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Uptake of 2,4-Dichlorophenoxyacetic Acid by Pseudomonas fluorescens

机译:荧光假单胞菌对2,4-二氯苯氧基乙酸的吸收

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Factors influencing the uptake of the sodium salt of 2,4-dichlorophenoxyacetic acid (2,4-D), under conditions in which no net metabolism occurred, were investigated in an effort to determine both the significance of “non-metabolic” uptake as a potential agent in reducing pesticide levels and the mechanisms involved. Uptake of 2,4-D was affected by pH, temperature, and the presence of other organic and inorganic compounds. Uptake was more pronounced at pH values less than 6, which implies that there may be some interaction between charged groups on the cell and the ionized carboxyl group of 2,4-D. Active transport, carrier-mediated diffusion, passive diffusion, and adsorption were considered as possible mechanisms. Though uptake was inhibited by glucose, sodium azide, and fluorodinitrobenzene (but not by uranyl ion), 2,4-D was not accumulated against a concentration gradient, a necessary consequence of an active transport system, nor was isotope counterflow found to occur. Thus, carrier-mediated diffusion was finally precluded, implying that uptake probably occurs by a two-step process: sorption onto the cell wall followed by passive diffusion into the cytoplasm.
机译:在没有净代谢发生的条件下,研究了影响2,4-二氯苯氧基乙酸钠(2,4-D)钠盐吸收的因素,从而确定“非代谢”吸收的重要性。降低农药水平及其机制的潜在剂。 pH,温度以及其他有机和无机化合物的存在会影响2,4-D的吸收。在pH值小于6时,摄取更为明显,这意味着细胞上的带电基团与2,4-D的离子化羧基之间可能存在一些相互作用。主动运输,载体介导的扩散,被动扩散和吸附被认为是可能的机制。尽管葡萄糖,叠氮化钠和氟二硝基苯(而不是铀酰离子)抑制了摄取,但2,4-D并未随浓度梯度累积,这是主动转运系统的必要结果,也未发现发生同位素逆流。因此,最终排除了载体介导的扩散,这意味着摄取可能通过两步过程发生:吸附到细胞壁上,然后被动扩散到细胞质中。

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