首页> 外文期刊>Journal of Plant Physiology >GH3 expression and IAA-amide synthetase activity in pea (Pisum sativum L.) seedlings are regulated by light, plant hormones and auxinic herbicides.
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GH3 expression and IAA-amide synthetase activity in pea (Pisum sativum L.) seedlings are regulated by light, plant hormones and auxinic herbicides.

机译:豌豆(Pisum sativum L.)幼苗中的GH3表达和IAA-酰胺合成酶活性受光照,植物激素和植物生长素除草剂的调节。

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The formation of auxin conjugates is one of the important regulatory mechanisms for modulating IAA action. Several auxin-responsive GH3 genes encode IAA-amide synthetases that are involved in the maintenance of hormonal homeostasis by conjugating excess IAA to amino acids. Recently, the data have revealed novel regulatory functions of several GH3 proteins in plant growth, organ development, fruit ripening, light signaling, abiotic stress tolerance and plant defense responses. Indole-3-acetyl-aspartate (IAA-Asp) synthetase catalyzing IAA conjugation to aspartic acid in immature seeds of pea (Pisum sativum L.) was purified and characterized during our previous investigations. In this study, we examined the effect of auxin and other plant hormones (ABA, GA, kinetin, JA, MeJA, SA), different light conditions (red, far-red, blue, white light), and auxinic herbicides (2,4-D, Dicamba, Picloram) on the expression of a putative GH3 gene and IAA-amide synthesizing activity in 10-d-old pea seedlings. Quantitative RT-PCR analysis indicated that the PsGH3-5 gene, weakly expressed in control sample, was visibly induced in response to all plant hormones, different light wavelengths and the auxinic herbicides tested. Protein A immunoprecipitation/gel blot analysis using anti-AtGH3.5 antibodies revealed a similar pattern of changes on the protein levels in response to all treatments. IAA-amide synthetase activity determined with aspartate as a substrate, not detectable in control seedlings, was positively affected by a majority of treatments. Based on these results, we suggest that PsGH3-5 may control the growth and development of pea plants in a way similar to the known GH3 genes from other plant species.
机译:生长素结合物的形成是调节IAA作用的重要调控机制之一。几种生长素应答性GH3基因编码IAA-酰胺合成酶,这些酶通过将过量的IAA与氨基酸结合来维持激素稳态。最近,数据揭示了几种GH3蛋白在植物生长,器官发育,果实成熟,光信号传递,非生物胁迫耐受性和植物防御反应中的新型调节功能。在我们之前的研究中,纯化并表征了豌豆(Pisum sativum L.)未成熟种子中催化IAA与天冬氨酸结合的吲哚-3-乙酰基-天冬氨酸(IAA-Asp)合成酶。在这项研究中,我们研究了生长素和其他植物激素(ABA,GA,激动素,JA,MeJA,SA),不同光照条件(红色,远红色,蓝色,白色光)和生长素除草剂(2, 4-D,Dicamba,Picloram)在10天大豌豆幼苗中推测的GH3基因的表达和IAA-酰胺的合成活性。定量RT-PCR分析表明,在对照样品中弱表达的PsGH3-5基因是对所有植物激素,不同光波长和所测试的植物生长素除草剂的响应而明显诱导的。使用抗AtGH3.5抗体的蛋白A免疫沉淀/凝胶印迹分析显示,响应所有处理,蛋白水平的变化类似。以天冬氨酸为底物测定的IAA-酰胺合成酶活性在对照幼苗中无法检测到,但大多数处理均对其产生了积极影响。根据这些结果,我们建议PsGH3-5可能以与其他植物物种已知的GH3基因相似的方式控制豌豆植物的生长和发育。

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