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首页> 外文期刊>Journal of Pure & Applied Microbiology >Soil Dehydrogenase Activity and Bacterial Community Diversity in the Water Level Fluctuation Zone of a Drinking Water Reservoir
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Soil Dehydrogenase Activity and Bacterial Community Diversity in the Water Level Fluctuation Zone of a Drinking Water Reservoir

机译:饮用水水库水位波动区土壤脱氢酶活性和细菌群落多样性

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Soil microbial activity and community diversity in water level fluctuation zone (WLFZ) of the drinking water reservoir is still not well understood. In this context, soil dehydrogenase activity and bacterial community diversity of a drinking water reservoir was determined aiming to examine the water level fluctuation driving soil bacterial community activity and diversity across both vertical and longitudinal transects. BIOLOG method was employed to explore functional diversity of WLFZ soil bacterial community. The results shown that the highest dehydrogenase activity, 2.64 ig TF/g.24h, was found in the top of WLFZ, which was 2.67 times higher than that of the bottom. Meanwhile, the average well color development (AWCD)(590nm), species richness and Shannon's diversity of bacterial community associated with top 07 WLFZ was also significant higher than that of the bottom. The significant "site" and "WLFZ" revealed that the dehydrogenase activity, AWCD(590nm) and species richness varied among the sites within the WLFZ (P<0.01). However, there were no significant two-way interactions for different sites (P>0.05). Heatmap and principle component analyses (PCA) of bacterial community metabolic fingerprints suggested a significant discrimination soil bacterial community in the bottom, middle and top of three different sampling sites of WLFZ. The higher discriminate carbon substrates utilization by WLFZ soil bacterial community were cellobiose, hydroxy benzoic acid, tween 80, arginine, threonine, pyruvic acid methyl ester, ketobutyric acid, malic acid, glucosaminic acid and glycogen. These founding demonstrated that water level draw down affect soil microbial activity and bacterial community functional diversity in the water level fluctuation zone of the JIN PEN drinking water reservoir.
机译:饮用水水库水位波动区(WLFZ)中的土壤微生物活动和群落多样性仍未得到很好的了解。在此背景下,确定了饮用水水库的土壤脱氢酶活性和细菌群落多样性,旨在研究驱动垂直和纵向断面驱动土壤细菌群落活动和多样性的水位波动。采用BIOLOG方法探索WLFZ土壤细菌群落的功能多样性。结果表明,在WLFZ的顶部发现了最高的脱氢酶活性,为2.64 ig TF / g.24h,是底部的2.67倍。同时,与前07 WLFZ相关的平均孔显色(AWCD)(590nm),物种丰富度和香农细菌群落的多样性也显着高于底部。显着的“位点”和“ WLFZ”表明,脱氢酶活性,AWCD(590nm)和物种丰富度在WLFZ内的位点之间变化(P <0.01)。但是,不同部位之间没有显着的双向相互作用(P> 0.05)。细菌群落代谢指纹图谱的热图和主成分分析(PCA)表明,在WLFZ的三个不同采样点的底部,中部和顶部,显着区分了土壤细菌群落。 WLFZ土壤细菌群落对碳底物的利用较高,是纤维二糖,羟基苯甲酸,吐温80,精氨酸,苏氨酸,丙酮酸甲酯,酮丁酸,苹果酸,葡糖胺酸和糖原。这些发现表明,水位下降影响了金笔饮用水水库水位波动区的土壤微生物活性和细菌群落功能多样性。

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