Showing posts with label honey bees. Show all posts
Showing posts with label honey bees. Show all posts

Wednesday, 3 April 2019

Honey bee colonies more successful by foraging on non-crop fields


March 20, 2019, US Department of Agriculture
Honey bee colonies foraging on land with a strong cover of clover species and alfalfa do more than three times as well than if they are put next to crop fields of sunflowers or canola, according to a study just published in Scientific Reports by an Agricultural Research Service (ARS) scientist and his colleagues.
Managed honey bee colonies placed from May until October next to land in the U.S. Department of Agriculture Conservation Reserve Program (CRP) in North Dakota were more robust with better colony health including higher numbers of bees and increased ability to turn nectar and pollen into vitellogenin—a compound that plays a number of roles including serving as the base for producing royal jelly, which bees use to nurture larvae and turn larvae into queens.
Vitellogenin also is a critical food storage reservoir for honey bee colonies, and a colony's success in the spring depends on total vitellogenin reserves carried by specialized bees over the winter. Vitellogenin prolongs the lifespans of queens and forager bees as well as strongly influencing key behaviors that increase colony survival such as determining how old bees are before they begin foraging and whether they tend to gather nectar or pollen.
After spending six months foraging on CRP land and then overwintering, more than 78 percent of the colonies were graded A, the highest level commanding the highest price for pollination services in January, meaning a colony has six or more frames well filled with bees, capped cells and bee brood (larvae).
With colonies kept near intensely cultivated fields and then overwintered under the same circumstances to the CRP apiaries, only 20 percent could be rated Grade A and 55 percent were less than 2 frames or dead.

Friday, 4 January 2019

Genome published of the small hive beetle, a major honey bee parasite


One of only seven beetle genomes published
Date:  December 20, 2018
Source:  US Department of Agriculture - Agricultural Research Service
Beekeepers and researchers will welcome the unveiling of the small hive beetle's genome by Agricultural Research Service (ARS) scientists and their colleagues. The small hive beetle (SHB) is a major parasite problem of honey bees for which there are few effective treatments.
The SHB (Aethina tumida Murray) genome -- a genome is the sum total of all an organism's DNA; a gene codes for a single protein to be built -- is available at https://www.ncbi.nlm.nih.gov/genome/annotation_euk/Aethina_tumida/100 and was recently published in GigaScience.
This information will provide crucial keys that should lead to better, more targeted SHB control methods, including insecticidal treatments and possibly even genetic/breeding solutions.

Sunday, 20 November 2016

New findings about the deformed wing virus, a major factor in honey bee colony mortality




November 11, 2016

In recent years, massive losses of honey bee colonies have occurred during winter in Europe and North America. It could be shown that the Varroa mite and the deformed wing virus are the main factors responsible for the alarming bee mortality. Researchers from the University of Veterinary Medicine, Vienna have succeeded for the first time in simulating the course of disease using artificial genetic material of the virus. The symptoms of the so-called mite disease were reproduced in the laboratory without mites by the injection of synthetic RNA. This enabled the prudent development of new strategies in order to protect the bee population in the future. The results were published in the journal PLOS ONE. 

The honey bee Apis mellifera plays an important role for the pollination of fruit and vegetable plants, besides its significance for the production of honey and wax. Losses of entire bee colonies during winter have economic and – in particular – ecological consequences as pollinators are missing in spring during blossom. Apiculture in North America and Europe is especially affected by partly massive losses. Only during the winter months of 2014/2015, up to fifty per cent of all bee colonies in some Austrian regions collapsed.

The main trigger of this bee mortality does not seem to be the use of pesticides in modern agriculture. Many studies have shown that the survival of bee colonies strongly depends on the infestation with Varroa mites, widespread blood-sucking parasites, and the transmission of deformed wing virus by these mites. A research group from the Institute of Virology at the University of Veterinary Medicine, Vienna has developed a new laboratory system, which enabled them to make an important step forward in the investigation of the virus. By using a molecular clone, they have simulated the course of disease in a targeted way under laboratory conditions.


