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Transgenic Bt cotton has no apparent effect on enzymatic activities or functional diversity of microbial communities in rhizosphere soil.

机译:转Bt基因棉对根际土壤微生物群落的酶活性或功能多样性没有明显影响。

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摘要

A transgenic Bt cotton (Sukang-103) and its non-Bt cotton counterpart (Sumian-12) were investigated to evaluate the potential risk of transgenes on the soil ecosystem. The activities of urease, phosphatase, dehydrogenase, phenol oxidase, and protease in cotton rhizosphere were assayed during the vegetative, reproductive, and senescing stages of cotton growth and after harvest. A Biolog system was used to evaluate the functional diversity of microbial communities in soils after a complete cotton growth cycle. Enzymatic activities in soils amended with cotton biomass were also assayed. Results showed that there were few significant differences in enzyme activities between Bt and non-Bt cottons at any of the growth stages and after harvest; amendment with cotton biomass to soil enhanced soil enzyme activities, but there were no significant difference between Bt and non-Bt cotton; the richness of the microbial communities in rhizosphere soil did not differ between Bt and the non-Bt cotton, and close to that of control soil; the functional diversity of microbial communities were not different in rhizosphere soils between Bt and non-Bt cotton. All results suggested that there was no evidence to indicate any adverse effects of Bt cotton on the soil ecosystem in this study..
机译:研究了转基因抗虫棉(Sukang-103)和非抗虫棉(Sumian-12),以评估转基因对土壤生态系统的潜在风险。在棉花的营养,生殖和衰老阶段以及收获后,测定了棉花根际中脲酶,磷酸酶,脱氢酶,苯酚氧化酶和蛋白酶的活性。在完整的棉花生长周期后,使用Biolog系统评估土壤中微生物群落的功能多样性。还测定了用棉花生物量改良的土壤中的酶活性。结果表明,在任何生育阶段和收获后,Bt棉和非Bt棉之间的酶活性差异均很小。棉花生物量对土壤的改良提高了土壤酶的活性,但Bt和非Bt棉花之间没有显着差异。 Bt和非Bt棉花的根际土壤微生物群落丰富度没有差异,与对照土壤接近。 Bt和非Bt棉花在根际土壤微生物群落功能多样性上没有差异。所有结果表明,在这项研究中,没有证据表明Bt棉花对土壤生态系统有任何不利影响。

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