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种植周期和除草剂重复施用对土壤中精稳杀得、苯达松、敌草隆、异丙隆和二甲戊灵降解的影响。

Effect of cropping cycles and repeated herbicide applications on the degradation of diclofop-methyl, bentazone, diuron, isoproturon and pendimethalin in soil.

作者信息

Piutti Séverine, Marchand Anne-Laure, Lagacherie Bernard, Martin-Laurent Fabrice, Soulas Guy

机构信息

INRA-CMSE, UMR Microbiologie des Sols-Geosol, BP 86510, 21065 Dijon, France.

出版信息

Pest Manag Sci. 2002 Mar;58(3):303-12. doi: 10.1002/ps.459.

Abstract

A greenhouse study was conducted to investigate the ability of four crops (wheat, corn, oilseed rape and soybean) to influence the degradation of bentazone, diclofop-methyl, diuron, isoproturon and pendimethalin in soil. The present study showed that microbial biomass-carbon was significantly higher in planted soils than in bulk soil, especially with wheat and corn, after several cropping cycles. The biomass in corn and soybean planted soils was adversely affected by bentazone but recovered after three cropping cycles. In wheat-planted soils, diclofop-methyl application resulted in persistent increase of the amount of microbial biomass. Bentazone did not show accelerated degradation even after five successive treatments, differing from diclofop-methyl, for which two applications were sufficient to enhance significantly its rate of degradation. Enhanced degradation of diclofop-methyl was even more pronounced in wheat-planted soil. The rates of mineralisation of diuron, isoproturon and pendimethalin were not affected after the first cropping cycle, but were significantly increased in planted soils after five cropping cycles. The results confirm that plants may promote pesticide degradation in soil by stimulating biodegradation processes. In the case of diclofop-methyl, stimulation of accelerated degradation was observed.

摘要

进行了一项温室研究,以调查四种作物(小麦、玉米、油菜和大豆)影响土壤中苯达松、精稳杀得、敌草隆、异丙隆和二甲戊灵降解的能力。本研究表明,经过几个种植周期后,种植土壤中的微生物生物量碳显著高于原状土壤,尤其是小麦和玉米种植的土壤。玉米和大豆种植土壤中的生物量受到苯达松的不利影响,但在三个种植周期后恢复。在小麦种植土壤中,施用精稳杀得导致微生物生物量持续增加。即使经过五次连续处理,苯达松也未表现出加速降解,这与精稳杀得不同,精稳杀得施用两次就足以显著提高其降解速率。精稳杀得在小麦种植土壤中的降解增强更为明显。敌草隆、异丙隆和二甲戊灵的矿化速率在第一个种植周期后未受影响,但在五个种植周期后,种植土壤中的矿化速率显著增加。结果证实,植物可通过刺激生物降解过程促进土壤中农药的降解。在精稳杀得的情况下,观察到了加速降解的刺激作用。

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