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通过比较转录组分析和基于酵母的胁迫试验鉴定大麦关键耐旱基因

Identification of crucial drought-tolerant genes of barley through comparative transcriptomic analysis and yeast-based stress assay.

作者信息

He Xiaoyan, Su Congjun, Zhang Xinyi, Shi Zhaoxia, Wang Yanjie, Peng Huandi, Fang Shuying, Chen Xinyu, Yin Huayan, Zeng Jianbin, Mu Ping

机构信息

College of Agronomy, Qingdao Agricultural University, Qingdao, China.

出版信息

Front Genet. 2024 Dec 9;15:1524118. doi: 10.3389/fgene.2024.1524118. eCollection 2024.

Abstract

Drought is a persistent and serious threat to crop yield and quality. The identification and functional characterization of drought tolerance-related genes is thus vital for efforts to support the genetic improvement of drought-tolerant crops. Barley is highly adaptable and renowned for its robust stress resistance, making it an ideal subject for efforts to explore genes related to drought tolerance. In this study, two barley materials with different drought tolerance were subjected to soil drought treatment, including a variety with strong drought tolerance (Hindmarsh) and a genotype with weaker drought tolerance (XZ5). Transcriptomic sequencing data from the aboveground parts of these plants led to the identification of 1,206 differentially expressed genes associated with drought tolerance. These genes were upregulated in Hindmarsh following drought stress exposure but downregulated or unchanged in XZ5 under these same conditions, or were unchanged in Hindmarsh but downregulated in XZ5. Pathway enrichment analyses suggested that these genes are most closely associated with defense responses, signal recognition, photosynthesis, and the biosynthesis of various secondary metabolites. Using protein-protein interaction networks, the ankyrin repeat domain-containing protein 17-like isoform X2 was predicted to impact other drought tolerance-related protein targets in Hindmarsh. In MapMan metabolic pathway analyses, genes found to be associated with the maintenance of drought tolerance in Hindmarsh under adverse conditions were predicted to include genes involved in the abscisic acid, cytokinin, and gibberellin phytohormone signaling pathways, genes associated with redox homeostasis related to ascorbate and glutathione S-transferase, transporters including ABC and AAAP, transcription factors such as AP2/ERF and bHLH, the heat shock proteins HSP60 and HSP70, and the sucrose non-fermenting-1-related protein kinase. Heterologous (one of the identified genes, which encodes the sucrose non-fermenting-1-related protein kinase) gene expression in yeast conferred significant drought tolerance, highlighting the functional importance of this gene as one linked with drought tolerance. This study revealed the drought tolerance mechanism of Hindmarsh by comparing transcriptomes while also providing a set of candidate genes for genetic efforts to improve drought tolerance in this and other crop species.

摘要

干旱是对作物产量和品质的持续严重威胁。因此,鉴定与耐旱性相关的基因并对其进行功能表征,对于支持耐旱作物的遗传改良至关重要。大麦具有高度适应性,以其强大的抗逆性而闻名,使其成为探索耐旱相关基因的理想研究对象。在本研究中,对两种耐旱性不同的大麦材料进行了土壤干旱处理,包括耐旱性强的品种(Hindmarsh)和耐旱性较弱的基因型(XZ5)。对这些植物地上部分的转录组测序数据进行分析,鉴定出1206个与耐旱性相关的差异表达基因。这些基因在干旱胁迫下的Hindmarsh中上调,但在相同条件下的XZ5中下调或不变,或者在Hindmarsh中不变但在XZ5中下调。通路富集分析表明,这些基因与防御反应、信号识别、光合作用以及各种次生代谢物的生物合成密切相关。利用蛋白质-蛋白质相互作用网络,预测含锚蛋白重复结构域的蛋白17样亚型X2会影响Hindmarsh中其他与耐旱性相关的蛋白质靶点。在MapMan代谢途径分析中,预测在不利条件下与Hindmarsh中耐旱性维持相关的基因包括参与脱落酸、细胞分裂素和赤霉素植物激素信号通路的基因、与抗坏血酸和谷胱甘肽S-转移酶相关的氧化还原稳态相关基因、包括ABC和AAAP在内的转运蛋白、AP2/ERF和bHLH等转录因子、热休克蛋白HSP60和HSP70以及蔗糖非发酵-1相关蛋白激酶。在酵母中异源表达(鉴定出的一个基因,其编码蔗糖非发酵-1相关蛋白激酶)赋予了显著的耐旱性,突出了该基因作为与耐旱性相关基因的功能重要性。本研究通过比较转录组揭示了Hindmarsh的耐旱机制,同时也为提高该作物及其他作物耐旱性的遗传研究提供了一组候选基因。

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