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Effects of intraspecific diversity on survivorship, growth, and recruitment of the eastern oyster across sites

机译:种内多样性对跨地点东部牡蛎存活,生长和募集的影响

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Intraspecific diversity, particularly of foundation species, can significantly affect population, community, and ecosystem processes. Examining how genetic diversity relates to demographic traits provides a key mechanistic link from genotypic and phenotypic variation of taxa with complex life histories to their population dynamics. We conducted a field experiment to assess how two metrics of intraspecific diversity (cohort diversity, the number of independent juvenile cohorts created from different adult source populations, and genetic relatedness, genetic similarity among individuals within and across cohorts) affect the survivorship, growth, and recruitment of the foundation species Crassostrea virginica. To assess the effects of both cohort diversity and genetic relatedness on oyster demographic traits under different environmental conditions, we manipulated juvenile oyster diversity and predator exposure (presence/absence of a cage) at two sites differing in resource availability and predation intensity. Differences in predation pressure between sites over-whelmingly determined post-settlement survivorship of oysters. However, in the absence of predation (i.e., cage treatment), one or both metrics of intraspecific diversity, in addition to site, influenced long-term survivorship, growth, and recruitment. While both cohort diversity and genetic relatedness were negatively associated with long-term survivorship, genetic relatedness alone showed a positive association with growth and cohort diversity alone showed a positive association with recruitment. Thus, our results demonstrate that in the absence of predation, intraspecific diversity can affect multiple demographic traits of a foundation species, but the relative importance of these effects depends on the environmental context. Moreover, the magnitude and direction of these effects vary depending on the diversity metric, cohort diversity or genetic relatedness, suggesting that although they are inversely related in this system, each captures sufficiently different components of intraspecific diversity. Given the global loss of oyster reef habitat and rapid decline in oyster population size, our results are particularly relevant to management and restoration. In addition, aquaculture, which commonly excludes predators during early life history stages, may benefit from incorporation of oyster cohort diversity into standard practice.
机译:种内多样性,特别是基础物种的种内多样性会严重影响人口,社区和生态系统进程。研究遗传多样性与人口特征之间的关系为从具有复杂生活史的生物分类的基因型和表型变异到种群动态提供了关键的机械联系。我们进行了一项野外实验,以评估种内多样性的两个指标(群体多样性,由不同成年来源人群创建的独立青少年群体的数量,以及群体内和群体间个体之间的遗传相似性,遗传相似性)如何影响存活率,生长和招募基础物种Crassostrea virginica。为了评估在不同环境条件下队列多样性和遗传相关性对牡蛎种群特征的影响,我们在资源可利用度和捕捞强度不同的两个地点操纵了少年牡蛎多样性和捕食者接触(有/没有笼子)。地点之间的捕食压力差异以绝对优势决定了牡蛎的沉降后存活率。然而,在没有捕食(即网箱处理)的情况下,除部位外,种内多样性的一项或两项指标影响了长期生存,生长和募集。队列多样性和遗传相关性与长期存活率均呈负相关,仅遗传相关性与生长呈正相关,而队列多样性仅与募集呈正相关。因此,我们的结果表明,在没有捕食的情况下,种内多样性会影响基础物种的多种人口学特征,但这些影响的相对重要性取决于环境。此外,这些影响的大小和方向取决于多样性指标,同类群体多样性或遗传相关性,这表明,尽管它们在该系统中呈负相关,但每种捕获的种内多样性都充分不同。鉴于全球牡蛎礁栖息地的丧失和牡蛎种群规模的迅速减少,我们的结果与管理和恢复特别相关。此外,通常在生活史早期阶段就将捕食者排除在外的水产养殖业可能会受益于将牡蛎种群多样性纳入标准做法。

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