twig or brush, the remains of bee parts can be seen, confirming the severe attack on bees by frogs and toads.
    Damages
    Continuous predation by toads and frogs, results in a loss of colony strength. Some colonies with moderate or relatively large worker populations can withstand the predation and subsequently recover their full strength. Weaker colonies are at considerable risk, The attacking patterns of toads and frogs are quite similar. On arriving at the colony, the amphibians wait in the vicinity of the hive entrance, preying on passing bees. Colonies close to the ground provide easy access to the predators, for which guard bees at the hive entrance are easy preys. If the attackers are small enough to squeeze through the hive entrance of a relatively weak colony, the outcome is of devastating bee colony.
    Control
    In some circumstances predation on honey bees by amphibians cannot be overlooked. The beekeeper should not look on the problem as a minor one. Some suggested control measures are:
    (i) placing the hives on stands 40 -60 cm high is usually sufficient as a protective measure.
    (ii) where large numbers of the predators tend to congregate near the colony, fencing it with fine mesh may be found necessary, and
    (iii) other methods such as trapping, baiting or poisoning have not been recommended.
    2. Reptiles
    Reptiles like snakes, lizards, geckos etc. are the most commonly found damaging commercial apiaries. Gecko gecko (tokag) is about 35 cm in length, lizards measuring about 25 cm from head to tail. Smaller lizards, such as the Hemidactylus frebatus (gecko) often hide in the empty spaces between the outer and inner cover of the hive. It sometimes stray very close to the hive or accommodates itself comfortably between the lid and the hive body.
    Damages
    Arboreal reptiles such as many geckos and snakes can attack bees either near the hive entrance or at the limbs of flowering trees visited by foragers. Lizards accommodated inside the hive find very convenient in feeding on bees indefinitely and causes the sudden loss of the queen from weak colony. Lizards prefer dead bees, they will eat live ones as well. A worker bee, acting as a scavenger, will pounce on an old, lazy or sick bee and try to tear the victim's wings. While this action is in progress, the lizard will rush and lick both of them up with its sticky tongue.
    Control
    Some preventive measures are given here
    (i) The beekeeper can do little to prevent the loss of foragers to the highly mobile arboreal reptiles, usually well hidden in the trees except to destroy as many of them as he can when he encounters them.
    (ii) Placing the hive on stand 60 cm high from the ground or arranging hanging hives in the apiary, is relatively safe from the reptiles attacking.
    (iii) Coating the legs of the stands with spent engine oil or grease can prevent the reptiles from climbing up to the hive entrance.
    (iv) A well-kept bee yard, frequently mowed, without dense bushes, shrubs and tall grasses, that offer safe hiding for the predators, has less chances of suffering losses from reptiles.
    (v) No salable chemical control of reptiles is available for use in an apiary.
    3. Birds
    Birds, which have been listed as attacking honey bees in India includes, Merops apiaster (bee-eater), Merops orientals, Dicrurus macrocercus (king crow), Cypselus spp (swifts), Lanius spp (shrikes) Picus spp(peckers), lndicatoridae sp. (honey guide), etc. They visit apiaries occasionally on cloudy days, and prey upon bees. The heavy traffic of bees flying in and out of the hives of commercial apiaries ovide an exceptional opportunity for insectivorous birds. Therefore, a large number of birds are attracted by this situation.
    Damages
    The level of damage caused by the apivorous birds varies considerably. An attack by a single bird or by a few together rarely constitutes a serious problem. When a relatively large flock descends upon a few colonies or an apiary, a substantial decline in the worker population may be observed. The degree of damage to the commercial apiaries by predatory birds depend upon the number of predators and intensity of the attack. The mere presence of a few predators in apiaries engaged in queen-rearing can inflict serious losses. The bee eaters sit on tree or telegraph wires near an apiary and pick the bees on the wings and do much harm. Sometimes as many as 40 bees have been found in the stomach of a bird.
    Control
    Some of the precautionary measures are described here.
    (i) While beekeepers regard insectivorous birds as pests, sometimes serious, other branches of agriculture generally do not consider them as their enemies. In fact, birds that prey on insects are mostly considered to be beneficial for farming. They help in the control of insect pests. For this reason, therefore, no attempt is made to solve the apiary's bird problems by mass killing of the bird predators.
    (ii) Where heavy predating birds on apiary bees tends to occur at fixed period, may be period of migration of birds, the most practical means of solving the problem is to avoid the birds, by relocating the apiary temporarily, until the birds migration period is over.
    (iii) Sometimes scaring the predating birds away from apiaries by shooting at them with sound producing riffle is suggested.
    4. Mammals
    Many group of mammals can be considered as enemies of the honeybees. They, generally prey on colonies for honey and brood eating. Sometimes the attacks are purely accidental or the result of animal curiosity. Some important mammals causing damage to the bee colonies, specially to apiaries which are placed in or near forests and are not properly protected are monkeys, bear, badgers and man.
    a. Monkey
    In several parts of the country, monkeys have been found opening the hives and consuming honey and brood. As a result, frames are destroyed and colonies abscond. Scaring the monkey away is the only recommended control measure for apiary.
    b. Bears
    Bears are undoubtedly the most important mammalian bee pest. The best known bear pest are the black bear, Euarctos americanus.
    Damages
    Bears cause much damage to bee hives as they seek honey and brood. They repeatedly visit an apiary, destroying one or more hives with each visit. They tip hives over and tear them apart to get to brood and honey frames, which they carry a short distance away before feeding.
    Control
    Some important suggestion to prevent the bear's entry into the apiary are mentioned here.
    (a) The best protection against damage is a sturdy electric fence around the apiary. Fences must be electric charged, and should be built before bear damage begins.
    (b) Another effective control measures is to place bee hives on sturdy bear proof platforms elevated above bear height.
    (c) Moving bee hives away once an apiary has been visited by a bear.
    (d) Shoot and trap the bears but it has only limited success and must be done by government officials.
    c. Badgers
    Badgers are omnivorous, which means they eat almost everything, including bees. The honey badgers, Mellivora capensis, can easily tear a man made hive apart. It is found in western India and many other parts of the world.
    Damages
    The badgers, mostly destroy the hives, lying near the ground surface. They rarely cause any trouble to bee colonies. They rarely cause any trouble to bee colonies. They prefer to digging out wasps even when the badger's den is in the apiary. When it begins to damage the colony it takes only a few seconds to damage the bee colony completely. It is known as one of the most destructive enemies of honey bee colonies.
    Control
    The important suggestions to prevent the damage caused by badgers are given here.
    (a) Fence the apiaries with great care, burying the fence at least 61 cm below the ground to prevent the badgers digging beneath it.
    (b) Place the hive high in the air beyond the approach of the predator.
    (c) Remove the badgers from the area of the apiary.
    d. Man
    The worst of all the enemies of the honey bees is man. In his attempt to improve his living conditions, man has caused and is still causing, great damage to existence of bees in nature. Man is clearing forest lands, clearing all bushes by burning, killing of bees by honey hunters, killing of bees by burning bushes, deliberately burning of bees so that man can live peacefully and spraying insecticides on bee pasturages are some of the unwanted activities of the man.
    IV. Conclusion
    Regular inspection of the bee colony and adopting preventive measures to ward of the pests is necessary for the successful maintenance of the apiary. Use of insecticides must be done judiciously as the honey bees also can get affected by the same. What is more important is a clear understanding of the pest problem for the bees. Once a systematic understanding is achieved each beekeeper finds his own way to control the pests.

