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Growth and myosin heavy chain expression in the white muscle of juvenile walleye (Sander vitreus).

机译:幼年角膜白斑(Sander玻璃体)的白色肌肉中的生长和肌球蛋白重链表达。

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摘要

Walleye are an important recreational and commercial fish species that are distributed over an expansive geographic range across North America. However, its palatable white flesh and appeal to anglers have lead to declines in natural populations throughout Canada and the United States. These declines have prompted the idea that aquaculture may serve as a means of satisfying consumer demands and decreasing pressure on wild stocks. While culture programs exist for walleye, little is known about the growth physiology of walleye in a culture system. The goals of this thesis, therefore, were to develop a molecular marker that could be used to rapidly assess growth in juvenile walleye, and to make improvements to culture practices that will optimize growth.;Next, MyHC mRNA quantification was applied to an aquaculture setting. Feed training is an important bottleneck during juvenile walleye culture that often leads to mortalities and cannibalism. These experiments showed that the brief fasting period during the diet switch from plankton to commercial pellet feed caused a significant decrease in MyHC mRNA levels. Furthermore, the success of feed training in terms of survivorship and growth potential increased significantly for larger fish.;The final section of this thesis examined how acute and chronic temperature exposure impacted MyHC mRNA and protein expression. Results showed that the nature of the heat stress can significantly affect the MyHC response. These findings are important as the temperature stresses induced in these studies are common during the summer months in southern Ontario.;To begin, we examined the relationship between growth and the expression of the myosin heavy chain gene (MyHC) in the white muscle of juvenile walleye. The coding region of MyHC from the fast skeletal muscle of walleye was amplified using a full length cDNA. Growth was then characterized using traditional measurements of growth (length, weight and condition factor), as well as MyHC protein concentration and MyHC mRNA levels. Both MyHC mRNA and protein expression were highly correlated with faster growth in juvenile walleye. Over shorter time scales, the MyHC mRNA marker was sensitive enough to detect impacts of fasting that could not be detected using traditional measurements of growth.
机译:角膜白斑是重要的娱乐和商业鱼类,分布在整个北美地区。但是,其可口的白肉和对垂钓者的吸引力导致加拿大和美国的自然种群减少。这些下降促使人们想到了水产养殖可以作为满足消费者需求和减轻野生种群压力的一种手段。虽然存在针对角膜白斑的培养程序,但对于培养系统中角膜白斑的生长生理知之甚少。因此,本论文的目标是开发一种分子标记物,该分子标记物可用于快速评估幼年角膜白斑的生长,并改进可优化生长的养殖实践。;接下来,将MyHC mRNA定量应用于水产养殖环境。饲料训练是幼年角膜白斑养殖的一个重要瓶颈,常常导致死亡和同类相食。这些实验表明,在饮食从浮游生物转向商业颗粒饲料的短暂禁食期间,MyHC mRNA水平显着下降。此外,就大型鱼类而言,就其存活率和生长潜力而言,饲料培训的成功率显着提高。本论文的最后一部分探讨了急性和慢性温度暴露如何影响MyHC mRNA和蛋白质表达。结果表明,热应激的性质可以显着影响MyHC反应。这些发现很重要,因为在这些研究中引起的温度压力在安大略省南部的夏季很常见。;首先,我们研究了幼年白肌生长与肌球蛋白重链基因(MyHC)表达之间的关系。角膜白斑。使用全长cDNA扩增了来自角膜白斑快速骨骼肌的MyHC的编码区。然后使用传统的生长测量(长度,体重和条件因子)以及MyHC蛋白浓度和MyHC mRNA水平来表征生长。 MyHC mRNA和蛋白质表达均与幼年角膜白斑的更快生长高度相关。在较短的时间范围内,MyHC mRNA标记足够灵敏,可以检测到禁食的影响,而传统的生长测量方法无法检测到禁食的影响。

著录项

  • 作者

    Dhillon, Rashpal Singh.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Biology Animal Physiology.;Agriculture Fisheries and Aquaculture.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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