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首页> 外文期刊>Aquatic Living Resources >Reproductive events and associated reduction in the seawater adaptability of brook charr (Salvelinus fontinalis): evaluation of gill metabolic adjustments
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Reproductive events and associated reduction in the seawater adaptability of brook charr (Salvelinus fontinalis): evaluation of gill metabolic adjustments

机译:生殖活动和相关的布鲁克小鲑(Salvelinus fontinalis)的海水适应性下降:evaluation代谢调节的评估

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We tested the hypothesis that along with gill Na(+)K(+)ATPase activity reduction, branchial energetic metabolism of brook charr (Salvelinus fontinalis) is altered during sexual maturation. Maturing and sterile fish were transferred from freshwater (FW) to seawater (SW). The activity of gill pyruvate kinase (PK), cytochrome C oxidase (COX), citrate synthase (CS) and lactate dehydrogenase (LDH) was measured at different intervals. Following I month in SW, twofold increases in Na(+)K(+)ATPase activity were recorded in all groups, while mean metabolic enzyme activities were sharply reduced (COX: 0.051 +/- 0.029 to 0.036 +/- 0.018; PK: 1.670 +/- 0565 to 1.210 +/- 0.340 LDH: 2.245 +/- 0.690 to 1.642 +/- 0.381 mumol mg(-1) protein min(-1)). Interestingly, during this period, no mortality occurred. After 5 months, comparison of Na(+)K(+)ATPase:CS and Na(+)K(+)ATPase:LDH ratios of mature and sterile fish held either in FW or SW, indicated that the response of Na(+)K(+)ATPase largely exceeds the response of the metabolic enzyme apparatus in hyperosmotic conditions. Hence, the reduced iono-osmoregulatory capacity and higher mortality observed in SW-maturing fish during the reproductive season appears to be mainly attributable to Na(+)K(+)ATPase activity reduction rather than the alteration of gill metabolic capacity, since no concurrent increase of metabolic enzyme activity with Na(+)K(+)ATPase activity occurred.
机译:我们测试了假说,随着g Na(+)K(+)ATPase活性降低,性成熟期间溪char(Salvelinus fontinalis)的分支能量代谢发生改变。成熟和无菌鱼从淡水(FW)转移到海水(SW)。在不同的时间间隔测量g丙酮酸激酶(PK),细胞色素C氧化酶(COX),柠檬酸合酶(CS)和乳酸脱氢酶(LDH)的活性。在西南部一个月后,所有组的Na(+)K(+)ATPase活性均增加了两倍,而平均代谢酶活性则急剧降低(COX:0.051 +/- 0.029至0.036 +/- 0.018; PK: 1.670 +/- 0565至1.210 +/- 0.340 LDH:2.245 +/- 0.690至1.642 +/- 0.381 mumol mg(-1)蛋白min(-1))。有趣的是,在此期间,没有发生死亡。 5个月后,比较FW或SW中成熟鱼和无菌鱼的Na(+)K(+)ATPase:CS和Na(+)K(+)ATPase:LDH比值,表明Na(+在高渗条件下,K(+)ATPase大大超过了代谢酶装置的响应。因此,在繁殖季节SW成熟的鱼中观察到的降低的离子渗透调节能力和较高的死亡率似乎主要归因于Na(+)K(+)ATPase活性的降低,而不是of代谢能力的改变,因为没有同时发生Na(+)K(+)ATPase活性增加了代谢酶的活性。

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