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首页> 外文期刊>Journal of Shellfish Research >SELECTION OF TARGET MUSSEL TISSUE FOR APPLICATION OF CELLULAR ENERGY ALLOCATION AS A PHYSIOLOGICAL BIOMARKER IN NATIVE MUSSELS MYTILUS GALLOPROVINCIALIS (LAMARCK, 1819)
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SELECTION OF TARGET MUSSEL TISSUE FOR APPLICATION OF CELLULAR ENERGY ALLOCATION AS A PHYSIOLOGICAL BIOMARKER IN NATIVE MUSSELS MYTILUS GALLOPROVINCIALIS (LAMARCK, 1819)

机译:在细胞中将能量分配作为生理性生物标志物应用于天然麝香贻贝的研究(Maltilus galloprovinialis)(拉马克,1819年)

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摘要

Three selected mussel tissues (digestive gland, mantle, and gills) were studied to determine which was the most suitable for the potential use of the cellular energy allocation (CEA) methodology in indigenous mussels Mytilus In addition, the applicability of CEA in the assessment of natural stress caused by salinity fluctuations in stratified estuary was tested in selected tissues. It was important to identify the mussel gender to reliably assess the changes in organism energy budget. CEA value was calculated as a ratio between available energy (E) and energy consumption (E). Mantle tissue was under the strongest influence of the differences in protein and lipid content between male and female mussels, and therefore reflected physiological changes in the organism itself, rather than those caused by natural environmental stress. CEA in gills had lower values than in mantle and digestive gland, and was similar at two selected sampling sites, so the changes in CEA caused by natural stress could not be detected in the gill tissue. Greater E, in mussels from the estuarine site than from the coastal site was detected only in the digestive gland tissue, and can probably be attributed to the energetically costly maintenance of osmotic balance. Last, using digestive gland tissue in CEA analysis demonstrated a clear difference between coastal and estuarine sampling sites, providing the measure of the natural stress posed by variations in salinity.
机译:对三种选定的贻贝组织(消化腺,地幔和g)进行了研究,以确定哪种最适合潜在地利用原生贻贝Mytilus中的细胞能量分配(CEA)方法。此外,CEA在评估贻贝中的适用性在选定的组织中测试了由分层河口盐度波动引起的自然应力。重要的是要确定贻贝的性别,以可靠地评估生物能源预算的变化。 CEA值计算为可用能量(E)与能耗(E)之间的比率。地幔组织受到男性和女性贻贝之间蛋白质和脂质含量差异的最大影响,因此反映了生物体本身的生理变化,而不是自然环境胁迫引起的生理变化。 g中的CEA值比地幔和消化腺中的CEA低,并且在两个选定的采样点相似,因此在natural组织中无法检测到自然应力引起的CEA变化。仅在消化腺组织中检测到来自河口部位的贻贝高于沿海部位的贻贝,可能归因于维持能量平衡的能量消耗巨大。最后,在CEA分析中使用消化腺组织证明沿海和河口采样地点之间存在明显差异,从而可以测量盐度变化所引起的自然压力。

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