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Impact of salinity-tolerant MCM6 transgenic tobacco on soil enzymatic activities and the functional diversity of rhizosphere microbial communities

机译:耐盐性MCM6转基因烟草对土壤酶活性和根际微生物群落功能多样性的影响

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The development of genetically modified plants for agriculture has provided numerous economic benefits, but has also raised concern over the potential impact of transgenic plants upon the environment. The rhizosphere is the soil compartment that is directly under the influence of living roots; it constitutes a complex niche likely to be exploited by a wide variety of bacteria potentially influenced by the introduction of transgenes in genetically modified plants. In the present study, the impact of overexpression of the salinity stress-tolerant minichromosome maintenance complex subunit 6 (MCM6) gene upon functional diversity and soil enzymatic activity in the rhizosphere of transgenic tobacco in the presence and absence of salt stress was examined. The diversity of culturable bacterial communities and soil enzymes, namely, dehydrogenases and acid phosphatases, was assessed and revealed no significant (or only minor) alterations due to transgenes in the rhizosphere soil of tobacco plants. Patterns in principal components analysis showed clustering of transgenic and non-transgenic tobacco plants according to the fingerprint of their associated bacterial communities. However, the presence of MCM6 tobacco did not cause changes in microbial populations, soil enzymatic activities or the functional diversity of the rhizosphere soil microbial community.
机译:农业转基因植物的开发提供了许多经济利益,但也引起了人们对转基因植物对环境的潜在影响的关注。根际是直接受到活根影响的土壤区室。它构成了一个复杂的生态位,很可能会被转基因植物中转基因的引入所影响的各种细菌所利用。在本研究中,研究了盐分胁迫下耐盐微染色体维持复合物亚基6(MCM6)基因过表达对盐胁迫存在和不存在下转基因烟草根际功能多样性和土壤酶活性的影响。评估了可培养细菌群落和土壤酶(即脱氢酶和酸性磷酸酶)的多样性,结果表明,由于烟草植物根际土壤中的转基因,无显着(或仅有很小)改变。主成分分析中的模式显示,转基因和非转基因烟草植物根据其相关细菌群落的指纹而聚集。但是,MCM6烟草的存在并未引起微生物种群,土壤酶活性或根际土壤微生物群落功能多样性的变化。

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