首页> 外文期刊>Critical reviews in microbiology >Biodegradation of the acetanilide herbicides alachlor, metolachlor, and propachlor.
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Biodegradation of the acetanilide herbicides alachlor, metolachlor, and propachlor.

机译:对乙酰苯胺类除草剂甲草胺,甲草胺和丙草胺的生物降解。

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摘要

Alachlor, metolachlor, and propachlor are detoxified in biological systems by the formation of glutathione-acetanilide conjugates. This conjugation is mediated by glutathione-S-transferase, which is present in microorganisms, plants, and mammals. Other organic sulfides and inorganic sulfide also react through a nucleophilic attack on the 2-chloro group of acetanilide herbicides, but the products are only partially characterized. Sorption in soils and sediments is an important factor controlling the migration and bioavailability of these herbicides, while microbial degradation is the most important factor in determining their overall fate in the environment. The biodegradation of alachlor and metolachlor is proposed to be only partial and primarily cometabolic, and the ring cleavage seems to be slow or insignificant. Propachlor biodegradation has been reported to proceed to substantial (> 50%) mineralization of the ring structure. Reductive dechlorination may be one of the initial breakdown mechanisms under anaerobic conditions. Aerobic and anaerobic transformation products vary in their polarity and therefore in soil binding coefficient. A catabolic pathway for chloroacetanilide herbicides has not been presented in the literature because of the lack of mineralization data under defined cultural conditions.
机译:甲草胺,甲草胺和丙草胺在生物系统中通过形成谷胱甘肽-乙酰苯胺共轭物而被解毒。这种结合是由存在于微生物,植物和哺乳动物中的谷胱甘肽-S-转移酶介导的。其他有机硫化物和无机硫化物也通过对乙酰苯胺除草剂的2-氯基团的亲核攻击反应,但产物仅部分表征。吸附在土壤和沉积物中是控制这些除草剂迁移和生物利用度的重要因素,而微生物降解是决定其在环境中总体命运的最重要因素。拟将丙草胺和异丙草胺的生物降解只是部分的,主要是可代谢的,并且环的裂解似乎是缓慢的或微不足道的。据报道,丙草胺的生物降解会导致环结构的大量矿化(> 50%)。还原性脱氯可能是厌氧条件下的初始分解机理之一。有氧和厌氧转化产物的极性不同,因此与土壤的结合系数也不同。氯乙酰苯胺除草剂的分解代谢途径尚未在文献中提出,因为在确定的培养条件下缺乏矿化数据。

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