Research reveals that tree species diversity enhances drought resistance in nearly half of the world's forests, with a greater impact on dry and drought-prone regions. The study suggests that restoring tree species diversity could increase drought resistance by up to 3.2% in global plantation forests.
A new record of past Indian monsoon drought history has been developed using oxygen isotopes in stalagmites, correlating with historical accounts of severe droughts and societal changes. Protracted droughts tend to occur in clusters within decades-long intervals of weaker monsoon rainfall.
Researchers discovered a link between increased drought and increased wood formation in plant stems on islands. The study found over three times as many insular woody species as previously known, with over 175 independent transitions. This research offers promising avenues for agriculture to increase drought tolerance and food production.
Researchers from the Max Planck Institute discovered that mirror-image molecules respond differently to drought stress and can be predicted more accurately via their emissions. This finding has significant implications for understanding forest ecosystem responses to climate change.
A new study by Rice University biologist Tom Miller explores the role of fungi in determining the range limits of plants in Texas. The research reveals that fungal partnerships improve drought tolerance and could potentially extend the range of grasses in response to climate change.
Researchers found that climate change has increased the likelihood of flash droughts in southeastern China by 93% in onset speed and 18% in intensity. The study's findings suggest that future flash droughts will be more frequent and severe, making drought adaptation increasingly challenging.
Researchers at RIKEN Center for Sustainable Resource Science found that adding ethanol to soil helps plants thrive during drought. The study showed that 75% of treated wheat and rice plants survived after rewatering compared to less than 5% of untreated plants.
A study found that concurrent heat and drought events can have devastating effects on multiple sectors, including human health, energy, and agriculture. The research highlights the importance of considering compound extreme events in adaptation efforts to improve resilience.
Simultaneous extreme heat and drought events have significant consequences on various sectors, including economy, health, and food production. The analysis of eight extreme events in Europe, Australia, and Africa highlights the need for more systematic risk assessments to improve adaptability and resilience.
Researchers at Yale University discovered that purslane, a common weed, can thrive in drought conditions due to its integrated C4+CAM photosynthesis system. This novel metabolic pathway enables the plant to efficiently use resources and protect itself from water stress.
The Colorado River is facing a basin-wide water supply crisis due to ongoing drought and poor water management policies. Drastic measures and difficult decisions are needed to stabilize the river's resources, particularly those that limit the amount of water used by all stakeholders.
New research by UC Santa Barbara anthropologist Douglas Kennett links climate change to civil unrest among the ancient Maya. The study found that drought may have stoked violence, leading to the collapse of the city's institutions and abandonment.
Researchers used numerical simulations to analyze a persistent summer drought in eastern China during the 1920s. The study found that internal climate variability modes were the main drivers of this drought, with the Atlantic Multidecadal Oscillation, Pacific Decadal Oscillation, and Indian Ocean Basin Mode contributing to its occurrence.
A Yale study found that living through extended droughts increases diarrhea risk among children, even with adequate sanitation. Climate change is projected to exacerbate this issue, highlighting the need for improved water and hygiene infrastructure.
A new Johns Hopkins study reveals how simultaneous extreme weather events like heat waves and droughts can create dangerous cascades in the US. The research found that dueling weather events likely drove this year's New Mexico wildfire to historic proportions, with similar patterns expected under climate change.
A new study projects that unprecedented drought conditions will become more frequent and consecutive in certain regions due to global warming. The research analyzed changes in drought day frequency for 59 global subcontinental regions until the end of the 21st century.
Research found that exposure to drought in previous generations increases complementarity between plant species, making them more resilient to subsequent droughts. This transgenerational effect enhances the sustainability of biodiversity and ecosystem functioning.
A new study reconstructs streamflow data for the Colorado River up to 800 years into the past, revealing an unmatched second-century drought. Compared to current drought levels, this 22-year period had only 68% of average water flow.
A new study published in the Proceedings of the National Academy of Sciences found that the ecological impact of invasive species alone is comparable to its combined effect with warming temperatures, drought, or nitrogen deposition. This suggests that managing invasive species at a local level can make ecosystems more climate resilient.
Researchers have identified a cork-like substance called suberin that helps protect rice roots from floods and drought. By understanding how suberin is produced, they hope to use gene editing or selective breeding to make the crop more resilient to climate change.
