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Physiological Basis for Differential Sensitivities of Plant Species to Protoporphyrinogen Oxidase-Inhibiting Herbicides

机译:植物对原卟啉原氧化酶抑制除草剂的敏感性差异的生理基础

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摘要

With a leaf disc assay, 11 species were tested for effects of the herbicide acifluorfen on porphyrin accumulation in darkness and subsequent electrolyte leakage and photobleaching of chlorophyll after exposure to light. Protoporphyrin IX (Proto IX) was the only porphyrin that was substantially increased by the herbicide in any of the species. However, there was a wide range in the amount of Proto IX accumulation caused by 0.1 millimolar acifluorfen between species. Within species, there was a reduced effect of the herbicide in older tissues. Therefore, direct quantitative comparisons between species are difficult. Nevertheless, when data from different species and from tissues of different age within a species were plotted, there was a curvilinear relationship between the amount of Proto IX caused to accumulate during 20 hours of darkness and the amount of electrolyte leakage or chlorophyll photobleaching caused after 6 and 24 hours of light, respectively, following the dark period. Herbicidal damage plateaued at about 10 nanomoles of Proto IX per gram of fresh weight. Little difference was found between in vitro acifluorfen inhibition of protoporphyrinogen oxidase (Protox) of plastid preparations of mustard, cucumber, and morning glory, three species with large differences in their susceptibility at the tissue level. Mustard, a highly tolerant species, produced little Proto IX in response to the herbicide, despite having a highly susceptible Protox. Acifluorfen blocked carbon flow from δ-aminolevulinic acid to protochlorophyllide in mustard, indicating that it inhibits Protox in vivo. Increasing δ-aminolevulinic acid concentrations (33-333 micromolar) supplied to mustard with 0.1 millimolar acifluorfen increased Proto IX accumulation and herbicidal activity, demonstrating that mustard sensitivity to Proto IX was similar to other species. Differential susceptibility to acifluorfen of the species examined in this study appears to be due in large part to differences in Proto IX accumulation in response to the herbicide. In some cases, differences in Proto IX accumulation appear to be due to differences in activity of the porphyrin pathway.
机译:通过叶盘试验,测试了11种物种的除草剂acifluorfen在黑暗中对卟啉积累的影响,以及随后在暴露于光后随后的电解质泄漏和叶绿素的光漂白。原卟啉IX(Proto IX)是唯一一种在任何物种中均被除草剂大量增加的卟啉。但是,由于物种之间存在0.1毫摩尔的acifluorfen而导致的Proto IX积累量存在很大差异。在物种内部,除草剂在较老的组织中的作用减弱。因此,很难直接进行物种之间的定量比较。然而,当绘制来自不同物种和物种中不同年龄组织的数据时,在黑暗中20小时内引起的Proto IX量与6次后引起的电解质渗漏或叶绿素光漂白的量之间存在曲线关系。在黑暗时段之后分别有24小时和24小时的光照。除草剂损害稳定在每克鲜重约10纳摩尔的Proto IX。在体外对氟芥菜,黄瓜和牵牛花质体制剂的原卟啉原氧化酶(Protox)的acifluorfen抑制作用之间几乎没有发现差异,这三种物种在组织水平上的药敏性差异很大。芥菜是一种高度耐受的物种,尽管它对Protox的敏感性很高,但对除草剂的反应却很少产生Proto IX。 Acifluorfen阻止了芥菜中δ-氨基乙酰丙酸到原叶绿素的碳流动,表明它在体内抑制了Protox。向芥末中添加0.1毫摩尔的acifluorfen可以增加δ-氨基乙酰丙酸的浓度(33-333微摩尔),从而增加了Proto IX的积累和除草活性,表明芥子对Proto IX的敏感性与其他物种相似。这项研究中检测到的物种对氟利草醚的敏感性不同,在很大程度上似乎是由于对除草剂的响应,Proto IX的积累存在差异。在某些情况下,Proto IX积累的差异似乎是由于卟啉途径活性的差异所致。

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