Research published in BMC Microbiology suggests that insects on pig farms can carry and transmit antibiotic-resistant bacteria to humans. The study found high prevalence of resistant Enterococcus faecalis and faecium in insect intestines, mirroring those found in pigs' feces.
Scientists at Virginia Tech have identified a critical step in juvenile hormone signaling, which could lead to more targeted mosquito controls. The discovery of a protein partner for the juvenile hormone receptor has significant implications for understanding insect development and reproductive maturation.
A study published in BioScience found that nonindigenous insects are being detected at a rate of 2.5 per year, with high-impact insects and pathogens causing tree death and other effects every 2 to 2.5 years. The researchers advocate strengthening efforts to prevent arrivals of nonindigenous organisms.
A comprehensive study published in BioScience reveals over 455 insects and 16 pathogens are destroying forests across the US. Invasive species are predicted to continue threatening native ecosystems, with experts warning of a devastating impact on industries dependent on trees and plants.
New experiments confirm dragonflies grow bigger with more oxygen, but cockroaches don't. Fossilized insects may serve as proxies for ancient oxygen levels.
Researchers led by Dr. Robert Wood at Harvard University are developing micro air vehicles (MAVs) to monitor hazardous environments like collapsed structures and chemical spills. The goal is to create agile devices that can perform tasks not achieved before using robotic devices on the scale of insects.
Researchers at Johns Hopkins Medicine found that mosquitoes and other insects use taste receptors to detect DEET and smell citronellal, leading to aversion responses. The study identified three essential taste receptors for DEET detection and two distinct types of cell surface channels required for avoiding citronellal vapor.
Caltech researchers found that flies regulate altitude by tracking horizontal edges, not the motion beneath them. This mechanism is similar to steering and was tested using an automated flight chamber with multiple cameras.
A University of Houston researcher is using a vacuum device to study the effects of the Deepwater Horizon oil spill on insects and spiders in salt marshes along the Gulf Coast. The goal is to understand how the food web is structured and affected by the oil spill.
Scientists at Max Planck Institute have identified a gene controlling the difference in sex pheromone production between two European Corn Borer races, E and Z. The study found that this genetic variation leads to reproductive isolation, potentially marking the beginning of new species evolution.
A laboratory milling device called the 'insect-o-graph' can detect internal insects in wheat that are not visible to the eye or detectable by usual grading methods. The system estimates the number of live insects hidden in a one-kilogram grain sample in about one minute.
Researchers from the University of Adelaide discovered how insects judge speed and motion in a natural setting, revealing additional brain mechanisms. Insects use visual motion analysis and adapt to different light conditions, similar to humans.
Researchers at Michigan State University discovered that shiny black solar cells lure water insects away from critical breeding areas. Applying white grids or other methods can break up polarized reflection of light, making it less attractive to mayflies and other aquatic insects.
BBSRC funded researchers found that applying Bt to young plants enhances the bacteria's ability to infect insect pests. The study also reveals that the natural abundance of Bt in the environment plays a significant role in its effectiveness.
Researchers discovered that unroasted coffee beans contain globulins, which have an insecticidal effect on cowpea weevil larvae. The study suggests that these proteins could be inserted into food crops to produce natural insecticides.
A study published in the Proceedings of the National Academy of Sciences found that insect-gobbling animals increase plant growth by reducing plant-feeding insects' damage. The research solidifies birds, bats, lizards, and other similar animals' importance to ecosystem health.
A new study reveals that birds, bats, and lizards play a crucial role in maintaining forest health by controlling insect populations. By eating herbivores and their insect predators, these animals reduce plant damage by 40%, leading to a 14% increase in plant biomass.
A recent study found that carnivorous plants can be harmed when consuming insects contaminated with toxic metals like cadmium. The research, published in Environmental Science & Technology, highlights the importance of limiting exposure to these metals to protect endangered plant species.
Scientists at the Phyletic Museum of Jena University are using MicroCT imaging to analyze insect genital morphology. The research aims to shed light on the key-lock principle, which explains how male and female reproductive organs fit together, and instead reveals that it's a result of sexual selection.
Researchers at Cornell University have discovered how fruit flies employ a stabilizer reflex to right themselves after being disturbed by wind gusts. By studying the insects' aerial maneuvers, the team aims to develop more efficient and stable flapping-wing aircraft designs.
