🤝ATP binding is essential to multiple biological processes--including #plant#immunity.
💥Here, Kang et al. reveal that a conserved fungal Egh16-like effector disrupts ATP binding of #wheat MPK3, supressing host defense.
👀https://t.co/rvBlmygrRW @WileyLifeSci#PlantSci#JIPB
🤔How do TAD-associated chromatin dynamics and CGVs shape transcriptional plasticity, stress responses, and adaptive #evolution in #plants?
🗝️3D #genomics, chromatin accessibility, and multi-omics data hold the key!
🌱https://t.co/rvBlmygrRW @WileyLifeSci#PlantSci#JIPB#CropSci
☂️☂️☂️WIMI is so excited to share the latest paper of prof.Qun Liu, Zhiqing Wu's group, their paper '' GeARF5/GeIAA33-GeSWEET14 module balances the secondary metabolic biosynthesis to increase the yield and quality in Gastrodia elata'', This study reveals that the GeARF5/GeIAA33-GeSWEET14 module regulates vegetative propagation corm formation and secondary metabolite accumulation in Gastrodia elata by coordinating sucrose, starch, and gastrodin biosynthesis, offering a genetic basis for improving yield.
https://t.co/LOB3AaX5Kj
Send in that paper!
Deadline to submit papers for our upcoming issue on #genome#evolution is January 31, 2026. Don't miss this chance to publish original research articles, reviews, genome resources, bioinformatics tools, and databases!
Learn more: https://t.co/Mh9XCkIZrh #JSE
Transposable elements benefit #environmental adaptation by promoting #gene expression.
Here, Yang et al. report that synergism between SCT1/SCT2 and #DNA methylation regulates the expression of Copia2 retrotransposon in #rice.
https://t.co/rsejdEAGTL @WileyLifeSci#PlantSci#crop
New Article: "Pathogen-induced condensation of the guard cell RNA-binding protein SAIR1 fine-tunes translation for immunity" https://t.co/qsJ2Ou0KFO
SAIR1 forms phosphorylation-regulated condensates in guard cells, which link PAMP–MPK3/6 signalling to stomatal immunity.
#TansleyInsight: Trait-based island biogeography as a tool for studying future ecological communities
Julian Schrader 👇
📖 https://t.co/rnliz6MAx8
#LatestIssue#TansleyMedal
Is a 🖼️really worth a thousand words?
Zhang et al. think so! They've developed a high-resolution dual-polarity #molecular#imaging platform.
Find out how they're using it to unravel spatial metabolic heterogeneity in #plant tissues!
https://t.co/ChXjuCnUnn @WileyLifeSci#JIPB
🚨We’re hiring! Please help spread the word!
Our lab at @TheSainsburyLab is recruiting a pre-doctoral intern to work on plant immunity research. Ideal for those who are planning to pursue a PhD and seeking research experience. https://t.co/7F3L89BVW7
Karst areas are known for their #biodiversity.
H. subcapitata, a traditional #medicinal#plant growing in karst and non-karst areas, is a useful model for understanding #genomic#adaptation.
Wang et al. reveal their latest analysis...
https://t.co/EY1jKnOy3O @WileyEcology#JSE
Wei et al explore the fascinating world of #weasel#taxonomy, undertaking a comprehensive analysis of the #phylogenetics of this widely distributed and diverse Mustelidae lineage. Explore the findings-and meet a new species!
https://t.co/d7SpUAzt7O @WileyEcology#systematics
🫖You can't beat a good cup of tea! ...how about some #PlantScience to go with it?
Liu et al. describe the #biosynthesis of acylated flavonoids in #tea plants and highlight CsHCT as a #genetic target for enhancing #cold resistance.
https://t.co/cc5DvoEU8R @WileyLifeSci#JIPB
🍅The success🍅of vertical #farming🍅depends on #plant architecture. Here,🍅Lee et al. explore the role of the🍅strigolactone pathway in🍅developing shorter #tomato🍅plants with more🍅axillary shoots.
🍅https://t.co/buQn7P8LPr🍅
@WileyLifeSci#PlantSci🍅#genetics#CRISPR