Researchers analyzed fossil records of three Mesozoic stick insect groups, revealing a trend towards slender body shapes and elongated mesothorax and metathorax. This adaptation likely aided the diversification of twig mimicry in response to emerging flowering plants.
Researchers have successfully cultivated Cordyceps mushrooms on edible insects, resulting in significantly higher levels of cordycepin. The study found that insect fat content, particularly oleic acid, plays a crucial role in cordycepin production.
A team at the University of Exeter discovered that migrating hoverflies orientate towards the north during spring, contradicting previous assumptions. The study tracked the insects' movement from Western France to Cornwall, showing a strong northerly compass sense.
Researchers identified 49 plant genes transferred to the silverleaf whitefly genome, including genes neutralizing toxins produced by plants as a defense mechanism. This discovery opens up new research opportunities for innovative pest control methods based on plant breeding, potentially reducing pesticide use.
A new study found that mobile stamens on flowers help reduce the time insects linger on flowers, decreasing nectar consumption while increasing pollen transport efficiency. This allows for more efficient pollination, ultimately benefiting plant reproductive success.
A recent study found that insect herbivores have caused more damage to plant matter from leaves in recent history than millions of years ago. The frequency of leaf damage by insects among forest plants in recent history is more than twice that of vegetation from the Pleistocene and Late Cretaceous periods.
Researchers discover that male spotted lanternflies are strongly attracted to the smell of honeydew produced by male conspecifics, emitting specific sex-attractant profiles. This finding may lead to the development of new pest management tools to reduce the population and spread of this invasive species.
Researchers investigated how paper wasps adapt their behavior when the queen is removed or dies, finding that they counterbalance genes that establish queen-like behavior with aggressive fighting. This enables societies to distinguish between intrinsic and extrinsic perturbations, allowing for plasticity in response to changes.
A recent study in Peru revealed a 50% decline in arthropod biomass following short periods of drought and increased precipitation. Tropical insects are sensitive to both extreme weather events, with rainfall patterns being a key factor in their decline.
Researchers found that insects have a weak ability to acclimate to high temperatures, with only small compensations of 10-15°C. Juvenile insects show greater resilience, but this may be limited to specific critical periods. The study highlights the need for further research on insect responses to climate change.
Researchers found that lettuce takes up nanoplastics from soil and transfers them into the food chain, with particles detected in insects and fish. The study highlights potential health risks to herbivores and humans due to tiny plastic particles in soil.
Researchers created a rechargeable, remote-controlled cyborg cockroach with an ultrathin organic solar cell module powered by a lithium polymer battery. The device allows for wireless control of leg segments, enabling long-term operation without recharging.
SourceRIKEN·Journalnpj Flexible Electronics·TypeExperimental study·DateSep 5, 2022
Researchers have successfully created a 'meat-like' seasoning by cooking mealworms with sugar, producing a sustainable alternative to traditional meat protein sources. The team identified 98 volatile compounds and optimized 10 reaction flavors that were deemed favorable by consumer panels.
Scientists at Beijing Institute of Technology successfully controlled honeybee steering behavior using unilateral optic lobe electrical stimulation, with an average successful rate of 87% in immobilized status. The study also explored the influence of pulse electrical signal parameters on steering response behaviors.
A newly identified species of Liberibacter, a family of bacteria known for causing citrus greening disease, is rapidly evolving its ability to infect insect hosts. The research team found 21 genes associated with infectious qualities and identified mutations affecting pilus proteins that allow the bacteria to move into host insects.
Researchers radio-tracked migrating hawkmoths for up to 80 kilometers, employing sophisticated flight strategies to counter unfavorable wind conditions. The study confirms that insects can accurately maintain straight trajectories over long distances using internal compasses.
Researchers at Ben-Gurion University have discovered two defense methods in wild emmer wheat that can protect cultivated wheat from insects. The wheat produces a poison called benzoxazinoid and has a coating of 'hairs' that prevent insects from burrowing, allowing for improved pest resistance
Researchers discovered the earliest direct evidence of brood care among insects in the Middle-Late Jurassic Daohugou Biota. Fossils of a water boatman insect showed it carrying a cluster of eggs on its left mesotibia, providing protection from predation and environmental risks.
A study by Texas A&M AgriLife Research found no evidence of SARS-CoV-2 transmission from flies and roaches to humans in households with confirmed COVID-19 cases. The researchers sampled over 1,300 insects from 40 homes with at least one human COVID-19 case, but none tested positive for the virus.
