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转录组分析揭示了单一及复合干旱和热胁迫对大麦旗叶基因表达重编程的影响。

Transcriptome profiling disclosed the effect of single and combined drought and heat stress on reprogramming of genes expression in barley flag leaf.

作者信息

Mikołajczak Krzysztof, Kuczyńska Anetta, Krajewski Paweł, Kempa Michał, Nuc Maria

机构信息

Institute of Plant Genetics, Polish Academy of Sciences, Poznań, Poland.

出版信息

Front Plant Sci. 2023 Jan 16;13:1096685. doi: 10.3389/fpls.2022.1096685. eCollection 2022.

Abstract

Despite numerous studies aimed at unraveling the genetic background of barley's response to abiotic stress, the modulation of the transcriptome induced by combinatorial drought and increased temperature remains largely unrecognized. Very limited studies were done, especially on the flag leaf, which plays an important role in grain filling in cereals. In the present study, transcriptome profiles, along with chlorophyll fluorescence parameters and yield components, were compared between barley genotypes with different flag leaf sizes under single and combined drought and heat stress. High-throughput mRNA sequencing revealed 2,457 differentially expressed genes, which were functionally interpreted using Gene Ontology term enrichment analysis. The transcriptomic signature under double stress was more similar to effects caused by drought than by elevated temperature; it was also manifested at phenotypic and chlorophyll fluorescence levels. Both common and stress-specific changes in transcript abundance were identified. Genes regulated commonly across stress treatments, determining universal stress responses, were associated, among others, with responses to drought, heat, and oxidative stress. In addition, changes specific to the size of the flag leaf blade were found. Our study allowed us to identify sets of genes assigned to various processes underlying the response to drought and heat, including photosynthesis, the abscisic acid pathway, and lipid transport. Genes encoding LEA proteins, including dehydrins and heat shock proteins, were especially induced by stress treatments. Some association between genetic composition and flag leaf size was confirmed. However, there was no general coincidence between SNP polymorphism of genotypes and differential expression of genes induced by stress factors. This research provided novel insight into the molecular mechanisms of barley flag leaf that determine drought and heat response, as well as their co-occurrence.

摘要

尽管有许多研究旨在揭示大麦对非生物胁迫响应的遗传背景,但组合干旱和温度升高所诱导的转录组调控仍在很大程度上未被认识。相关研究非常有限,尤其是针对在谷物灌浆中起重要作用的旗叶。在本研究中,比较了在单一和组合干旱及热胁迫下不同旗叶大小的大麦基因型之间的转录组图谱,以及叶绿素荧光参数和产量构成因素。高通量mRNA测序揭示了2457个差异表达基因,并使用基因本体术语富集分析对其进行了功能诠释。双重胁迫下的转录组特征与干旱引起的效应比与温度升高引起的效应更相似;在表型和叶绿素荧光水平上也有体现。确定了转录丰度的共同变化和胁迫特异性变化。在各种胁迫处理中共同调控的、决定普遍胁迫响应的基因,尤其与对干旱、热和氧化胁迫的响应有关。此外,还发现了旗叶叶片大小特异性的变化。我们的研究使我们能够确定与干旱和热响应相关的各种过程的基因集,包括光合作用、脱落酸途径和脂质转运。编码LEA蛋白(包括脱水素和热休克蛋白)的基因尤其受到胁迫处理的诱导。证实了遗传组成与旗叶大小之间存在一些关联。然而,基因型的单核苷酸多态性与胁迫因子诱导的基因差异表达之间没有普遍的一致性。这项研究为大麦旗叶决定干旱和热响应及其同时发生的分子机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1a8/9885109/18a85cc33abe/fpls-13-1096685-g001.jpg

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