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环境 DNA 宏条形码技术揭示了环境异质性对东海近海海域微型浮游真核生物的影响。

Environmental DNA metabarcoding reveals the influence of environmental heterogeneity on microeukaryotic plankton in the offshore waters of East China Sea.

机构信息

College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266000, China; Chinese Research Academy of Environmental Sciences, Beijing, 100000, China.

Chinese Research Academy of Environmental Sciences, Beijing, 100000, China.

出版信息

Environ Res. 2024 Dec 1;262(Pt 2):119921. doi: 10.1016/j.envres.2024.119921. Epub 2024 Sep 2.

DOI:10.1016/j.envres.2024.119921
PMID:39233035
Abstract

Microeukaryotic plankton are essential to marine food webs and biogeochemical cycles, with coastal seas playing a critical role in aquatic ecosystems. Understanding the diversity of microeukaryotic plankton, deciphering their community structure and succession patterns, and identifying the key factors influencing these dynamics remain central challenges in coastal ecology. In this study, we examine patterns of biodiversity, community structure, and co-occurrence using environmental DNA (eDNA)-based methods. Our results show a linear correlation between α-diversity and distance from the shore, with nutrient-related factors, especially inorganic nitrogen, being the primary determinants of the spatial distribution of plankton communities. Alternation of coastal habitat have shifted the succession patterns of coastal eukaryotic plankton communities from stochastic to deterministic processes. Additionally, our observations indicate that the topology and structure of eukaryotic plankton symbiotic patterns and networks are significantly influenced by environmental heterogeneity such as nutrients, which increase the vulnerability and decrease the stability of offshore ecological networks. Overall, our study demonstrates that the distribution of microeukaryotic plankton communities is influenced by factors related to environmental heterogeneity.

摘要

微型真核浮游生物对于海洋食物网和生物地球化学循环至关重要,沿海海域在水生生态系统中起着关键作用。了解微型真核浮游生物的多样性,揭示其群落结构和演替模式,并确定影响这些动态的关键因素,仍然是沿海生态学的核心挑战。在这项研究中,我们使用基于环境 DNA(eDNA)的方法研究生物多样性、群落结构和共生关系的模式。我们的结果表明,α多样性与离海岸的距离呈线性相关,与营养有关的因素,特别是无机氮,是浮游生物群落空间分布的主要决定因素。沿海生境的交替已经将沿海真核浮游生物群落的演替模式从随机过程转变为确定性过程。此外,我们的观察表明,真核浮游生物共生模式和网络的拓扑结构和结构受到营养等环境异质性的显著影响,这增加了近海生态网络的脆弱性并降低了其稳定性。总的来说,我们的研究表明,微型真核浮游生物群落的分布受到与环境异质性有关的因素的影响。

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