    How Bees Make Honey

     
    It has been said that except for man, nowhere in the world is there anything to compare with the incredible efficiency of the industry of the honeybee. Inside the beehive each bee has a special job to do and the whole process runs smoothly.
    Bees need two different kinds of food. One is honey made from nectar, the sugary juice that collects in the heart of the flowers. The other comes from the anthers of flowers, which contain numerous small grains called pollen. Just as flowers have different colours, so do their pollen.
    Let us go with the honeybee from her flower to the hive and see what happens. Most bees gather only pollen or nectar. As she sucks the nectar from the flower, it is stored in her special honey stomach ready to be transferred to the honey-making bees in the hive. If hungry she opens a valve in the nectar “sac” and a portion of the payload passes through to her own stomach to be converted to energy for her own needs.
    The bee is a marvelous flying machine. She can carry a payload of nectar or pollen close to her own weight. Consider that even the most advanced design in aircraft can only take off with a load one-quarter of its own weight and you’ll appreciate the miracle that the honeybee can remain airborne with such a load.
    When her nectar “sacs” are full, the honeybee returns to the hive. Nectar is delivered to one of the indoor bees and is then passed mouth-to-mouth from bee to bee until its moisture content is reduced from about 70% to 20%. This changes the nectar into honey. Sometimes the nectar is stored at once in cells in the honeycomb before the mouth-to-mouth working because some evaporation is caused by the 32.5°C temperature inside the hive.

