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Genome-Wide Analysis of the PYL Gene Family and Identification of PYL Genes That Respond to Abiotic Stress in Brassica napus

机译:甘蓝型油菜中PYL基因家族的全基因组分析和对非生物胁迫响应的PYL基因的鉴定

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Abscisic acid (ABA) is an endogenous phytohormone that plays important roles in the regulation of plant growth, development, and stress responses. The pyrabactin resistance 1-like (PYR/PYL) protein is a core regulatory component of ABA signaling networks in plants. However, no details regarding this family in Brassica napus are available. Here, 46 PYLs were identified in the B. napus genome. Based on phylogenetic analysis, BnPYR1 and BnPYL1-3 belong to subfamily I, BnPYL7-10 belong to subfamily II, and BnPYL4-6 and BnPYL11-13 belong to subfamily III. Analysis of BnPYL conserved motifs showed that every subfamily contained four common motifs. By predicting cis-elements in the promoters, we found that all BnPYL members contained hormone- and stress-related elements and that expression levels of most BnPYLs were relatively higher in seeds at the germination stage than those in other organs or at other developmental stages. Gene Ontology (GO) enrichment showed that BnPYL genes mainly participate in responses to stimuli. To identify crucial PYLs mediating the response to abiotic stress in B. napus , expression changes in 14 BnPYL genes were determined by quantitative real-time RT-PCR after drought, heat, and salinity treatments, and identified BnPYR1-3 , BnPYL1-2 , and BnPYL7-2 in respond to abiotic stresses. The findings of this study lay a foundation for further investigations of PYL genes in B. napus .
机译:脱落酸(ABA)是一种内源性植物激素,在调节植物生长,发育和胁迫反应中发挥重要作用。吡菌素抗性1样(PYR / PYL)蛋白是植物ABA信号网络的核心调控成分。但是,尚无有关甘蓝型油菜的这个家庭的详细信息。在这里,在油菜双歧杆菌基因组中鉴定出46个PYL。根据系统发育分析,BnPYR1和BnPYL1-3属于亚家族I,BnPYL7-10属于亚家族II,BnPYL4-6和BnPYL11-13属于亚家族III。对BnPYL保守基序的分析表明,每个亚家族都包含四个共同的基序。通过预测启动子中的顺式元件,我们发现所有BnPYL成员均包含激素和胁迫相关元素,并且大多数BnPYLs在种子发芽阶段的表达水平相对高于其他器官或其他发育阶段的表达水平。基因本体论(GO)富集表明,BnPYL基因主要参与对刺激的反应。为了鉴定介导油菜非生物胁迫响应的关键PYL,在干旱,高温和盐分处理后,通过定量实时RT-PCR确定了14个BnPYL基因的表达变化,并鉴定了BnPYR1-3,BnPYL1-2,和BnPYL7-2应对非生物胁迫。该研究结果为进一步研究甘蓝型油菜PYL基因提供了基础。

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