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基于 metabarcoding 技术确定的加利福尼亚海流系统中的浮游动物生物地理边界

Zooplankton biogeographic boundaries in the California Current System as determined from metabarcoding.

机构信息

Monterey Bay Aquarium Research Institute, Moss Landing, California, United States of America.

Moss Landing Marine Laboratories, Moss Landing, California, United States of America.

出版信息

PLoS One. 2020 Jun 25;15(6):e0235159. doi: 10.1371/journal.pone.0235159. eCollection 2020.

Abstract

Within the southern California Current ecosystem there are two well-documented breaks in marine community structure at Point Conception and Punta Eugenia. We explored the presence of similar breaks in a diverse zooplankton community through metabarcoding of mixed net tow tissue samples collected during an expedition from Monterey to Baja California in February of 2012. We recovered a high diversity of species as well as patterns of species presence that align with their previously documented ranges in this region. We found a clear break at Punta Eugenia in overall zooplankton community structure, while Point Conception was weakly linked to changes in community structure. We analyzed this dataset through two parallel bioinformatic pipelines to examine the robustness of these results. Our overall conclusions were consistent across both pipelines, however there were differences in species detection. This study illustrates the utility of metabarcoding analysis on mixed tissue samples for recovering known patterns of diversity, as well as allowing elucidation of broad patterns of community differentiation across many groups of organisms.

摘要

在南加利福尼亚海流生态系统中,有两个记录完善的海洋群落结构断裂点,分别是 Point Conception 和 Punta Eugenia。我们通过对 2012 年 2 月从蒙特雷到下加利福尼亚的远征中采集的混合网拖组织样本进行 metabarcoding 分析,探索了在一个多样化的浮游动物群落中是否存在类似的断裂点。我们发现了高度多样化的物种,以及与这些物种在该地区已有记录的范围相一致的存在模式。我们发现,在浮游动物群落结构上,Punta Eugenia 有一个明显的断裂点,而 Point Conception 与群落结构的变化联系较弱。我们通过两个平行的生物信息学管道分析了这个数据集,以检查这些结果的稳健性。我们的总体结论在两个管道中是一致的,但在物种检测方面存在差异。这项研究说明了 metabarcoding 分析混合组织样本在恢复已知多样性模式以及阐明许多生物群体的群落分化广泛模式方面的效用。

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