...
首页> 外文期刊>Applied Microbiology >Diversity and Transport of Microorganisms in Intertidal Sands of the California Coast
【24h】

Diversity and Transport of Microorganisms in Intertidal Sands of the California Coast

机译:加利福尼亚海岸潮间带沙中微生物的多样性和迁移

获取原文
           

摘要

Forced by tides and waves, large volumes of seawater are flushed through the beach daily. Organic material and nutrients in seawater are remineralized and cycled as they pass through the beach. Microorganisms are responsible for most of the biogeochemical cycling in the beach; however, few studies have characterized their diversity in intertidal sands, and little work has characterized the extent to which microbes are transported between different compartments of the beach. The present study uses next-generation massively parallel sequencing to characterize the microbial community present at 49 beaches along the coast of California. In addition, we characterize the transport of microorganisms within intertidal sands using laboratory column experiments. We identified extensive diversity in the beach sands. Nearly 1,000 unique taxa were identified in sands from 10 or more unique beaches, suggesting the existence of a group of “cosmopolitan” sand microorganisms. A biogeographical analysis identified a taxon-distance relationship among the beaches. In addition, sands with similar grain size, organic carbon content, exposed to a similar wave climate, and having the same degree of anthropogenic influence tended to have similar microbial communities. Column experiments identified microbes readily mobilized by seawater infiltrating through unsaturated intertidal sands. The ease with which microbes were mobilized suggests that intertidal sands may represent a reservoir of bacteria that seed the beach aquifer where they may partake in biogeochemical cycling.
机译:在潮汐和海浪的推动下,每天都有大量的海水冲过海滩。海水中的有机物质和营养物质经过海滩后会重新矿化并循环。微生物是导致海滩中大部分生物地球化学循环的原因。但是,很少有研究描述它们在潮间带沙中的多样性,很少有工作描述微生物在海滩不同隔间之间迁移的程度。本研究使用下一代大规模并行测序来表征加利福尼亚沿海49个海滩上的微生物群落。此外,我们使用实验室柱实验来表征潮间沙中微生物的运输。我们在沙滩上发现了广泛的多样性。在来自10个或更多独特海滩的沙子中鉴定出近1,000种独特的分类单元,这表明存在着一组“世界性”的沙子微生物。生物地理分析确定了海滩之间的分类-距离关系。另外,具有相似的粒度,有机碳含量,暴露于相似的波浪气候,并具有相同程度的人为影响的沙子往往具有相似的微生物群落。柱实验确定了很容易通过海水渗透到不饱和潮间带沙中而迁移的微生物。动员微生物的难易程度表明,潮间带的沙子可能代表着细菌的蓄水池,这些细菌在海滩含水层中播种,在那里它们可能参与生物地球化学循环。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号