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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Variation of specific proteins, mitochondria and fatty acid composition in gill of Scylla serrata (Crustacea, Decapoda) under low temperature adaptation
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Variation of specific proteins, mitochondria and fatty acid composition in gill of Scylla serrata (Crustacea, Decapoda) under low temperature adaptation

机译:低温适应下锯缘青蟹(甲壳纲,十足纲)g中特定蛋白质,线粒体和脂肪酸组成的变化

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The mud crab Scylla serrata is an important commercial crustacean inhabiting estuarine water along the coast of southeast China. Metabolism in the gill is affected continuously by fluctuating water temperature and, therefore, the ability to cope with temperature change is essential to maintain physiological function. This experiment was conducted to help understand the mechanism of low temperature adaptation in S. serrata gill. In this study, 40 healthy juvenile male S. serrata from the same broodstock were grouped randomly into four groups, which were kept at 5 ℃, 10 ℃, 15 ℃ and 27 ℃, with the same feeding regime during a 3-week adaptation period. Two-dimensional electrophoresis of the proteome was conducted to separate the specific proteins responsible for low temperature adaptation. Variations in the mitochondria were observed using transmission electron microscopy, and fatty acid composition was determined using gas chromatography. The results showed that different numbers of specific proteins were expressed under different low temperature adaptation, with more expressed at 5 ℃ and 10 ℃ than at 15 ℃. Mitochondrial morphology also varied under different low temperature adaptation, but there was no linear relationship between microbial density and adaptation temperature. The composition of different fatty acids in the gill varied considerably with adaptation temperature, but elongation of the carbon chain and transition from fatty acids occurred at lower temperatures. Thus, changes in the specific proteins, mitochondria and fatty acid composition of the gill were the positive effects of low temperature on metabolism, leading to improved adaptation ability in S. serrata.
机译:泥蟹Scyla serrata是一种重要的商业甲壳类动物,栖息于中国东南沿海的河口水。 water的代谢受到水温波动的持续影响,因此,应对温度变化的能力对于维持生理功能至关重要。进行该实验是为了帮助了解锯齿沙门氏菌g低温适应的机制。在这项研究中,将来自同一亲鱼的40例健康的幼年锯齿鲈(S. serrata)随机分为四组,分别在5℃,10℃,15℃和27℃下饲养,并在3周的适应期内采用相同的饲养方式。进行蛋白质组的二维电泳以分离负责低温适应的特定蛋白质。使用透射电子显微镜观察线粒体的变化,并使用气相色谱法测定脂肪酸组成。结果表明,在不同的低温适应条件下,表达不同数量的特异性蛋白,在5℃和10℃下表达的蛋白质多于15℃。在不同的低温适应条件下,线粒体形态也发生变化,但微生物密度与适应温度之间没有线性关系。 ill中不同脂肪酸的组成随适应温度的不同而有很大差异,但碳链的延长和脂肪酸的转变是在较低温度下发生的。因此,changes的特定蛋白质,线粒体和脂肪酸组成的变化是低温对新陈代谢的积极影响,从而导致锯齿沙门氏菌的适应能力提高。

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