A new protocol developed by researchers at the University of Cincinnati significantly reduces the need for repetitive lab work in microsatellite-based research. By increasing the efficiency of primer testing and allowing for flexible experimentation, this method streamlines the development process, making it quicker and cheaper.
A recent study has re-evaluated the effect of nitric oxide on lateral root formation, finding that this molecule can both promote and inhibit root branching. The study utilizes a new parameter for measuring lateral root density and demonstrates the importance of considering the timing of root initiation.
Invasive plant species alter soil chemistry and nutrient cycling, facilitating their establishment. Microbial agents associated with invasive plants change soil biogeochemistry and enable their continued growth.
Researchers developed a novel robotic camera mount and software to study plant movements across wide panoramas. The technique captures interactions between environment and plants in a single sequence, enabling the visualization of changes over time.
The root microbiome plays a vital role in plant functions and ecosystem well-being, influencing genetic structure, health, and interactions with other plants. Microbial organisms associated with plant roots have far-flung global influences, from regulating plant performance to facilitating crop production in harsh climates.
Researchers at NASA and the University of Florida create single fixation protocol to study plant growth in space, allowing analysis of both molecular and morphological features. The new method uses RNA later and low-temperature scanning electron microscopy to preserve tissues without damage.
A new method of measuring tree growth has been developed, reducing research time by up to 20 minutes per tree. The innovative technique uses prefabricated cable-tie heads as collars on dendrometer bands, making it easier and safer to install than traditional methods.
A new study suggests that ancient cycad lineage is pre-adapted to grow in groves, potentially relying on the extinct megafauna dispersal mechanism. Cycads are found in highly clumped, dense populations, with limited seed dispersal, suggesting they may be maladapted to current dispersers.
A new series of articles in the American Journal of Botany explores how plants respond to climate change, providing insights into plant biology, ecology, and evolution. The studies reveal complex relationships between plants and wide-scale biological changes.
Researchers have developed a novel protocol for detecting basil downy mildew, enabling early identification and facilitating timely disease control. The method uses Visikol, a proprietary solution that replaces chloral hydrate, allowing for quick detection using a hand magnifying glass.
Visikol, a polychlorinated alcohol mixture, effectively clears organisms for viewing under microscopes without the need for federal regulation. Developed as a replacement for chloral hydrate, it offers safety and cost benefits while maintaining high-quality microscopic images.
A new study reveals that ants alter the sugar-chemistry of flowers they visit by transmitting yeast to the nectar. This change affects subsequent pollinator visitations and may impact plant fitness. The research suggests a complex interaction between plants, yeasts, and pollinators.
A new study uses proteomics to analyze the composition of gymnosperm pollination drops, revealing species-specific germination media and anti-microbial proteins. This research provides a metabolic fingerprint, enabling further research into seed plant evolution and pollen-ovule interactions.
Researchers have developed a novel procedure to isolate DNA from cactus tissue using cactus spines, overcoming challenges posed by polysaccharide-based mucilage content. This method simplifies genetic work and is less invasive than traditional sampling methods.
Scientists assembled the transcriptome and genome of the noxious weed Brachypodium sylvaticum, providing insights into its invasive capabilities and adaptation to new environments. The study offers a model for studying ecological and evolutionary aspects of invasion.
Researchers found that floral morphologies are less reliable than other traits in determining the relationships of papilionoid species and genera. Other morphological characteristics may indicate relationships more reliably, according to the study published in the American Journal of Botany.
Researchers investigate how plants sense gravity and respond to it, with a focus on genetics and the cytoskeleton's role in directing cell growth. Recent genetic studies reveal potential mechanisms for regulating actin and auxin distribution.
Plant biologists can now sequence hundreds of complete chloroplast genomes simultaneously, facilitating studies on molecular biology and evolution. This breakthrough allows researchers to reconstruct evolutionary relationships and diversifications with unprecedented precision.
Researchers have developed a technique to overcome inhibitory plant compounds, allowing PCR to successfully amplify DNA from problematic plants. The additive TBT-PAR, containing trehalose, bovine serum albumin, and polysorbate-20, enhances PCR for DNA extracted from various plant species, including tropical and temperate species.
Recent review reveals palm trees have living cells sustained throughout their lifetime, potentially holding the key to longevity and understanding cellular structure in plants. Palm trunks consist of individual cells living for centuries, unlike most long-lived trees with dead woody tissues.
Research reveals that symplasmic transport plays a crucial role in transporting nutrients and signaling molecules long distances within tree tissues. The study found that fluorescent dyes could be visualized in living cells and cytoplasmic bridges, confirming intercellular movement.
Ontologies enable computers to transform information into knowledge by attaching meaning to data. This allows scientists to access and analyze large datasets more efficiently, facilitating breakthroughs in plant science and beyond.
The Botanical Society of America (BSA) has launched an open-access journal, Applications in Plant Sciences (APPS), to promote the rapid dissemination of new tools and protocols. APPS will be part of BioOne's Open Access Collection, fostering communication within the botanical community to advance plant sciences.
Research suggests that herbivores may have driven the evolution of unique inflorescence architecture in Babiana ringens, a South African plant. The plant's ground-level flowers are protected from herbivores, while apical flowers are eaten, leading to higher reproductive success.
A team of researchers found that seaweeds employ two distinct strategies to reduce drag: 'shape changers' fold and collapse, while 'area reducers' compress their fronds through branch reorientation. This study sheds light on the complex relationship between flexibility, size, and shape changes in seaweeds.
