首页> 外文期刊>Microbial Ecology: An International Journal >Seasonal Mixing-Driven System in Estuarine-Coastal Zone Triggers an Ecological Shift in Bacterial Assemblages Involved in Phytoplankton-Derived DMSP Degradation
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Seasonal Mixing-Driven System in Estuarine-Coastal Zone Triggers an Ecological Shift in Bacterial Assemblages Involved in Phytoplankton-Derived DMSP Degradation

机译:河口沿海地区的季节性混合驱动系统触发了植物组合中涉及浮游植物衍生的DMSP降解的生态转变

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The coastal zone has distinguishable but tightly connected ecosystems from rivers to the ocean and globally contributes to nutrient cycling including phytoplankton-derived organic matter. Particularly, bacterial contributions to phytoplankton-derived dimethylsulfoniopropionate (DMSP) degradation have been recently evaluated by using advanced sequencing technologies to understand their role in the marine microbial food web. Here, we surveyed the bacterial diversity and community composition under seasonal water mixing in the bay of Gwangyang (GW), a semi-enclosed estuary at the southern tip of the Korea Peninsula. We detected phylogenetic dissimilarities among season-specific habitats in GW and their specific bacterial taxa. Additionally, bacterial contribution to degradation of phytoplankton-derived DMSP from estuarine to coastal waters at euphotic depths in GW was investigated as the presence or absence of DMSP demethylation gene, encoded by dmdA. Among the operational taxonomic units (OTUs) in GW bacterial communities, the most dominant and ubiquitous OTU1 was affiliated with the SAR11 clade (SAR11-OTU). The population dynamics of SAR11-OTU in dmdA-detected GW waters suggest that water mass mixing plays a major role in shaping bacterial communities involved in phytoplankton-derived DMSP demethylation.
机译:沿海地区具有可区分,但紧密关联的河流到海洋的生态系统,全球有助于营养循环,包括浮游植物衍生的有机物。特别是,最近通过使用先进的测序技术来了解其在海洋微生物食品网中的作用,最近评估了对浮游植物的二甲基磺基丙酸酯(DMSP)降解的细菌贡献。在这里,我们在韩国半岛南端的半封闭河口的季节水混合下调查了细菌多样性和社区组成。我们检测到GW及其特定的细菌群中季节特异性栖息地之间的系统发育异常。另外,将来自河口源自盐酸盐衍生的DMSP降解到GW中的Euphotic深度的沿海水中的细菌贡献作为DMDA编码的DMSP去甲基化基因的存在或不存在。在GW细菌社区中的运营分类单位(OTUS)中,最占主导地位和普遍的OTU1与SAR11 CLADE(SAR11-OTU)隶属。在DMDA检测到的GW水域中SAR11-OTU的人口动态表明,水质混合在浮游植物衍生的DMSP去甲基化的细菌社区中起着重要作用。

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