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Overexpression of Plastidic Protoporphyrinogen IX Oxidase Leads to Resistance to the Diphenyl-Ether Herbicide Acifluorfen

机译:质体原卟啉原IX氧化酶的过表达导致对二苯醚除草剂Acifluorfen的抗性

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摘要

The use of herbicides to control undesirable vegetation has become a universal practice. For the broad application of herbicides the risk of damage to crop plants has to be limited. We introduced a gene into the genome of tobacco (Nicotiana tabacum) plants encoding the plastid-located protoporphyrinogen oxidase of Arabidopsis, the last enzyme of the common tetrapyrrole biosynthetic pathway, under the control of the cauliflower mosaic virus 35S promoter. The transformants were screened for low protoporphyrin IX accumulation upon treatment with the diphenyl ether-type herbicide acifluorfen. Leaf disc incubation and foliar spraying with acifluorfen indicated the lower susceptibility of the transformants against the herbicide. The resistance to acifluorfen is conferred by overexpression of the plastidic isoform of protoporphyrinogen oxidase. The in vitro activity of this enzyme extracted from plastids of selected transgenic lines was at least five times higher than the control activity. Herbicide treatment that is normally inhibitory to protoporphyrinogen IX oxidase did not significantly impair the catalytic reaction in transgenic plants and, therefore, did not cause photodynamic damage in leaves. Therefore, overproduction of protoporphyrinogen oxidase neutralizes the herbicidal action, prevents the accumulation of the substrate protoporphyrinogen IX, and consequently abolishes the light-dependent phytotoxicity of acifluorfen.
机译:使用除草剂控制不良植被已成为一种普遍做法。对于除草剂的广泛应用,必须限制对农作物造成损害的风险。我们将一个基因导入烟草(Nicotiana tabacum)植物的基因组中,该基因编码拟南芥质体定位的原卟啉原氧化酶,这是常见的四吡咯生物合成途径的最后一种酶,受花椰菜花叶病毒35S启动子控制。在用二苯醚型除草剂阿氟氟醚处理后,筛选转化体中原卟啉IX的低积累。叶盘温育和用acifluorfen叶面喷洒表明转化体对除草剂的敏感性较低。对原头卟啉原氧化酶的质体同工型的过表达赋予了对acifluorfen的抗性。从选定的转基因品系的质体中提取的这种酶的体外活性比对照活性高至少五倍。通常对原卟啉原IX氧化酶具有抑制作用的除草剂处理不会明显损害转基因植物中的催化反应,因此不会对叶片造成光动力损害。因此,原卟啉原氧化酶的过量生产中和了除草作用,防止了底原卟啉原IX的积累,因此消除了acifluorfen的光依赖性植物毒性。

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