The Pea Aphid's genome sequence provides valuable tools for understanding aphid biology, speciation, and ecological interactions. The sequencing also sheds light on the relationship between aphids and plant viruses, revealing surprising gaps in the insect immune system.
A new assay developed by USDA researchers can safely and reliably mark termites and other insects over vast acreage, allowing for their movements to be tracked. The method uses egg white, cow milk or soy milk proteins and has been shown to be effective in tracking the desert subterranean termite.
A new study has created a more accurate family tree for arthropods, including insects, crustaceans, and others. The research identified five newly discovered groupings, including remipedes as the closest living relatives of insects.
Researchers used radar equipment to observe migrating butterflies and moths flying several hundreds of metres above the ground, highlighting their remarkable abilities. The study found that these insect migrants can travel nearly twice as far and closer to their preferred direction as an insect just randomly drifting downwind.
A common plant virus attracts aphids by elevating the odor cue of infected plants without changing it. The insects transmit the disease efficiently despite leaving quickly, implying a persistent mode of transmission beyond agriculture.
Researchers found that bees can learn to recognize the arrangement of human facial features on a face, but not individual humans. The insects use this strategy to distinguish between face-like and non-face patterns.
Michigan State University scientists found that diverse biofuel plantings attract more beneficial insects than single crops like corn. The research suggests that biofuel policies should consider the added benefits of insect attraction to inform policy decisions.
The study provides new insights into pest control and genetics by sequencing the genomes of three parasitoid wasp species. The findings suggest that harnessing the full potential of parasitoid wasps could be a more effective alternative to chemical pesticides.
Researchers at Brigham Young University have identified genetic mechanisms behind the loss of deadliness in lab-raised nematode worms, which are used as a natural insecticide. The study's findings also shed light on how to defeat parasites that harm beneficial plants and animals, and could lead to new targets for pharmaceuticals.
The study's findings suggest that parasitic wasp genomes could enhance pest control by identifying target insects and venom composition. Additionally, the rapidly evolving mitochondria in Nasonia wasps may provide insights into human diseases such as mitochondrial disorders.
Prof. Michael Gurevitz's research isolates genetic sequences for neurotoxins in scorpion venom and develops methods to produce and manipulate toxins for restricted toxicity in certain insects or mammals. This work paves the way for a new, ecologically sound pest control method.
Researchers at Oregon State University are developing a legged robot that can run stably over rough terrain using principles found in insects like cockroaches and guinea hens. The goal is to create robots that can perform difficult jobs, such as military operations or space exploration, with minimal computing power.
A new study shows that locusts rely on visual input from a single eye to control their legs while walking, achieving similar results to vertebrates like humans or cats. This discovery emphasizes how insects can use simpler mechanisms to achieve complex behaviors with fewer neurons.
Scientists discovered that locusts, like mammals, rely on vision rather than touch to navigate ladders. This finding highlights the complexity of insect behavior and challenges the notion that larger brains are necessary for sophisticated motor control.
Scientists are studying the physical processes of ice formation in insects to understand why some survive freezing while others don't. The research found that insects that freeze at consistently higher temperatures have adaptations that allow them to control ice formation, implying cellular or biochemical level adaptations.
Researchers identify pheromone-detecting neurons in the fly's antenna that promote aggression, leading to increased fighting among males. The discovery provides insight into how aggression is hardwired into the brain by an animal's genes.
Researchers at the University of Minnesota have discovered how a brain hormone controls insect metamorphosis, allowing scientists to develop new and more environmentally safe ways to control agricultural pests. The study sheds light on human development as well, as both puberty and metamorphosis involve similar biological processes.
A recent study found that herbivorous ant species host bacteria from the Rhizobiales order, which facilitate nitrogen fixation and enrich their diets. This symbiotic relationship enables these ants to thrive on nutrient-poor plant-based diets.
A new study analyzes data from five continents to conclude that existing strategies can be used to predict, monitor and manage insect resistance. By understanding what accelerates and delays resistance, farmers can more effectively thwart pest resistance using tactics like refuge strategy and pyramided crops.
A study by scientists from the University of Valencia has shown that cockroaches eliminate excess nitrogen by excreting ammonia, unlike most terrestrial insects. The research suggests an evolutionary convergence between cockroaches and ants, arriving at similar metabolic solutions through their associations with endosymbionts.
