Environmental DNA as a novel tool for monitoring fish community structure and diversity feature in the northern Antarctic Peninsula

IF 2.6 3区 地球科学 Q1 MARINE & FRESHWATER BIOLOGY Estuarine Coastal and Shelf Science Pub Date : 2025-02-01 Epub Date: 2024-12-01 DOI:10.1016/j.ecss.2024.109076
Congcong Wang , Yewei Yu , Facundo Llompart , Zhuang Chen , Yimeng Liu , Guoping Zhu
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Abstract

The northern Antarctic Peninsula (NAP), one of the fastest warming area around the Southern Ocean, hosts a large variety of endemic fish and is influenced by complex hydrography. However, the dynamics of fish diversity kept unclear and without monitoring. Monitoring of environmental DNA (eDNA) is a noninvasive, ecofriendly, and accurate approach for detecting aquatic organisms, including fish. In this study, the fish composition and diversity were detected by high-throughput sequencing of eDNA for the first time in the NAP. Overall, 32 species (1 order, 6 families, and 25 genera) of fishes were detected in the environmental water samples from 18 stations around the NAP, in which number of fish species were similar in the Drake Passage and the northern shelf of the South Shetland Islands (DP-SSIs) and the Bransfield Strait (BS). Most of the fish species were identified in previous Antarctic fish surveys using conventional methods, which supports the applicability of eDNA-based survey. Moreover, Pogonophryne albipinna was detected firstly in the NAP. Among the identified fish species, Champsocephalus gunnari and Notothenia rossii had the highest abundance (45.04% and 27.59%, respectively). There was difference in fish composition between the DP-SSIs and BS stations, although alpha diversity indices did not differ. The dissolved oxygen content and water temperature were the main drivers for the differences in fish species composition between areas. Our results indicated that eDNA could be a rapid and accurate biomonitoring approach for the entire Southern Ocean, particularly in areas with difficult logistics, in the future.

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环境DNA作为监测南极半岛北部鱼类群落结构和多样性特征的新工具
南极半岛北部(NAP)是南大洋周围变暖最快的地区之一,是多种特有鱼类的栖息地,受复杂的水文环境影响。然而,鱼类多样性的动态仍然不清楚,没有监测。环境DNA (eDNA)监测是一种无创、生态友好、准确的检测水生生物(包括鱼类)的方法。本研究首次在NAP中利用高通量测序技术检测了鱼类的组成和多样性。在NAP周围18个站点的环境水样中共检测到鱼类32种(1目6科25属),其中德雷克海峡、南设得兰群岛北部陆架(DP-SSIs)和布兰斯菲尔德海峡(BS)的鱼类种类数量相似。大多数鱼类是在以往的南极鱼类调查中使用常规方法确定的,这支持了基于edna的调查的适用性。此外,在NAP中首先检测到白缕竹碱(Pogonophryne albipinna)。在已鉴定的鱼类中,贡纳利Champsocephalus gunnari和罗氏Notothenia rossii的丰度最高,分别为45.04%和27.59%。dp - ssi和BS站点的鱼类组成存在差异,但α多样性指数没有差异。溶解氧含量和水温是区域间鱼类组成差异的主要驱动因素。我们的研究结果表明,eDNA在未来可能成为整个南大洋,特别是在物流困难的地区快速准确的生物监测方法。
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来源期刊
CiteScore
5.60
自引率
7.10%
发文量
374
审稿时长
9 months
期刊介绍: Estuarine, Coastal and Shelf Science is an international multidisciplinary journal devoted to the analysis of saline water phenomena ranging from the outer edge of the continental shelf to the upper limits of the tidal zone. The journal provides a unique forum, unifying the multidisciplinary approaches to the study of the oceanography of estuaries, coastal zones, and continental shelf seas. It features original research papers, review papers and short communications treating such disciplines as zoology, botany, geology, sedimentology, physical oceanography.
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