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首页> 外文期刊>Ecotoxicology >Illumina-based analysis the microbial diversity associated with Thalassia hemprichii in Xincun Bay, South China Sea
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Illumina-based analysis the microbial diversity associated with Thalassia hemprichii in Xincun Bay, South China Sea

机译:基于照度的分析与南海新村湾嗜藻地中海藻相关的微生物多样性

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摘要

In order to increase our understanding of the microbial diversity associated with seagrass Thalassia hernprichii in Xincun Bay, South China Sea, 16S rRNA gene was identified by highthrough sequencing method. Bacteria associated with seagrass T. hernprichii belonged to 37 phyla, 99 classes. The diversity of bacteria associated with seagrass was similar among the geographically linked coastal locations of Xincun Bay. Proteobacteria was the dominant bacteria and the alpha-proteobacteria had adapted to the seagrass ecological niche. As well, alpha-proteobacteria and Pseudomonadales were associated microflora in seagrass meadows, but the interaction between the bacteria and plant is needed to further research. Burkholderiales and Verrucomicrobiae indicated the influence of the bay from anthropogenic activities. Further, Cyanobacteria could imply the difference of the nutrient conditions in the sites. gamma-proteobacteria, Desulfobacterales and Pirellulales played a role in the cycle of sulfur, organic mineralization and meadow ecosystem, respectively. In addition, the less abundance bacteria species have key functions in the seagrass meadows, but there is lack knowledge of the interaction of the seagrass and less abundance bacteria species. Microbial communities can response to surroundings and play key functions in the biochemical cycle.
机译:为了加深对南海新村湾海草海藻Thalasia hernprichii的微生物多样性的了解,通过高通量测序方法鉴定了16S rRNA基因。与海草T.hernprichii有关的细菌属于37门99类。在新村湾的地理位置相连的沿海地区,与海草有关的细菌多样性相似。变形杆菌是主要细菌,而α-变形细菌已经适应了海草的生态位。同样,α-变形杆菌和假单胞菌是海草草地上的微生物群,但是细菌和植物之间的相互作用需要进一步研究。 Burkholderiales和Verrucomicrobiae表明了人为活动对该海湾的影响。此外,蓝细菌可能暗示着这些部位营养条件的差异。 γ-蛋白细菌,脱硫细菌和Pirellulales在硫,有机矿化和草甸生态系统的循环中分别发挥了作用。此外,丰度较低的细菌在海草草甸中起关键作用,但缺乏有关海藻与丰度较低的细菌的相互作用的知识。微生物群落可以对周围环境做出反应,并在生化循环中发挥关键作用。

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