首页> 外文期刊>Frontiers in Plant Science >Function of Brassica napus BnABI3 in Arabidopsis gs1, an Allele of AtABI3, in Seed Development and Stress Response
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Function of Brassica napus BnABI3 in Arabidopsis gs1, an Allele of AtABI3, in Seed Development and Stress Response

机译:甘蓝型油菜BnABI3 拟南芥gs1 AtABI3 等位基因)中在种子发育和胁迫响应中的功能

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Abscisic acid (ABA) has been implicated in plant adaptation to various environmental stresses in addition to the regulation of seed dormancy and leaf senescence. ABI3 is a B3 domain-containing family protein and functions in the ABA signaling pathway during seed development. To date, the ABI3 orthologous have not been studied in Brassica napus . The aim of this study is to investigate the function of BnABI3 in plant development and stress response. Here, we identified an Arabidopsis line ( gs1 ) from a population of mutagenized seeds and showed that GS1 is a new allele of AtABI3 . When the Arabidopsis gs1 mutant was transformed with the BnABI3 gene, the transformed plants produced seeds that turned yellow and acquired desiccation tolerance. Moreover, BnABI3 regulates seed coat development and mucilage secretion by directly targeting the AtMUM1 and AtGATL5 genes. In addition, we showed that BnABI3 expression rescued gs1 freezing-induced green seed coloration by targeting AtSGR1/2 in transgenic Arabidopsis . BnABI3 is also involved in lateral root development and conferred a novel interaction between ABA and auxin signaling in roots. The potential role of ABI3 protein in endoplasmic reticulum homoeostasis was also tested. Altogether, our results indicated that BnABI3 mediates both plant development and the stress response.
机译:除调节种子休眠和叶片衰老外,脱落酸(ABA)还与植物适应各种环境胁迫有关。 ABI3是含B3结构域的家族蛋白,在种子发育过程中在ABA信号传导途径中起作用。迄今为止,尚未在甘蓝型油菜中研究直系同源的ABI3。这项研究的目的是调查BnABI3在植物发育和胁迫响应中的功能。在这里,我们从诱变的种子种群中鉴定了一个拟南芥系(gs1),并显示GS1是AtABI3的新等位基因。当用BnABI3基因转化拟南芥gs1突变体时,转化的植物产生的种子变成黄色并具有耐干燥性。此外,BnABI3通过直接靶向AtMUM1和AtGATL5基因来调节种皮发育和粘液分泌。此外,我们表明BnABI3表达通过靶向转基因拟南芥中的AtSGR1 / 2拯救了gs1冷冻诱导的绿色种子着色。 BnABI3也参与侧向根的发育,并赋予根中ABA和生长素信号传导之间的新型相互作用。还测试了ABI3蛋白在内质网同质化中的潜在作用。总之,我们的结果表明BnABI3介导了植物的发育和胁迫反应。

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