Unraveling Community Potential Interactions by Environmental DNA in the Hong Kong Coastal Waters

Q1 Agricultural and Biological Sciences
Sangwook Scott Lee, Zhimeng Xu, Yingdong Li, Xiaodong Zhang, Jinping Cheng, Hongbin Liu
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Abstract

Traditional approaches for studying potential interactions in marine ecosystems often struggle to fully capture all taxa in a community, especially rare species. This issue is particularly challenging in coastal waters with high biodiversity and spatiotemporal dynamics. In this study, we employed environmental DNA (eDNA) metabarcoding, utilizing multiple marker genes, to comprehensively investigate interspecific interactions across various domains in the subtropical coastal waters of Hong Kong. The southern and eastern regions of Hong Kong waters exhibit distinct environmental seasonality, and our investigation focused on comparing the potential interaction networks and the keystone taxa between these two regions. The putative species interaction networks across various groups (i.e., bacteria, protists, and metazoans) were revealed by using weighted correlation network analysis (WGCNA). Our results showed that primary consumers, mainly dinoflagellates and ciliates, were the dominant actors within the interaction networks, although their distributions varied between the two regions. Bacterial taxa from the Pseudomonadota groups primarily constituted saprobes in the southern region, while exhibiting an even distribution in the eastern region. The interaction network in the southern region was larger but less stable compared to the eastern region. This could be attributed to the stronger responses of keystone taxa to environmental variations and the relatively higher number of connectors (e.g., Akashiwo and Protoperidinium within Dinophyceae) in the eastern region. Our findings highlight the versatility of eDNA metabarcoding for studying potential species interactions, providing critical insights into ecosystem structure and stability, and offering suggestions for marine biodiversity conservation.

Abstract Image

通过香港沿岸水域的环境 DNA 揭示群落之间的潜在相互作用
研究海洋生态系统潜在相互作用的传统方法往往难以完全捕捉到群落中的所有类群,尤其是稀有物种。在具有高度生物多样性和时空动态变化的沿岸水域,这一问题尤其具有挑战性。在这项研究中,我们采用环境 DNA(eDNA)代谢编码方法,利用多种标记基因,对香港亚热带沿岸水域不同领域的种间相互作用进行了全面调查。香港水域的南部和东部区域呈现出不同的环境季节性,我们的调查重点是比较这两个区域的潜在相互作用网络和关键类群。我们利用加权相关网络分析(WGCNA)揭示了不同类群(即细菌、原生动物和变态生物)之间的潜在物种相互作用网络。结果表明,初级消费者(主要是甲藻和纤毛虫)是相互作用网络中的主要参与者,尽管它们在两个区域间的分布有所不同。假单胞菌类群的细菌类群在南部地区主要构成溶菌体,而在东部地区则分布均匀。与东部地区相比,南部地区的相互作用网络更大,但稳定性较差。这可能是由于关键类群对环境变化的反应较强,以及东部地区连接体的数量相对较多(例如,鼎足目中的赤石窝和原尾柱虫)。我们的研究结果突显了 eDNA 代谢编码在研究潜在物种相互作用方面的多功能性,为生态系统的结构和稳定性提供了重要见解,并为海洋生物多样性保护提供了建议。
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来源期刊
Environmental DNA
Environmental DNA Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
11.00
自引率
0.00%
发文量
99
审稿时长
16 weeks
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