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两种海洋短尾蟹对低盐海水的急性代谢反应:超调节的有氧代价。

Acute metabolic responses of two marine brachyuran crabs to dilute seawater: The aerobic cost of hyper regulation.

机构信息

Programa de Pós-Graduação em Zoologia, Universidade Federal do Paraná, Curitiba, Paraná, Brazil.

Departamento de Fisiologia, Setor de Ciências Biológicas, Universidade Federal do Paraná, Curitiba, Paraná, Brazil.

出版信息

J Exp Zool A Ecol Integr Physiol. 2023 Jul;339(6):519-534. doi: 10.1002/jez.2697. Epub 2023 Mar 26.

Abstract

Hepatus pudibundus ("flecked box crab") is a stenohaline osmoconfomer, and restricted to marine habitats. Callinectes danae ("swimming crab Dana") lives in coastal/estuarine waters and is a weak hyper regulator. There is no consensus on which strategy is more expensive metabolically face salinity challenges: conformation with higher dependence on cell volume regulation, or hyper regulation, alleviating the need for intense cell volume regulation. Crabs were probed for their acute response to dilute seawater through exposures to salinities 35‰, 30‰, 25‰, and 20‰ for 2, 4, and 6 h. Hemolymph osmolality, lactate, and ions (chloride, sodium, magnesium, potassium) were assayed, as well as muscle water content. Water dissolved oxygen, ammonia, and pH levels were also measured. H. pudibundus conformed for osmolality and displayed increase in muscle hydration along the decrease in salinity down to 25‰, while C. danae efficiently maintained hemolymph osmo ionic stability, consumed more oxygen, acidified more the water, and released more ammonia. In 25‰, both species spent energy: H. pudibundus putatively controlling cell volume, and C. danae regulating hemolymph concentrations. In 20‰, H. pudibundus closed itself, avoiding the contact of the interface epithelia with the external environment and producing much lactate, whereas C. danae spent more energy (aerobic) in extracellular osmo ionic stability. Under these conditions, anisosmotic extracellular regulation (together with additional cell volume regulation) is more oxygen consuming than osmoconformation with a putatively more intense challenge to cell volume. The exposure to hyposalinity limits the occupation of estuarine environments by H. pudibundus in short and middle term.

摘要

羞涩箱形蟹(“斑点箱蟹”)是一种狭盐性等渗动物,仅限于海洋栖息地。美手关公蟹(“丹娜游泳蟹”)生活在沿海/河口水域,是一种较弱的高渗调节者。对于哪种策略在面对盐度挑战时在代谢上更昂贵,目前尚无共识:是通过更高程度依赖细胞体积调节的构象,还是通过高渗调节来缓解对强烈细胞体积调节的需求。研究人员通过将螃蟹暴露于 35‰、30‰、25‰ 和 20‰ 的盐度中 2、4 和 6 小时,来探究它们对低盐海水的急性反应。检测了血淋巴渗透压、乳酸和离子(氯、钠、镁、钾)以及肌肉水分含量。还测量了肌肉溶解氧、氨和 pH 值。羞涩箱形蟹通过构象来调节渗透压,并在盐度降低至 25‰ 时显示出肌肉水合作用的增加,而美手关公蟹则有效地维持了血淋巴渗透压离子的稳定性,消耗了更多的氧气,使水酸化更多,并释放了更多的氨。在 25‰时,两种物种都消耗了能量:羞涩箱形蟹可能在控制细胞体积,而美手关公蟹则在调节血淋巴浓度。在 20‰时,羞涩箱形蟹关闭了自己,避免了界面上皮与外部环境的接触,并产生了大量的乳酸,而美手关公蟹则在细胞外渗透压离子稳定性方面消耗了更多的能量(需氧)。在这些条件下,非等渗细胞外调节(与额外的细胞体积调节一起)比等渗构象消耗更多的氧气,对细胞体积的挑战也更大。低盐度的暴露限制了羞涩箱形蟹在短期和中期对河口环境的占据。

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