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除草剂对大麦和黄瓜脂肪酸生物合成和延伸的作用。

The action of herbicides on fatty acid biosynthesis and elongation in barley and cucumber.

机构信息

School of Biosciences, Cardiff University, Cardiff, Wales, UK.

出版信息

Pest Manag Sci. 2010 Jul;66(7):794-800. doi: 10.1002/ps.1944.

Abstract

BACKGROUND

Herbicides that affect lipid metabolism have been used commercially for many years. Here, napropamide, diphenamid, dimethachlor and cafenstrole are compared; these have all been classified by the Herbicide Resistance Action Committee (HRAC) as K(3) herbicides and inhibitors of cell division and/or synthesis of very-long-chain fatty acids (VLCFAs). In addition, spiro-decanedione A and pinoxaden dione are compared as inhibitors of lipid synthesis through inhibition of acetyl-CoA carboxylase (ACCase).

RESULTS

Whereas the chloracetamide dimethachlor and the carboxyamide cafenstrole potently inhibited VLCFA synthesis in both barley and cucumber, the acetamides napropamide and diphenamid which are also classified as K(3) herbicides and likewise the unclassified herbicide cinmethylin did not. The graminicide pinoxaden dione inhibited de novo fatty acid synthesis in barley, but not in cucumber, and correspondingly inhibited the plastid form of maize ACCase much more than the cytosolic form (IC(50) values of 0.1 and 17 microM). By contrast, spiro-decanedione A exhibited herbicidal effects not only on grasses but also on broad leaves, strongly inhibited maize cytosolic ACCase and inhibited synthesis of VLCFAs in cucumber.

CONCLUSIONS

The acetamides napropamide and diphenamid, which do not inhibit VLCFA synthesis, should be classified separately from K(3) herbicides that do. Pinoxaden dione and spiro-decanedione A represent new classes of chemicals acting on plant lipid synthesis.

摘要

背景

影响脂代谢的除草剂已在商业上使用了多年。本文比较了萘丙胺、敌草胺、二甲戊灵和杀草丹;这些除草剂都被杂草抗药性行动委员会(HRAC)归类为 K(3)除草剂,可抑制细胞分裂和/或长链脂肪酸(VLCFAs)的合成。此外,螺缩酮 A 和吡氟草酮还可通过抑制乙酰辅酶 A 羧化酶(ACCase)来抑制脂类合成。

结果

氯乙酰胺二甲戊灵和羧酰胺杀草丹可强烈抑制大麦和黄瓜中 VLCFA 的合成,而同样被归类为 K(3)除草剂的乙酰胺萘丙胺和敌草胺以及未分类的除草剂嗪草酮则没有。禾本科除草剂吡氟草酮可抑制大麦中新脂肪酸的合成,但不能抑制黄瓜中的合成,相应地,它对质体形式的玉米 ACCase 的抑制作用比对胞质形式的强得多(IC(50)值分别为 0.1 和 17 μM)。相比之下,螺缩酮 A 不仅对草类而且对阔叶植物都具有除草作用,强烈抑制玉米胞质 ACCase,并抑制黄瓜中 VLCFA 的合成。

结论

不抑制 VLCFA 合成的乙酰胺萘丙胺和敌草胺应与抑制 VLCFA 合成的 K(3)除草剂分开归类。吡氟草酮和螺缩酮 A 代表作用于植物脂类合成的新化学物质。

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