Physiological and transcriptional analyses reveal formation of memory under recurring drought stresses in seedlings of cotton (Gossypium hirsutum)

生物 表观遗传学 棉花 H3K4me3 干旱胁迫 基因 组蛋白 棉属 作物 植物 农学 基因表达 遗传学 发起人
作者
Zailong Tian,Kun Li,Yaru Sun,Baojun Chen,Zhaoe Pan,Zhenzhen Wang,Baoyin Pang,Shoupu He,Yuchen Miao,Xiongming Du
出处
期刊:Plant Science [Elsevier BV]
卷期号:338: 111920-111920 被引量:10
标识
DOI:10.1016/j.plantsci.2023.111920
摘要

Plants are frequently subjected to a range of environmental stresses, including drought, salinity, cold, pathogens, and herbivore attacks. To survive in such conditions, plants have evolved a novel adaptive mechanism known as 'stress memory'. The formation of stress memories necessitates coordinated responses at the cellular, genetic/genomic, and epigenetic levels, involving altered physiological responses, gene activation, hyper-induction and chromatin modification. Cotton (Gossypium spp.) is an important economic crop with numerous applications and high economic value. In this study, we establish G. hirsutum drought memory following cycles of mild drought and re-watering treatments and analyzed memory gene expression patterns. Our findings reveal the physiological, biochemical, and molecular mechanisms underlying drought stress memory formation in G. hirsutum. Specifically, H3K4me3, a histone modification, plays a crucial role in regulating [+ /+ ] transcriptional memory. Moreover, we investigated the intergenerational inheritance of drought stress memory in G. hirsutum. Collectively, our data provides theoretical guidance for cotton breeding.
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