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Assessment of multiple stocking strategies of striped bass in the Ashley River, South Carolina using multiplexed microsatellite panels.

机译:使用多重微卫星面板评估南卡罗来纳州阿什利河条纹鲈鱼的多种放养策略。

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摘要

Striped bass is an important sport and aquaculture species that is commonly stocked throughout the United States. Here we have developed three multiplexed panels that collectively incorporate twelve different established microsatellite loci. All loci were tested for Hardy-Weinberg equilibrium, linkage disequilibrium, Mendelian inheritance, and null alleles in two populations. Loci were comparably polymorphic in two river systems with similar allele size ranges observed. These multiplexed microsatellite panels were then used to assess the efficacy of multiple stocking strategies of striped bass in the Ashley River, South Carolina. Distinct genetic families (offspring from one female x three males) were used in order to distinguish separate treatment groups. Two size classes of striped bass were stocked to determine the best size and/or season for contributing to the population. Phase I (45 mm) fish were stocked in the spring, while phase II (150 mm) fish were stocked in the fall after water temperatures cooled. Separate genetic families of phase II fish were initially reared in freshwater and brackish water to determine if initial rearing salinity affects post-stocking survival. Few phase I fish were recaptured indicating that the treatment group did not survive the initial summer. Phase II fish from both rearing salinities were recaptured throughout a 2.5 year sampling period, suggesting that the Ashley River has sufficient habitat and resources to support a population of striped bass; however, more fish from the brackish water-rearing facility were recaptured during the first year after stocking. This may indicate that there is habitat partitioning by rearing salinity occurring during the first year at large. Additional stocking and expanded monitoring of the population should be conducted to better elucidate these findings.
机译:条纹鲈鱼是重要的体育和水产养殖种类,通常在美国各地都有饲养。在这里,我们开发了三个多路复用面板,它们共同包含了十二个不同的已建立的微卫星基因座。测试了两个基因座中所有基因座的Hardy-Weinberg平衡,连锁不平衡,孟德尔遗传和无效等位基因。在两个河流系统中,基因座的多态性相当,等位基因大小范围相似。然后,将这些多路复用的微卫星面板用于评估南卡罗来纳州阿什利河的条纹鲈鱼多种放养策略的有效性。为了区分不同的治疗组,使用了不同的遗传家族(一个女性x三个男性的后代)。存放了两种尺寸的条纹鲈鱼,以确定对种群有贡献的最佳尺寸和/或季节。水温冷却后,第一阶段(45毫米)鱼在春季放养,而第二阶段(150毫米)鱼在秋季放养。分别在淡水和微咸水中饲养II期鱼的单独遗传家族,以确定最初的饲养盐度是否影响放养后的存活。几乎没有捕获到第一阶段的鱼,这表明治疗组无法在初夏生存。在两个2.5年的采样期内,两种盐度的第二阶段鱼都被重新捕获,这表明阿什利河有足够的栖息地和资源来支持条纹鲈鱼种群。但是,放养后的第一年,又从半咸水饲养场捕获了更多的鱼。这可能表明栖息地分区是通过在整个第一年内增加盐分来实现的。为了更好地阐明这些发现,应该进行更多的种群存储和扩大的人口监测。

著录项

  • 作者单位

    College of Charleston.;

  • 授予单位 College of Charleston.;
  • 学科 Biology Genetics.;Agriculture Fisheries and Aquaculture.
  • 学位 M.S.
  • 年度 2010
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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