Lu Zhao, Xiaomei Ma, Wenxue Ma, Zhaoming Wang, Dong Luo, Qiang Zhou, Wenxian Liu, Longfa Fang, Jingbo Jin, Iain R. Searle, Zhipeng Liu
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The overexpression of <i>MsPYL</i> genes in both <i>Arabidopsis thaliana</i> and alfalfa significantly improved drought tolerance. Among the <i>MsPYL</i> family genes, functional analysis of <i>MsPYL6</i> and <i>MsPYL9</i> revealed that both genes enhanced water-use efficiency by reducing leaf stomatal density, promoting stomatal closure, and decreasing transpiration rates when overexpressed. In contrast, the RNAi plants exhibited the opposite phenotypes, with increased stomatal density and higher transpiration rates. Furthermore, overexpression plants exhibited reduced malondialdehyde content and lower reactive oxygen species levels, indicating enhanced cellular stability under stress. Additionally, transcriptome analysis showed that drought-responsive genes related to antioxidant defense, stomatal regulation, and photosynthesis were more abundant in drought-treated OE plants and less abundant in RNAi plants. Interaction analysis revealed that all MsPYL proteins could interact with at least one MsPP2CA, indicating a conserved interaction pattern in ABA signaling. These findings confirm that <i>MsPYLs</i> play a crucial role in the ABA signaling pathway by modulating the expression of downstream drought-tolerant genes, thereby enabling alfalfa to effectively respond to drought stress conditions.</p>\n </div>","PeriodicalId":233,"journal":{"name":"The Plant Journal","volume":"122 6","pages":""},"PeriodicalIF":5.7000,"publicationDate":"2025-06-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"MsPYL6 and MsPYL9 improves drought tolerance by regulating stomata in alfalfa (Medicago sativa)\",\"authors\":\"Lu Zhao, Xiaomei Ma, Wenxue Ma, Zhaoming Wang, Dong Luo, Qiang Zhou, Wenxian Liu, Longfa Fang, Jingbo Jin, Iain R. 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引用次数: 0
摘要
严重的干旱胁迫会显著降低苜蓿的产量,而植物激素脱落酸在应对非生物胁迫中起着核心作用。作为脱落酸受体,PYRABACTIN RESISTANCE 1/PYR1- like /ABA-binding REGULATORY COMPONENT OF ABA RECEPTOR (PYR1/PYL/RCAR)家族是ABA信号通路的关键组成部分,介导干旱条件下的适应性反应和保护植物。本研究在紫花苜蓿中鉴定出9个MsPYL基因,发现它们的表达水平在ABA和干旱胁迫下显著上调。MsPYL基因在拟南芥和苜蓿中的过表达均显著提高了耐旱性。在MsPYL家族基因中,MsPYL6和MsPYL9的功能分析表明,这两个基因在过表达时通过降低叶片气孔密度、促进气孔关闭和降低蒸腾速率来提高水分利用效率。相比之下,RNAi植株表现出相反的表型,气孔密度增加,蒸腾速率提高。此外,过表达植物表现出丙二醛含量降低和活性氧水平降低,表明在逆境下细胞稳定性增强。此外,转录组分析表明,与抗氧化防御、气孔调节和光合作用相关的干旱响应基因在干旱处理的OE植物中更丰富,而在RNAi植物中较少。相互作用分析表明,所有MsPYL蛋白都能与至少一个MsPP2CA相互作用,表明ABA信号通路中存在保守的相互作用模式。这些研究结果证实,mspyl通过调控下游抗旱基因的表达,在ABA信号通路中起着至关重要的作用,从而使苜蓿能够有效地应对干旱胁迫条件。
MsPYL6 and MsPYL9 improves drought tolerance by regulating stomata in alfalfa (Medicago sativa)
Severe drought stress can significantly reduce alfalfa production, and the phytohormone abscisic acid plays a central role in responses to abiotic stress. As abscisic acid receptors, the PYRABACTIN RESISTANCE 1/PYR1-LIKE/ABA-binding REGULATORY COMPONENT OF ABA RECEPTOR (PYR1/PYL/RCAR) family constitutes a critical component of the ABA signaling pathway, mediating adaptive responses and protecting plants under drought conditions. In this study, nine MsPYL genes were identified in alfalfa, and their expression levels were found to be significantly upregulated in response to ABA and drought stress. The overexpression of MsPYL genes in both Arabidopsis thaliana and alfalfa significantly improved drought tolerance. Among the MsPYL family genes, functional analysis of MsPYL6 and MsPYL9 revealed that both genes enhanced water-use efficiency by reducing leaf stomatal density, promoting stomatal closure, and decreasing transpiration rates when overexpressed. In contrast, the RNAi plants exhibited the opposite phenotypes, with increased stomatal density and higher transpiration rates. Furthermore, overexpression plants exhibited reduced malondialdehyde content and lower reactive oxygen species levels, indicating enhanced cellular stability under stress. Additionally, transcriptome analysis showed that drought-responsive genes related to antioxidant defense, stomatal regulation, and photosynthesis were more abundant in drought-treated OE plants and less abundant in RNAi plants. Interaction analysis revealed that all MsPYL proteins could interact with at least one MsPP2CA, indicating a conserved interaction pattern in ABA signaling. These findings confirm that MsPYLs play a crucial role in the ABA signaling pathway by modulating the expression of downstream drought-tolerant genes, thereby enabling alfalfa to effectively respond to drought stress conditions.
期刊介绍:
Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community.
Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.