Researchers have developed Fanflow4Insects, a functional annotation workflow that annotates gene functions in insects. The team has annotated the Japanese stick insect and silkworm, providing valuable information for entomological research and genome editing.
A study reveals that over 1,400 genes in 218 insect species originated from bacteria, viruses, fungi, and plants through horizontal gene transfer. This discovery suggests that these genes contributed to beneficial traits such as mating behavior, nutrition, and adaptation to environmental changes.
Researchers found remains of over 40 wood mice and numerous insects, including the grain weevil, in prehistoric wells in southern France. The discovery suggests that people developed resilience against pests by switching to more resistant grains like glume wheat around 4000 BCE.
Researchers at the University of Bonn present a mobile sensor system called forceX to measure insect bite forces, allowing them to understand how these forces evolved. The system achieves high accuracy, with a deviation of only 2.2 percent between measurements.
Alison Ravenscraft, a UTA assistant professor of biology, has received a $895,000 grant from the NSF's Faculty Early Career Development Program. Her research focuses on how gut microbiota helps insects break down plant toxins, potentially reducing crop losses and pesticide use.
A new research group led by biologist Dr. Michael Gerth will investigate the interactions between bacteria and insects, with a focus on how bacterial DNA changes when transferred from one species to another. The team aims to identify successful host transfer strategies and understand environmental factors influencing these processes.
Great Salt Lake wetland plants can accumulate hazardous metal pollution, which can be passed up the food chain to herbivorous insects. This study found high concentrations of lead, mercury, and other metals in plant tissues, threatening terrestrial ecosystems.
A growing market for pet insects is driving interest in praying mantis conservation; hobbyists and enthusiasts share valuable knowledge, while also raising concerns about the trade's regulation.
Researchers found that forests and forest edges provide natural conditions that buffer extreme heat and drought, allowing for a greater diversity of pollinating insects. This study suggests that maintaining large proportions of forested land in the landscape could help mitigate the negative impacts of climate change on insect populations.
A new study by Cornell University found that rare and endangered insects and spiders can be easily purchased without adequate oversight through basic internet searches. Many species, including those with valuable ecological services like ladybugs and pollinators, are being sold illegally online.
A new study by University College London (UCL) researchers found that climate change and intensive agricultural land use have already led to a 49% reduction in insect populations in the most impacted parts of the world. Insect declines are linked to rising temperatures and land use changes, with tropical areas seeing the biggest declines.
A new study forecasts 1.4 million US street tree deaths from invasive insects by 2050, with the emerald ash borer responsible for most fatalities. Urban diversity can help mitigate this impact, and prioritizing management efforts like quarantining wood products may be necessary.
Researchers at NC State University developed a new textile crop cover called Plant Armor that can effectively protect plants from insect infestation. The design features a maze-like structure that forces insects to navigate through it, making it difficult for them to reach the plant.
Research found that invasive earthworms significantly reduce the number of insects, biomass, and species richness above ground in Canadian forests. The study suggests that changes in soil conditions caused by earthworms may also affect vegetation, but no significant alteration was detected.
A new study predicts that over the next 30 years, 1.4 million US street trees will be killed by invasive insects, mainly caused by the emerald ash borer. The estimated economic cost of replacing these trees is over $900M. Researchers warn that urban tree diversity is crucial to resilience against pest infestations.
Using insect exoskeletons and feces to promote sustainable crops could enhance plant growth, health and resilience. Insect-rearing byproducts may also act as pest control agents.
Researchers discovered calcification and silicification of insects in Kachin amber, preserving complete compound eyes, cuticle structures, and skin sensillae. The study sheds light on the role of mineralization in preserving fossils and challenges existing views on amber taphonomy.
Research shows that asexual reproduction in stick insects, such as parthenogenesis, reduces genetic variability and slows down adaptation to environmental changes. This negatively impacts the speed of adaptation and genetic diversity in these insects.
Researchers have developed a low-cost device to track insect activity, providing insights into their circadian rhythms and behavior. The portable pLAM device can monitor nocturnal species that were previously difficult to track, enabling scientists to study their habits and predict how environmental changes impact them.
A study by Newcastle University found that a 1.5°C increase in temperature reduces food resources for pollinating insects, causing them to visit a wider range of plants and altering seed production in some wildflowers. This change leads to more complex food web dynamics.
