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首页> 外文期刊>Marine biology >Telomere dynamics in the Sydney rock oyster (Saccostrea glomerata): an investigation into the effects of age, tissue type, location and time of sampling
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Telomere dynamics in the Sydney rock oyster (Saccostrea glomerata): an investigation into the effects of age, tissue type, location and time of sampling

机译:悉尼牡蛎(Saccostrea glomerata)端粒动力学:对年龄,组织类型,采样位置和时间的影响的调查

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摘要

Telomere length has been purported as a bio-marker for age and could offer a non-lethal method for determining the age of wild-caught individuals. Molluscs, including oysters and abalone, are the basis of important fisheries globally and have been problematic to accurately age. To determine whether telomere length could provide an alternative means of ageing molluscs, we evaluated the relationship between telomere length and age using the commercially important Sydney rock oyster (Saccostrea glomerata). Telomere lengths were estimated from tissues of known age individuals from different age classes, locations and at different sampling times. Telomere length tended to decrease with age only in young oysters less than 18 months old, but no decrease was observed in older oysters aged 2-4 years. Regional and temporal differences in telomere attrition rates were also observed. The relationship between telomere length and age was weak, however, with individuals of identical age varying significantly in their telomere length making it an imprecise age biomarker in oysters.
机译:端粒长度据称是年龄的生物标记,可以为确定野外捕获个体的年龄提供一种非致命的方法。软体动物,包括牡蛎和鲍鱼,是全球重要渔业的基础,一直存在准确成年的问题。为了确定端粒长度是否可以提供一种替代软体动物老化的方法,我们使用了商业上重要的悉尼牡蛎(Saccostrea glomerata)评估了端粒长度与年龄之间的关系。端粒长度是根据不同年龄类别,位置和不同采样时间的已知年龄个体的组织估算的。仅在小于18个月大的牡蛎中,端粒长度倾向于随着年龄的增长而减少,而在2-4岁的牡蛎中未观察到端粒长度的减少。还观察到端粒损耗率的区域和时间差异。然而,端粒长度与年龄之间的关系较弱,端粒长度相同的个体端粒长度差异很大,这使其成为牡蛎中不精确的年龄生物标记。

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  • 来源
    《Marine biology》 |2012年第1期|p.77-86|共10页
  • 作者单位

    Molecular Fisheries Laboratory, Agri-Science Queensland, Department of Employment, Economic Development and Innovation, The University of Queensland, Level 3 Ritchie Building (64A C-Wing), Research Road, Brisbane 4067, Australia;

    Sustainable Fisheries Programme, Agri-Science Queensland, Department of Employment, Economic Development and Innovation, Southern Fisheries Centre, 13 Beach Rd, PO Box 76, Deception Bay, QLD 4508, Australia;

    Industry and Investment NSW, Cronulla Fisheries Research Centre of Excellence, PO Box 21, Cronulla, NSW 2230, Australia;

    Tasmanian Aquaculture and Fisheries Institute, University of Tasmania, Private Bag 49, Hobart 7001, Australia;

    School of Biological Sciences, The University of Queensland, St Lucia, QLD 4072, Australia;

    Molecular Fisheries Laboratory, Agri-Science Queensland, Department of Employment, Economic Development and Innovation, The University of Queensland, Level 3 Ritchie Building (64A C-Wing), Research Road, Brisbane 4067, Australia;

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