A recent study published in PNAS reveals that plants with diverse root microbiomes are more resilient to drought, while those with similar microbial communities struggle. The research also found that recruiting specific bacteria can improve drought resistance.
A quarter of the world's land could become significantly drier if global warming reaches 2C, according to new research. This change would increase the threat of droughts and wildfires, with areas such as semi-arid regions experiencing conditions similar to arid climates.
Scientists used genetic variability to map a plant species' ability to adapt to climate change, finding that Scandinavian plants can cope with severe drought. The study suggests that relocating populations with genetic variants supporting drought adaptation could help rescue endangered species and improve crop performance.
Researchers at the University of California, Irvine have developed a new satellite-based drought severity index that incorporates groundwater storage. This tool provides reliable information on drought conditions, enabling effective water management and impact assessment.
Research at the AGU Fall Meeting found that mistletoe lacks adaptation to conserve water during hot weather, leading to increased evaporation and potential tree death. Trees with high mistletoe levels become less healthy and can die when dry spells persist.
Researchers have identified a set of genes in drought-resistant plants that enable them to survive in dry conditions. By studying these genes, scientists hope to bioengineer water-efficient crops that can thrive in water-limited environments. This could reduce agricultural water use and boost crop resilience.
Scientists improve drought prediction for La Niña events with two new studies, predicting a second year of drought due to the current La Niña. The research found that La Niña's impact on atmospheric circulation and southern U.S. drought becomes stronger in the second year.
A new study compares the spatiotemporal characteristics of global drylands using three different drought indices: SWI, PET_Th, and PET_PM. The researchers found that the Surface Wetness Index (SWI) yields broadly similar results to the Thornthwaite method when considering interdecadal variability of global and continental drylands.
Pinyon pine trees rely on specific microclimates to recover from drought events. Cooler and wetter climates with high tree cover, abundant juvenile trees, and mature seed-producing trees are essential for regeneration. Microsites under shaded canopies also provide favorable conditions for young pinyon pine growth.
Garry Sunter, a UTSA researcher, has received a $1 million award to develop an insect-based technology that delivers genetic therapies to improve the health of mature, vulnerable plants. The goal is to enable plants to thrive in challenging conditions such as drought and disease.
Researchers found that European drought indices are deviating in a manner consistent with climate change simulations. The study suggests decreases in drought frequency in the north and increases in the south, driven by rising temperatures and evapotranspiration. This trend has been observed from the 1980s to present.
A Michigan State University scientist is leading a NOAA-funded project to create a three-month, automated drought outlook that will be released weekly to the public. The system aims to provide more notice of potential droughts, including flash droughts, and help policymakers and stakeholders prepare for these events.
A team of researchers from Osaka University has developed new methods for proliferating and breeding drought-resistant jojoba. These innovations enable the efficient production of high-quality clones and genetic transformations using agrobacterium, resulting in improved screening indices.
Plants form a symbiotic relationship with fungi, gaining key nutrients while also becoming more resistant to diseases and drought. The fungal symbiosis increases the plant's levels of certain hormones, making it more tolerant to environmental stressors and ultimately contributing to sustainable agriculture.
A study published in the Journal of Environmental Economics and Management found a systematic link between droughts and riots in sub-Saharan Africa. Droughts increase the possibility of rioting by 10% in a given month, with population density playing a key role in this relationship.
A study examines the role of fungi in drought tolerance in pinyon pines, finding that parent and offspring trees share similar fungal communities and that these communities differ between drought-tolerant and intolerant trees.
The ForPAc project aims to improve drought and flood forecasting in Kenya through weather-climate forecasts and identify barriers to acting on that knowledge. The project will put in place effective early warning systems to save lives and reduce long-term progress setback due to severe droughts.
Researchers at Texas A&M AgriLife Research have discovered a long non-coding RNA that increases thale cress plants' resistance to drought and salt stress. Increasing the lncRNA's levels shows corresponding increases in drought and salt tolerance.
Researchers sequenced Pearl millet genome, revealing molecular properties hinting at drought resistance mechanisms. The findings provide a resource for marker-selected breeding studies to improve agronomic traits in arid environments.
A new study suggests that Jordan may face disastrous droughts if alternative water sources are not implemented. Climate change and water scarcity could lead to a decline in rainfall, higher temperatures, and reduced freshwater supply, making it difficult for the country to meet its water demands.
Researchers have identified a set of genes that help control early drought response in Brassica rapa, a popular global crop. The study sheds light on how plants respond to water stress throughout the day-night cycle, revealing potential mechanisms for improving drought resistance and fertilization efficiency.
