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@abioticstress.bsky.socialOct 10, 2026, 12:29 PM

Building #climate-resilient crops: #genetic, environmental, and technological #strategies for #heat and #drought stress tolerance

academic.oup.com/jxb/article/...

#PlantScience @jxbotany.bsky.social @sebiology.bsky.social @plant-sci.bsky.social @sciplant.bsky.social @planteditors.bsky.social

@jxbotany.bsky.socialOct 10, 2026, 9:00 AM

🌱💧 RESEARCH 💧🌱

Moderate water deficit amplifies molecular responses to sulfur deficiency in Pisum sativum, revealing synergistic responses at multiple layers of regulation under this stress combination - Bonnot et al.

🔗 doi.org/10.1093/jxb/...

#PlantScience 🧪

Fig. 1 (shortened, full legend in paper): Influence of water deficit (WD), sulfur deficiency (S–), and WD/S– on pea plant phenotypic variables. (A) Experimental design. Days 0 and 9 correspond to the beginning and end of WD, respectively. For the conditions WD and WD/S–, day 12 therefore corresponds to 3 d of rewatering for plant recovery. (B) Heatmap representing the effects of stresses on phenotypic variables, at day 9 and day 12. Variables with similar responses to stress are grouped using a hierarchical clustering method. Data are the log2 ratio (stress condition versus control) calculated from means of n=8 biological replicates (eight individual plants per condition). In (B) asterisks indicate significant differences between stress and control conditions (*P<0.05; **P<0.01; ***P<0.001). (C) Profiles of selected phenotypic variables and of osmotic potential in leaves.
@slcuplants.bsky.socialOct 10, 2026, 8:58 AM

We're at #NewScientistLive - use a scanning electron microscope, see like a bee, dive into computational modelling and chat to our scientists.
#PlantScience #NSL2026

@jpschnitzler.netOct 10, 2026, 8:09 AM

#Plant-Fungus-Interactions
I‘m happy to share the latest chapter of the PhD thesis of #PeiyuanZhu.
It shows that #belowground #communication between #fungi and plant #roots lead to #FungalLifestyle specific systemic reprogramming of #PlantMetabolism.

#PlantScience #metabomomics #mycorrhiza

@ibers.bsky.socialOct 10, 2026, 8:00 AM

🥣 Happy #WorldPorridgeDay!

There's a good chance the oats in your breakfast came from a variety bred at IBERS, Aberystwyth University 🌾 Our breeding programme has developed varieties that now account for over 95% of the UK's winter oat crop.

https://ow.ly/bMJh50ZV0mG

#Oats #PlantScience #IBERS

@plantcuttings.bsky.socialOct 10, 2026, 6:45 AM

Mr P Cuttings is in celebratory mood on the occasion of his blog’s third birthday.
Want to know more?
More at plantcuttings.uk/2026/10/09/p...
Cheers!
#Botany
#PlantScience

@newphyt.bsky.socialOct 9, 2026, 10:17 PM

CRISPR helps confirm key rice transporter for bacterial blight resistance

This research, published in New Phytologist, could help breeders identify targets for developing varieties with enhanced resistance to safeguard yields and food security.

www.isaaa.org/kc/cropbiote...

#PlantScience

@theplantcell.bsky.socialOct 9, 2026, 6:31 PM

IN BRIEF: Writing the grass leaf: A single-cell view of vein initiation in maize (Andrea Gómez-Felipe) doi.org/10.1093/plce... #PlantScience @aspbofficial

@plantaeofficial.bsky.socialOct 9, 2026, 6:15 PM

📣 Join us for the upcoming Plantae webinar on October 23 at 10:00 am Eastern, hosted by the 2026 Plantae Fellows.🌱

👉 Free registration at buff.ly/KWls34Z

#PlantScience

Banner promoting a Plantae webinar titled "How Do Researchers Handle Imposter Syndrome Head‑On?" showing the Plantae logo, a circular photo of plants in test tubes and lab glassware, and event date plus featured speakers.
@insilicoplants.bsky.socialOct 9, 2026, 4:29 PM

