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贝诺杀草酮诱导玉米和高羊茅中特丁津解毒作用的研究

Benoxacor induction of terbuthylazine detoxification in Zea mays and Festuca arundinacea.

作者信息

Scarponi Luciano, Del Buono Daniele

机构信息

Dipartimento di Scienze Agrarie e Ambientali, Università di Perugia, Borgo XX Giugno 72, 06121 Perugia, Italy.

出版信息

J Agric Food Chem. 2005 Apr 6;53(7):2483-8. doi: 10.1021/jf047948n.

Abstract

The action of safener benoxacor on the detoxification of terbuthylazine (TBA) in Zea mays and Festuca arundinacea was ascertained by the investigation of the effects of benoxacor on the activity of glutathione-S-transferases (GSTs) in the shoots of the two plant species. TBA treatment generally reduced GST activity toward 1-chloro-2,4-dinitrobenzene (CDNB) in corn and did not affect the enzyme activity in festuca. When applied alone, benoxacor stimulated GST activity in both plants; however, when it was applied in mixture with TBA, generally, an enhancement of the enzyme activity was found in corn but not in festuca in comparison with the respective TBA-treated samples. The enhancement of GST activity in response to the benoxacor treatment in both corn and festuca resulted to be concomitant with decreases in apparent K(M) in both the plant species, with V(max) unaffected, and with an increased expression of proteins having molecular masses in the characteristic range of plant GSTs. After the benoxacor treatment, increased GST activity toward TBA as a substrate was observed in both corn and festuca. As a consequence, lesser amounts and persistence of TBA residues were found in shoots of corn and festuca treated with the TBA and benoxacor mixture compared to TBA-only-treated samples. Therefore, benoxacor enhances TBA detoxification in both corn and festuca; the induction of detoxifying activity in a nondomesticated grass is discussed in view of its use in vegetating buffer strips around crops to prevent TBA pollution.

摘要

通过研究苯氧喹啉对两种植物地上部分谷胱甘肽 - S - 转移酶(GSTs)活性的影响,确定了安全剂苯氧喹啉对玉米和高羊茅中毒莠定(TBA)解毒作用的影响。TBA处理通常会降低玉米中GST对1 - 氯 - 2,4 - 二硝基苯(CDNB)的活性,且不影响高羊茅中的酶活性。单独施用时,苯氧喹啉会刺激两种植物中的GST活性;然而,当它与TBA混合施用时,与各自的TBA处理样品相比,通常在玉米中发现酶活性增强,而在高羊茅中未发现。玉米和高羊茅中对苯氧喹啉处理的GST活性增强伴随着两种植物中表观K(M)的降低,V(max)不受影响,并且具有植物GST特征分子量范围的蛋白质表达增加。苯氧喹啉处理后,在玉米和高羊茅中均观察到以TBA为底物的GST活性增加。因此,与仅用TBA处理的样品相比,在TBA和苯氧喹啉混合物处理的玉米和高羊茅地上部分中发现的TBA残留量更少且持续时间更短。因此,苯氧喹啉增强了玉米和高羊茅中TBA的解毒作用;鉴于其用于作物周围植被缓冲带以防止TBA污染,讨论了在非驯化草中诱导解毒活性的情况。

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