A study found that climatic conditions during the extreme 2021 spring drought in SWC were distinct from similar historical events. Researchers identified atmospheric internal variability and a warming trend as key drivers of the drought, with high temperatures contributing significantly to its severity.
The European drought event from 2018 to 2020 was the most intense in over 250 years, affecting approximately one third of the land area. The drought's total duration was unusually long, starting in April 2018 and ending in December 2020.
Researchers have created a wearable sensor for plant leaves that wirelessly transmits data to a smartphone app, allowing for early detection of water loss and remote monitoring of drought stress. The device has the potential to save resources and increase yields by providing reliable data on plant health.
A new study found that climate change and drought can lead to increased rates of HIV treatment non-adherence in Africa. The review highlights the complex interactions between social, economic, and environmental factors that exacerbate this issue.
A global team of scientists has identified a consistent pattern of hotter-drought conditions leading to forest mortality events. The study reveals that limiting Earth's warming will determine the survivability of many forests, with higher temperatures projected to double tree-killing droughts.
Researchers found that flash droughts are happening more quickly, with the fastest ones occurring within five days, affecting areas like South Asia, Southeast Asia, and central North America. The study highlights the importance of understanding and preparing for these events.
A researcher has won an ERC grant to study the effect of land-use change on the interactions between plants and soil organisms. This project aims to improve habitat restoration by understanding how evolutionary changes in plant populations affect soil processes and their resilience to drought.
Researchers predict that certain regions will experience perpetual drought or perennial pluvial conditions due to climate change, rendering traditional definitions obsolete. The team's findings suggest a need to adapt water management strategies to account for an ever-changing baseline.
Research led by Dr. Petra Holden from the University of Cape Town found that catchment restoration through alien tree management can reduce climate change's impact on drought streamflow. The study shows that clearing moderate levels of invasion can result in a 3-16% amelioration of human-derived climate change impact.
The European Union is projected to experience increased fire-prone areas, threatening biodiversity and carbon sinks. The IPCC report highlights the need for adaptation in addressing wildfires, focusing on fire and forest management to increase ecosystem resilience.
Researchers discovered two WOX genes controlling lateral root primordium size in rice, improving drought stress tolerance and crop production. QHB/OsWOX5 regulates S-type roots, while OsWOX10 mediates L-type root development, enhancing water uptake under drought conditions.
Regions such as the southwestern US, Amazon and Mediterranean will experience intensified drought from 1901 to 2100. Hydrological and agricultural droughts are expected to intensify more than precipitation drought due to increasing climatic water demand deficit.
A new daily drought index, DEDI, is developed to characterize spatiotemporal evolution of regional droughts. It outperforms existing indices in depicting onset, cessation, and intensity peaks of drought events.
A new UF study found that climate change intensifies the negative effects of invasive plants on longleaf pine trees, making them more vulnerable to drought and wildfires. The experiment showed that trees under stress from both drought and invasive cogongrass were least likely to survive after fire.
Researchers at NTNU identified a molecular component, THE1, required for modulating cell wall stiffness and abscisic acid production in plants. This finding provides novel insights into plant adaptation to drought and changing environments, with potential benefits for agriculture.
Increased aridity since the 1950s is evident across several hotspot regions, including Africa, southern Europe, East Asia, and Australia. Climate model projections suggest worsening drought conditions and longer-lasting drought events in the late 21st century.
Researchers evaluate the impact of severe water restrictions on almond plantations, finding that complete irrigation suspension leads to high mortality rates. Sustained deficit irrigation may be a more beneficial strategy for new plantations, mitigating economic losses and preserving production.
A new study reveals the Maya had nearly 500 edible plants available to them, many of which are highly drought-resistant. This analysis debunks the assumption that drought led to the collapse of ancient Mayan civilization.
A team of evolutionary biologists and botanists found that the spoonweed genus, which emerged as a cold specialist during the Ice Age, repeatedly adapted to rapidly alternating cold and warm periods. The researchers identified physiological adaptations to drought and salt stress that helped the plants develop high tolerance to cold.
A Dartmouth team compiled a global-scale dataset to show how uncertainties over determining snow depth can actually improve predictions of water availability. The approach leverages observational and definitional uncertainties to make better assessments of snow droughts and their impacts.
A study in Biosphere 2's Arizona facility sheds light on tropical forest responses to drought, revealing diverse drought strategies among plant species. The research, which tracked carbon, water, and VOC fluxes during a 9.5-week drought, may help improve predictions of climate change impacts on these ecosystems.
