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在白三叶草中,参与根瘤器官发生的细胞中诱导产生的类黄酮是过氧化物酶分解生长素的调节剂。

Flavonoids induced in cells undergoing nodule organogenesis in white clover are regulators of auxin breakdown by peroxidase.

作者信息

Mathesius U

机构信息

Genomic Interactions Group, Research School of Biological Sciences, Australian National University, GPO Box 475, Canberra, ACT 2601, Australia.

出版信息

J Exp Bot. 2001 Mar;52(Spec Issue):419-26. doi: 10.1093/jexbot/52.suppl_1.419.

Abstract

It was tested whether flavonoids that specifically accumulate in cells undergoing early nodule organogenesis could affect auxin turnover by a peroxidase to explain local changes in auxin distribution that occur during nodule formation in white clover (Trifolium repens cv. Haifa). A fluorometric assay was developed to determine the kinetics of indoleacetic acid (IAA) breakdown rates by a horseradish peroxidase in vitro. Three flavonoid compounds, which had previously been localized and identified, were purified from root tissue and their tissue concentrations estimated. A derivative of 7,4'-dihydroxyflavone (DHF), as well as free DHF, strongly inhibited auxin breakdown by peroxidase at concentrations estimated in the root tissue. Formononetin, an isoflavonoid accumulating in nodule primordia, accelerated auxin breakdown by peroxidase at concentrations estimated to be present in the roots. These results suggest that local changes in flavonoid accumulation could regulate local auxin levels during nodule organogenesis. The results are consistent with previous observations on the localization of auxin during nodule organogenesis. A model for the interaction of flavonoids with peroxidases is proposed to explain changes auxin during nodule development. A similar mechanism could be involved in lateral root and root gall formation.

摘要

研究了在早期根瘤器官发生的细胞中特异性积累的类黄酮是否会通过过氧化物酶影响生长素周转,以解释白三叶草(Trifolium repens cv. Haifa)根瘤形成过程中生长素分布的局部变化。开发了一种荧光测定法来确定辣根过氧化物酶在体外分解吲哚乙酸(IAA)的动力学。从根组织中纯化出三种先前已定位和鉴定的类黄酮化合物,并估计了它们在组织中的浓度。7,4'-二羟基黄酮(DHF)的一种衍生物以及游离的DHF,在根组织中估计的浓度下强烈抑制过氧化物酶对生长素的分解。芒柄花黄素是一种在根瘤原基中积累的异黄酮,在估计根中存在的浓度下加速过氧化物酶对生长素的分解。这些结果表明,类黄酮积累的局部变化可能在根瘤器官发生过程中调节局部生长素水平。这些结果与先前关于根瘤器官发生过程中生长素定位的观察结果一致。提出了一个类黄酮与过氧化物酶相互作用的模型来解释根瘤发育过程中生长素的变化。类似的机制可能参与侧根和根瘤的形成。

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