    Finally, the honey is placed in storage cells and capped with beeswax in readiness for the arrival of newborn baby bees. Pollen is mixed with nectar to make “bee bread” and is fed to the larvae. A baby bee needs food rich in protein if the bee community is to flourish.
    Before returning to the flower again for more pollen, the bee combs, cleans and cares for herself ? not because she is vain but so she can work more efficiently. Throughout her life cycle, the bee will work tirelessly collecting pollen, bringing it back to the hive, cleaning herself, then setting out for more pollen.
    Forager bees start out from the hive for blossom patches when three weeks old. As they live to be only six or seven weeks old they have much work to do and little time in which to do it.
    There will be many other bees working at the same time, and the air will be noisy with their droning. It takes 300 bees about three weeks to gather 450 g of honey. On average, a hive contains 40,000 bees. 

    MAKING A HOBBY OF BEEKEEPING

    honey-bee-pollinating

    Beekeeping, though, is more than just a profit-making activity: it can also be a  fascinating, environmentally sound hobby that can totally absorb you. Beekeeping  in many countries is predominantly a hobby activity. The numbers of commercial  beekeepers who ‘farm’ bees are comparatively few and, in some countries such as the  UK and many other European countries, they are a tiny proportion of the whole, and  the ‘whole’ is but a tiny proportion of the population. Why, then, are governments interested in this small group of people and their hobby?
    The answer is that, whether beekeepers are hobbyists or commercial operators, they have bees, and the national agricultural sector and the countryside commissions  rely totally on these bees. The fewer the commercial beekeepers there are, the more  hobbyists are needed to keep these vital sectors going.

    Honey-bees are not domestic animals. They are wild and, unlike horses and cows and other livestock, they don’t recognize beekeepers as their ‘owners’. Having said that, recent research has shown that, despite the small size of its brain, a bee can recognize human faces if trained to do so and can remember them for two days. Scientists hope that, by studying this amazing ability further, they will be able to develop better face recognition computer software. It is unlikely, however, that the average beekeeper will  find their bees flocking to them on sight.Bees (like other insects) are assumed to act on instinct alone. However, they can also ‘learn’ – and not only learn a primary task but they can also learn and remember a secondary task resulting from the first. Like most other life forms, their daily life involves family (colony) survival and the propagation of their species.

    Profting from a GOLD Mine



                                   Food for free?
    If you look at fields full of flowering crops or wild flowers in the countryside, or at garden and park flowers in the cities, you are not only looking at beauty but also at gold  thousands of tons of valuable honey. Liquid gold sitting there, all for you! If you don’t go and get it, the flowers will die at the end of the season and all those tons of honey will go to waste. All that money will simply have dried up in front of your eyes. If, on the other hand, you have bees, they will go and get it for you for free, and you can then either eat it or sell it or both.
    Bees are probably the only livestock that use other people’s land without permission and those landowners welcome them. It is a win-win situation for the bee and for everyone else. Your bees are happy carrying out their work; you can enjoy your hobby or business, and if you want to you can make a profit; the farmers get their crops pollinated and so they make a profit; the shops obtain food to sell and they make a profit; the general public have food to eat; and the government is happy that its agricultural and environmental sectors are running smoothly and that somewhere along the line they will be able to raise some tax.
    Bees and the economy
    Don’t forget that governments regard the whole set-up as so important that they are willing to spend millions on ensuring that the status quo does not change and that nothing happens to harm it. Recent research in the USA has valued crops that require pollination by honey-bees at an estimated $24 billion annually, and the value of commercial bee pollination on contracts at around $10 billion annually. These are huge figures by any standard and they show that bees are big business.
    Using honey in medicine
    Honey sale value, on the other hand, is much less, at $285 million annually in the USA. However, now that hard clinical trials are showing that certain types of honey can provide antibiotic wound treatments more effectively and with fewer side-effects than conventional treatments, this non-pollination side of beekeeping has become a rapidly growing industry. Active manuka honey has been shown to beat the MRSA super-bug with no side-effects to the patient and is used in burn dressings. Buckwheat honey has been found in clinical trials to be more effective as a cough treatment than many over-the-counter cough medicines. Honey is no longer old Gran’s remedy for colds or an ‘alternative’ therapy. It is now a mainstream medicine available on national health systems and used in hospitals in the UK, the USA and other countries.

