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Investigating the influence of transgenic tobacco plants codifying a protease inhibitor on soil microbial community

机译:研究编码蛋白酶抑制剂的转基因烟草植物对土壤微生物群落的影响

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Serine protease inhibitors (PIs) are involved in several physiological processes, such as regulation of endogenous proteinases and defence against phytophageous insects. Transgenic modifications have enhanced protease inhibitor expression to develop insect resistant cultivars in several important crops. The fate of protease inhibitors released from genetically engineered plants is an important issue because of possible inhibition of soil proteases and effects of the insecticidal protein and its codifying sequence on soil microorganisms. The persistence of transgenic sequence mustard trypsin inhibitor-2 in soil and its hypothetical acquisition by soil microorganisms by horizontal gene transfer and the effect of transgenic plant material on soil microbial community structure and soil protease activity were investigated. With the aim to simulate the effects of plant litter on soil microorganisms, a microcosm experimental model was used. Despite the persistence of transgenic DNA sequences, no recombination event was detected between plant DNA and soil bacteria; molecular analysis of bacterial community also showed no significant influence on the dominant members of the bacterial community and soil protease activity was not inhibited by the release of constitutively over-expressed protease inhibitor.
机译:丝氨酸蛋白酶抑制剂(PIs)参与多种生理过程,例如内源蛋白酶的调节和对噬藻性昆虫的防御。转基因修饰增强了蛋白酶抑制剂的表达,从而在几种重要作物中发展了抗虫品种。由于可能抑制土壤蛋白酶以及杀虫蛋白及其编码序列对土壤微生物的影响,从基因工程植物中释放的蛋白酶抑制剂的命运是一个重要的问题。研究了转基因芥菜胰蛋白酶抑制剂2在土壤中的持久性及其通过水平基因转移被土壤微生物假想地捕获,以及转基因植物材料对土壤微生物群落结构和土壤蛋白酶活性的影响。为了模拟植物凋落物对土壤微生物的影响,使用了微观实验模型。尽管存在转基因DNA序列,但在植物DNA和土壤细菌之间未检测到重组事件。细菌群落的分子分析也显示对细菌群落的主要成员没有显着影响,并且组成型过表达的蛋白酶抑制剂的释放不会抑制土壤蛋白酶的活性。

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