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转苏云金芽孢杆菌cry蛋白基因玉米原位土壤中的微生物种群和酶活性

Microbial populations and enzyme activities in soil in situ under transgenic corn expressing cry proteins from Bacillus thuringiensis.

作者信息

Icoz I, Saxena D, Andow D A, Zwahlen C, Stotzky G

机构信息

Lab. of Microbial Ecology, Dep. of Biology, New York Univ., New York, NY 10003, USA.

出版信息

J Environ Qual. 2008 Mar-Apr;37(2):647-62. doi: 10.2134/jeq2007.0352.

Abstract

Transgenic Bt crops produce insecticidal Cry proteins that are released to soil in plant residues, root exudates, and pollen and that may affect soil microorganisms. As a continuation of studies in the laboratory and a plant-growth room, a field study was conducted at the Rosemount Experiment Station of the University of Minnesota. Three Bt corn varieties that express the Cry1Ab protein, which is toxic to the European corn borer (Ostrinia nubilalis Hübner), and one Bt corn variety that expresses the Cry3Bb1 protein, which is toxic to the corn rootworm complex (Diabrotica spp.), and their near-isogenic non-Bt varieties were evaluated for their effects on microbial diversity by classical dilution plating and molecular (polymerase chain reaction-denaturing gradient gel electrophoresis) techniques and for the activities of some enzymes (arylsulfatases, acid and alkaline phosphatases, dehydrogenases, and proteases) involved in the degradation of plant biomass. After 4 consecutive years of corn cultivation (2003-2006), there were, in general, no consistent statistically significant differences in the numbers of different groups of microorganisms, the activities of the enzymes, and the pH between soils planted with Bt and non-Bt corn. Numbers and types of microorganisms and enzyme activities differed with season and with the varieties of corn, but these differences were not related to the presence of the Cry proteins in soil. The Cry1Ab protein of Bt corn (events Bt11 and MON810) was detected in most soils during the 4 yr, whereas the Cry3Bb1 protein was not detected in soils of Bt corn (event MON863) expressing the cry3Bb1 gene.

摘要

转基因Bt作物产生杀虫性Cry蛋白,这些蛋白通过植物残体、根系分泌物和花粉释放到土壤中,可能会影响土壤微生物。作为实验室和植物生长室研究的延续,在明尼苏达大学罗斯芒特实验站进行了一项田间研究。通过传统稀释平板法和分子(聚合酶链反应-变性梯度凝胶电泳)技术,评估了三种表达对欧洲玉米螟(Ostrinia nubilalis Hübner)有毒的Cry1Ab蛋白的Bt玉米品种、一种表达对玉米根虫复合体(Diabrotica spp.)有毒的Cry3Bb1蛋白的Bt玉米品种及其近等基因非Bt品种对微生物多样性的影响,以及参与植物生物质降解的一些酶(芳基硫酸酯酶、酸性和碱性磷酸酶、脱氢酶和蛋白酶)的活性。在连续4年种植玉米(2003 - 2006年)后,总体而言,种植Bt玉米和非Bt玉米的土壤在不同微生物组数量、酶活性和pH值方面,没有一致的统计学显著差异。微生物的数量和类型以及酶活性随季节和玉米品种而不同,但这些差异与土壤中Cry蛋白的存在无关。在4年期间,大多数土壤中都检测到了Bt玉米(事件Bt11和MON810)的Cry1Ab蛋白,而在表达cry3Bb1基因的Bt玉米(事件MON863)土壤中未检测到Cry3Bb1蛋白。

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