Drilled at 17,598ft above sea level in the Cordillera Blanca mountain range, the ice cores contain a number of insects and plant materials that may have originated from the Amazon Basin. The cores provide an annually resolvable record of climate conditions, allowing researchers to determine past temperatures and precipitation rates.
Researchers are using two tiny insects, the predatory mite and the lady bug, to control European red mites and two-spotted spider mites in Pennsylvania apple orchards. By reducing pest mite numbers, biological control saves growers millions in integrated pest management costs.
Scientists successfully recreated chemicals that trigger aggressive behavior in Argentine ants, revealing insights into the insects' social behavior and potential methods for controlling their populations. The findings have implications for understanding the invasive species' success in non-native regions.
The Fraunhofer-Gesellschaft is launching a collaborative research program to identify new enzymes and metabolites in domestic insects for medical, pest control, and industrial applications. The program aims to develop new antibiotics and sustainable solutions for food production and quality control.
Young neurobiologist Richard Benton's research on insect odor detection has uncovered unanticipated evolutionary parallels between chemosensation, immune recognition, and synaptic transmission. His findings have significant implications for controlling disease-transmitting insects and understanding the evolution of nervous systems.
Researchers at Rothamsted Research and Birkbeck University use Diamond Light Source's X-rays to unravel the mechanisms linked to pheromone detection in silkworm moths. This breakthrough has significant implications for developing new eco-friendly pest control methods, which could also benefit biosensors and detect explosives.
Researchers have discovered molecules that can interfere with insects' sense of smell, confusing them and reducing crop damage. The findings could contribute to food security by preventing damage from insect pests.
Researchers found that inexperienced female fruit flies can learn to prefer certain locations for laying eggs after observing mated females, indicating social learning abilities. This study suggests that even solitary insects may exhibit social learning as a survival mechanism.
Researchers at McMaster University found that corpses of animals emit the same death stench, produced by specific fatty acids, which repels living relatives of insects. This ancient warning signal may have evolved to avoid disease and predators, with potential applications in pest control and immunity activation.
Researchers use insects like fruit flies and moths to test new drugs, reducing animal testing by up to 90% and speeding up results. The study finds that insect immune cells are structurally and functionally similar to those in mammals, offering a promising alternative for drug development.
Researchers at Virginia Tech are analyzing insects to develop better artificial tissues and organs. They're studying the internal fluid flows of beetles, grasshoppers, and silk moths to gain insights into efficient respiratory and circulatory systems.
New research reveals that ground beetles produce limonene, a natural repellent used by dogs, cats, and other animals, as a major defensive chemical. The beetle's pygidial gland produces a complex mixture of monoterpenes, including limonene and toluquinone, which acts as a permeation enhancer for the benzoquinone-based repellent.
A team of researchers will survey Kasatochi Island to monitor its recovery from the 2008 volcanic eruption. The interdisciplinary research focuses on the island's ecosystem development, with an emphasis on insect and bird species.
Researchers investigated deet's mode of action and toxicity, finding it inhibits the activity of a key central nervous system enzyme, acetycholinesterase, in both insects and mammals. This discovery questions the safety of deet, particularly when used with other chemicals.
Studies reveal that certain insects can mimic the scent of ants to avoid detection, while pitcher plants' bright colors do not attract prey. Specialists caterpillars also outperform generalists in avoiding predators due to better adaptation to their host plant resources.
Researchers found that blocking octopaminergic and dopaminergic neurons prevents crickets from recalling rewarding or punishing stimuli. This suggests a 'cognitive' account of classical conditioning applicable to insects.
Research at the ESA annual meeting reveals that urban stream pollution can be beneficial to mosquitoes, while lakefront development reduces food supplies for fish. Greenroofs, on the other hand, can absorb significant amounts of stormwater, saving cities millions of gallons of water.
A Queen's University study found that locusts' brain disturbance during a coma-like state shares similarities with human migraines, strokes, and epilepsy. Researchers discovered that manipulating cellular signaling pathways in the brain could potentially modify the severity of these conditions.
A study published in PLoS Biology reveals that fruit flies can detect and avoid the plant toxin L-canavanine using a modified glutamate receptor called DmXR. This detection is crucial for their survival, as consuming the toxin can lead to reproductive failure.
A study by French and American scientists found that enzyme synthesis of steroids in humans is unrelated to those in insects, snails, octopuses, and corals. This discovery suggests a 'snail-centered viewpoint' for understanding the effects of environmental chemicals on steroid synthesis.