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首页> 外文期刊>Plant Growth Regulation >Differential Properties of 4-Coumarate: CoA Ligase Related to Growth Suppression by Chalcone in Maize and Rice
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Differential Properties of 4-Coumarate: CoA Ligase Related to Growth Suppression by Chalcone in Maize and Rice

机译:4-香豆酸酯:CoA连接酶的差异特性与查尔酮在玉米和水稻中的生长抑制相关

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摘要

Lignin and related metabolites have diverse and important functions for plant growth and development. 4-Coumarate: CoA ligase (4CL, EC 6.2.1.12) is one of the key enzymes in phenylpropanoid metabolism and lignin biosynthesis. In a previous study, maize (Zea maize L. cv. Yellowcorn) growth was suppressed to a greater extent by root-applied chalcone than rice (Oryza sativa L. cv. Nipponbare). The objective of this study is to clarify the relationship between the growth suppression and 4CL properties. In crude extracts, total 4CL activity and total protein content of rice were higher 1.8- and 2.7-fold than that of maize, respectively. After a gel-filtration chromatography, a single peak of 4CL activity from maize and rice was evident coincidently for both species. After anion-exchange chromatography, a single peak of 4CL activity was also apparent for both species; however, the peak of maize did not coincide with that of rice. The enzyme activity of maize and rice exhibited similar order of substrate specificities when using p-coumaric, cinnamic, caffeic, ferulic and sinapic acids substrates. Chalcone inhibited 4CL activity in maize more strongly than in rice, and 4CL kinetic data in the presence and absence of chalcone exhibited uncompetitive inhibition in both maize and rice. These results suggest that total activity and the inhibitory property of 4CL contributes to differences in growth suppression by chalcone between maize and rice, although further efforts are needed to clarify the potential of 4CL as a novel action site of the growth suppression.
机译:木质素和相关代谢产物对植物的生长和发育具有多种重要功能。 4-香豆酸盐:CoA连接酶(4CL,EC 6.2.1.12)是苯丙烷代谢和木质素生物合成中的关键酶之一。在以前的研究中,与水稻(Oryza sativa L.cv. Nipponbare)相比,根部施用的查尔酮能更大程度地抑制玉米(Zea maize L. cv。Yellowcorn)的生长。本研究的目的是阐明生长抑制与4CL特性之间的关系。在粗提物中,水稻的总4CL活性和总蛋白含量分别比玉米高1.8倍和2.7倍。进行凝胶过滤层析后,两个物种同时出现了玉米和水稻的4CL活性峰。阴离子交换色谱后,两个物种的4CL活性峰也很明显。然而,玉米的峰值与水稻的峰值并不吻合。当使用对香豆酸,肉桂酸,咖啡酸,阿魏酸和芥子酸底物时,玉米和水稻的酶活性表现出相似的底物特异性顺序。查尔酮对玉米的4CL活性抑制作用比在水稻中更强,在存在和不存在查尔酮的情况下,玉米和水稻中的4CL动力学数据均显示出非竞争性抑制作用。这些结果表明,尽管需要进一步努力阐明4CL作为生长抑制的新作用位点的潜力,但玉米和水稻之间4CL的总活性和抑制特性有助于查尔酮抑制生长。

著录项

  • 来源
    《Plant Growth Regulation》 |2005年第2期|169-176|共8页
  • 作者单位

    Upland Weed Laboratory Department of Field Environment National Agricultural Research CenterDepartment of Forest Genetics and Plant Physiology Swedish University of Agricultural Sciences;

    Upland Weed Laboratory Department of Field Environment National Agricultural Research CenterDepartment of Biochemistry and Molecular Pharmacology University of Massachusetts Medical School;

    Donald Danforth Plant Science Center;

    Upland Weed Laboratory Department of Field Environment National Agricultural Research CenterOrganochemicals Group National Institute for Agro-Environmental Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    4-Coumarate: CoA ligase; Chalcone; Growth suppression; Maize; Rice;

    机译:4-香豆酸盐:CoA连接酶;查尔酮;抑制生长;玉米;大米;

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