Researchers have developed a method using mosses (bryophytes) to evaluate atmospheric conditions in urban areas, including nitrogen pollution severity and drought stress. The study found that bryophytes can indicate the degree of nitrogen pollution and drought levels, making them a valuable tool for assessing environmental changes.
Researchers found that plants growing in dry climates have higher concentrations of leaf wax, a natural protective barrier. The team bred winter wheat cultivars with increased wax production, which enabled them to tolerate drought and produce high yields.
A University of Kansas researcher found that well owners in Kansas use more water during droughts due to their ability to irrigate crops. Unlike non-well owners, who cut back on water usage, well owners tap into the aquifer to sustain crops during dry years.
A study found that drought recovery depends on post-drought weather conditions and location. In general, most areas recover in under six months, while high-latitude regions need up to two years. Climate models predict more frequent droughts, which could lead to a double whammy effect if ecosystems are hit before they recover.
A new study suggests that drought recovery times will increase due to climate change, potentially leading to widespread tree deaths and ecosystem disruption. The factors contributing to this increase include temperature extremes, precipitation, and carbon dioxide concentrations.
Researchers found that droughts cause tree death by disrupting water transport (hydraulic failure) and limiting carbon supply (carbon starvation). This discovery will enhance regional-scale predictions of drought impacts on forests.
Researchers found that hydraulic failure is universal when trees die during droughts, while carbon starvation occurs roughly half the time. This study aims to improve climate change models by understanding tree mortality mechanisms.
Researchers studying aardvarks in South Africa's Kalahari Desert found that the animals are highly susceptible to warmer and drier climates, leading to severe droughts and high mortality rates. The decline of aardvarks could have indirect consequences for other animals relying on their burrows.
A new model developed by international scientists predicts multi-year US droughts and wildfire risks, enabling improved agricultural planning and water management. The model's success is attributed to the analysis of tropical climate variability, global climate change, and soil filtering effects.
Researchers at Boyce Thompson Institute have received a four-year DARPA award to develop insect-vectored viruses for disease-resistant maize. The project, titled Viruses and Insects as Plant Enhancement Resources (VIPER), aims to engineer genes into maize that can help combat disease, drought, and other yield-reducing stresses.
A new study reveals that the Atlantic and Pacific ocean temperatures play a significant role in droughts and wildfires in southwestern North America. The research shows that the large-scale difference between the two oceans enhances the risk for drought and wildfire in the region.
A study analyzing sea surface temperatures from 1957-2002 found that fluctuations contributed to persistent droughts in North America and the Mediterranean. The researchers showed that increased variability in ocean temperatures correlated with more extreme land temperature anomalies, leading to prolonged droughts.
A new statistical model projects an increase in dust storms in the southern Great Plains from spring to fall in the late half of the 21st century due to reduced rainfall and increased land surface bareness. Climate change is also predicted to reduce dust activity in the northern Great Plains in spring during the same time period.
A new study reveals that heat stress concurrent with drought or water excess can explain about 40% of the changes in wheat yields from one year to another. Water excess affects wheat production more than drought in several countries, contributing to reduced yields due to increased pests and diseases.
Researchers calculate that compound climate extremes, such as heatwaves and droughts, are more frequent than expected. This can lead to increased health risks, agricultural losses, and economic threats due to the interconnectedness of modern societies.
Researchers discovered a biological pathway that allows plants to produce acetate when water is scarce, increasing drought tolerance. Vinegar treatment increased plant survival rates by over 70% in various crops, offering a promising, non-genetically modified solution.
Researchers from the University of Utah analyzed oxygen isotope data from herbivore teeth and tusks to understand climate dynamics in the Omo-Turkana basin. The findings suggest that fluctuations in rainfall timing and interactions between plants and animals, rather than long-term drought, drove changes in the region's ecosystem.
A new study published in PeerJ introduces modern techniques to understand the landmark site's history, revealing that dinosaur bones were introduced to the deposit after death. The research suggests a combination of drought periods and flood events led to the accumulation of Allosaurus fossils, with environmental factors contributing t...
Scientists at the University of York found that the 1976 drought was the most devastating event for butterflies and moths in 50 years. The study measured data against extreme weather events since 1968, revealing a significant impact on over 50 species. Researchers warn that global warming may exacerbate such events in the future.
Researchers have identified key genes that control epigenetic modifications in wild and domesticated cotton, opening the door to new breeding techniques. By targeting these genes, breeders may be able to create crops with improved traits such as increased fiber yield and drought resistance.
