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From vine to wine: Decoding Malbec"s genetic diversity for clonal excellence

Grapevine genomes, known for their high heterozygosity, present significant challenges for accurate assembly. Traditional approaches often focus on nearly homozygous lines, which fail to capture the full genetic diversity of complex cultivars like Ma.....»»

Category: topSource:  informationweekJun 28th, 2024

From vine to wine: Decoding Malbec"s genetic diversity for clonal excellence

Grapevine genomes, known for their high heterozygosity, present significant challenges for accurate assembly. Traditional approaches often focus on nearly homozygous lines, which fail to capture the full genetic diversity of complex cultivars like Ma.....»»

Category: topSource:  informationweekRelated NewsJun 28th, 2024

Genetic discovery delays peach bloom, safeguards crops from spring frost

In a pivotal advancement for fruit agriculture, scientists have pinpointed a gene mutation in peach trees that governs the timing of flowering, a trait critical for evading spring frosts. This genetic insight could transform breeding practices, enabl.....»»

Category: topSource:  physorgRelated NewsJun 27th, 2024

Phytochemical diversity and herbivory are higher in tropical forests, says study

It is widely accepted that biological interactions are stronger or more important in generating and maintaining biodiversity in the tropics than in temperate regions. However, this hypothesis has not been fully tested in ecology and evolutionary biol.....»»

Category: topSource:  pcmagRelated NewsJun 27th, 2024

Researchers find genetic stability in a long-term Panamanian hybrid zone of manakins

We often think of species as separate and distinct, but sometimes they can interbreed and create hybrids. When this happens consistently in a specific area, it forms what's known as a hybrid zone. These zones can be highly dynamic or remarkably stabl.....»»

Category: topSource:  pcmagRelated NewsJun 26th, 2024

Scientists discover next-generation system for programmable genome design

In a leap forward for genetic engineering, a team of researchers from the Arc Institute have discovered the bridge recombinase mechanism, a precise and powerful tool to recombine and rearrange DNA in a programmable way......»»

Category: topSource:  physorgRelated NewsJun 26th, 2024

Unlocking the world of bacteria—researchers introduce new approach to make bacteria amenable to genetic engineering

Bacteria populate virtually every habitat on Earth, including within and on our own bodies. Understanding and engineering bacteria can lead to new methods for diagnosing, treating, and preventing infections. Additionally, it presents opportunities to.....»»

Category: topSource:  physorgRelated NewsJun 26th, 2024

Scientists discover genetic "off switch" in legume plants that limits biological ability to source nutrients

A genetic "off switch" that shuts down the process in which legume plants convert atmospheric nitrogen into nutrients has been identified for the first time by a team of international scientists......»»

Category: topSource:  physorgRelated NewsJun 26th, 2024

From wild to sweet: Decoding the jujube"s genetic journey

Chinese jujube, known for its economic and nutritional significance, was domesticated from its wild ancestor. While previous studies have shed light on some aspects of its domestication, many genetic details remain unexplored. The jujube's transforma.....»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Decoding apples: Nitrogen"s role in shaping fruit sugar content

Apple quality and yield are significantly affected by nitrogen levels in the soil, which influence various biochemical processes. Insufficient nitrogen can result in poor fruit quality, while excessive nitrogen leads to environmental pollution. Under.....»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Researchers discover MAPK20-ATG6 link in tomato pollen vitality

Pollen development in flowering plants is a complex process involving multiple genetic and physiological pathways. Previous studies have highlighted the importance of mitogen-activated protein kinases (MAPKs) in various plant developmental stages......»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Tea science: Gene discovery to boost mechanical harvesting

Researchers have made significant strides in understanding the genetic factors influencing tea plant leaf droopiness, a key determinant of mechanical harvest success. By identifying the CsEXL3 gene and its regulation by CsBES1.2, the study paves the.....»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

New tool maps microbial diversity with unprecedented details

Researchers from the Max Planck Institute for Biology Tübingen have developed the groundbreaking tool SynTracker. SynTracker expands traditional microbial analysis by considering genomic structural variation to complement existing SNP-based methods......»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Hidden mechanisms behind hermaphroditic plant self-incompatibility revealed

A new study presents an evolutionary-biophysical model that sheds new light on the evolution of the collaborative non-self recognition self-incompatibility, a genetic mechanism in plants that prevents self-fertilization and promotes cross-fertilizati.....»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Heat and disease: The genetic tug-of-war in pepper immunity

Plants face simultaneous challenges from pathogens and environmental stresses, especially in tropical and subtropical regions. Pathogens trigger immune responses through specific receptors, while high temperatures activate heat tolerance mechanisms......»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Squeezing more flavor: Genetic study optimizes citric acid in tomatoes

Citric acid (CA) is a flavor-enhancing compound in tomatoes that also serves as a metabolic pathway mediator. Despite its importance, the genetic and environmental interplay affecting its levels has been a puzzle, difficult to decipher and control......»»

Category: topSource:  physorgRelated NewsJun 25th, 2024

Improving transformation frequency in maize

Maize is one of the classical model organisms for genetic research. However, the low transformation frequency remains an important bottleneck for many gene-editing applications......»»

Category: topSource:  pcmagRelated NewsJun 24th, 2024

Genetic switch in plants can turn simple spoon-shaped leaves into complex leaves with leaflets

The diversity of forms of living organisms is enormous. But how the individual cells together coordinate the formation of organs and tissues in complex organisms is still an open question......»»

Category: topSource:  pcmagRelated NewsJun 24th, 2024

Beyond CRISPR: seekRNA delivers a new pathway for accurate gene editing

Scientists at the University of Sydney have developed a gene-editing tool with greater accuracy and flexibility than the industry standard, CRISPR, which has revolutionized genetic engineering in medicine, agriculture and biotechnology......»»

Category: topSource:  physorgRelated NewsJun 21st, 2024

Blooming through adversity: Roses" genetic defense against salinity stress

A cutting-edge study illuminates the intricate mechanisms of rose plants' resistance to salt stress, a critical issue for global agriculture. The research identifies the phenylpropane pathway, especially flavonoids, as key to this tolerance, offering.....»»

Category: topSource:  physorgRelated NewsJun 21st, 2024

Unlocking broccoli"s genome: Key to enhanced health benefits

Broccoli is renowned for its health benefits, primarily due to its rich glucosinolate (GSL) content, which has anti-carcinogenic and antioxidant properties. Despite extensive studies on Brassica species, the genetic basis for GSL diversity remains un.....»»

Category: topSource:  physorgRelated NewsJun 21st, 2024