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Abiotic Stress in Plants

Профиль Vively

#PlantScience #PlantStress #StressBiology #StressTolerance #Temperature #Drought #Metals #Salinity #Hypoxia #Waterlogging #Oxidative #Osmotic Tag @abioticstress.bsky.social for repost AI-generated images used for visual communication and engagement.

#lncRNA62732 acts as an eTM of #miR9778 to regulate #TaHAK18-5B and mediate the #potassium deficiency response in #wheat nph.onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @newphyt.bsky.social @wileylifesci.bsky.social @wheattrials.bsky.social @plant-sci.bsky.social @plantgene.bsky.social

<fc>lncRNA62732</fc> acts as an <fc>eTM</fc> of <fc>miR9778</fc> to regulate <fc>TaHAK18</fc>‐<fc>5B</fc> and mediate the potassium deficiency response in wheatProposed model of the lncRNA62732-miR9778-TaHAK18-5B module regulating K+ deficiency response in wheat (Triticum aestivum).nph.onlinelibrary.wiley.com
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Design Principles of Plant #Thermotolerance: Integrating #Photosynthesis, #Reproduction, and #Field Resilience in a Warming #Climate onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @wileylifesci.bsky.social @plant-sci.bsky.social @theplantinitiative.bsky.social @plantresearch.bsky.social

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Publishing new work on #AbioticStress in plants?🌱 Tag us in your posts and we may repost your work to help it reach the #PlantScience community #PlanScience @jipb.bsky.social @jxbotany.bsky.social @plantbiotechj.bsky.social @natplants.nature.com @plantspps.bsky.social @plant-sci.bsky.social

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#Transcription Factors Regulating #Nutrient and Ion Uptake in Plants Exposed to #Abiotic and #Biotic Stress Conditions onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @wileylifesci.bsky.social @sciplant.bsky.social @plantresearch.bsky.social @plantgenomics.bsky.social @plant-sci.bsky.social

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Extreme #Polyploidy Reveals Functional Trade-Offs in Plant #Drought Responses onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @wileylifesci.bsky.social @wileyecology.bsky.social @plantevolution.bsky.social @plant-sci.bsky.social @plantresearch.bsky.social @plantreproevo.bsky.social

Extreme Polyploidy Reveals Functional Trade‐Offs in Plant Drought ResponsesPolyploidy shapes drought strategies in Dianthus broteri, with cytotypes spanning a tolerance–avoidance continuum. Lower ploidies conserve water and maintain canopies, whereas the highest ploidy shed...onlinelibrary.wiley.com
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Design Principles of Plant #Thermotolerance: Integrating #Photosynthesis, #Reproduction, and #Field Resilience in a Warming #Climate onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @plant-sci.bsky.social @plantresearch.bsky.social @photosyntheticaieb.bsky.social @ripeproject.bsky.social

Design Principles of Plant Thermotolerance: Integrating Photosynthesis, Reproduction, and Field Resilience in a Warming ClimateThis paper reframes plant thermotolerance as a temporally stratified, interconnected system of physiological responses centered on preserving photosynthetic carbon gain under heat stress. Consequentl...onlinelibrary.wiley.com
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A renewed focus on #carbon uptake and use to enhance #crop performance in the face of rising #temperatures academic.oup.com/plphys/advan... #PlantScience @plantphys.bsky.social @aspbofficial.bsky.social @planteditors.bsky.social @sciplant.bsky.social @owenatkin.bsky.social @plant-sci.bsky.social

A renewed focus on carbon uptake and use to enhance crop performance in the face of rising temperaturesAbstract. Increasing crop production to meet global food demand amid a more unstable climate is a challenge that requires new approaches from science and tacademic.oup.com
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#Spatial and #Temporal Dynamics of #Phenylpropanoid Pathway-Derived Secondary #Metabolites Under #Abiotic Stress onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @plantspps.bsky.social @pplplantarum.bsky.social @wileylifesci.bsky.social @plant-sci.bsky.social @plantmetabolism.bsky.social

Spatial and Temporal Dynamics of Phenylpropanoid Pathway‐Derived Secondary Metabolites Under Abiotic StressPlants, being sessile organisms, depend on finely tuned biochemical mechanisms to cope with environmental challenges. Among these, the phenylpropanoid pathway plays a central role in the production o...onlinelibrary.wiley.com
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Inactivation of E3 #Ubiquitin Ligase Encoding OsDIS1 Improves #Drought Resilience by Orchestrating #Stomatal Density & #RootSystem in #Rice onlinelibrary.wiley.com/doi/full/10.... #PlantSci @wileylifesci.bsky.social @plant-sci.bsky.social @plantrootbiology.bsky.social @rootarchitecture.bsky.social

