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Physiological Responses and Ovarian Development of Female Chinese Mitten Crab Eriocheir sinensis Subjected to Different Salinity Conditions

机译:不同盐度条件下中华绒螯蟹的生理响应和卵巢发育

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摘要

Salinity plays a key role affecting ovarian development, osmoregulation and metabolism of female Chinese mitten crab, Eriocheir sinensis during reproductive migration. In this study, female E. sinensis after their puberty molt were subjected to four salinities of 0, 6, 12, and 18‰ for 40 days to investigate the salinity effects on their ovarian development as well as a range of important physiological parameters. Elevated salinity accelerated the ovarian development with ovigerous crabs found at salinity treatments of 12 and 18‰ despite no copulation had occurred. Meanwhile the survival rate of female crabs showed a decreasing trend with increasing salinity. Higher salinity also led to increased hemolymph Na+, K+, Ca2+, Cl, and Mg2+ concentrations. The 6‰ treatment had the highest contents of hemolymph total and major free amino acids while the Na+/K+ -ATPase activity in the posterior gills was the lowest among treatments. Total n-3 polyunsaturated fatty acids (∑n-3PUFA) and n-3-6 PUFA ratio in the anterior gills showed a decreasing trend with salinity while 18‰ had the highest ∑PUFA and ∑n-6PUFA. The ∑n-3PUFA content and n-3-6 PUFA ratio of the posterior gills showed a fluctuating pattern and the highest value was detected at 0‰, while an increasing trend was found for the ∑n-6PUFA with increasing salinity. The hemolymph glucose showed a decreasing trend with increasing salinity and the highest total cholesterol in hemolymph was detected at 12‰. The 18‰ treatment had the highest levels of hemolymph γ-glutamyltransferase, alkaline phosphatase and acid phosphatase, as well as glucose, urea and acid phosphatase in hepatopancreas while the highest hemolymph superoxide dismutase and malondialdehyde were detected at 0‰. Overall, the results showed that salinity increase from freshwater to brackish conditions led to lower metabolism, accelerated ovarian development, and the appearance of ovigerous crabs without copulation in female E. sinensis post puberty molt.
机译:盐度对雌性中华绒螯蟹中华绒螯蟹在生殖迁移过程中的卵巢发育,渗透调节和代谢起着关键作用。在这项研究中,雌性中华绒螯蟹青春期蜕变后分别接受0、6、12和18‰四种盐度40天,以研究盐度对其卵巢发育以及一系列重要生理参数的影响。较高的盐度促进了卵巢的发育,尽管没有发生交配,但在盐度为12和18‰的处理中发现了卵生蟹。同时,成年蟹的成活率随着盐度的增加呈下降趋势。较高的盐度还导致血淋巴Na + ,K + ,Ca 2 + ,Cl -和Mg增加 2 + 浓度。 6‰处理的hemo中Na + / K + -ATPase活性最高,而血淋巴中的总游离氨基酸和主要游离氨基酸含量最高。前g中的总n-3多不饱和脂肪酸(∑n-3PUFA)和n-3 / n-6 PUFA比值随盐度呈下降趋势,而18‰的∑PUFA和∑n-6PUFA最高。后g的∑n-3PUFA含量和n-3 / n-6 PUFA比呈波动型,最高值为0‰,而随着盐度的增加,∑n-6PUFA呈增加趋势。血淋巴葡萄糖显示出随着盐度增加而降低的趋势,并且血淋巴中的总胆固醇最高为12‰。 18‰处理的肝胰腺中有最高水平的血淋巴γ-谷氨酰转移酶,碱性磷酸酶和酸性磷酸酶,以及葡萄糖,尿素和酸性磷酸酶,而血淋巴超氧化物歧化酶和丙二醛的最高含量为0‰。总体而言,结果表明,从淡水到微咸的盐度增加导致雌性中华绒螯蟹蜕皮中新陈代谢降低,卵巢发育加快,并出现没有交配的卵蟹。

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