Annual exposure to endocrine-disrupting chemicals has a significant impact on the US healthcare system, causing over 2.3% of the country's GDP to be lost. The estimated disease burden from these chemicals is valued at $340 billion annually, with specific effects including neurological damage, infertility, and certain cancers.
A field study found pesticide exposure can impact bumblebee colonies, reducing queen and male production, which underpins colony success. The study provided a controlled method to assess long-term effects of pesticides on colony health.
Researchers at Clemson University are exploring unconventional methods of growing peaches organically using paper bags, which may improve yield and reduce reliance on pesticides. The project aims to provide an innovative strategy for organic peach growers in the southeastern US, increasing productivity and economic returns.
The scientific community has established criteria for identifying endocrine disruptors, which will inform regulatory decisions on substances affecting human health. The principles focus on substance effects on the endocrine system and adverse health outcomes.
A study found that multiple pesticides within colonies closely correlate with colony death, including some 'bee-safe' fungicides. The researchers assessed 91 colonies and found that the number of different compounds was highly predictive of colony death.
A new study from UMass Amherst finds that untreated lawns provide a rich diversity of flowers offering nectar and pollen to bees, boosting their populations. Researchers discovered 111 native bee species on lawns in suburban Springfield, Massachusetts.
Networking is crucial for spreading integrated pest management in agriculture. The article suggests three ways to improve networking: enhancing communication between research organizations, involving advisors in defining research projects, and structuring knowledge generation approaches. By following these recommendations, farmers can ...
Scientists at KU Leuven have developed a new cocktail of biological pesticides and synthetic predator cues that kills mosquitoes more efficiently and sustainably. The combination triggers a stress response in mosquitoes, impairing their immune system and reducing the spread of diseases.
A study published in Frontiers in Microbiology found that pesticides applied to hives to control Varroa mites can damage the gut microbiome of honeybees, impacting their ability to metabolize sugars and peptides. The research suggests that these chemicals can specifically harm the microbes crucial for honey bee nutrition and health.
Researchers found high levels of pesticides and contaminants in California condors near the coast compared to inland birds. The study suggests that feeding on marine mammal carcasses could complicate condor recovery due to potential harm from toxic substances.
A North Carolina State University study links several pesticides used by farmers with both allergic and non-allergic wheeze, a sensitive marker for early airway problems. The research, using data from the Agricultural Health Study, found 29 pesticides associated with at least one type of wheeze.
Researchers discovered that fungal blastospores can kill mosquito larvae rapidly, with specific characteristics contributing to their virulence. The study found that blastospore invasion can occur even in the presence of drugs inhibiting protease activity, making them a promising alternative to chemical pesticides.
Researchers from KU Leuven have developed a highly sensitive electronic nose using metal-organic frameworks (MOFs) to detect phosphonates found in pesticides and nerve gases. The sensor can identify traces of chemical weapons or pesticide residues on food with extremely low concentrations.
A report by University of Illinois professor Susan Schantz highlights dozens of common chemicals posing risks to fetal and child neurodevelopment. The report criticizes regulatory lapses allowing toxic chemicals into everyday products.
A consensus statement from Project TENDR highlights a link between toxic chemical exposures and neurodevelopmental disorders. The alliance calls for immediate action to reduce exposure levels to chemicals like organophosphate pesticides, PBDEs, and lead.
The current federal legal status of marijuana is a major barrier to research and regulation. Reclassifying cannabis as a less dangerous substance would make it easier for scientists to study its medical benefits and untangle regulations. This could lead to safer pesticides being tested on legal crops.
Scientists discover that daily doses of pre-harvest UV-C light increase stilbenoid production in grapes, offering a natural method to prevent pathogens and reduce synthetic pesticide use. This approach shows a significant 86-fold increase in stilbenoid concentrations, resulting in higher disease resistance.
A study by Purdue University reveals that honeybees collect pollen from non-crop plants contaminated with a wide range of pesticides, including pyrethroids and neonicotinoids. The researchers found that bees are chronically exposed to these chemicals throughout the growing season.
Research suggests environmental pollutants may increase likelihood of developing amyotrophic lateral sclerosis (ALS), a rapidly progressive motor neuron disease. The study found higher concentrations of pesticides and other toxic chemicals in individuals with ALS, but no strong correlation between occupation and risk.
Research suggests that aerial pesticide spraying may increase the risk of autism spectrum disorder and developmental delays among children. Children living in areas where aerial pesticide spraying occurs are approximately 25% more likely to have an autism diagnosis or documented developmental delay.
