Showing posts with label caterpillars. Show all posts
Showing posts with label caterpillars. Show all posts

Saturday, January 28, 2012

For the Birds: Winged Predators Seek Certain Trees When Foraging for Caterpillars

ScienceDaily (Jan. 26, 2012) — Location matters for birds on the hunt for caterpillars, according to researchers at UC Irvine and Wesleyan University. Findings suggest that chickadees and others zero in on the type of tree as much as the characteristics of their wriggly prey.



Unfortunately for caterpillars, munching on tree leaves that are healthy and tasty can dramatically boost their own risk of becoming food. Study results, published online this week in The American Naturalist, show that dining on the trees that are most nutritious for caterpillars -- such as the black cherry -- can increase by 90 percent their chances of being devoured by a discerning bird.
"The jump in risk is surprising," said co-author Kailen Mooney, assistant professor of ecology & evolutionary biology at UCI. "It shows that for caterpillars, moving from one tree to the next can mean the difference between getting eaten and surviving."
The findings indicate a "neat potential pest control system," because the healthiest tree species harbor the greatest number of caterpillars, thereby offering the easiest pickings for winged predators, said lead author Michael Singer of Wesleyan. "Our study addresses basic theoretical questions in ecology, but we also want forest managers and conservation biologists to take away practical knowledge."
Mooney, who specializes in the ecology of predatory birds, said tree identification is probably learned by birds, not genetic. He added that Southern California bird species probably do the same with coastal sage scrub, determining which types of bushes afford a better chance of tasty insect treats.
With help from a small army of students, the scientists conducted a two-year experiment in Connecticut forests involving hundreds of tree branches either covered with bird-proof netting or left bare.
Mooney noted that the results illustrate a stark choice between gaining strength through a good diet but being more vulnerable to predators and remaining weaker and hungrier but more safe.
"If a caterpillar could feed on nutritious, high-quality tree species and be left alone, this would be the best of all worlds," he said. "Instead, it's faced with a trade-off. Overall, it appears that it's better to feed on poor-quality tree species and have fewer caterpillars around you than to be on a nutritious plant with many others."

Wednesday, December 28, 2011

Crafty Caterpillars Mimic Each Other to Avoid Predators

Scientists have long documented mimicry in adult butterflies, but new research shows that caterpillars also use this defense mechanism to deter predators.


To protect themselves from hungry predators, caterpillars have evolved a number of defenses. Some caterpillars physically camouflage themselves to look like bird droppings or sticks, while others have developed fake eyes to scare off birds. Some caterpillars even have chemical defenses gained from poisonous plants, which they then broadcast to predators with a bright warning coloration.

Although many adult butterflies employ mimicry — where one species develops warning color patterns similar to another species' — to quickly teach predators which insects to avoid, scientists have observed few definitive cases of caterpillars using this strategy.

"Mimicry in general is one of the best and earliest-studied examples of natural selection, and it can help us learn where evolutionary adaptations come from," University of Florida biologist Keith Willmott said in a statement.

Read more here:
http://www.livescience.com/17647-caterpillar-mimicry-predation.html

Sunday, September 11, 2011

Gypsy Moth Caterpillars Hormonal Slaves to Virus Gene

ScienceDaily (Sep. 8, 2011) — Gypsy moth caterpillars infected with baculovirus forfeit safety and stay in the treetops during the day because a virus gene manipulates their hormones to eat continuously and forego molting, according to entomologists. The caterpillars die where they climb and infect other gypsy moth caterpillars. "Normally, gypsy moth caterpillars are active at night," said Kelli Hoover, professor of entomology, Penn State. "They hide during the day in the soil or bark crevices protected from birds. They climb up the foliage at night to feed." Researchers have long known that gypsy moth caterpillars, like nearly all caterpillars, have baculoviruses that infect them and that a gene in the virus, egt, blocks molting in the caterpillar, keeping it in a feeding state. These viruses use most of the tissue of their hosts to reproduce and almost always kill their host.

"Baculoviruses have been known to induce climbing behavior in their caterpillar hosts for over 100 years," the researchers report in the Sept 9 issue of Science. "Until recently, determining the evolutionary basis for these altered behaviors has proven difficult in the absence of a mechanistic explanation."

The infection was labeled tree top disease 100 years ago, but back then, researchers could not look at either the virus' genetic material or the metabolic pathways in the caterpillar. Hoover and her team looked into the mechanism by which the gypsy moth baculovirus manipulates the behavior of the caterpillars.

They identified a specific viral gene, egt, that codes for an enzyme, EGT --UDP-glycosyltransferase -- that inactivates the hormone that triggers molting. Male gypsy moth caterpillars molt five times during their lives, while females molt six times before they pupate and emerge as moths. But infected caterpillars do not molt again once levels of EGT become high enough. EGT induces the caterpillar to climb to the treetops, hang onto the leaf or bark with their prolegs and die. Then, they liquefy and rain viral particles over the leaves for other caterpillars to ingest and become infected. Older caterpillars are induced to die on the bark next to their fellow gypsy moths that pupate and emerge to walk over the dead cadavers, picking up virus that can be transmitted to the next generation during egg laying.
"One of the best ways to control complex behavior is to manipulate hormones," said Hoover. Genes that influence hormones are perfect targets to change behaviors. The viral gene egt blocks molting by inactivating the molting hormone ecdysone, keeping the insect in a feeding state.

"It is good for the virus because if host spends 24 hours not feeding while they prepare to molt, this is time that the host is not getting bigger to maximize the host's biomass to make into more virus," said Hoover. "In this case we've found that that the gene also somehow induces the caterpillars to go to just the right location to enhance transmission of the virus to new hosts."