Sunday, 23 August 2015

Honey bees rapidly evolve to overcome new disease


August 19, 2015 by Laura Petersen


An international research team has some good news for the struggling honeybee, and the millions of people who depend on them to pollinate crops and other plants.

These valuable pollinators have faced widespread colony losses over the past decade, largely due to the spread of a predatory mite called Varroa destructor. But the bees might not be in as dire a state as it seems, according to research recently published in Nature Communications.

Researchers found a population of wild bees from around Ithaca, New York, which is as strong today as ever, despite the mites invading the region in the mid-1990s.

"They took a hit, but they recovered," said Alexander Mikheyev, a professor at the Okinawa Institute of Science and Technology Graduate University (OIST) in Japan and lead paper author. "The population appears to have developed genetic resistance."

Mikheyev and his collaborators at OIST and Cornell University studied the population genetics of the wild colony by comparing the DNA of specimens collected in 1977 with bees collected from the same forest in 2010. To conduct the study, they developed a new DNA analysis tool that works especially well for degraded DNA stored in museum samples.






Sunday, 21 June 2015

Honey Bees' African Ancestors May Hold Cure for Biting Mite Plague

Jessica Arriens, U.S. National Science Foundation | June 19, 2015 01:42pm ET


Jessica Arriens, a public affairs specialist for the U.S. National Science Foundation (NSF), contributed this article to Live Science's& Expert Voices: Op-Ed & Insights.

The honey bearers arrived in the early 17th century, carried into the United States by early European settlers. Apis mellifera, a name that truly translates as "bee honey-bearer" — though they are better known as honey bees. 

Over the ensuing centuries, they have flourished in the temperate North American climate — so successful, they've become an integral part of America's agricultural economy, contributing more than $14 billion in pollination services each year. They're trucked by the thousands to our apple orchards and blueberry farms, our fields of squash and watermelon. Over the last decade, however, the honey bearers have suffered. They've died in alarming numbers, entire colonies collapsing into ruin. The culprit seems to be a complex quartet of factors — poor nutrition, parasites, pathogens and pesticides — and scientists are still uncovering how these stresses harm bees, and how they can be prevented. Could the answers to some of these questions lie in Apis mellifera's African ancestors? 


Wednesday, 22 April 2015

Britain's beekeepers told to be alert for arrival of Asian hornets

Vespa velutina, which preys on honey bees, is already spreading rapidly across mainland Europe and could pose a serious risk to the UK’s apiculture


Tuesday 21 April 2015 14.04 BSTLast modified on Tuesday 21 April 201518.31 BST

Beekeepers have been told to be alert for invading hornets that have killed six people in France and could pose to serious risk to Britain’s honey bees.

The Asian hornet, which preys on honey bees, is spreading rapidly across France and other parts of mainland Europe, and there are fears its arrival in Britain is only a matter of time – particularly in light of the unusually warm spring weather.

The hornets’ sting can cause deadly allergic reactions in humans but officials are particularly worried about their impact on the crucial ecological role played by honeybees, and the possibility they could permanently affect Britain’s biodiversity.

A spokesman for the Department for Environment, Food and Rural Affairs said: “It’s not great news for bees because they are not a friend to the humble honey bee, and that’s why we don’t want them here.”

Monday, 26 May 2014

Dancing Bees Show Researchers The Way To The Best Environmental Schemes

May 25, 2014

Garrett Staas for redOrbit.com – Your Universe Online

Honey bees are able to help promote growth within their environment by spreading pollen and feeding on nectar, and according to a new study, bees are able to dance in order to tell their brethren where the nearest and most pollen rich sources can be found.

Researchers from Europe call it the “waggle dance,” which the bees use to convey specific information, including distance and direction, of sources for foraging.

