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Zhai et al. characterize a PSR network regulatory layer in which a Mediator subunit and Pi-sensing protein modulate PHR activity via competitive binding, providing mechanistic insight into Pi homeostasis regulation in #plants doi.org/10.1111/jipb... @wileylifesci.bsky.social #PlantSci #OpenAccess
From #growth potential to #drought survival: a trait- and time-based framework for plant #water economics across #vascular species nph.onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @newphyt.bsky.social @wileylifesci.bsky.social @sciplant.bsky.social @silvapereiralab.bsky.social @botany.one
Decoding #Hormone Signaling Dynamics in #Arabidopsis Under #Combined Stress: How Different #Abiotic Stress Responses Are Fine-Tuned by High #Temperatures onlinelibrary.wiley.com/doi/10.1111/... #PlantScience #PlantStress @pplplantarum.bsky.social @sciplant.bsky.social @plantscience.bsky.social
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The Mediator subunit SlMED25 and the co-repressor SlSPX2 competitively bind the N-terminal domain of the phosphate starvation response transcription factor SlPHR3 in tomato to form a sensitive molecu...
Mineral #nutrients as #regulators of plant #flowering time: A #molecular perspective onlinelibrary.wiley.com/doi/10.1111/... #PlantScience #PlantSci @jipb.bsky.social @wileylifesci.bsky.social @plantmorpho.bsky.social @plantflowers.bsky.social @plantbasedtori.bsky.social @plantmatt.bsky.social
SlMED25‐SlPHR3‐SlSPX2 module fine‐tunes SlPHR3‐mediated transcriptional activation of phosphate starvation response in tomato
doi.org
Spotlighting #plantscience that pushes the field forward. We share AI-generated summaries of key papers/news that deserve more eyes, always with source links. Inbox us a paper link or tag us to be featured. #plantsci
19h
Spotlighting #plantscience that pushes the field forward. We share AI-generated summaries of key papers/news that deserve more eyes, always with source links. Inbox us a paper link or tag us to be featured. #plantsci
Spotlighting #plantscience that pushes the field forward. We share AI-generated summaries of key papers/news that deserve more eyes, always with source links. Inbox us a paper link or tag us to be featured. #plantsci
19h
🌾🧬 Spatial transcriptomics of wheat inflorescences reveals two regions controlling spikelet architecture: primordium with RAMOSA2 and boundary with ALOG1. Central vasculature expresses spikelet number and fertility genes #plantscience @scottboden.bsky.social www.science.org/doi/10.1126/...
🌿🧬Phytohormones drove the aquatic to terrestrial transition. Ten hormone systems traced from algae to angiosperms. Each enabled stress sensing and land adaptation. Integrated hormonal networks fueled plant success. #plantscience @mplantpcom.bsky.social www.cell.com/plant-commun...
🌾🧬Spatial omics reveals gene expression, cellular heterogeneity, and tissue organization in wheat across development and stress A Wheat Spatial Omics Consortium could accelerate climate-resilient breeding #plantscience @natgenet.nature.com @scottboden.bsky.social www.nature.com/articles/s41...
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Abiotic Stress in Plants
Abiotic Stress in Plants
Abiotic Stress in Plants
Global Plant Science Spotlight
Journal of Integrative Plant Biology
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Global Plant Science Spotlight
Global Plant Science Spotlight
Global Plant Science Spotlight
Climate models predict that episodes of extreme heat will intensify in both frequency and severity in the upcoming decades, significantly impacting plant growth, productivity, and survival. In additi...
onlinelibrary.wiley.com
Decoding Hormone Signaling Dynamics in Arabidopsis Under Combined Stress: How Different Abiotic Stress Responses Are Fine‐Tuned by High Temperatures
Global Plant Science Spotlight
Global Plant Science Spotlight
A framework of traits and strategies for drought adaptation is critical for understanding the effects of climate change on natural and cultivated plant communities. The ‘growth potential – stress sur...
nph.onlinelibrary.wiley.com
From growth potential to drought survival: a trait‐ and time‐based framework for plant water economics across vascular species
This review explores how plant hormones helped photosynthetic organisms adapt as they moved from aquatic to terrestrial environments. It focuses on the evolution and specialization of phytohormones fr...
Evolutionary shifts in plant adaptation mediated by phytohormones
www.cell.com
Mapping gene activity in the wheat ear reveals domains that regulate spikelet number and yield potential.
www.science.org
This study highlights the Wheat Spatial Omics Consortium, which aims to build a spatiotemporal single-cell atlas of wheat in response to different treatments, thereby contributing to the development o...
www.nature.com
Spatial transcriptomics identifies distinct domains regulating yield-component traits of the wheat ear
The potential of wheat spatial omics - Nature Genetics
Amazing! This report suggests that a gall aphid injects into their plant host an enzyme that manipulates auxin levels in the host and thereby induces galls. #plantscience #plantsci www.biorxiv.org/content/10.6...
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PlantEvolution 🌱🌾
It also provides a wonderful example of the capability of spatial omics to enhance our understanding of wheat biology, emphasising the potential of these technologies to advance wheat improvement, as discussed in our Perspective article - www.nature.com/articles/s41...
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Scott Boden
This study highlights the Wheat Spatial Omics Consortium, which aims to build a spatiotemporal single-cell atlas of wheat in response to different treatments, thereby contributing to the development o...
www.nature.com
The potential of wheat spatial omics - Nature Genetics