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奎宁酸在草甘膦和乙酰乳酸合成酶抑制剂作用模式中的可能作用。

The possible role of quinate in the mode of action of glyphosate and acetolactate synthase inhibitors.

机构信息

Departamento de Ciencias del Medio Natural, Universidad Pública de Navarra, Campus Arrosadia, E-31006 Pamplona, Spain.

出版信息

Pest Manag Sci. 2010 Mar;66(3):262-9. doi: 10.1002/ps.1868.

Abstract

BACKGROUND

The herbicide glyphosate inhibits the biosynthesis of aromatic amino acids by blocking the shikimate pathway. Imazethapyr and chlorsulfuron are two herbicides that act by inhibiting branched-chain amino acid biosynthesis. These herbicides stimulate secondary metabolism derived from the aromatic amino acids. The aim of this study was to test if they cause any cross-effect in the amino acid content and if they have similar effects on the shikimate pathway.

RESULTS

The herbicides inhibiting two different amino acid biosynthesis pathways showed a common pattern in general content of free amino acids. There was a general increase in total free amino acid content, with a transient decrease in the proportion of amino acids whose pathways were specifically inhibited. Afterwards, an increase in these inhibited amino acids was detected; this was probably related to proteolysis. All herbicides caused quinate accumulation. Exogenous application of quinate arrested growth, decreased net photosynthesis and stomatal conductance and was ultimately lethal, similarly to glyphosate and imazethapyr.

CONCLUSIONS

Quinate accumulation was a common effect of the two different classes of herbicide. Moreover, exogenous quinate application had phytotoxic effects, showing that this plant metabolite can trigger the toxic effects of the herbicides. This ability to mimic the herbicide effects suggests a possible link between the mode of action of these herbicides and the potential role of quinate as a natural herbicide.

摘要

背景

除草剂草甘膦通过阻断莽草酸途径抑制芳香族氨基酸的生物合成。咪草烟和氯磺隆是两种通过抑制支链氨基酸生物合成而起作用的除草剂。这些除草剂刺激源自芳香族氨基酸的次生代谢。本研究的目的是测试它们是否会在氨基酸含量上产生任何交叉效应,以及它们对莽草酸途径是否有相似的影响。

结果

抑制两种不同氨基酸生物合成途径的除草剂在游离氨基酸的总含量上表现出共同的模式。总游离氨基酸含量普遍增加,受特定抑制途径的氨基酸比例暂时下降。之后,检测到这些被抑制的氨基酸增加;这可能与蛋白水解有关。所有除草剂都会导致奎宁酸积累。外源性奎宁酸的应用会导致生长停滞、净光合作用和气孔导度下降,最终导致死亡,这与草甘膦和咪草烟相似。

结论

奎宁酸的积累是两种不同类除草剂的共同作用。此外,外源奎宁酸的应用具有植物毒性作用,表明这种植物代谢物可以引发除草剂的毒性作用。这种模拟除草剂作用的能力表明,这些除草剂的作用模式与奎宁酸作为天然除草剂的潜在作用之间可能存在联系。

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