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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Extracellular digestion during hyposaline exposure in the Dungeness crab, Cancer magister, and the blue crab, Callinectes sapidus
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Extracellular digestion during hyposaline exposure in the Dungeness crab, Cancer magister, and the blue crab, Callinectes sapidus

机译:在Dungeness蟹,Cancer magister和蓝蟹Callinectes sapidus的次盐碱暴露期间的细胞外消化

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Extracellular digestive processes were examined in the Dungeness crab, Cancer magister and the blue crab, Callinectes sapidus, during hyposaline exposure. Both species are found in estuaries as adults, but vary in their ability to balance the cardiovascular and respiratory demands of concurrent osmoregulation and digestion. The weak osmoregulator, C. magister, is unable to balance the demands of osmoregulation and digestion. Concordant with observed decreases in oxygen consumption and mechanical digestion, proteolytic digestion within the foregut and hepatopancreas was delayed, resulting in a relative reduction of circulating amino acids post-feeding in low salinity. In contrast, the efficient osmoregulator, C. sapidus, balances the demands of osmoregulation and digestion, and mechanical digestion continues unabated in low salinity. Protease activity in the gut fluid and hepatopancreas showed either no change or a reduction over time. The transport of amino acids into the cells post-feeding is opposed by an efflux of amino acids at the cellular level, and resulted in a build up of amino acids in the hemolymph. Despite differences in the extracellular responses to low salinity exposure following feeding, both species were able to maintain high digestive efficiencies.
机译:在次生理盐水暴露期间,检查了巨蟹蟹巨蟹座大吉蟹和蓝蟹Callinectes sapidus的细胞外消化过程。两种物种都在河口成年时发现,但它们在平衡同时进行的渗透调节和消化的心血管和呼吸需求方面的能力各不相同。弱渗透调节剂C. magister无法平衡渗透调节和消化的需求。与观察到的耗氧量和机械消化的减少一致,前肠和肝胰腺内的蛋白水解消化被延迟,导致低盐度饲喂后循环氨基酸的相对减少。相比之下,高效渗透调节剂C. sapidus平衡了渗透调节和消化的需求,并且在低盐度条件下机械消化仍未减弱。肠液和肝胰腺中的蛋白酶活性未显示变化或随时间减少。进食后氨基酸向细胞内的转运在细胞水平上受到氨基酸外排的阻碍,并导致氨基酸在血淋巴中积累。尽管进食后对低盐度暴露的细胞外反应存在差异,但这两种物种都能够维持较高的消化效率。

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