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Residual effect of transgenic soybean in soil microbiota

机译:转基因大豆在土壤微生物中的残留作用

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摘要

Today, Brazil is the second major soybean (Glycine max (L.) producer of the world; however, few studies on the effects of transgenesis in the soil microbiota are completed. This study aims at assessing the residual effect of a transgenic soybean with tolerance to the imidazolinone herbicide group on the soil microbiota. The parameters examined were: the soil basal respiration, microbial biomass carbon (MBC) of the soil, metabolic quotient, spores of arbuscular mycorrhizal fungi and total soil fungal and bacterial biomass using epifluorescence technique in areas with eight years of no-tillage cultivated with non-transgenic (BRS133) and transgenic (BRS245) soybeans, in Londrina and Ponta Grossa - PR, Brazil, in the 2011/2012 growing season. The experiment was conducted in a randomized block design and each treatment with six replications. Results showed a significant increase on the MBC in Londrina soils with the BRS245 soybean, and also a significant increase in the total bacterial biomass in the both Londrina and the Ponta Grossa soil with BRS245 soybean, in contrast to those cultivated with BRS133. The BRS245 transgenic soybean crop changed the soil microbiota mainly by increasing the bacterial biomass, which was estimated by the epifluorescence microscopy method. The epifluorescence technique can be used to estimate soil biomass by fungi and bacteria with success.
机译:如今,巴西已成为世界第二大大豆生产国;然而,关于转基因对土壤微生物群的影响的研究很少,该研究旨在评估具有耐受性的转基因大豆的残留效应。土壤微生物区系中咪唑啉酮除草剂组的研究参数为:土壤基础呼吸,土壤微生物生物量碳(MBC),代谢商,丛枝菌根真菌的孢子以及采用表观荧光技术的土壤真菌和细菌生物量在2011/2012生长季节,在巴西Londrina和Ponta Grossa-PR的非转基因(BRS133)和转基因(BRS245)大豆栽培的8年免耕试验中,该实验采用随机区组设计和每种处理均重复六次,结果表明,使用BRS245大豆的Londrina土壤中的MBC显着增加,细菌总生物量也显着增加与使用BRS133种植的大豆相反,在隆德里纳和蓬塔格罗萨土壤中使用BRS245大豆种植的玉米。 BRS245转基因大豆作物主要通过增加细菌生物量来改变土壤微生物,这是通过落射荧光显微镜法估计的。落射荧光技术可以成功地通过真菌和细菌估算土壤生物量。

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