The researchers are not completely certain why the caterpillars climb or stay aloft during daylight when they are infected. One possibility is that without the molting cue, the caterpillars simply have an urge to eat continuously and so remain in the treetops.

"Michael Grove, my former technician who initiated this study in my lab, thinks that even when the molting hormone is inactivated, the caterpillars may still be triggered to climb to molt," said Hoover. "They climb, but rather than molt, they stay where they are until they die."

To show that the egt gene is responsible for the climbing, the researchers used tall plastic bottles lined with screens for the caterpillars to climb on. The bottles contained an artificial caterpillar diet for food. The researchers tested six different virus infected groups of caterpillars and one uninfected group. Two groups were infected with different, naturally occurring virus; two groups were infected with virus that had their egt gene inactivated in different ways; and two groups had the egt gene reinserted in the viral DNA.

The two naturally occurring viruses caused the caterpillars to climb and die at the top of the container, but the caterpillars infected with virus lacking the egt gene died at the bottom of the container. The caterpillars with the restored egt gene also died at elevated positions.

All the infected caterpillars exhibited the same symptoms during the initial phases of the infection, but only those infected with viruses containing egt climbed to die.

Hoover notes that this is one of the first studies to identify the gene of the parasite responsible for altering the behavior of the host animal. Many parasites manipulate their hosts, but in most cases, how this occurs in not known. Other pathogens that control host behavior in mammals include toxoplasmosis and rabies. Toxoplasmosis is a parasitic disease that mostly infects cats, but can infect other mammals. If a mouse becomes infected with toxoplasmosis, they lose their innate fear of cats and become easier for cats to catch. This benefits the infecting protozoa because it more easily spreads to its preferred host.

The rabies virus also alters behavior causing normally nocturnal animals to appear during the day and to become far more aggressive than normal.

Also working on this research from Penn State were Matthew Gardner, undergraduate honors student now at Harvard; David P. Hughes, assistant professor of entomology and biology; and James McNeil, graduate student in entomology. Also a member of the research team was James Slavicek, U.S. Department of Agriculture, Forest Service. The U.S. Forest Service supported this work.

http://www.sciencedaily.com/releases/2011/09/110908145059.htm

Thursday, November 25, 2010

Caterpillar fungus craze

THE alleys of the Chrysanthemum Village medicine market in Kunming, in south-western China, are oddly quiet. Few inspect the counters and jars filled with exotic salves and cures, from dried bats and lizards to caterpillar fungus. Prices have been shooting up, but demand from ordinary consumers is not keeping pace.


Residents of Kunming, like Chinese in other cities, have been fretting a lot about prices lately. Inflation is now running at a 25-month high, with food leading the charge. As for Chinese medicines, prices have risen between 50-300% in the past year. Notably, a speculative craze has gripped the market for caterpillar fungus. This unusual medicine, consisting of the remains of a caterpillar from which a thin fungus of similar length has sprouted, is said to be a powerful aphrodisiac and antidote to fatigue. It is dug up on the Tibetan plateau, to the concern of environmentalists.

In Chrysanthemum Village prices of caterpillar fungus, displayed in little bunches, run to more than 200 yuan ($30) a gram, close to the price of gold. The state news agency, Xinhua, says that elsewhere the medicine sells for 680 yuan a gram. An earthquake in April that struck a main producing area in Qinghai province is part of the reason, traders say. But speculative money in an economy awash with liquidity after two years of stimulus is surely at the root of it. Similar forces have driven up the prices for Chinese housing and artworks.

http://www.economist.com/node/17525802

Caterpillar fungus craze

THE alleys of the Chrysanthemum Village medicine market in Kunming, in south-western China, are oddly quiet. Few inspect the counters and jars filled with exotic salves and cures, from dried bats and lizards to caterpillar fungus. Prices have been shooting up, but demand from ordinary consumers is not keeping pace.


Residents of Kunming, like Chinese in other cities, have been fretting a lot about prices lately. Inflation is now running at a 25-month high, with food leading the charge. As for Chinese medicines, prices have risen between 50-300% in the past year. Notably, a speculative craze has gripped the market for caterpillar fungus. This unusual medicine, consisting of the remains of a caterpillar from which a thin fungus of similar length has sprouted, is said to be a powerful aphrodisiac and antidote to fatigue. It is dug up on the Tibetan plateau, to the concern of environmentalists.

In Chrysanthemum Village prices of caterpillar fungus, displayed in little bunches, run to more than 200 yuan ($30) a gram, close to the price of gold. The state news agency, Xinhua, says that elsewhere the medicine sells for 680 yuan a gram. An earthquake in April that struck a main producing area in Qinghai province is part of the reason, traders say. But speculative money in an economy awash with liquidity after two years of stimulus is surely at the root of it. Similar forces have driven up the prices for Chinese housing and artworks.

http://www.economist.com/node/17525802

Friday, June 4, 2010

Caterpillar invasion turns cemetery into horror film set

The scene at Southend Cemetery in Essex is straight out of a horror film with silken threads draped over trees, plants and gravestones.



It has been caused by an invasion of thousands of bird cherry ermine moth caterpillars who have created a vast weblike nest.

Nova Bickmore, 69, could not believe the sight when she visited her father's grave.

She said: "There were thousand upon thousand of caterpillars and a silk web all over the trees, which had no leaves left.

"Some of the caterpillars were hanging down from the trees and others were all over the floor.

"It was a really ghostly scene."

In their caterpillar stage, the bugs, known as web worms, weave leaves of trees together and eat them from their nests.

They feed on bird cherry trees which are found across Europe and when they emerge fully grown, they become distinctive white moths with five rows of black dots.