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连通性结构影响局部种群动态:在一个大型集合种群系统中的长期实证检验

Connectivity structures local population dynamics: a long-term empirical test in a large metapopulation system.

作者信息

Castorani Max C N, Reed Daniel C, Alberto Filipe, Bell Tom W, Simons Rachel D, Cavanaugh Kyle C, Siegel David A, Raimondi Peter T

出版信息

Ecology. 2015 Dec;96(12):3141-52. doi: 10.1890/15-0283.1.

DOI:10.1890/15-0283.1
PMID:26909421
Abstract

Ecological theory predicts that demographic connectivity structures the dynamics of local populations within metapopulation systems, but empirical support has been constrained by major limitations in data and methodology. We tested this prediction for giant kelp Macrocystis pyrifera, a key habitat-forming species in temperate coastal ecosystems worldwide, in southern California, USA. We combined a long-term (22 years), large-scale (~500 km coastline), high-resolution census of abundance with novel patch delineation methods and an innovative connectivity measure incorporating oceanographic transport and source fecundity. Connectivity strongly predicted local dynamics (well-connected patches had lower probabilities of extinction and higher probabilities of colonization, leading to greater likelihoods of occupancy) but this relationship was mediated by patch size. Moreover, the relationship between connectivity and local population dynamics varied over time, possibly due to temporal variation in oceanographic transport processes. Surprisingly, connectivity had a smaller influence on colonization relative to extinction, possibly because local ecological factors differ greatly between extinct and extant patches. Our results provide the first comprehensive evidence that southern California giant kelp populations function as a metapopulation system, challenging the view that populations of this important foundation species are governed exclusively by self-replenishment.

摘要

生态理论预测,种群统计上的连通性塑造了集合种群系统中局部种群的动态,但实证支持一直受到数据和方法上的重大限制。我们在美国南加州对巨藻(Macrocystis pyrifera)检验了这一预测,巨藻是全球温带沿海生态系统中的一种关键的栖息地形成物种。我们将长期(22年)、大规模(约500公里海岸线)、高分辨率的丰度普查与新颖的斑块划定方法以及一种结合了海洋输运和源繁殖力的创新连通性度量相结合。连通性有力地预测了局部动态(连通性良好的斑块灭绝概率较低,定殖概率较高,导致占据可能性更大),但这种关系由斑块大小介导。此外,连通性与局部种群动态之间的关系随时间变化,可能是由于海洋输运过程的时间变化。令人惊讶的是,连通性对定殖的影响相对于灭绝较小,可能是因为已灭绝斑块和现存斑块之间的局部生态因素差异很大。我们的结果首次提供了全面证据,证明南加州巨藻种群作为一个集合种群系统发挥作用,挑战了这种重要基础物种的种群仅由自我补充所支配的观点。

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