首页> 外文学位 >The regional population variability and larval connectivity of mytilid mussels: Conserving the populations of Cabrillo National Monument (San Diego, California, United States of America).
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The regional population variability and larval connectivity of mytilid mussels: Conserving the populations of Cabrillo National Monument (San Diego, California, United States of America).

机译:贻贝贻贝的区域种群变异性和幼体连通性:保护卡布里洛国家历史文物的种群(美国加利福尼亚州圣地亚哥)。

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摘要

To evaluate the decline of mussels (Mytilus californianus and M. galloprovincialis) in a small marine reserve (Cabrillo National Monument, CABR), the regional variability and larval population connectivity of mussels in southern California were examined. Comparisons of CABR monitoring data for mussel cover with those from 46 sites across 500 km of southern California coastline by the Multi-Agency Rocky Intertidal Network indicated that CABR mussel declines are a local phenomenon. Repeated spatial autocorrelation analysis demonstrated that regional mussel populations are structured by patchy and noisy local dynamics superimposed on occasional events much larger in temporal and spatial scale, such as large storms.; There is mounting evidence that the lack of recovery of mussels at CABR is related to low recruitment levels. The degree of larval connectivity among marine populations is a poorly understood and crucial piece of information for ecological, evolutionary, and conservation biologists. While direct determination of larval trajectories has been difficult for most marine invertebrate larvae, promise is offered by elemental fingerprinting, using geographically-unique chemical signatures in the developing hard parts of animals as a tracking tool. After validation using juvenile shell chemistry, elemental fingerprinting was used to determine natal origins of mussel juveniles collected throughout San Diego County. Mussel larvae were cultured in situ for one week at thirteen sites throughout San Diego County and their shells were analyzed. These reference chemical signatures were compared to larval shells retained on early mussel settlers from the same sites and time period, in order to predict regions of natal origin. Connectivity patterns for both species were compared to four general models of larval replenishment. Based on May 2003 analyses, most M. californianus originated from a single northern open coast region and M. galloprovincialis originated from a larger number of sources in open coast (north and south) and bay sites. Self-seeding was found to occur within natal regions (30 km extent). This work generates a number of important questions about how larval ecology interacts with circulation to drive metapopulation dynamics. This study greatly expands our understanding of local mussel population connectivity, and provides one of the first direct explorations of invertebrate connectivity.
机译:为了评估小型海洋保护区(Cabrillo国家历史文物,CABR)中贻贝(Mytilus californianus和M. galloprovincialis)的下降,研究了南加州贻贝的区域变异性和幼虫种群连通性。通过多机构岩石潮间网比较CABR贻贝覆盖率监测数据与加利福尼亚南部海岸线500公里范围内46个站点的贻贝覆盖率数据表明,CABR贻贝下降是局部现象。重复的空间自相关分析表明,区域贻贝种群由斑驳的,嘈杂的局部动力学构成,这些动力学叠加在时空范围较大的偶发事件上,例如大风暴。越来越多的证据表明,CABR贻贝缺乏回收与低招聘水平有关。对于生态,进化和保护生物学家来说,海洋种群之间的幼虫连通程度是一个知之甚少的关键信息。对于大多数海洋无脊椎动物幼体而言,虽然很难直接确定幼虫的轨迹,但通过在动物的硬体发育过程中采用独特的地理化学标记作为追踪工具,可以通过元素指纹法提供希望。在使用少年贝壳化学方法进行验证后,使用元素指纹法确定整个圣地亚哥县收集的贻贝少年的出生起源。贻贝幼虫在圣地亚哥县的13个地点就地培养了一周,并对其壳进行了分析。将这些参考化学特征与保留在同一地点和相同时期的早期贻贝定居者上的幼虫壳进行比较,以预测出生地。将这两个物种的连通性模式与四个一般的幼体补给模型进行了比较。根据2003年5月的分析,大多数加州分枝杆菌起源于单个北部开放海岸地区,而加洛斯分枝杆菌则起源于开放海岸(北部和南部)和海湾地区的大量来源。发现自发发生在出生地区(30 km范围内)。这项工作产生了许多有关幼虫生态系统如何与循环相互作用以驱动种群动态的重要问题。这项研究极大地扩展了我们对当地贻贝种群连通性的理解,并提供了无脊椎动物连通性的首批直接探索之一。

著录项

  • 作者

    Becker, Bonnie J.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Biology Oceanography.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 241 p.
  • 总页数 241
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋生物;环境科学基础理论;
  • 关键词

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