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日本伊豆半岛周围双滴虫群落的结构比较。

Structural Comparison of Diplonemid Communities around the Izu Peninsula, Japan.

机构信息

Deep-Sea Biodiversity Research Group, Research Institute for Global Change, Japan Agency for Marine-Earth Science and Technology (JAMSTEC).

出版信息

Microbes Environ. 2021;36(2). doi: 10.1264/jsme2.ME21012.

Abstract

Diplonemea (diplonemids) is one of the most abundant and species-rich protist groups in marine environments; however, their community structures among local and seasonal samples have not yet been compared. In the present study, we analyzed four diplonemid community structures around the Izu Peninsula, Japan using barcode sequences amplified from environmental DNA. These sequences and the results of statistical analyses indicated that communities at the same site were more similar to each other than those in the same season. Environmental variables were also measured, and their influence on diplonemid community structures was examined. Salinity, electrical conductivity, and temperature, and their correlated variables, appeared to influence the structures of diplonemid communities, which was consistent with previous findings; however, since the results obtained did not reach statistical significance, further studies are required. A comparison of each diplonemid community indicated that some lineages were unique to specific samples, while others were consistently detected in all samples. Members of the latter type are cosmopolitan candidates and may be better adapted to the environments of the studied area. Future studies that focus on the more adaptive members will provide a more detailed understanding of the mechanisms by which diplonemids are widely distributed in marine environments and will facilitate their utilization as indicator organisms to monitor environmental changes.

摘要

双滴虫门(diplonemids)是海洋环境中最丰富和物种最丰富的原生动物群之一;然而,它们在局部和季节性样本中的群落结构尚未进行比较。在本研究中,我们使用从环境 DNA 扩增的条形码序列分析了日本伊豆半岛周围的四个双滴虫群落结构。这些序列和统计分析的结果表明,同一地点的群落彼此之间比同一季节的群落更为相似。还测量了环境变量,并检查了它们对双滴虫群落结构的影响。盐度、电导率和温度及其相关变量似乎影响双滴虫群落的结构,这与先前的发现一致;然而,由于获得的结果没有达到统计学意义,因此需要进一步的研究。对每个双滴虫群落的比较表明,一些谱系是特定样本特有的,而另一些则始终存在于所有样本中。后一种类型的成员是世界性的候选者,可能更适应研究区域的环境。未来专注于更具适应性成员的研究将更详细地了解双滴虫在海洋环境中广泛分布的机制,并有助于将其用作监测环境变化的指示生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e006/8209450/c1028d087aae/36_21012-g001.jpg

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