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密码子缺失赋予对抑制原卟啉原氧化酶的除草剂的抗性。

A codon deletion confers resistance to herbicides inhibiting protoporphyrinogen oxidase.

作者信息

Patzoldt William L, Hager Aaron G, McCormick Joel S, Tranel Patrick J

机构信息

Department of Crop Sciences, University of Illinois, Urbana, IL 61801, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Aug 15;103(33):12329-34. doi: 10.1073/pnas.0603137103. Epub 2006 Aug 7.

Abstract

Herbicides that act by inhibiting protoporphyrinogen oxidase (PPO) are widely used to control weeds in a variety of crops. The first weed to evolve resistance to PPO-inhibiting herbicides was Amaranthus tuberculatus, a problematic weed in the midwestern United States that previously had evolved multiple resistances to herbicides inhibiting two other target sites. Evaluation of a PPO-inhibitor-resistant A. tuberculatus biotype revealed that resistance was a (incompletely) dominant trait conferred by a single, nuclear gene. Three genes predicted to encode PPO were identified in A. tuberculatus. One gene from the resistant biotype, designated PPX2L, contained a codon deletion that was shown to confer resistance by complementation of a hemG mutant strain of Escherichia coli grown in the presence and absence of the PPO inhibitor lactofen. PPX2L is predicted to encode both plastid- and mitochondria-targeted PPO isoforms, allowing a mutation in a single gene to confer resistance to two herbicide target sites. Unique aspects of the resistance mechanism include an amino acid deletion, rather than a substitution, and the dual-targeting nature of the gene, which may explain why resistance to PPO inhibitors has been rare.

摘要

通过抑制原卟啉原氧化酶(PPO)起作用的除草剂被广泛用于控制多种作物中的杂草。第一种对抑制PPO的除草剂产生抗性的杂草是糙果苋,它是美国中西部一种有问题的杂草,此前已对抑制其他两个靶标的除草剂产生了多种抗性。对一种抗PPO抑制剂的糙果苋生物型的评估表明,抗性是由一个单细胞核基因赋予的(不完全)显性性状。在糙果苋中鉴定出三个预测编码PPO的基因。来自抗性生物型的一个基因,命名为PPX2L,包含一个密码子缺失,通过在有和没有PPO抑制剂乳氟禾草灵的情况下培养的大肠杆菌hemG突变株的互补试验表明,该缺失赋予了抗性。预计PPX2L编码靶向质体和线粒体的PPO同工型,使得单个基因突变就能赋予对两个除草剂靶标的抗性。抗性机制的独特之处包括氨基酸缺失而非取代,以及该基因的双靶向性质,这可能解释了为何对PPO抑制剂的抗性一直很少见。

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