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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The crossover from microscopy to genes in marine diversity: from species to assemblages in marine pelagic copepods
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The crossover from microscopy to genes in marine diversity: from species to assemblages in marine pelagic copepods

机译:从微观检查到海洋多样性的基因的交叉:从海洋骨质癌中的物种到组合中

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摘要

An accurate identification of species and communities is a prerequisite for analysing and recording biodiversity and community shifts. In the context of marine biodiversity conservation and management, this review outlines past, present and forward-looking perspectives on identifying and recording planktonic diversity by illustrating the transition from traditional species identification based on morphological diagnostic characters to full molecular genetic identification of marine assemblages. In this process, the article presents the methodological advancements by discussing progress and critical aspects of the crossover from traditional to novel and future molecular genetic identifications and it outlines the advantages of integrative approaches using the strengths of both morphological and molecular techniques to identify species and assemblages. We demonstrate this process of identifying and recording marine biodiversity on pelagic copepods as model taxon. Copepods are known for their high taxonomic and ecological diversity and comprise a huge variety of behaviours, forms and life histories, making them a highly interesting and well-studied group in terms of biodiversity and ecosystem functioning. Furthermore, their short life cycles and rapid responses to changing environments make them good indicators and core research components for ecosystem health and status in the light of environmental change. This article is part of the theme issue 'Integrative research perspectives on marine conservation'.
机译:准确识别物种和群落是分析和记录生物多样性和群落变化的先决条件。在海洋生物多样性保护和管理的背景下,本综述概述了识别和记录浮游生物多样性的过去、现在和前瞻性观点,阐述了从基于形态学诊断特征的传统物种识别到海洋组合的全分子遗传识别的转变。在这一过程中,本文通过讨论从传统到新型和未来分子遗传鉴定的交叉进展和关键方面,介绍了方法学进展,并概述了综合利用形态学和分子技术的优势来鉴定物种和组合的优势。我们展示了这种识别和记录海洋生物多样性的过程,这些海洋生物多样性以中上层桡足类为模式分类单元。桡足类以其高度的分类学和生态多样性而闻名,包括各种各样的行为、形态和生活史,这使它们在生物多样性和生态系统功能方面成为一个非常有趣和研究充分的群体。此外,它们的生命周期短,对不断变化的环境反应迅速,这使它们成为环境变化下生态系统健康和状态的良好指标和核心研究组成部分。本文是“海洋保护综合研究展望”主题的一部分。

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