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Impact of coleopteran-active Bt corn on non-target nematode communities in soil and decomposing corn roots

机译:鞘翅目活性Bt玉米对土壤中非目标线虫群落和分解玉米根的影响

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Genetically engineered corn expressing crystalline proteins for insect control and encoded by genes derived from soil bacterium Bacillus thuringiensis (Bt) are widely adopted in the United States. Among the seven different events of Bt corn available commercially, YieldGarde (R) Rootworm (event MON863) expresses a variant of the cry3Bb1 protein in the root tissue to control corn rootworm larvae. Nematodes reside in the rhizosphere and are potentially exposed to Cry3Bb1 toxins exudated from roots of Bt corn. We test the hypothesis that coleopteran-active Bt corn does not affect non-target soil nematodes. Experimental treatments were: 1) a Bt hybrid, 2) a non-Bt isoline treated with a conventional soil insecticide, and 3) a non-Bt isoline without insecticide. Nematodes were extracted from soil samples collected prior to planting (May), at peak anthesis (August), and after harvest (October) in 2003 and 2004, enumerated and identified to genus. A total of 73 nematode genera were encountered in soil and litter combined. During the growing season, maturity index values and relative abundance of fimgivorous nematodes were greater in the Bt hybrid than the non-Bt isoline with or without insecticide. Nematode trophic diversity values were greater in the Bt hybrid than non-Bt isoline with insecticide and this effect continued through the following spring. Abundance of nematode predators increased two weeks after insecticide was applied to non-Bt isoline, but decreased without insecticides on either Bt or the non-Bt isoline. In decaying roots of corn treatments, maturity index values and the relative abundance of nematode predators was greater in the Bt hybrid than non-Bt isoline with insecticide. Effects at the overall community structure and nematode genera varied more by seasonal phenology than corn treatment. The isoline with insecticide had more non-target effects on nematode communities than the Bt hybrid. This treatment increased the relative abundance of predaceous nematodes temporarily but eventually reduced successional maturity by harvest time, which continued to decline during the winter in both soil and decaying corn roots. (C) 2014 Elsevier Ltd. All rights reserved.
机译:转基因玉米表达的晶体蛋白可用于昆虫控制,并由土壤苏云金芽孢杆菌(Bt)的基因编码,在美国被广泛采用。在商业上可获得的Bt玉米的七个不同事件中,YieldGarde(R)根虫(事件MON863)在根组织中表达cry3Bb1蛋白的变异体,以控制玉米根虫幼虫。线虫生活在根际,并可能暴露于Bt玉米根部分泌的Cry3Bb1毒素。我们检验了鞘翅目活性Bt玉米不影响非目标土壤线虫的假说。实验处理是:1)Bt杂种,2)用常规土壤杀虫剂处理过的非Bt等价物,和3)没有杀虫剂的非Bt等价物。从2003年和2004年种植前(五月),花期高峰(八月)和收获后(十月)收集的土壤样品中提取线虫,进行计数并鉴定为属。在土壤和垃圾中总共遇到了73个线虫属。在生长季节中,Bt杂种中有丝虫线虫的成熟指数值和相对丰度要比有或没有杀虫剂的非Bt等值线更大。 Bt杂种中的线虫营养多样性值大于使用杀虫剂的非Bt等值线,并且这种影响一直持续到第二年春天。将杀虫剂施用于非Bt等值线后两周,线虫捕食者的丰度增加,但在Bt或非Bt等值线上没有杀虫剂的情况下,线虫的捕食者数量减少。在玉米处理的腐烂根中,Bt杂种中的成熟指数值和线虫捕食者的相对丰度要比使用杀虫剂的非Bt等值线更大。与玉米处理相比,季节性物候对总体群落结构和线虫属的影响变化更大。与Bt杂种相比,具有杀虫剂的同工异物对线虫群落的非目标作用更大。这种处理暂时增加了食前线虫的相对丰度,但最终由于收获时间而降低了连续成熟度,在冬季土壤和腐烂的玉米根中,这种成熟度持续下降。 (C)2014 Elsevier Ltd.保留所有权利。

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