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A red and far-red light receptor mutation confers resistance to the herbicide glyphosate

机译:红色和远红色光受体突变赋予对除草剂草甘膦的抗性

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摘要

Glyphosate is a widely applied broad-spectrum systemic herbicide that inhibits competitively the penultimate enzyme 5-enolpyruvylshikimate 3-phosphate synthase (EPSPS) from the shikimate pathway, thereby causing deleterious effects. A glyphosate-resistant Arabidopsis mutant (gre1) was isolated and genetic analyses indicated that a dysfunctional red (R) and far-red (FR) light receptor, phytochrome B (phyB), caused this phenotype. This finding is consistent with increased glyphosate sensitivity and glyphosate-induced shikimate accumulation in low R:FR light, and the induction of genes encoding enzymes of the shikimate pathway in high R:FR light. Expression of the shikimate pathway genes exhibited diurnal oscillation and this oscillation was altered in the phyB mutant. Furthermore, transcript analysis suggested that this diurnal oscillation was not only dependent on phyB but was also due to circadian regulatory mechanisms. Our data offer an explanation of the well documented observation that glyphosate treatment at various times throughout the day, with their specific composition of light quality and intensity, results in different efficiencies of the herbicide.
机译:草甘膦是一种广泛应用的广谱系统除草剂,可从competitive草酸酯途径竞争性地抑制倒数第二个酶5-烯丙基丙酮酸ru草酸酯3-磷酸合酶(EPSPS),从而产生有害作用。分离了抗草甘膦的拟南芥突变体(gre1),遗传分析表明功能异常的红色(R)和远红色(FR)的光受体植物色素B(phyB)引起了该表型。该发现与在低R:FR光下增加草甘膦敏感性和草甘膦诱导的sh草酸酯积累以及在高R:FR光下诱导编码the草酸酯途径的酶的基因一致。 iki草酸酯途径基因的表达表现出昼夜振荡,并且该振荡在phyB突变体中被改变。此外,笔录分析表明,这种昼夜振荡不仅取决于phyB,而且还归因于昼夜节律调节机制。我们的数据提供了一个有据可查的观察结果的解释,即草甘膦在一天中的不同时间进行处理,其特定的光质量和强度组成导致除草剂的效率不同。

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