A study by UCLA and University of Houston researchers reveals significant groundwater loss in the Central Valley during two droughts, with losses totaling 16.5 cubic kilometers and 40 cubic kilometers, respectively. The increase in groundwater loss was attributed to reduced precipitation, snowmelt, and changes in crop cultivation, high...
Research suggests that a 1.5C temperature increase will lead to twice as many extreme ocean heat events like the 2016 Great Barrier Reef damage, while a 2C rise triples the odds of mass bleaching. The study models thousands of years under different scenarios and finds keeping temperatures below 1.5C reduces extreme events and costs.
Scientists discovered that salicylic acid can improve a crop's ability to deal with drought by increasing the levels of three enzymes involved in the stress response. The treatment allows for more selective planting of drought-tolerant cowpea varieties, enabling them to grow in areas with limited water.
A gene atlas for the ice plant will aid in finding ways to make bioenergy feedstocks more resilient to salinity and drought. The project aims to understand how environmental stress controls the expression of CAM photosynthesis, a water-conserving pathway that helps plants survive in arid climates.
Research suggests that modifying diets by a few grams per day can significantly reduce groundwater use, cut greenhouses gases, and improve human health. Small and medium farms are essential to sustain global food supply, with estimates suggesting a 70% increase in food availability needed by 2050.
Researchers sequenced the genome of Xerophyta viscosa, a 'resurrection plant', to understand its ability to tolerate severe drought. The study revealed key genes that enable plants to survive desiccation and opens up new areas of exploration for developing drought-tolerant crops.
A new Yale-led study reveals a connection between drought exposure and adverse human health among older adults in the US. Researchers found that severe drought conditions increase the risk of mortality among adults 65 or over, as well as cardiovascular disease risk, particularly in areas where droughts are rare.
Scientists at RIKEN developed transgenic rice strains that resist drought stress, showing higher yields and increased biomass. The modified rice lines produced more galactinol, a key osmoprotectant, to cope with water loss, leading to improved drought tolerance.
Researchers at the University of Kansas found that weather whiplash, caused by changing climate patterns, will degrade Midwest's drinking water due to extreme fluctuations between drought and floods. This leads to a spike in nitrogen levels in surface waters, forcing municipalities to construct costly nitrate-removal facilities.
A robotic system is being used to study corn's root growth during drought conditions, a crucial step towards developing drought-tolerant crops. The system, called Vinobot, collects data on individual plants and helps researchers create 3D images of root growth in the laboratory.
Scientists have developed a new oilseed crop that is more resistant to heat, drought, and diseases than oilseed rape. The breakthrough technology keeps bitter defense compounds out of the seeds while maintaining them in the rest of the plant, enabling cultivation in areas previously unsuitable for oilseed crops.
A recent study evaluates the regional applicability of seven drought indices in China, including PDSI, SPI, SPEI, and SWI. The results show that some indices perform well in certain regions, while others may not be suitable for specific areas due to empirical parameters or sensitivity to temperature anomalies.
Scientists have found evidence of severe droughts in the Mideast during past warm periods, with rainfall plummeting to a fifth of modern levels. The findings suggest that the region is already experiencing dire drought and may become even drier as climate warms.
A study by Chapman University found that California's water conservation messaging strategies, such as conservation tips and loss aversion, can actually decrease participants' attitude towards water conservation. The researchers suggest that these strategies may need to be reconsidered or monitored for their effectiveness.
A new European study has found that soil carbon loss is more sensitive to climate change compared to carbon taken up by plants. In wetter regions, soil carbon loss increased, while in drier regions it decreased, and this could lead to a positive feedback on atmospheric CO2 levels.
A decrease in summer rainfall over the Asian inland plateau region led to a significant increase in drought conditions. The interdecadal change was caused by a quasi-zonal wave-like pattern and warming North Atlantic SST anomalies.
A new study found that approximately 10% of intense droughts travel between continents in predictable patterns, with the largest and most severe ones having the highest potential for damage. The researchers analyzed drought data from 1979 to 2009, identifying hotspots on each continent where similar tracks were followed.
A new program, ROOTS, aims to develop drought-resistant crops with improved root function and plant health monitoring. Researchers are adapting miniaturized sensing technologies to monitor root productivity and detect stress signals in real-time.
Researchers found that tree death due to drought is consistent across environments worldwide, with denser wood and smaller leaves providing better resistance. Climate change implications include increased tree mortality and future global warming.