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AHAS 除草剂抗性赋予突变:对 AHAS 功能和植物生长的影响。

AHAS herbicide resistance endowing mutations: effect on AHAS functionality and plant growth.

机构信息

AHRI, School of Plant Biology, University of Western Australia, Crawley, WA 6009, Australia.

出版信息

J Exp Bot. 2010 Sep;61(14):3925-34. doi: 10.1093/jxb/erq205. Epub 2010 Jul 13.

Abstract

Twenty-two amino acid substitutions at seven conserved amino acid residues in the acetohydroxyacid synthase (AHAS) gene have been identified to date that confer target-site resistance to AHAS-inhibiting herbicides in biotypes of field-evolved resistant weed species. However, the effect of resistance mutations on AHAS functionality and plant growth has been investigated for only a very few mutations. This research investigates the effect of various AHAS resistance mutations in Lolium rigidum on AHAS functionality and plant growth. The enzyme kinetics of AHAS from five purified L. rigidum populations, each homozygous for the resistance mutations Pro-197-Ala, Pro-197-Arg, Pro-197-Gln, Pro-197-Ser or Trp-574-Leu, were characterized and the pleiotropic effect of three mutations on plant growth was assessed via relative growth rate analysis. All these resistance mutations endowed a herbicide-resistant AHAS and most resulted in higher extractable AHAS activity, with no-to-minor changes in AHAS kinetics. The Pro-197-Arg mutation slightly (but significantly) increased the K(m) for pyruvate and remarkably increased sensitivity to feedback inhibition by branched chain amino acids. Whereas the Pro-197-Ser and Trp-574-Leu mutations exhibited no significant effects on plant growth, the Pro-197-Arg mutation resulted in lower growth rates. It is clear that, at least in L. rigidum, these five AHAS resistance mutations have no major impact on AHAS functionality and hence probably no plant resistance costs. These results, in part, explain why so many Pro-197 AHAS resistance mutations in AHAS have evolved and why the Pro-197-Ser and the Trp-574-Leu AHAS resistance mutations are frequently found in many weed species.

摘要

迄今为止,已在乙酰羟酸合酶 (AHAS) 基因的 7 个保守氨基酸残基处鉴定出 22 个氨基酸取代,这些取代导致田间进化的抗除草剂杂草生物型对 AHAS 抑制剂产生靶标抗性。然而,只有极少数突变的抗性突变对 AHAS 功能和植物生长的影响得到了研究。本研究调查了 Lolium rigidum 中各种 AHAS 抗性突变对 AHAS 功能和植物生长的影响。从五个纯合抗性突变 Pro-197-Ala、Pro-197-Arg、Pro-197-Gln、Pro-197-Ser 或 Trp-574-Leu 的 L. rigidum 种群中纯化的 AHAS 的酶动力学特征,并通过相对生长率分析评估了三个突变对植物生长的多效性影响。所有这些抗性突变赋予了除草剂抗性 AHAS,并且大多数导致可提取的 AHAS 活性更高,而 AHAS 动力学几乎没有变化。Pro-197-Arg 突变略微(但显著)增加了丙酮酸的 K(m),并显著增加了对支链氨基酸反馈抑制的敏感性。而 Pro-197-Ser 和 Trp-574-Leu 突变对植物生长没有显著影响,Pro-197-Arg 突变导致生长速度降低。很明显,至少在 L. rigidum 中,这 5 个 AHAS 抗性突变对 AHAS 功能没有重大影响,因此可能没有植物抗性成本。这些结果部分解释了为什么在 AHAS 中已经进化出如此多的 Pro-197 AHAS 抗性突变,以及为什么 Pro-197-Ser 和 Trp-574-Leu AHAS 抗性突变经常在许多杂草物种中发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66de/2935867/f18fd1ea4d6f/jexboterq205f01_lw.jpg

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