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与 Setaria italica 水分亏缺耐受性相关的表型可塑性的调控机制。

Regulatory mechanisms behind the phenotypic plasticity associated with Setaria italica water deficit tolerance.

机构信息

Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, São Bernardo do Campo, SP, Brazil.

Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, São Paulo, SP, Brazil.

出版信息

Plant Mol Biol. 2022 Aug;109(6):761-780. doi: 10.1007/s11103-022-01273-w. Epub 2022 May 7.

Abstract

Drought is one of the main environmental stresses that negatively impacts vegetative and reproductive yield. Water deficit responses are determined by the duration and intensity of the stress, which, together with plant genotype, will define the chances of plant survival. The metabolic adjustments in response to water deficit are complex and involve gene expression modulation regulated by DNA-binding proteins and epigenetic modifications. This last mechanism may also regulate the activity of transposable elements, which in turn impact the expression of nearby loci. Setaria italica plants submitted to five water deficit regimes were analyzed through a phenotypical approach, including growth, physiological, RNA-seq and sRNA-seq analyses. The results showed a progressive reduction in yield as a function of water deficit intensity associated with signaling pathway modulation and metabolic adjustments. We identified a group of loci that were consistently associated with drought responses, some of which were related to water deficit perception, signaling and regulation. Finally, an analysis of the transcriptome and sRNAome allowed us to identify genes putatively regulated by TE- and sRNA-related mechanisms and an intriguing positive correlation between transcript levels and sRNA accumulation in gene body regions. These findings shed light on the processes that allow S. italica to overcome drought and survive under water restrictive conditions.

摘要

干旱是影响植物营养生长和生殖生长的主要环境胁迫之一。水分亏缺响应取决于胁迫的持续时间和强度,加上植物基因型,将决定植物生存的机会。对水分亏缺的代谢调整是复杂的,涉及由 DNA 结合蛋白和表观遗传修饰调节的基因表达调控。最后一种机制还可能调节转座元件的活性,进而影响附近基因座的表达。通过表型分析,包括生长、生理、RNA-seq 和 sRNA-seq 分析,对经历了五种水分亏缺处理的意大利黑麦草植株进行了分析。结果表明,随着水分亏缺强度的增加,产量逐渐降低,这与信号通路的调节和代谢调整有关。我们确定了一组与干旱响应相关的基因座,其中一些与水分亏缺的感知、信号转导和调节有关。最后,对转录组和 sRNA 组学的分析使我们能够鉴定出可能受到 TE 和 sRNA 相关机制调节的基因,以及在基因体区域中转录本水平和 sRNA 积累之间存在有趣的正相关关系。这些发现阐明了使 S. italica 能够克服干旱并在限水条件下生存的过程。

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