A large-scale study analyzing long-term data on insects from over 900 locations worldwide found little evidence for indicator species. Different groups of insects showed different trends, highlighting the importance of monitoring multiple groups simultaneously to provide guidelines for conservation policies.
Researchers at the University of Copenhagen have developed an AI method to recognize and detect insect species based on their wingbeats, enabling easier monitoring of biodiversity. The method uses infrared sensors to measure wingbeats and group insects into different species without human input.
Researchers discovered a sucking pump in millipedes that is similar to those of insects, enabling them to ingest more liquid food. The study found that the functional tools for liquid-based diets have evolved independently in all major subgroups of arthropods.
A new study identifies at least 16 distinct wasp species previously grouped as one, Ormyrus labotus, which lays eggs in over 65 insect species. The discovery highlights the importance of seeking out hidden diversity and underscores the need for precise identification to understand ecosystem health.
Researchers discovered that robber flies employ a combination of two strategies to navigate cluttered environments and capture prey. They use an obstacle avoidance strategy to swerve around obstructions, which is then followed by a resumption of the conventional interception path once the fly has passed the obstacle.
Researchers at Osnabrück University observe chimpanzees applying insects to their own and others' wounds, sparking interest in potential anti-inflammatory or antiseptic properties. The team aims to investigate the social dimension of this behavior and its possible transmission through social learning.
Researchers discovered that Chaoborus larvae adjust their air-sacs' volume by changing the pH level, utilizing resilin's elastic properties. This unusual adaptation enables them to float neutrally buoyant in water.
A team of researchers describes a novel flight style in the smallest free-living insects, beetles of the featherwing family. They found that these insects use a bristled wing style and rowing movements to excel at flight, defying conventional wisdom about insect aerodynamics.
A new study found that farmers are extremely knowledgeable about pollinators and have taken initiatives to protect insects on their farms. However, more flexible funding options and cooperation between research and practice are needed to realize their full conservation potential.
Researchers created detailed distribution map of glasswing butterflies, showing highest diversity at high elevations. The study highlights pressing need for conservation efforts in mountainous regions threatened by habitat loss and climate change.
Scientists have discovered new targets for insecticides by analyzing the structure of potassium channels in Drosophila. The study provides a detailed map of the channel, enabling the design of highly selective and safe insecticides.
Researchers at Lund University have successfully detected insect DNA in the air, offering a novel approach to monitoring terrestrial biodiversity. This method, known as airborne DNA metabarcoding, allows for the detection of multiple species from single samples and could accelerate biodiversity surveys.
A recent study published in eLife suggests that xylophagous beetles played a key role in the Permian carbon cycle and experienced severe ecological consequences due to end-Permian deforestation. This research provides new insights into the ecological response of insects to deforestation and global warming.
Research shows that infection with a fungus decreases the thermal tolerance of aphids and their beetle predator, the common ladybeetle, by more than 40 degrees Fahrenheit. Infected insects are less likely to cross into zones that are too warm or too cold, altering predator-prey interactions as the climate changes.
A recent USDA study analyzed two centuries of alien species discoveries to estimate the rate of new insect arrivals and potential future invasions. The research found that efforts to reduce biological hitchhiking on live plant imports have been successful, but a significant number of Hemiptera insects remain undetected.
The discovery of insect larvae with elongated appendages and early flying insects shed light on ecology, developmental biology, and the evolutionary history of insects. The findings suggest that lacewings played a more prominent ecological role in the Cretaceous Period and challenge traditional assumptions about developmental constraints.
Researchers discovered that an insect digestive enzyme removes sugar from a plant defense compound, promoting larva growth on dandelion plants containing the compound. This process also leads to the larva avoiding plants with high concentrations of the compound.
A new study published in Nature Communications finds that insect biomass is higher in warmer temperatures, while diversity declines in agricultural environments compared to semi-natural habitats. Researchers recommend increasing green spaces in urban areas and promoting forest habitats to mitigate climate change.
A study by Johannes Gutenberg University Mainz found that genetically diverse ant colonies produce more larvae than those with similar genetic backgrounds. This improved division of labor allows for more efficient task allocation, leading to better colony performance.
Research reveals hoverflies use a time-compensated sun compass to orientate during autumn migration, adjusting course based on sun's position and time of day. This navigation technique helps the insects maintain an efficient southern route despite flying on sunny days.
Researchers at the University of California - Riverside discovered that hummingbirds can avoid insects with defensive compounds, such as formic acid, which harm birds. The study shows that scent plays a crucial role in hummingbird foraging decisions and ecosystem function.