By “eavesdropping” on 5,484 bee waggle dances, the researchers were able to measure the distance needed to travel based on the length of the dance. They then measured the angle of the bee’s dance to determine the direction they should travel. The typical distance for best foraging was an average of 94 kilometers away. By using a protractor and a timer, the researchers found that they could collect all this information from the bee’s dance, which typically only lasts a few minutes.

“Imagine the time, manpower, and cost to survey such an area on foot—to monitor nectar sources for quality and quantity of production, to count the number of other flower-visiting insects to account for competition, and then to do this over and over for two foraging years,” said Margaret Couvillon of the Laboratory of Apiculture and Social Insects at the University of Sussex, in a Cell Press statement. “Instead, we have let the honeybees do the hard work of surveying the landscape and integrating all relevant costs and then providing, through their dance communication, this biologically relevant information about landscape quality.”




Wednesday, 5 February 2014

Zombie Bees Found in Eastern US

"Zombie bees" have now invaded eastern U.S., according to media sources.

Anthony Cantrell- a beekeeper in Burlington, Vermont discovered "zombie bees" in his hive in October, according to the Associated Press. This is the first report of 'parasitized' honey bees being found in eastern U.S.

The zombie bees aren't half-dead bees and they certainly don't roam the earth forever. These bees suffer from a parasitic infection that disrupts their neurological functions, leading to strange, "zombie-like" movements. The honey bees die within a few days. "Right now, we don't know if it's an isolated thing," Stephen Parise, Vermont agricultural production specialist, said Tuesday at the state's annual farm show, Associated Press reported.

Monday, 20 January 2014

The Weaker Sex: Male Honey Bees More Susceptible Than Females to Widespread Intestinal Parasite

Jan. 18, 2014 — Gender differences in nature are common, including in humans. A research team from Bern, Switzerland has found that male European honey bees, or drones, are much more susceptible than female European honey bees, known as workers, to a fungal intestinal parasite called Nosema ceranae. Originally from Asia, Nosema ceranae has rapidly spread throughout the world in recent years, and may contribute to the high number of colony deaths now observed in many regions of the northern hemisphere. These findings demonstrate the delicate nature of male honey bees, which are important to honey bee colony reproduction, to a well-distributed parasite.


Saturday, 15 June 2013

Honey bee losses double in a year due to poor winter

This winter's losses of honey bee colonies were the worst since records began six years ago, according to a survey carried out by the British Beekeepers Association.

It says more than a third of hives did not survive the cold, wet conditions.

All regions of England saw dramatic declines with the numbers lost more than double the previous 12 months.

This year's poor winter, following on from a disastrous summer, is said to be the main reason for the losses.

British beekeepers have been surveyed at the end of March for the last six years.

This loss of bees was in effect far more dramatic than foot and mouth was on the national beef herd,” Tim LovettBritish Beekeepers Association

They are asked to compare the number of colonies that are still alive compared to the numbers they had back in October.

With overall losses at 33.8%, this year's figures are the worst yet recorded.

The hardest hit region was the South West where over half of the hives were lost.

"It is desperate; it is a huge loss of bees," Devon beekeeper Glyn Davies told BBC News.

"The weather last summer and this winter, the two combined meant there was virtually a whole year when bees were confined and stressed just because of the environmental conditions."

Thursday, 17 January 2013

Two New Studies Show Why Biodiversity Is Important for Pollination Services in California Almond


Jan. 14, 2013 — Agricultural demand for pollination is growing more quickly than the supply of honey bees, the dominant species managed for crop pollination. Increasing the efficiency of pollination represents a way of increasing crop yield without any increase in agricultural intensity or area. A study recently published in the Proceedings of the Royal Society B: Biological Sciences, shows that the pollination effectiveness of honey bees in California almond orchards was greater in the presence of other bees.