Researchers found that diverse plant water-use strategies and soil interactions support forest stability during extreme drought. The study revealed a 70% drop in carbon storage but also showed plants releasing VOCs to signal with soil microbes, mitigating emissions.
A recent study found that urban vegetation has a stronger ability to withstand drought compared to rural areas. The researchers attribute this enhanced drought resistance to increased temperature and CO2 concentration, as well as reduced ozone levels in urban environments.
UNM scientists found climate-driven tree mortality and fuel aridity are increasing fuel availability, leading to bigger, more intense wildfires. This is due to drought stress, insect outbreaks, and temperature increases causing large areas of tree mortality and rising temperatures drying out forest fuels.
Researchers created a single-cell map of corn's root, identifying key regulators of cellular diversity that help crops tolerate drought and flooding. The study found that the genetic regulator SHORT ROOT (SHR) plays a crucial role in expanding cortex tissue, leading to increased tolerance of climate stressors.
A new study attributes a significant increase in tree mortality to the direct effect of warming on bark beetles, with warmer temperatures accelerating beetle population growth. This can lead to catastrophic tree die-offs, especially among older, bigger ponderosas.
A new study warns that California's Central Valley groundwater may be unable to recover from past and future droughts, with less than a third recovered after the 2012-2016 drought. The researchers found that groundwater recovery times can be halved with modest caps on pumping in drought and post-drought years.
Researchers have identified a series of traits linked to rice plant fitness under drought, including increased crown root density. The study found that interactions between roots and beneficial soil organisms may enhance drought tolerance by improving access to nutrients.
Crops that survive early-season drought conditions are better able to deal with those same conditions later in their growth cycle, a phenomenon known as 'drought memory'. This adaptation allows crops to mitigate losses from late-season droughts up to seven percent.
Researchers identified 'hotspots' for flash droughts globally, including regions with high agricultural production, and found that half of the contributing factor is a lack of rainfall and hot weather conditions. This study provides a foundation to build off and explore key questions regarding future trends of flash drought occurrence.
Researchers at Tel Aviv University discovered a central mechanism in plants that helps them deal with drought conditions and water shortages. They found that the ABA signal molecule is stored in inactive state in leaves and released under desired conditions, allowing plants to rapidly respond to changing environmental conditions.
A study by University of Tennessee researchers found two soybean genotypes, 'Ellis' and 'USG Allen', that outperformed others under drought conditions. These varieties showed improved yields and reduced wilting, making them suitable for water-limited areas.
Researchers at INRAE found that drought conditions do not trigger esca leaf symptoms in vines. The scientists used controlled drought conditions to monitor the physiological state of 51 Sauvignon blanc vines, half under drought, and found no correlation between drought and disease development.
Researchers found that regular plants have distinct metabolic differences from CAM photosynthesis-adapted species, which could hinder efforts to bioengineer drought tolerance in crops. Understanding these differences is crucial for future research and potential crop improvement.
A recent study by researchers at The University of Texas at Austin found that the 2011 Texas drought was more severe and widespread than previously estimated. Using satellite data to track soil moisture levels, the team's updated model showed that extreme drought affected over 95% of the state in April 2011.
Groundwater recovery time varies by region and human activity, with some areas taking up to 15 years to recharge. Excessive pumping can cause land subsidence, contaminant mobilization, and decreased water quality.
A new study found that drought may hinder child vaccination coverage in Africa, with polio vaccination rates being the lowest closest to the time of drought. The study suggests that climate change can hinder vaccinations through financial instability, food insecurity and erosion of public health infrastructure.
A University of Arizona-led study found that drought and seasonal fluctuations in rainfall are larger drivers of evolutionary diversity than warm temperatures. The research team created maps of evolutionary diversity across North, Central and South America, revealing that deserts have more plant species compared to forests due to drought.
A new study published in Frontiers in Water predicts that Europe will experience more frequent and severe summer droughts due to the climate crisis. The research identifies four hotspots in France, the Alps, the Mediterranean, and the Iberian Peninsula as being at high risk of droughts.
A recent study published in Frontiers in Plant Science found that coastal grape growers in California can reduce irrigation levels by up to 50% during droughts without affecting crop yields or flavor profile. This reduction also leads to a decrease in water footprint and improved water use efficiency.