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The herbicide glyphosate and related molecules: physicochemical andstructural factors determining their mobility in phloem

机译:草甘膦除草剂及相关分子:决定其在韧皮部中流动性的物理化学和结构因素

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The herbicide glyphosate shows excellent symplastic distribution to roofs and new growth when applied to the foliage of plants. Though the phloem transport of non-ionised and of monobasic weak acids can be understood in terms of the intermediate permeability theory, the multiple ionisable functionality of glyphosate, which has three acid groups and a strong amine base, precludes simple interpretation of its systemicity. Accordingly, the behaviour of an analogue of glyphosate based on a phenyl ring and carrying the same ionisable functionalities has been examined in eastor bean (Ricinus communis L) plants, together with that of related compounds in which the number of ionisable groups has been sequentially reduced, The close glyphosate analogue was symplastically transported almost as efficiently as glyphosate itself, whereas its monoethyl phosphonate ester, together with simpler analogues such as phenylphosphonic acids and phenylalanine, were less web translocated, It is thus the unique combination of ionisable functionality that confers good symplastic mobility, and loss of one or more of these ionisable functionalities leads to decreased movement in phloem. The reasons for such functional requirements for effective transport via phloem are not understood, though there is no evidence for recognition by specific carriers; the accumulation of glyphosate in phloem vessels is good but not exceptional, but once transported to roots and rhizomes it is exceptionally well retained, (C) 2000 Society of Chemical Industry.
机译:除草剂草甘膦在施用于植物的叶子时,表现出优异的共生性分布到屋顶,并有新的生长。尽管可以通过中间渗透性理论来理解非离子化和一元弱酸的韧皮部转运,但是草甘膦具有三个酸基团和强胺碱的多重可离子化功能,却无法简单地解释其系统性。因此,已经在东方豆(Ricinus communis L)植物中研究了基于苯环并带有相同可离子化官能团的草甘膦类似物的行为,以及相关化合物的可离子化基团数量依次减少的相关化合物的行为。 ,紧密的草甘膦类似物的共生转运效率几乎与草甘膦本身一样,而其单乙基膦酸酯与更简单的类似物(如苯基膦酸和苯丙氨酸)的网上转移较少,因此,可电离功能的独特结合赋予了良好的共生性迁移性以及这些可离子化功能中的一种或多种失去功能会导致韧皮部运动减少。尽管尚无证据表明特定载体能识别出通过韧皮部有效运输的功能需求,但尚不清楚。草甘膦在韧皮部容器中的积累是好的,但并非例外,但是一旦运到根和根茎上,它的保留就非常好,(C)2000年化学工业协会。

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