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Identifying the key biophysical drivers connectivity outcomes and metapopulation consequences of larval dispersal in the sea

机译:识别海洋中幼虫扩散的关键生物物理驱动力连通性结果和后代后果

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摘要

BackgroundPopulation connectivity, which is essential for the persistence of benthic marine metapopulations, depends on how life history traits and the environment interact to influence larval production, dispersal and survival. Although we have made significant advances in our understanding of the spatial and temporal dynamics of these individual processes, developing an approach that integrates the entire population connectivity process from reproduction, through dispersal, and to the recruitment of individuals has been difficult.We present a population connectivity modelling framework and diagnostic approach for quantifying the impact of i) life histories, ii) demographics, iii) larval dispersal, and iv) the physical seascape, on the structure of connectivity and metapopulation dynamics. We illustrate this approach using the subtidal rocky reef ecosystem of Port Phillip Bay, were we provide a broadly-applicable framework of population connectivity and quantitative methodology for evaluating the relative importance of individual factors in determining local and system outcomes.
机译:背景种群连通性对底栖海洋种群的持久存在至关重要,它取决于生活史特征和环境如何相互作用以影响幼体的生产,传播和生存。尽管我们在理解这些个体过程的时空动态方面取得了重大进展,但要开发一种方法来整合从繁殖,传播到个体募集的整个种群连通性过程仍然很困难。连接性建模框架和诊断方法,用于量化以下方面的影响:i)生活史,ii)人口统计信息,iii)幼虫扩散和iv)物理海景对连接性和种群动态的结构的影响。我们使用菲利普港湾的潮下礁石生态系统说明了这种方法,我们是否提供了广泛适用的人口连通性框架和定量方法,用于评估在确定本地和系统结果中各个因素的相对重要性。

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