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首页> 外文期刊>Science of the total environment >Spatial patterns and co-occurrence networks of microbial communities related to environmental heterogeneity in deep-sea surface sediments around Yap Trench, Western Pacific Ocean
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Spatial patterns and co-occurrence networks of microbial communities related to environmental heterogeneity in deep-sea surface sediments around Yap Trench, Western Pacific Ocean

机译:西太平洋养河沟壑区深海地表沉积物环境异质性有关的微生物群落的空间模式和共同发生网络

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摘要

Microbial communities are a large component of abyssal and hadal benthic environments, especially in deep-sea areas like YapTrench, they provide a continuous source of nutrients and energy in their unique ecosystems. However, due to sampling difficulties, these microbial communities are relatively understudied. In the summer of 2017, sediment samples were collected from 21 stations around Yap Trench in the Western Pacific Ocean (mostly in the West Caroline Basin), at depths ranging from 3156 to 7837 m. Sediment samples from deep water depths and shallow water depths differed in organic matter content, median grain size, silt-clay content, and biodiversity. The structure of the microbial communities in the surface sediments had distinct relationships with environmental factors and their co-occurrence networks exhibited a clear spatial pattern. In addition, for both prokaryotes or eukaryotes, a combination of variables including silt-day content, organic matter content, median grain size, and depth had the greatest impact on community structure. It was notable that fungi played important roles in the co-occurrence networks of deep water depth sediment samples while bacteria dominated those of shallow water depth samples. The differences in structure and ecological niches in the different networks were due to differences in sediment texture and organic matter content Since clay had a positive effect on the diversity of bacteria, it had an indirect positive effect on fungi, leading to differences in biodiversity among different groups. More organic matter meant more nutrients were available for the growth and reproduction of microbes, which led to fewer niche overlaps. This study conducted an extensive and systematic sequencing survey of surface sediments around Yap Trench in the Western Pacific Ocean, providing insight into microbial responses to environmental heterogeneity in deep-sea benthic ecosystems.
机译:微生物群落是深海和Hadal Benthic环境的大量组成部分,特别是在yaptreench等深海地区,它们在独特的生态系统中提供了连续的营养和能量来源。然而,由于采样困难,这些微生物社区相对较低。在2017年夏天,在西太平洋(主要在西卡罗林盆地)周围的21站收集了沉积物样品,深度从3156到7837米的深度。来自深水深度和浅水深度的沉积物样品在有机物质含量,中值粒度,淤泥粘土含量和生物多样性不同。表面沉积物中的微生物社区的结构与环境因素具有明显的关系,并且其共同发生网络表现出清晰的空间模式。此外,对于原核生物或真核生物,包括淤泥日含量,有机物质含量,中位数和深度的变量的组合对群落结构产生了最大的影响。真菌在深水深度沉积物样本的共同发生网络中发挥了重要作用,而细菌主导了浅水深度样品。不同网络中的结构和生态利基的差异是由于沉积物纹理和有机质含量的差异,因为粘土对细菌的多样性产生积极影响,它对真菌具有间接阳性作用,导致不同的生物多样性差异团体。更多有机物质意味着更多的营养物可用于微生物的生长和繁殖,这导致了更少的利基重叠。本研究对西太平洋在西太平洋的YAP沟渠周围地表沉积物进行了广泛而系统的测序调查,深入了解深海底栖生态系统对环境异质性的微生物反应。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|143799.1-143799.14|共14页
  • 作者单位

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China;

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China;

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China;

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China Frontiers Science Center for Deep Ocean Multispheres and Earth System Ocean University of China Qingdao China;

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China;

    School of Marine Sciences Sun Yat-Sen University Guangzhou China;

    Key Lab of Submarine Geosciences and Prospecting Techniques Ministry of Education Qingdao China College of Marine Geosciences Ocean University of China Qingdao China;

    College of Marine Life Sciences & Institute of Evolution and Marine Biodiversity Ocean University of China Qingdao China Frontiers Science Center for Deep Ocean Multispheres and Earth System Ocean University of China Qingdao China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Community structure; Co-occurrence network; Surface sediment; Environmental factors; Biodiversity;

    机译:社区结构;共同发生网络;表面沉积物;环境因素;生物多样性;

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