Almond is a crop highly dependent on honey bee pollination and is a $3 billion industry in California. The study by researchers in Germany at Leuphana University of Lüneburg and California at UC Berkeley and Davis found that where other species of bees were present, honey bee behaviour changed and their pollination effectiveness was greater than in orchards where other bees were absent. Furthermore, orchards with wild bees had a greater proportion fruit set. These findings show that wild pollinators not only contribute directly to almond pollination, but also indirectly through increasing the pollination service provided by the honey bees.

Wednesday, 18 April 2012

Promiscuous Queen Bees Maintain Genetic Diversity

ScienceDaily (Apr. 16, 2012) — By mating with nearly 100 males, queen bees on isolated islands avoid inbreeding and keep colonies healthy. The results, published in the current issue of PLoS ONE, focused on giant honey bee colonies on Hainan Island, off the coast of China. Since these bees have long been separated from their continental cousins, it was thought that the island bees would be prime candidates for inbreeding as well as having very different genes, said Zachary Huang, Michigan State University entomologist.



"We believed that the island bees would show evidence of the founder effect, or random genetic changes in an isolated population, on a unique sex determination gene from the mainland bees," he said. "At first we were surprised when we couldn't document this effect. Looking at it further, I asked myself, 'Why didn't I think of this before?'"
When compared to bees, humans have a rather simplistic sex-determination process. In females, the two sex-determination chromosomes are the same, and in males the two chromosomes are different. With bees, however, the combinations of complementary sex determination genes, or CSDs, determine the sex and the societal role of the bees.
One particular gene can have alleles -- the "flavor" of genes. In humans, they dictate hair and eye color. In bees, though, they are responsible for creating females (worker bees), fertile males (that mate with the queen) or infertile males (diploid males which serve no purpose).

Sunday, 25 March 2012

25,000 bees take over man's car

BRIGHTON, Tenn. -- How do you get rid of 25,000 bees that have decided to hang out on your car?
One Tennessee man had to find out the hard way.
Perhaps the bees thought the Hill family drove a pretty sweet ride because a very large colony decided to make their car its home.
"Bees naturally prefer a hollow tree or something like that, but for some reason they got it in their head that the engine in this vehicle was a tree," said bee keeper Bill Hughes.
Tommy Hill was heading out for breakfast when he found thousands of honey bees nesting on his car.
He didn't want to kill them so he tried something else.
"I drove down Highway 51 about 60 miles an hour and I didn't lose a one," he said. "They all stayed in there."
A Brighton resident for over 20 years, Hill says other than a few bees stealing his hummingbird nectar, he's never seen a take-over.
"Never in a car and there's just no way to get them out," Hill said laughing.
Hill's next step was to get help, so he called Hughes.
"This was the most unusual swarm call I've ever gotten," Hughes said.
Using a box of honey, Hughes tried to lure the bees out.
"They just marched right into it," he said.
But the bees didn't stick around for Hughes to transport them.
Instead, they swarmed into a tree and then moved again.
"Within five minutes all the bees left the tree and went back into the engine of the car," Hill said.
By Tuesday, just as suddenly as they'd appeared, the bees were gone.
Hughes believes they were just confused and said Hill did the right thing by buzzing for help.
"They can get a little nasty," Hughes said. "So, it's best to get someone out who knows what they're doing."
Hughes says you should contact a local beekeeper before taking on a swarm of bees and always wash your car if you see bee's wax on it, because that wax can ruin a paint job.

Thursday, 15 March 2012

Increased Honey Bee Diversity Means Fewer Pathogens, More Helpful Bacteria

ScienceDaily (Mar. 12, 2012) — A novel study of honey bee genetic diversity co-authored by an Indiana University biologist has for the first time found that greater diversity in worker bees leads to colonies with fewer pathogens and more abundant helpful bacteria like probiotic species. 