    Malik
    (Author)
    About Admin:

    Malik Currently working as Marketing Executive at Oasis Agro Industries Pakistan, and hobbies to read about agriculture, share latest information with others

    Bees and Pollination



    The honey-bee is one of our best known insects, whose relationship with humans can be traced back to the dawn of humankind when early people ‘stole’ honey from wild bee nests. Cave paintings in Spain from as long ago as 6000 bc show our ancestors taking honey from bees, which surely indicates that beekeeping is at least as old as the other two oldest professions!
    By the time humans did come on the scene, the honey-bee had already been around for  about 40–50 million years or more – it had evolved from its hunting-wasp ancestors  and had become a strict vegetarian. Bees and flowering plants then evolved with each other in a truly remarkable relationship that changed and coloured the world we live in. This evolutionary symbiotic relationship is probably the most important reason why our world looks like it does today, and still the vital work of bees goes on. It is a sobering thought that, if all humans were to be wiped out, the world would probably revert to the rich, ecologically balanced state that existed some 10,000 years ago. On the other hand, if bees and other pollinating insects were to be wiped out, humans and other animals would not last for long.
    Bees pollinate plants so that plants can reproduce, and that really is the bottom line. That is what bees are all about. That is why we need bees and that is why hundreds of millions of dollars, pounds and euros are spent annually by governments around the globe in protecting bees, in bee research and in beekeeping subsidies of one type or another.
    Because of their pollinating activities, honey-bees are the most economically important  insects on earth, and certainly the most studied. Honey production is essentially a side  issue. The honey-bee’s role – and thus the beekeeper’s role – in this becomes more important and valuable by the day as our farming and other practices dramatically eradicate the habitats of other types of bees and pollinating insects. Some insects can exist only by eating the pollen of certain plants. If those plants were removed so that more crops could be planted, bees and other pollinating insects would die out. What, then, would pollinate our huge areas of mono-crops? The answer would be to truck in honey-bees by the million.
    Pollination can be achieved only by using large numbers of honey-bees. In this way, our crops and wildflowers are pollinated, and the beekeeper can obtain a pollination fee and honey for sale. As a reward for pollination, and as an enticement to the bee, most plants offer food – nectar – in return. The bees take this, alter it through the addition of enzymes, reduce its moisture content and store it as honey so that they and their colony may survive winter periods or other periods of dearth. In this way they differ from wasps, bumble-bees and other types of bee, whose colonies die out on the approach of winter, with only the newly mated queens hibernating until the spring when they will start new colonies.


    A. M. Awan (Author)
    About Admin Author:

    A M Awan Currently working as Marketing Executive at Oasis Agro Industries Pakistan, and hobbies to read about agriculture, share latest information with others

    Scientists discover bees can ‘turn back time,’ reverse brain aging

    2 division of labor bees w larvae 150x150 Scientists discover bees can turn back time, reverse brain agingScientists at Arizona State University have discovered that older honey bees effectively reverse brain aging when they take on nest responsibilities typically handled by much younger bees. While current research on human age-related dementia focuses on potential new drug treatments, researchers say these findings suggest that social interventions may be used to slow or treat age-related dementia.
    In a study published in the scientific journal Experimental Gerontology, a team of scientists from ASU and the Norwegian University of Life Sciences, led by Gro Amdam, an associate professor in ASU’s School of Life Sciences, presented findings that show that tricking older, foraging bees into doing social tasks inside the nest causes changes in the molecular structure of their brains.

     
    “We knew from previous research that when bees stay in the nest and take care of larvae – the bee babies – they remain mentally competent for as long as we observe them,” said Amdam. “However, after a period of nursing, bees fly out gathering food and begin aging very quickly. After just two weeks, foraging bees have worn wings, hairless bodies, and more importantly, lose brain function – basically measured as the ability to learn new things. We wanted to find out if there was plasticity in this aging pattern so we asked the question, ‘What would happen if we asked the foraging bees to take care of larval babies again?”
    During experiments, scientists removed all of the younger nurse bees from the nest – leaving only the queen and babies. When the older, foraging bees returned to the nest, activity diminished for several days. Then, some of the old bees returned to searching for food, while others cared for the nest and larvae. Researchers discovered that after 10 days, about 50 percent of the older bees caring for the nest and larvae had significantly improved their ability to learn new things.
    Amdam’s international team not only saw a recovery in the bees’ ability to learn, they discovered a change in proteins in the bees’ brains. When comparing the brains of the bees that improved relative to those that did not, two proteins noticeably changed. They found Prx6, a protein also found in humans that can help protect against dementia – including diseases such as Alzheimer’s – and they discovered a second and documented “chaperone” protein that protects other proteins from being damaged when brain or other tissues are exposed to cell-level stress.
    In general, researchers are interested in creating a drug that could help people maintain brain function, yet they may be facing up to 30 years of basic research and trials.
    “Maybe social interventions – changing how you deal with your surroundings – is something we can do today to help our brains stay younger,” said Amdam. “Since the proteins being researched in people are the same proteins bees have, these proteins may be able to spontaneously respond to specific social experiences.”
    Amdam suggests further studies are needed on mammals such as rats in order investigate whether the same molecular changes that the bees experience might be socially inducible in people.
     
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