Researchers found that six known predators, including beetles and lacewings, naturally controlled cochineal scale insects on prickly pear plants, regulating their growth. Autonomous biological pest control may be a viable alternative to chemical pesticides under specific ecological conditions.
A recent study found that six commonly used insecticides kill amphibian parasites, potentially decreasing the number of parasites an amphibian must defend against. The study also showed population-specific differences in pesticide resistance, highlighting the importance of considering multiple populations when assessing toxicity.
Researchers found that bumblebees exposed to pesticides collected more pollen but took longer to do so than control bees. Control bees chose different flowers than pesticide-exposed bees.
Bumblebee foraging behavior altered by low levels of pesticides, changing floral preferences and hindering learning skills.
A new study reveals that European honeybees are being poisoned with up to 57 different pesticides, posing a threat to bee populations worldwide. The researchers developed a method for analyzing 200 pesticides simultaneously, providing critical information on the toxic mix and its impact on honeybee health.
Researchers from MIPT and MSU created a computer model predicting agrochemical activity using machine learning and Kohonen self-organizing maps. The model showed high predictive power, accurately classifying molecules into pesticides or plant growth regulators with 87% accuracy.
The bed bug's genome shows significant changes in receptor types for smell and taste, leading to increased resistance to pesticides. The decoded genome also reveals insights into the species' evolution from bat parasite to human feeder, highlighting genetic adaptations for chemosensation and traumatic reproduction.
The study proposes adaptive control techniques to manage pests, which can help reduce crop losses due to pest control. The approach tolerates uncertainty in pest dynamics, making it suitable for developing better models or adopting design approaches that tolerate the likely level of uncertainty.
The completed genetic blueprint of the bedbug reveals key findings on mechanisms for resisting pesticides and mitigating the effects of rough sexual insemination practices. The genome sequence shows genes that encode enzymes and proteins to fight insecticides and reduce traumatic effects of copulation.
A global research collaboration sequenced the bed bug genome, identifying genes linked to pesticide resistance, mating traits, and blood digestion. The study provides a comprehensive understanding of the biology of human ectoparasites and offers new avenues for controlling bed bug populations.
Researchers found that bed bugs that fed after being treated with insecticides had significantly lower mortality rates than those that didn't. The study suggests that feeding stimulates detoxification enzymes, leading to increased resistance and survival.
A new report by a Boston University School of Public Health researcher links Gulf War toxins to illness in veterans, citing pesticide and nerve gas exposure as causally associated with Gulf War Illness. The study found structural and electrical abnormalities in the central nervous systems of deployed troops with GWI.
Lili He will study mechanisms of how chemical pesticides penetrate fresh produce and move into plant tissues, affecting food safety for consumers. Her research uses innovative SERS techniques to detect trace amounts of pesticides without damaging samples.
A new study has found a link between early pesticide exposure and decreased lung function in children, with increased organophosphate metabolites associated with reduced air capacity. The study's findings suggest that chronic exposure to pesticides could leave children at risk of developing respiratory problems like COPD.
A UK study by University of Stirling researchers found that neonicotinoid pesticide use is linked to declining butterfly populations, with 15 species showing population declines. The chemicals can persist in the environment and contaminate wildflowers, providing little nourishment for butterflies.
Researchers identify five chemicals that trigger rice plants to fend off white-backed planthoppers, reducing the need for pesticides. The chemicals, phenoxyalkanoic acid derivatives, have shown potential in controlling insect pests and protecting ecosystems.
Researchers found that pesticides can have lasting impacts on aquatic ecosystems, affecting populations of small crustaceans and zooplankton. The study's results suggest that standard toxicity tests may not capture the full extent of pollution in waters.
Research reveals that pesticide mixtures negatively affect snail and crustacean populations, even at sublethal levels, and populations exposed to low concentrations may be more sensitive to other environmental stressors
A new paper in the Journal of Integrated Pest Management provides a comprehensive overview of greenbug control methods for wheat and sorghum. Growers can use the Glance n' Go system to monitor fields and determine when pesticides are necessary, reducing unnecessary treatments and costs.
A new study found that teenage exposure to organochlorine pesticides may lead to defective sperm and fertility problems later in life. Researchers analyzed sperm and blood samples from 90 men living in an island community with high pesticide exposure.
A study by the USGS found that native bees are exposed to neonicotinoid insecticides and other pesticides, particularly in agricultural fields and grasslands. The presence of these pesticides can harm bee populations and reproductive success.
