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基于 DNA 和 eDNA 的追踪技术对北非尖齿胡鲶 Clarias gariepinus 的研究。

DNA and eDNA-based tracking of the North African sharptooth catfish Clarias gariepinus.

机构信息

Genetic Engineering and Molecular Biology Division, Department of Zoology, Faculty of Science, Menoufia University, 32511, Shebin El-Kom, Menoufia, Egypt.

Physiology Department, Faculty of Veterinary Medicine, Sadat City University, Sadat City, Menoufia, Egypt.

出版信息

Mol Cell Probes. 2020 Jun;51:101535. doi: 10.1016/j.mcp.2020.101535. Epub 2020 Feb 20.

Abstract

The African sharptooth catfish, Clarias gariepinus, contributes much to the River Nile ecosystem by its high omnivorosity, sturdiness, growth rates, and fecundity. It was globally appreciated as a key fluvial aquaculture species. Yet, it is also one of the top world freshwater aliens. Monitoring the genetic diversity of different economically and ecologically important species as well as development of markers that aid their tracing and abundance are fundamental. This is chiefly due to the growing international threats of environmental pollution, reduction, and loss of biodiversity. Herein, the genetic diversity of C. gariepinus along the River Nile in Egypt was assessed through sequencing of the mitochondrial cytochrome oxidase subunit I (COI). Also, a qPCR assay based on C. gariepinus 16srDNA was developed to assess the species abundance through environmental water DNA samples (eDNA). The results showed low genetic diversity of that species in Egypt. Moreover, its populations exhibited high rates of fixation. Testing its eDNA-based marker resulted in an unambiguous quantitative trend in situ, in agreement with reports of local fishermen. These eDNA signals were strong at least 1 Km upstream to the initial sampling areas, even where no C. gariepinus fishing activities are carried out. This possibly indicated a degree of homogenous species-abundance in each of the studied areas. Finally, the results identified a need for better conservation strategies for C. gariepinus, since its low diversity in the Egyptian River Nile may represent a threat against its persistence under the continuously changing environmental conditions. Moreover, using non-invasive sampling methods, e.g. based on aquatic eDNA quantification, can aid much the detection of areas of abundance of C. gariepinus, especially for both the economic importance it contributes and the invasive power it possesses.

摘要

非洲尖齿锯鳐,又称尼罗河尖齿锯鳐,因其高度的杂食性、强壮的体格、快速的生长速度和高繁殖力,对尼罗河生态系统做出了巨大贡献。它是全球重要的河流水产养殖品种之一。然而,它也是世界上顶级的淡水外来入侵物种之一。监测不同具有经济和生态重要性的物种的遗传多样性,以及开发有助于追踪和估算其丰度的标记物,是至关重要的。这主要是由于全球环境受到污染、生物多样性减少和丧失的威胁日益增加。在此,通过对线粒体细胞色素氧化酶亚基 I(COI)进行测序,评估了埃及尼罗河流域的 C. gariepinus 遗传多样性。同时,还开发了一种基于 C. gariepinus 16srDNA 的 qPCR 检测方法,通过环境水样 DNA 样本(eDNA)来评估该物种的丰度。结果表明,埃及的该物种遗传多样性较低,其种群存在较高的固定化率。对其基于 eDNA 的标记物进行测试,结果与当地渔民的报告一致,在现场产生了明确的定量趋势。这些 eDNA 信号在上游至少 1 公里处仍然很强,即使在没有进行 C. gariepinus 捕捞活动的地方也是如此。这可能表明,在每个研究区域内,该物种的丰度都存在一定程度的均匀性。最后,结果表明需要为 C. gariepinus 制定更好的保护策略,因为其在埃及尼罗河流域的遗传多样性较低,可能对其在不断变化的环境条件下的生存构成威胁。此外,使用非侵入性采样方法,例如基于水生 eDNA 定量的方法,可以更好地检测到 C. gariepinus 的丰度区域,尤其是考虑到它对经济的重要性和入侵性。

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