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Mechanisms of Multiple Herbicide Resistance in Lolium rigidum

机译:多发性除草剂抗性的机制

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Herbicide-resistant populations of Lolium rigidum infest more than 8,000 farms in southern Australia. These populations may be resistant to one or more herbicides from many modes of action including inhibitors of lipid biosynthesis, branched-chain amino acid biosynthesis, photosynthesis, tubulin polymerization, carotenoid biosynthesis, or aromatic amino acid biosynthesis. The mechanisms of resistance have been extensively studied, and populations with herbicide-insensitive acetyl-coenzyme A carboxylase and acetolactate synthase enzymes are known. In addition, many populations have the ability to rapidly metabolize a number of herbicides from several different modes of action. In contrast, the mechanism of resistance to glyphosate is due to neither an insensitive target site, nor to more rapid glyphosate metabolism. L. rigidum populations readily accumulate multiple resistance mechanisms and this creates major difficulties in managing this ubiquitous grass weed.
机译:在澳大利亚南部的海王顽固性的抗药物抗性抗性。这些群体可能与许多作用方式的一种或多种除草剂抵抗,包括脂质生物合成的抑制剂,支链氨基酸生物合成,光合作用,小管蛋白聚合,类胡萝卜素生物合成或芳族氨基酸生物合成。已经广泛研究了抗性机制,并且已知具有除草剂不敏感的乙酰辅酶A羧化酶和乙酰​​乳酸合酶酶的群。此外,许多人群能够快速地从几种不同的行动模式中迅速地代谢许多除草剂。相反,对草甘膦抗性的机制是由于不敏感的靶位点,也不是更快速的草甘膦代谢。 L. Rigidum人口容易积累多种电阻机制,这在管理这种无处不在的草地方面会产生重大困难。

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