在多学科鱼类资源分析框架中整合遗传学和寄生虫学方法。

Parassitologia Pub Date : 2007-09-01
R Cimmaruta, S Mattiucci, G Nascetti
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引用次数: 0

摘要

为了评估鱼类种群边界和状态,群体遗传学工具被广泛应用于种群边界识别、基因流量评估和有效种群大小估算等相关参数的评估。此外,越来越多的证据表明,监测遗传多样性水平是检查鱼类种群状况的可靠方法。然而,遗传学并不能回答所有的问题。例如,在高基因流动的物种中,遗传方法可能没有足够的分辨率来确定种群限制,而使用寄生虫作为生物标签可以提供对种群结构的见解。甚至更好的是,所谓的整体办法,同时应用广泛的互补技术,被认为是唯一能够提供鱼类种群的可靠和完整的情况,并解决可持续开发海洋资源的问题的办法。这项工作将介绍一些来自多学科研究的例子,这些研究涉及具有不同生物学特征的商业相关物种:欧洲底栖鳕鱼(Merluccius Merluccius)、小型远洋马鲛鱼(Trachurus Trachurus)和大型远洋剑鱼(Xiphias gladius)。在所有这些案例研究中,结合遗传、寄生虫学和环境数据有助于揭示种群结构的真实模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating genetic and parasitological approaches in the frame of multidisciplinary fish stock analysis.

To assess fish stocks boundaries and state, the tools of population genetics have been widely used, contributing to the evaluation of relevant parameters such as the identification of stock boundaries, the assessment of gene flow and the estimation of effective population size. Also, increasing evidences show that the monitoring of the genetic diversity level is a reliable method to check the status of fish stocks. However, genetics cannot answer all the questions. For example, in high gene flow species the genetic approach could have not enough resolution to identify stock limits, while the use of parasites as biological tags could provide insights into stock structure. Even better, the so-called holistic approach, applying simultaneously a wide range of complementary techniques, is the only one considered able to provide a reliable and complete picture of fish stocks and to address a sustainable exploitation of marine resources. The work will present some examples from multidisciplinary studies concerning commercially relevant species with different biological features: the demersal European hake (Merluccius merluccius), the small pelagic horse mackerel (Trachurus trachurus) and the large pelagic swordfish (Xiphias gladius). In all these case studies merging genetic, parasitological and environmental data helped to reveal the real patterns of stocks structure.

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