#Openaccess journal from not-for-profit CSSA investigating all aspects of #plant#genomics. IF: 3.9. Social Media Editor: Sanskriti Vats (@Sanskritivats1)
Efficient genomic selection of maize test-cross hybrids via marker sampling achieves high accuracy under diverse conditions. A key advance for breeding programs. π½Read: https://t.co/mgrqOqvvQW #OpenAccess
Why is some barley purple? πΏ New research finds a dominant QTL (qPLS2) and a bHLH gene driving leaf sheath pigmentation! #PlantScience#Barley#OpenAccess https://t.co/iUmS9ppd5A
Exploring the diversity of cereal rye in the Southeast US! πΎ New research uncovers key genetic and phenotypic variation, highlighting the potential of genomic selection for regional rye variety improvement. #Agriculture#Genomics#CerealRye#Sustainability#OpenAccess
πExciting discovery! A novel QTL for grain zinc concentration (GrZnc) in tetraploid wheat, independent of yield traits, could help combat global zinc deficiency. This breakthrough offers new avenues for biofortification! #WheatResearch#Agriculture#Zinc#Genetics#OpenAccess
π¨ New in! Genes for yield, BLB & blast resistance introgressed into elite rice variety Jaya. Two lines show promise in early trials. πΎπ§¬ π https://t.co/6KLwFl5Xf5 #RiceResearch#PlantGenetics#FoodSecurity#OpenAccess
π¨ New study alert! A cost-effective, high-throughput 5K SNP genotyping assay has been developed for groundnut π±βboosting precision in breeding & germplasm characterization! π¬π₯ π https://t.co/3lMl3XZRra #genomics#groundnut#plantbreeding
π’ New study uses digital phenotyping & genomics to predict vegetative biomass in strawberries πβboosting breeding efficiency without destructive sampling! π±πΈπRead more π https://t.co/Ox3AjfnCHk #PlantScience#StrawberryBreeding#Genomics#OpenAccess
𧬠Study dissects the genetic architecture of anthocyanin traits & purple spot resistance in asparagus. Independent regulation found; QTLs mapped to support breeding disease-resistant cultivars. https://t.co/MNCs6uNxX8 #PlantGenetics#AsparagusResearch#openaccess π±
Building on our earlier work with the first high-density genotyping assay for groundnut in 2017, we are excited to share our newly published article in The @plantgenome. This study highlights the development of a cost-effective, high-throughput, mid-density 5K genotyping assay designed for germplasm characterization and breeding in #groundnut. This marks the first globally available mid-density genotyping assay for groundnut, featuring 5,081 SNPs.
@Manishpandey99@rajvarshney@Gangurde_SS@VinaySh75046976@JanilaPasupule1@Anuchitikineni
Read the full article here: https://t.co/GcP7zNNElC
Happyπto share that our new review article is now published in @plantgenome
https://t.co/HGVYY0yzRv
Special thanks to @MTHUDI1 Sir and all distinguished scientists for their valuable contributions in making this possible.
Thinking of submitting your paper to @plantgenome? Your institution may cover all or part of the #openaccess charges via an agreement with Wiley. See the list of participating institutions to find out: https://t.co/w70X0Z4Z9A
π’ New research! A GWAS of Beta vulgaris diversity panel reveals QTLs linked to total dissolved solids (TDS), a key proxy for sweetness π¬. Findings aid breeding for tastier beets! π±π¬π https://t.co/PmIIVev8yr #PlantGenetics#GWAS#BeetBreeding
π¬ Tackling Fusarium wilt in chickpea! π± Researchers identified 7 meta-QTLs for resistance & used marker-assisted breeding to develop resilient genotypes. A step forward for sustainable chickpea production! π #PlantBreeding#ChickpeaResearch https://t.co/hC4VavcGeu
Drought may boost genetic diversity in maize! π±πΎ New research finds that chronic water-deficit stress increases meiotic recombination, potentially impacting evolution & breeding. Read more: https://t.co/M78uwlKZHr #PlantScience#Genetics#openaccess
πΉπ¬ Genome-wide identification of WOX genes in Rosa reveals 351 members, with RcWUS1 enhancing somatic embryo regeneration! A step forward in rose genetic transformation. π±β¨ π Read more: https://t.co/1kPFHYam5J #PlantScience#Genetics#openaccess