#thermotolerance

2024-10-28

Is it hot in here, or is it just me?🥵
A new study by Ma et al. explores the mechanism of #thermotolerance in perennial ryegrass and provides a #scientific basis for developing thermotolerant cultivars. doi.org/10.1111/jipb.13789
@wileyplantsci
#JIPB #PlantSci #CropSci #botany

Diagrams comparing the mechanism by which heat shock factors LpHsfA2/4/5 influence heat tolerance by self-regulating and regulating the expression of the heat-shock protein gene LpHSP18.2 and the ascorbate peroxidase gene LpAPX1 in Hap1 and Hap2 mutants of perennial ryegrass (Lolium perenne).
2024-02-01

When we say this paper is hot...🔥
Zhu et al. find that #Arabidopsis NFXL1 functions as a #transcriptional activator required for reproductive #thermotolerance.
doi.org/10.1111/jipb.13604
@wileyplantsci
#JIPB #PlantScience #botany

Flow diagram to illustrate that NFXL1 has a global impact on the expression of heat stress responsive genes, including DREB2A, Heat Shock Factor A3 (HSFA3) and Heat Shock Protein 17.6 (HSP17.6) in Arabidopsis flower buds.
2023-06-01

Heat stress? More like hot new #PlantScience !
💥🌡️🌱
Spend the weekend with #JIPB and find out how #spliceophilin CYP18‐2 is involved in the splicing of retained #introns under heat stress in #Arabidopsis.
jipb.net/EN/10.1111/jipb.13450
@wileyplantsci
#AbioticStress #thermotolerance

Illustration of the splicing-linked early heat response and the interrelationship between the spliceosome complex B(ACT) and HS-DIRs across the nuclear-cytosol boundary to facilitate thermotolerance.
2022-12-09

Very interesting article on the #thermotolerance of a #Mediterranean #gorgonian: local thermal regime may not predict thermotolerance, could previous #heatwaves influence the response?
nature.com/articles/s41598-022

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