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首页> 外文期刊>Canadian journal of microbiology >Pyrosequencing analysis of free-living and attached bacterial communities in Meiliang Bay, Lake Taihu, a large eutrophic shallow lake in China
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Pyrosequencing analysis of free-living and attached bacterial communities in Meiliang Bay, Lake Taihu, a large eutrophic shallow lake in China

机译:中国富营养化浅水湖泊太湖梅良湾自由活动和附着细菌群落的焦磷酸测序分析

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摘要

To elucidate the relationship between particle-attached (PA, >= 5.0 mu m) and free-living (FL, 0.2-5.0 mu m) bacterial communities, samplings were collected seasonally from November 2011 to August 2012 in Meiliang Bay, Lake Taihu, China. We used 454 pyrosequencing of 16S rRNA genes to study bacterial diversity and structure of PA and FL communities. The analysis rendered 37 985 highly qualified reads, subsequently assigned to 1755 operational taxonomic units (97% similarity) for the 8 samples. Although 27 high-level taxonomic groups were obtained, the 3 dominant phyla (Proteobacteria, Actinobacteria, and Bacteroidetes) comprised about 75.9% and 82.4% of the PA and FL fractions, respectively. Overall, we found no significant differences between community types, as indicated by ANOSIM R statistics (R = 0.063, P > 0.05) and the Parsimony test (P = 0.222). Dynamics of bacterial communities were correlated with changes in concentrations of total suspended solids (TSS) and total phosphorus (TP). In summer, a significant taxonomic overlap in the 2 size fractions was observed when Cyanobacteria, a major contributor of TSS and TP, dominated in the water, highlighting the potential rapid exchange between PA and FL bacterial populations in large shallow eutrophic lakes.
机译:为了阐明颗粒附着(PA,> = 5.0微米)和自由生活(FL,0.2-5.0微米)细菌群落之间的关系,从2011年11月至2012年8月在太湖美良湾进行季节性采样。中国。我们使用454个16S rRNA基因的焦磷酸测序来研究PA和FL群落的细菌多样性和结构。该分析提供了37 985个高质量的读物,随后为这8个样品分配了1755个操作生物分类单位(相似性为97%)。尽管获得了27个高级分类学组,但3个显性门(变形杆菌,放线菌和拟杆菌)分别占PA和FL组分的约75.9%和82.4%。总体而言,我们发现社区类型之间没有显着差异,如ANOSIM R统计数据(R = 0.063,P> 0.05)和简约检验(P = 0.222)所示。细菌群落的动态与总悬浮固体(TSS)和总磷(TP)浓度的变化相关。夏季,当蓝藻(TSS和TP的主要贡献者)在水中占主导地位时,在2个大小级分中观察到了显着的分类学重叠,突显了大型浅水富营养化湖泊中PA和FL细菌种群之间的潜在快速交换。

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