Led by IU Bloomington assistant professor Irene L.G. Newton and Wellesley College assistant professor Heather Mattila, and co-authors from Wellesley College and the Netherlands Organisation for Applied Scientific Research, the new work describes the communities of active bacteria harbored by honey bee colonies. The study, which was conducted at Wellesley College in 2010, is also the first to identify four important microbes in bee colonies that have previously been associated with fermentation in humans and other animals: Succinivibrio (associated with cow rumens), Oenococcus (wine fermentation), Paralactobacillus (food fermentation) and Bifidobacterium (yogurt). Newton, who joined the IU College of Arts and Sciences' Department of Biology last year, said the research suggests honey bees may take advantage of these beneficial symbiotic bacteria to convert indigestible material into nutritious food and to enhance protection from pathogens. 


Read on:  http://www.sciencedaily.com/releases/2012/03/120312192756.htm

Sunday, 11 March 2012

Insects Have 'Personalities' Too, Research On Novelty-Seeking Honey Bees Indicates

ScienceDaily (Mar. 8, 2012) — A new study inScience suggests that thrill-seeking is not limited to humans and other vertebrates. Some honey bees, too, are more likely than others to seek adventure. The brains of these novelty-seeking bees exhibit distinct patterns of gene activity in molecular pathways known to be associated with thrill-seeking in humans, researchers report.

The findings offer a new window on the inner life of the honey bee hive, which once was viewed as a highly regimented colony of seemingly interchangeable workers taking on a few specific roles (nurse or forager, for example) to serve their queen. Now it appears that individual honey bees actually differ in their desire or willingness to perform particular tasks, said University of Illinois entomology professor and Institute for Genomic Biology director
Gene Robinson, who led the study. These differences may be due, in part, to variability in the bees' personalities, he said.
"In humans, differences in novelty-seeking are a component of personality," he said. "Could insects also have personalities?"
Robinson and his colleagues studied two behaviors that looked like novelty-seeking in honey bees: scouting for nest sites and scouting for food.

Wednesday, 30 November 2011

EU resolution passed to help protect bees

In a resolution passed this month European Parliament are taking action to protect bees. The resolution was voted in by an overwhelming majority, with 534 votes in favour, 16 against and 92 abstentions highlighting an urgency and popularity to protect bees.

The resolution focuses on the Honey bee and calls for better access to new medicines to treat bee disease, monitoring of bee imports and a call for shared research and dissemination of scientific knowledge.

Of particular interest to Buglife and the wild pollinators we strive to conserve is the call for stricter rules, sustainable use and better risk assessment methodology for pesticide use. Buglife’s report 'The Impact of neonicotinoid insecticides on bumblebees, Honey bees and other non-target invertebrates' produced in 2009 called for reliable and effective testing of pesticides, properly considering and setting standards for sub-lethal and chronic toxicity in the risk assessment of pesticides as well as a suspension of the use of this harmful group of pesticides.

During the European Parliament meeting Ban Eickhout, a Dutch Green MEP presented the house with an alternative resolution asking for a suspension on the use of harmful pesticides, which Buglife support and was backed by a quarter of the house.

Vicky Kindemba, Buglife Conservation Projects Manager said “Although neonicotinoids have not yet been suspended it is good to hear that the European Parliament is taking other forms of action to protect bees. The resolution calls to consider sub-lethal toxicity in the risk assessment of pesticides – something Buglife have been working towards for the last few years”.

The resolution also calls for the conservation of bee biodiversity including the promotion of green spaces along roads, verges of railway lines and in private gardens. Another step forward for wild pollinators is the call for pollen and nectar resources for bees and pollinating insects to be considered in land management.

Vicky Kindemba said “it is really important that needs of wild pollinators are considered as well as those of the honey bee. For the European Parliament to pass a resolution that encourages the planting of pollen and nectar rich plants is great news for invertebrates. A lot of Buglife’s conservation work strives to create wildflower rich habitats for pollinators so having encouragement to do this from the EU is great support for our work”.