Researchers find oil-based pesticides outperform water-based counterparts in killing contents of brown widow spider egg sacs. The silk layer's hydrophobic properties hindered water-based pesticide penetration, but oil-based aerosols effectively breached this barrier.
York U researchers list products expectant mothers should avoid during first trimester, including cleaning solvents, pesticides, and nonsteroidal anti-inflammatory drugs. Prolonged exposure to these chemicals can disrupt brain development and increase the risk of autism spectrum disorders.
A new study presents a portable smartphone-based detection system using a paper sensor that produces strong signals to detect pesticide thiram. The system integrates nanoparticles, a mini-laser, an optical filter, and software that runs on Android, giving reliable and accurate detection readings at low concentrations.
Researchers tested 42 pesticides in a realistic field setting, finding that glyphosate and acetamiprid showed little to no toxicity to honey bees. This study suggests these pesticides could be effective alternatives to other, more toxic options.
A meta-analysis of 21 studies found pesticide exposure increases diabetes risk by 61%, with some pesticides linked to higher risks for type 2 diabetes. The study suggests environmental contaminants like pesticides may play a role in diabetes pathogenesis, but results require caution due to observational data.
Research published in Diabetologia reveals a strong association between early pregnancy exposure to organic pollutants and an increased risk of gestational diabetes. Women with high levels of persistent organic pollutants (POPs) were found to be four times more likely to develop the condition.
A new project promotes agroforestry in Myanmar's uplands as a sustainable alternative to shifting cultivation, which harms livelihoods and ecosystems. The project aims to reduce the need for chemical fertilizers and pesticides while boosting yields and diversifying income sources.
A University of New Hampshire scientist has discovered a promising target for combating plant parasitic nematodes, which cause significant crop damage worldwide. The phosphodiesterase enzyme (PDE) inhibitor compound may provide a safer alternative to traditional chemical pesticides.
Researchers found that American grapes have low levels of metabolites crucial to fine wine, but are high in anti-fungal compounds. The study suggests using chemical profiling to design a better grape breed for the wine industry.
A new study from Harvard T.H. Chan School of Public Health finds that over 70% of pollen and honey samples collected from foraging bees in Massachusetts contain neonicotinoids, a class of pesticide linked to Colony Collapse Disorder. The study suggests that these pesticides pose significant risks to bee health and human exposure.
Researchers found that up to 20% of a mosquito population's genome is subject to evolutionary pressures, leading to local adaptation and potential resistance to pesticides. The study provides insights into the contemporary evolution of mosquitoes and informs strategies to control populations.
A global strategy for preventative water sample analysis has been developed, utilizing a comprehensive database of 8,000 substances. This allows laboratories to identify previously unknown molecules faster through non-target screening technology, enabling quicker response to potential waterborne risks.
A new Cornell study reveals that pesticides harm wild bees and indirectly threaten native pollinators, particularly in orchards with limited natural areas. The research highlights the importance of protecting these vital pollinators for food production, as they contribute to 35% of global food production.
Climate change is expected to increase pesticide toxicity in fish, as warmer temperatures become toxic at the upper limit of species' temperature tolerance. The study reveals that pesticides and industrial contaminants become toxic when temperatures reach 50C, making fish more vulnerable to environmental changes.
A new study found an association between pyrethroid pesticide exposure and attention deficit hyperactivity disorder (ADHD) in children and young teens, especially in terms of hyperactivity and impulsivity. Boys were three times more likely to have ADHD than girls with detectable urinary biomarkers.
A research project by ACIB uses bacteria as bodyguards for seeds like corn, canola, and sugar beet to improve growth, ward off pests, and increase resilience. The method has shown positive results in tests, offering a viable alternative to pesticides for healthier food production.
Research in The FASEB Journal found that neonicotinoid pesticides alter bee brains, disrupting learning, food gathering, and reproductive abilities. Exposure to low levels of these pesticides can cause significant harm to bees, leading to smaller colonies and poor nest conditions.
A team of scientists is working on a project to create new pesticides that target specific insect species without harming beneficial ones. By mimicking the hormone systems of these insects, researchers hope to disrupt their reproductive cycles and prevent population explosions.
Researchers from Cardiff University and Rothamsted Research created tiny molecules that replicate a natural insect-repelling smell, offering a potential alternative to pesticides. The team's breakthrough uses an enzyme to create similar smelling insect repellent molecules, with some exhibiting attractive behavior.