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Physiological and biochemical responses of different shell color strains of Manila clam to low salinity challenges

机译:Manila Clam不同壳体色菌株对低盐度挑战的生理和生化反应

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摘要

Salinity is one of the important factors affecting geographic distribution, reproduction and physiological processes of marine and estuarine organisms. In this study, the effects of different salinity on the physiological and biochemical response were evaluated in three shell color strains and wild population of Ruditapes philippinarum by measuring superoxide dismutase (SOD), catalase (CAT), and α-amylase enzyme activity. With decreasing salinity, the SOD activity of wild clams, Zebra strain and White zebra strain increased firstly and in wild clam it decrease later, while the SOD activity of white clams firstly decreased and then increased. With decreasing salinity, the CAT activity of wild clams decreased first and then increased, while the zebra clam and white zebra clams increased first then decreased and white clams decreased The amylase in different strains of clams showed the same trend with decreasing first and then increased. The levels of amylase activities firstly decreased and then increased with the decrease of salinity in Manila clams. A similar trend of amylase activities were observed in different shell color strains and wild population of Manila clam. Our results may be used to optimize the salinity conditions for optimal growth and survival of R. philippinarum and to provide basic information for aquaculture management of this economically important bivalve species.
机译:盐度是影响海洋和河口生物的地理分布,繁殖和生理过程的重要因素之一。在这项研究中,通过测量超氧化物歧化酶(SOD),过氧化氢酶和α-淀粉酶活性,在三种壳颜色菌株和Ruditapes菲律宾野生群中评价不同盐度对生理和生化反应的影响。随着盐度的降低,野生蛤蜊,斑马菌株和白色斑马菌株的SOD活性首先增加,并且在野生蛤蜊中,它后来减少,而白色蛤的SOD活性首先降低,然后增加。随着盐度的降低,野生蛤的猫活性首先下降,然后增加,而斑马蛤和白色斑马蛤最先下降和白色蛤蜊在不同菌株中降低淀粉酶的淀粉酶表现出相同的趋势,并且首先下降,然后增加趋势。淀粉酶活性的水平首先下降,然后随着马尼拉蛤的盐度降低而增加。在不同的壳体颜色菌株和马尼拉蛤的野生群中观察到淀粉酶活性的类似趋势。我们的成果可用于优化R.菲律宾的最佳生长和生存的盐度条件,并为这种经济上重要的双子族物种提供水产养殖管理的基本信息。

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