The UK Government has been waiting for long term changes to the European pesticide approvals process, before making a decision to remove harmful pesticides such as neonicotinoids from the environment.

Vicky Kindemba said “This new EU resolution should encourage the UK Government to take urgent action to protect pollinators in the UK. We have already seen local authorise take action, passing a motion to make their council neonicotinoid fee. Buglife will be looking forward to the UK Government’s action to protect bees soon”.

To find out more about Buglife’s neonicotinoid report please click on the link. To find out more about Buglife’s work to create wildflower habitats for pollinators please click on this link.

http://www.buglife.org.uk/News/EU%2Bresolution%2Bpassed%2Bto%2Bhelp%2Bprotect%2Bbees

Monday, 17 October 2011

Invasion! Beware the killer hornet

This Asian menace is established in France and set to cross the Channel. Jonathan Owen reports

British beekeepers have been placed on red alert by a government warning that the UK is about to be invaded by the Asian hornet – a species whose favourite food is the honey bee. The aggressive hornet – Vespa velutina nigrithorax – hunts bees to deadly effect. Just a handful of the dark-bodied, yellow-legged hornets can destroy a bee colony in two hours.
They have already spread across France and into Spain, and are "highly likely" to reach Britain, according to the Non-Native Species Secretariat.
The Asian hornet, which can grow to 3cm long, was introduced to France in 2004, in a shipment of pots imported from China. It has swiftly adapted to the European climate. A single colony can produce more than 15,000 hornets. Earlier this month there were sightings in Belgium.
While the secretariat does not put a figure on the impact the marauding hornets could have on crops, it states: "If the UK were to suffer a total loss of pollinators (not just honey bees) the cost is estimated to be £440m per year."
The invading hornets are "very likely to survive eradication attempts" and will be a serious problem for beekeepers. The British Beekeeping Association has alerted members to prepare for the worst. It is calling on them to make beehive entrances smaller to deter the large hornets, use wasp traps, and report any sightings immediately.
And Stuart Roberts, chairman of UK Bees, Wasps and Ants Recording Society, said: "We're on red alert for any sightings ... There's not a beekeeper in this country who isn't aware that this thing is just on the other side of the Channel. We are all on the lookout."
Invasive species cost the British economy £1.7bn a year, according to the Department for Environment, Food and Rural Affairs. And the Government is now drawing up plans to deal with the Asian hornet.
Norman Rabone, 66, a beekeeper from Gillingham, Kent, said: "Hornets are terrible killers of bees. They have a killer instinct."
Asian hornets usually build large nests in trees. As well as hunting honey bees, they eat other insects and feed on fruit and flowers.
People are also at risk. In France, at least seven people were taken to hospital in 2009 after being attacked.
Additional reporting by Antony Peyton
http://www.independent.co.uk/environment/nature/invasion-beware-the-killer-hornet-2371353.html

Thursday, 2 December 2010

The Mystery of the Red Bees of Red Hook

David Selig of Red Hook, Brooklyn, a restaurant owner and amateur beekeeper, was disappointed that instead of honey his bees had produced a red concoction more reminiscent of maraschino cherries, or of cough syrup.

By SUSAN DOMINUS

Cerise Mayo expected better of her bees. She had raised them right, given them all the best opportunities — acres of urban farmland strewn with fruits and vegetables, a bounty of natural nectar and pollen. Blinded by devotion, she assumed they shared her values: a fidelity to the land, to food sources free of high-fructose corn syrup and artificial food coloring.

Cerise Mayo, a beekeeper in Red Hook and Governors Island, found that her wandering bees were returning with red coloring, probably acquired at the factory of a company that produces maraschino cherries.


And then this. Her bees, the ones she had been raising in Red Hook, Brooklyn, and on Governors Island since May, started coming home to their hives looking suspicious. Of course, it was the foragers — the adventurers, the wild waggle dancers, the social networkers incessantly buzzing about their business — who were showing up with mysterious stripes of color. Where there should have been a touch of gentle amber showing through the membrane of their honey stomachs was instead a garish bright red. The honeycombs, too, were an alarming shade of Robitussin.