🌾 #modelling the dynamics and phenotypic consequences of tiller outgrowth and cessation in sorghum
by Graeme L Hammer, Greg McLean, Jana Kholová, Erik van Oosterom
buff.ly/epOglV0 #PlantScience #phenotyping

@theplantcell.bsky.socialOct 9, 2026, 4:26 PM

Photoperiod and UV-B orchestrate ICR1 to control seed isoflavonoid accumulation in soybean (Mingyang Jian , Huan Wu , Cuirong Tan , Yushuang Yao , Shu Liu , Yilong Hu , Xingliang Hou , Chunyu Zhang) doi.org/10.1093/plce... #PlantScience @aspbofficial

@ucdavisplants.bsky.socialOct 9, 2026, 4:16 PM

🌱 From Plant Physiology: A natural mutation in lettuce disrupts a protein interaction, increasing the number of leaf cells producing red pigment and creating denser spots. (Richard W Michelmore)

▶️ academic.oup.com/plphys/artic...

#PlantScience #Genetics

@c-spirit.orgOct 9, 2026, 3:10 PM

🌱 Last week, C-SPIRIT welcomed NSF representatives to MSU for our Global Centers Site Visit!

Through research presentations, posters, and discussions, our team highlighted progress and international collaborations advancing plant resilience. 🔬

#plantscience

@jipb.bsky.socialOct 9, 2026, 3:05 PM

All this #PlantScience and #OpenAccess too. Thanks, @abioticstress.bsky.social!

@journalsysevo.bsky.socialOct 9, 2026, 2:57 PM

The poster!! Thank you, @jgpausas.bsky.social!
#PlantScience #evolution

@jxbotany.bsky.socialOct 9, 2026, 2:33 PM

🌱⚗️ REVIEW ⚗️🌱

Sulfur acts as a central hub in redox homeostasis and metabolism coordinated with phosphorus, nitrogen, and iron signaling networks to enhance multi-nutrient use efficiency and plant resilience - Haque et al.

🔗 doi.org/10.1093/jxb/...

#PlantScience 🧪

Fig. 1 (shortened, full legend in paper): Integration of sulfur (S), phosphorus (P), nitrogen (N), and iron (Fe) signaling pathways into coordinated regulatory networks underlying nutrient-dependent phenotypes. The transcription factor PHR1/PHLs (PHOSPHATE STARVATION RESPONSE 1/PHR1-LIKE proteins) functions as a central regulator coordinating phosphorus (P) homeostasis with nitrogen (N), iron (Fe), and sulfur (S) signaling pathways. Under P deficiency, PHR1/PHLs induce the expression of SPX domain-containing proteins (SYG1/Pho81/XPR1 domain proteins), microRNAs (miRs) and nutrient transporters to maintain nutrient balance. In the P signaling module, PHR1/PHLs positively regulate miR399 and miR827.
@domps-ufr.bsky.socialOct 9, 2026, 2:27 PM

"It takes TOR to Tango"

Today, @scourbier.bsky.social showed how TARGET OF RAPAMYCIN activity is involved in shade mediated hypocotyl elongation.

Curious? Check out the pre-print doi.org/10.64898/202...

📆Oct 09 #PlantScience

@theplantcell.bsky.socialOct 9, 2026, 2:22 PM

A cryptic START domain regulates deeply conserved transcription factors (Courtney E Dresden , Ekaterina P Andrianova , Brian J Smith , et al doi.org/10.1093/plce... #PlantScience @aspbofficial

@cp-trendsplantsci.bsky.socialOct 9, 2026, 1:57 PM

October Issue. Read FREE: Women in plant science around the world; Waterlilies illuminate angiosperm evolution and inspire crop improvement; A new framework for plant NO metabolism?; Revealing the secret jobs of plant metacaspases & much more www.cell.com/trends/plant...
#plantscience

@abioticstress.bsky.socialOct 9, 2026, 1:30 PM

A #NAC–MYB–cysteine regulatory #module enhances #drought and #salt tolerance in #soybean

onlinelibrary.wiley.com/doi/10.1111/...

#PlantScience #SciComm @jipb.bsky.social @wileylifesci.bsky.social @wileyecology.bsky.social @planteditors.bsky.social @pgrp2026.bsky.social @plant-sci.bsky.social

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