利用水下无人机和环境 DNA 分析研究人工鱼礁中鱼类群落的精细空间分布情况

IF 2.2 3区 环境科学与生态学 Q2 ECOLOGY Marine Ecology Progress Series Pub Date : 2024-07-25 DOI:10.3354/meps14631
Yuko Miyajima-Taga, Masaaki Sato, Kuniaki Oi, Naoki Furuichi, Nariaki Inoue
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引用次数: 0

摘要

摘要:尽管人工鱼礁(AR)效果评估有助于规划高层人工鱼礁的安装及其管理,但很少有研究对其进行定量调查。利用水下无人机垂直横断面记录和环境 DNA (eDNA) 代谢编码,对日本中部馆山湾的两个高层人工鱼礁(分别高 20 米和 30 米,水深 62 米和 72 米)的水流场和垂直结构进行了评估,从而确定了人工鱼礁中鱼类的精细二维分布。通过视频调查发现的物种(21 个类群被确定为种,1 个类群被确定为属)少于通过 eDNA 分析发现的物种(103 个种和 6 个属),尤其是中上层鱼类、小型鱼类和隐蔽鱼类。视频调查显示,底栖鱼类在距 AR 表面 20 米范围内随着水平距离的减小而增加,AR 上游的鱼类丰富度和总密度明显较高。相反,鱼类 eDNA 的浓度显示出不同的模式,AR 下游的浓度明显更高。通过视频调查,丰富度在水平 AR 表面(如礁顶)达到峰值,但优势物种的密度在底部附近达到峰值。相比之下,eDNA 分析表明,礁顶的主要物种丰富度较低,eDNA 浓度较高。这种差异可能是由于 eDNA 运输或其特定行为或浮力的影响。视频调查从物种形态上揭示了 4 个物种的生长阶段和性别信息,这是 eDNA 分析无法实现的。这项研究表明,每种评估方法的优势可以互补。
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Fine-scale spatial distribution of a fish community in artificial reefs investigated using an underwater drone and environmental DNA analysis
ABSTRACT: Although artificial reef (AR) effect evaluation is useful for planning the installation of high-rise ARs and their management, few studies have investigated them quantitatively. The fine-scale 2-dimensional fish distribution in ARs was estimated regarding current fields and vertical structures of 2 high-rise ARs (20 and 30 m high at 62 and 72 m depths, respectively) in Tateyama Bay, central Japan, using underwater drone recordings with vertical line transects and environmental DNA (eDNA) metabarcoding. The species detected by video surveys (21 taxa were identified to species, and 1 to genus) were fewer than by eDNA analysis (103 species and 6 genera), especially for pelagic, small-sized, and cryptic fish. Video surveys revealed that demersal fish increased with decreasing horizontal distance from the AR surface within 20 m, and the richness and total fish density were significantly higher upstream of the ARs. Conversely, the fish eDNA concentration showed different patterns, with significantly higher concentrations downstream of the ARs. The richness peaked at horizontal AR surfaces (e.g. reef top), but density of the dominant species peaked near the bottom by video survey. In comparison, eDNA analysis indicated lower richness and higher eDNA concentration of the dominant species at the reef top. Such discrepancies may be explained by the influence of eDNA transport or its specific behavior or buoyancy. Video surveys revealed the growth stage and sex information of 4 species from their morphology, which is not possible using eDNA analysis. This study shows that the advantages of each evaluation method can complement each other.
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来源期刊
Marine Ecology Progress Series
Marine Ecology Progress Series 环境科学-海洋学
CiteScore
5.30
自引率
8.00%
发文量
238
审稿时长
3 months
期刊介绍: The leading journal in its field, MEPS covers all aspects of marine ecology, fundamental and applied. Topics covered include microbiology, botany, zoology, ecosystem research, biological oceanography, ecological aspects of fisheries and aquaculture, pollution, environmental protection, conservation, and resource management.
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