Researchers found genetically modified Bt corn has lower colonization of arbuscular mycorrhizal fungal roots compared to non-Bt corn, but no impact on root biomass or shoot growth. This study contributes to understanding the effects of GM crops on non-target soil organisms and highlights the need for further research.
New research reveals Artemisia tridentata seeds can form a persistent seed bank, enabling the species to regenerate post-fire. The study found that burying sagebrush seeds 3 cm below the soil surface increased their viability for up to 24 months.
New DNA sequencing techniques enable plant scientists to analyze complex genomes, revealing new insights into plant diversity and evolutionary history. Targeted enrichment methods facilitate the study of specific genes and regions, accelerating discovery in crop production, ecosystem health, and understanding plant diversity.
Researchers have identified the subcellular processing location and target signal of cyclotide kalata B1, a protein found in Congolese child birthing tea. The study reveals that the precursor protein Oak1 is directed to the vacuole through propeptides from the N-terminal region.
A European herb has figured out its own way to survive in environments with low pollinator density, using a delayed selfing mechanism to guarantee seed production. The study found that when populations are small and/or pollinators are scarce, plants can augment seed production via autonomous self-pollination.
A new study found that the evolutionary shaping of floral scents in oil-secreting orchids is more closely tied to their genetic history than to natural selection driven by specific pollinators. Researchers discovered that scent profiles fell along phylogenetic lines, even when different bee species were involved.
Perennial crops retain significant genetic variation, closer to their wild counterparts than annuals. Long-lived species have fewer sexual cycles due to clonal propagation, resulting in lower genetic change.
Recent research investigates the effects of invasive velvetgrass on a native daisy, revealing direct competition as a key mechanism. The study found that removing invasive species can alter soil communities, leading to lingering negative impacts on native plants.
Researchers found that fully photosynthetic orchids associate with specific fungal clades, not shared with other sympatric orchids, and depend on their symbionts for nutrition. The study used stable isotope analysis to assess how much of the organic carbon and nitrogen in orchid tissue was acquired from their fungal partners.
A study found that female plants can control which pollen grains reach their ovules by delaying stigma receptivity, resulting in increased paternal diversity and seed production. This mechanism enhances offspring fitness in the annual herb Collinsia.
Researchers found that root grafting between individual jack pine trees increased radial growth rates and allowed for the sharing of resources such as water, photosynthates, and nutrients. This cooperative behavior challenges the traditional view of trees as competitors and suggests a new strategy for tree interactions.
Researchers discovered that seeds from cones on the forest floor of lodgepole pines can provide a viable seed bank after mountain pine beetle outbreaks, with high germination capacity. However, germination capacity decreases over time, highlighting the need for fire to trigger regeneration.
A study found that earlier springs can enhance xylem growth in black spruce, but colder summers can negate this effect. The research suggests that the amplitude of summer warming temperatures plays a crucial role in wood production.
Scientists have discovered a new plant fossil that sheds light on the phylogenetic age and ecology of the horsetail plant genus Equisetum. The fossil, dated to 150 million years ago, reveals that the genus has maintained its successful set of tools for extreme environments over millions of years.
A meta-analysis found that invasive plant species cause large losses in biodiversity at small scales but have a negligible impact at broader scales. This contradicts the common view of invasive plants as major threats to native biodiversity. The study suggests that the effect of invasive plants on native species extinctions decreases w...
Biodiversity research highlights the importance of conserving rare and endangered plant species, as well as understanding patterns of species diversity in aquatic and terrestrial systems. New analyses suggest that modern ecosystems are a product of past events, with implications for present environmental conditions and future directions.
A meta-analysis of 400 published experiments reveals that species loss at the producer level reduces ecosystem productivity and sustainability. The study found that diverse communities are more productive and efficient than their average species, with some even outperforming the single best species in a monoculture. Loss of plant diver...
Researchers found that bee-pollinated Penstemon species have distinct genetic clusters per mountain range, while bird-pollinated species show less genetic structure across ranges. Hummingbirds facilitate gene flow among distant populations, constraining local adaptations.
Researchers found distinct genetic patterns in eastern and western jack pine populations, suggesting an isolated coastal refugium along the Atlantic coast during the Last Glacial Maximum. This discovery sheds light on how glaciers impacted present-day pine genetics and potentially influenced the distribution of other boreal species.
A study published in American Journal of Botany found that cacti like Ariocarpus fissuratus use root contraction to move deeper into the soil and escape high temperatures. While this method helped protect plants growing in rocky soils, it was not enough to prevent death in sandy soils
A recent study by Dr. Nan Yao and his team found that carbon nanotubes induced programmed cell death in plant cells, with the effect being dosage-dependent. The researchers discovered that only single-wall carbon nanotubes caused cell damage, while other types of particles did not.
Researchers studied the mechanical properties of explosive seed dispersal in Cardamine parviflora, finding that the catapulting mechanism can transfer up to 20% of stored energy to kinetic energy. However, the process is unreliable, with most seeds falling to the ground.
Researchers investigated how GMO gene flow impacts sorghum-shattercane wild-crop hybrids. The study found that the hybrids outperformed their parents in terms of growth and competitiveness, but produced fewer seeds.
A scientific risk assessment examined Poplar's introduction for biofuel production, revealing hybridization patterns with native populations. The study found complex interbreeding and genetic shift in native species, highlighting the need for monitoring and regulatory guidelines.
Researchers found that 10 out of 17 Veronica species in New Zealand's alpine environment exhibit hygrochasy, a type of seed dispersal mechanism that combines plant movement with moisture response. The study challenges the traditional view of plant movement and highlights the diversity of plant adaptations to environmental conditions.