Inactivation of E3 Ubiquitin Ligase Encoding <i>OsDIS1</i> Improves Drought Resilience by Orchestrating Stomatal Density and Root System in RiceOsdis1 null mutant enhances drought tolerance through coordinated root-shoot interactions, manifested by reduced stomatal density and transpiration with improved root system architecture and water fo...onlinelibrary.wiley.com
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Publishing new work on #AbioticStress in plants?🌱 Tag us in your posts and we may repost your work to help it reach the #PlantScience community #PlanSci @jipb.bsky.social @jxbotany.bsky.social @plant-sci.bsky.social @planteditors.bsky.social @annbot.bsky.social @jcb.org @plantbiotechj.bsky.social

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Linking #redox and #calcium signaling via #thioredoxins academic.oup.com/jxb/article/... #PlantScience @jxbotany.bsky.social @sebiology.bsky.social @plantredox.bsky.social @plantbasednews.bsky.social @sciplant.bsky.social @plant-sci.bsky.social @plantresearch.bsky.social @plantbiology.bsky.social

Linking redox and calcium signaling via thioredoxinsA crosstalk exists between reactive oxygen species (ROS) and calcium (Ca2+) signaling. This review highlights how thioredoxins mediate redox regulation ofacademic.oup.com
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#lncRNA62732 acts as an eTM of #miR9778 to regulate #TaHAK18-5B and mediate the #potassium deficiency response in #wheat nph.onlinelibrary.wiley.com/doi/10.1111/... #PlantScience @newphyt.bsky.social @plant-sci.bsky.social @wheatis.bsky.social @plantresearch.bsky.social @plantricia.bsky.social

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Silent master: #SPEECHLESS the driver of #stomatal stem cell fate and integrator of intrinsic & #environmental cues nph.onlinelibrary.wiley.com/doi/full/10.... #PlantScience @newphyt.bsky.social @wileylifesci.bsky.social @plant-sci.bsky.social @plantresearch.bsky.social @stomata-tweets.bsky.social

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#Breeding #drought-tolerant crops for sustainable #agriculture link.springer.com/article/10.1... #PlantScience @springer.springernature.com @theplantinitiative.bsky.social @plantbiology.bsky.social @sciplant.bsky.social @carissabrown.bsky.social @plantbasednews.bsky.social @hobzalab.bsky.social

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Stress #granules sequester #autophagy proteins to facilitate plant recovery from #heat stress www.nature.com/articles/s41... #PlantScience @natcomms.nature.com @plant-sci.bsky.social @stressgranulesmc.bsky.social @cfatg.bsky.social @arcticautophagy.bsky.social @plantspeciesbio.bsky.social

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#Cell-type-specific #autophagy in #root-hair-forming cells is essential for #salt stress tolerance in #Arabidopsis thaliana www.nature.com/articles/s41... #PlantScience @natplants.nature.com @plant-sci.bsky.social @plantcellatlas.bsky.social @singlecellcore.bsky.social @sciplant.bsky.social

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Integrating #molecular networks and #physiological adaptation for #heat-resilient #crops onlinelibrary.wiley.com/doi/10.1111/... #PlantScience #SciComm @jipb.bsky.social @wileylifesci.bsky.social @planteditors.bsky.social @plant-sci.bsky.social @deepsthlmuni.bsky.social @terrecolgroup.bsky.social

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The CPK8-AHA1 #phosphorylation module dampens plasma #membrane H+-ATPase activity to confer #drought tolerance academic.oup.com/plphys/artic... #PlantScience @theplantcell.bsky.social @aspbofficial.bsky.social @aspbplantbiology.bsky.social @plant-sci.bsky.social @plantresearch.bsky.social

The CPK8-AHA1 phosphorylation module dampens plasma membrane H+-ATPase activity to confer drought toleranceDrought-induced Ca2+ signals activate CPK8, which phosphorylates AHA1 at Ser-899 to inhibit its H+-ATPase activity, thereby enhancing plant drought toleranacademic.oup.com
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Multiscale #strategies to enhance plant #resilience under #climate change academic.oup.com/jxb/article/... #PlantScience #SciComm @jxbotany.bsky.social @plantresearch.bsky.social @chemodiversity.bsky.social @pgrp2026.bsky.social @plantspps.bsky.social @jcellsci.bsky.social @sciplant.bsky.social

Multiscale strategies to enhance plant resilience under climate changeClimate change is no longer a distant projection but an ongoing process redefining the boundaries of plant survival and ecosystem stability. Rising globalacademic.oup.com
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The #saltmarsh cordgrass #Spartina anglica has novel #genomic features that contribute to #abiotic stress tolerance academic.oup.com/jxb/advance-... #PlantScience @jxbotany.bsky.social @chemodiversity.bsky.social @plantscience.bsky.social @plant-sci.bsky.social @plantresearch.bsky.social

The saltmarsh cordgrass Spartina anglica has novel genomic features that contribute to abiotic stress toleranceAbstract. The allododecaploid cordgrass Spartina anglica thrives in saltmarshes, where it grows vigorously despite facing extreme environmental stresses. Sacademic.oup.com
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