“I thought maybe it was coming from some kind of weird tree, maybe a sumac,” said Ms. Mayo, who tends seven hives for Added Value, an education nonprofit in Red Hook. “We were at a loss.”

An acquaintance, only joking, suggested the unthinkable: Maybe the bees were hitting the juice — maraschino cherry juice, that sweet, sticky stuff sloshing around vats at Dell’s Maraschino Cherries Company over on Dikeman Street in Red Hook.

“I didn’t want to believe it,” said Ms. Mayo, a soft-spoken young woman who has long been active in the slow-food movement. She found it particularly hard to believe that the bees would travel all the way from Governors Island to gorge themselves on junk food. “Why would they go to the cherry factory,” she said, “when there’s a lot for them to forage right there on the farm?”

It seems natural, by now, for humans to prefer the unnatural, as if we ourselves had been genetically modified to choose artificially flavored strawberry candy over strawberries, or crunchy orange “cheese” puffs over a piece of actual cheese. But when bees make the same choice, it feels like a betrayal to our sense of how nature should work. Shouldn’t they know better? Or, perhaps, not know enough to know better?

A fellow beekeeper sent samples of the red substance that the bees were producing to an apiculturalist who works for New York State, and that expert, acting as a kind of forensic foodie, found the samples riddled with Red Dye No. 40, the same dye used in the maraschino cherry juice.

No one knows for sure where the bees might have consumed the dye, but neighbors of the Dell’s factory, Ms. Mayo said, reported that bees in unusually high numbers were gathering nearby.

And she learned that Arthur Mondella, the owner of the factory, had hired Andrew Coté, the leader of the New York City Beekeepers Association, to help find a solution.

Mr. Mondella did not return phone calls seeking comment, but in an interview, Mr. Coté said that the bees were as great a nuisance to the factory as Red Dye No. 40 was to the beekeepers. (No, Ms. Mayo was not alone: David Selig, another Red Hook beekeeper, also had bees showing red.)

“Bees will forage from any sweet liquid in their flight path for up to three miles,” Mr. Coté said. While he has not yet visited the factory, he said that the bees might be drinking from its runoff, and that solving the problem “could be as easy as putting up some screens, or providing a closer source of sweet nectar.”

Could the tastiest nectar, even close by the hives, compete with the charms of a liquid so abundant, so vibrant and so cloyingly sweet? Perhaps the conundrum raises another disturbing question: If the bees cannot resist those three qualities, what hope do the rest of us have?

A story of the perils of urban farming, this is also a story of the careful two-step of gentrification. Red Hook embodies so much of Brooklyn culture — an infatuation with the borough’s old ways, just so long as those do not actually impinge on the modish design and values.

The maraschino cherries that emerge from the Dell’s factory have probably graced thousands of retro-chic cocktails and sundaes in Red Hook itself, or at least in Williamsburg. Finding some solution to the maraschino juice bee crisis — to all urban clashes of culture — is part of the project of New York, a wildly creative endeavor in and of itself.

All summer long, friends of Ms. Mayo were forever pointing out the funny coincidence that her first name means “cherry” in French; as a slow-food advocate with the last name Mayo, she was already accustomed to such observations.

Mr. Selig, who owns the restaurant chain Rice and raises the bees as a hobby, was disappointed that an entire season that should have been devoted to honey yielded instead a red concoction that tasted metallic and then overly sweet.

He and Ms. Mayo also fear that the bees’ feasting on the stuff could have unforeseeable health effects on the hives.

But Mr. Selig said there was something extraordinary, too, about those corn-syrup-happy bees that came flying back this summer.

“When the sun is a bit down, they glow red in the evenings,” he said. “They were slightly fluorescent. And it was beautiful.”
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