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首页> 外文期刊>Aquaculture Research >Morphological and free amino acid profile variability, as a tool for stock identification among farmed rainbow trout Oncorhynchus mykiss of different origin
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Morphological and free amino acid profile variability, as a tool for stock identification among farmed rainbow trout Oncorhynchus mykiss of different origin

机译:形态学和游离氨基酸配置变异性,作为养殖彩虹鳟鱼的股票识别的工具,不同起源的Mykiss

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As a tool for stock identification the body morphology and the free amino acid (FAA) profile variability were determined among farmed rainbow trout Oncorhynchus mykiss (Walbaum 1792) from different geographical areas throughout Greece, using geometric morphometrics and Reversed Phase-High-Performance Liquid Chromatography. Significant intraspecific body shape variation was detected among the fish stocks of different origin. Canonical Variate Analysis distinguished populations into two groups being consistent to a great extent with a previous population genetics study. General linear models did not support an association of haplotypes and diet with shape. However, shape was significantly correlated with origin, water temperature, geological-chemical-climatic zones, histidine and arginine. Therefore, morphological variation was primarily driven by environmentally induced differences among these zones being the result of phenotypic plasticity. Environmental cues and rearing conditions played the pivotal role in comparison to broodstock origin. Specimens presented different FAA profiles depending on their geographical origin. Principal Component Analysis showed a division between eastern and western Greece which might be owed to the existence of climatic fluctuations affecting the abiotic factors. This combined approach offers an important tool for stock identification thus assisting environmental risk assessments in evaluation of potential ecological effects and fostering research excellence in sustainable aquaculture management.
机译:作为股票识别的工具,在希腊各地的不同地理区域,使用几何形态学仪和反相高效液相色谱法。在不同起源的鱼类储存中检测到显着的内部内体形状变异。规范变异分析在很大程度上与先前的人群遗传学研究相一致地分析群体。一般线性模型不支持单倍型和饮食的关联。然而,形状与原点,水温,地质 - 化学 - 气候区,组氨酸和精氨酸显着相关。因此,形态学变异主要由这些区域之间的环境诱导的差异是表型可塑性的结果。与家庭主义源相比,环境线索和饲养条件起到了关键作用。根据他们的地理来源,标本呈现了不同的FAA配置文件。主要成分分析显示了东部和西部希腊之间的分裂,这可能符合影响非生物因素的气候波动的存在。这种合并方法为股票识别提供了一个重要的工具,从而协助环境风险评估评估潜在的生态效应和促进可持续水产养殖管理的卓越研究。

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