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Study on the Effects of Ecological Engineering for Ecological Restoration on Bacterial Community Structure by Molecular Biological Method in a Eutrophic Lake

机译:富营养化湖泊生态修复生态工程对细菌群落结构影响的分子生物学研究

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Abstract:Study on microbial community structure and diversity in freshwater is important for exploiting the relationship of microbial community and its habitats, predicting and monitoring the ecological changing of contaminated water habitat. The retrieval of 16SrDNA genes directly from the environment has made it possible to estimate the phylogenetic diversity of a natural bacterial community without preceding cultivation steps, which reflect more comprehensively of bacterial community in the water samples in different ecological restoration areas. The genomic DNA was extracted from water, PCR amplification of this gene fragments; DGGE was analyzed; the abundance of bacteria were observed. The result showed that the bacterial community and abundance changed in different ecological restoration sections. With the depth of bio-disposal, the diversity of microbe community increased, however, the abundance of bacteria declined, which demonstrated the ecological restoration engineering improved the water habitat, promoted the microbe community diversity in the eco-restoration areas.
机译:摘要:研究淡水微生物群落结构和多样性对于探索微生物群落与其生境的关系,预测和监测污染水生境的生态变化具有重要意义。直接从环境中检索16SrDNA基因使得无需预先的培养步骤就可以估算天然细菌群落的系统发育多样性,这更全面地反映了不同生态恢复区水样中细菌群落的多样性。从水中提取基因组DNA,PCR扩增该基因片段;对DGGE进行了分析;观察到细菌的丰富。结果表明,不同生态恢复区的细菌群落和丰度发生了变化。随着生物处置深度的增加,微生物群落的多样性增加,但细菌数量减少,这说明生态修复工程改善了水生环境,促进了生态修复区微生物群落的多样性。

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