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Flower Development under Drought Stress: Morphological and Transcriptomic Analyses Reveal Acute Responses and Long-Term Acclimation in Arabidopsis

机译:干旱胁迫下的花卉发育:形态和转录组学分析揭示了拟南芥的急性反应和长期适应

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摘要

Drought dramatically affects plant growth and crop yield, but previous studies primarily examined responses to drought during vegetative development. Here, to study responses to drought during reproductive development, we grew Arabidopsis thaliana plants with limited water, under conditions that allowed the plants to initiate and complete reproduction. Drought treatment from just after the onset of flowering to seed maturation caused an early arrest of floral development and sterility. After acclimation, plants showed reduced fertility that persisted throughout reproductive development. Floral defects included abnormal anther development, lower pollen viability, reduced filament elongation, ovule abortion, and failure of flowers to open. Drought also caused differential expression of 4153 genes, including flowering time genes FLOWERING LOCUS T, SUPPRESSOR OF OVEREXPRESSION OF CO1, and LEAFY, genes regulating anther and pistil development, and stress-related transcription factors. Mutant phenotypes of hypersensitivity to drought and fewer differentially expressed genes suggest that DEHYDRATION RESPONSE ELEMENT B1A may have an important function in drought response in flowers. A more severe filament elongation defect under drought in myb21 plants demonstrated that appropriate stamen development requires MYB DOMAIN PROTEIN 21 under drought conditions. Our study reveals a regulatory cascade in reproductive responses and acclimation under drought.
机译:干旱极大地影响了植物的生长和作物产量,但是以前的研究主要研究了营养生长过程中对干旱的反应。在这里,为了研究生殖发育过程中对干旱的反应,我们在允许植物启动和完全繁殖的条件下,以有限的水分生长了拟南芥植物。从开花开始到种子成熟的干旱处理,导致花卉发育和不育的早期停止。适应后,植物的繁殖力下降,并在整个生殖发育过程中持续存在。花的缺陷包括花药发育异常,花粉活力降低,花丝伸长降低,胚珠流产和花朵无法打开。干旱还导致4153个基因的差异表达,包括开花时间基因FLOWERING LOCUS T,CO1和LEAFY的过表达抑制子,调节花药和雌蕊发育的基因以及与压力相关的转录因子。对干旱过敏的突变表型和较少的差异表达基因表明,脱水响应元素B1A可能在花卉干旱响应中起重要作用。干旱导致myb21植物的细丝伸长缺陷更加严重,这表明适当的雄蕊发育需要干旱条件下的MYB DOMAIN蛋白21。我们的研究揭示了干旱条件下生殖反应和适应的调节级联。

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