Part of a Collection: Genome Editing in Plants 🌱
A 𝘙𝘩𝘪𝘻𝘰𝘣𝘪𝘶𝘮 𝘳𝘩𝘪𝘻𝘰𝘨𝘦𝘯𝘦𝘴-mediated transformation method coupling CRISPR/Cas9 gene editing in soybean with high-throughput soybean cyst nematode 🪱greenhouse bioassays https://t.co/mUpZMfs7ON
Comparative Transcriptomic Analysis of Soybean Recombinant Inbred Lines Differing at the Rmi1 Locus for Resistance to Meloidogyne incognita During Early Stages of Nematode Infection | Phytopathology® https://t.co/4EJ8VLp1bJ
Transcriptome and Cell Type Signature Analysis of Laser-Microdissected Syncytia Induced by the Cyst Nematode Heterodera schachtii in Arabidopsis Roots | Molecular Plant-Microbe Interactions® https://t.co/4KGFQOIFF7
Scientists continue to search for soybean traits to help with SCN resistance. Researchers with a North Central Soybean Research Program project test new cultivars and strategies to provide farmers with tools beyond PI 88788 and Peking varieties. #USSoy https://t.co/cEPp7ynWEI
A team of scientists at MU, UGA, and the USDA have been devoted to discovering a gene to combat SCN and improve farmers' productivity. Click here to read more on the new gene, GmSNAP02.
https://t.co/kB2bwLEXiv
New Research: Cataloging SCN resistance loci in North American public soybean breeding programs: Soybean cyst nematode (SCN) is a destructive pathogen of soybeans responsible for annual yield loss exceeding $1.5 billion in the… https://t.co/FNVr0dFelg #PlantScience#PlantSci
Discover the latest release from IPBGG, showcasing what sets our world-renowned program apart at the forefront of plant breeding and genetics research!
https://t.co/nvkfOpiNT1
Structural and functional analysis of two SHMT8 variants associated with soybean cyst nematode resistance - Korasick - The FEBS Journal - Wiley Online Library https://t.co/kh2EWwGW4z