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青蟹 Carcinus maenas 如何在一系列盐度下进行生理适应。

How the green crab Carcinus maenas copes physiologically with a range of salinities.

机构信息

Department of Zoology, The University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.

Bamfield Marine Sciences Centre, Bamfield, BC, V0R 1B0, Canada.

出版信息

J Comp Physiol B. 2022 Nov;192(6):683-699. doi: 10.1007/s00360-022-01458-1. Epub 2022 Aug 30.

Abstract

To evaluate the physiological ability to adjust to environmental variations of salinity, Carcinus maenas were maintained in 10, 20, 32 (control), 40, and 50 ppt (13.8 ± 0.6 °C) for 7 days. Closed respirometry systems were used to evaluate oxygen consumption ([Formula: see text]), ammonia excretion (Jamm), urea-N excretion (Jurea-N) and diffusive water fluxes (with HO). Ions, osmolality, metabolites, and acid-base status were determined in the hemolymph and seawater, and transepithelial potential (TEP) was measured. At the lowest salinity, there were marked increases in [Formula: see text] and Jamm, greater reliance on N-containing fuels to support aerobic metabolism, and a state of internal metabolic alkalosis (increased [HCO]) despite lower seawater pH. At higher salinities, an activation of anaerobic metabolism and a state of metabolic acidosis (decreased [HCO] and increased [lactate]), in combination with respiratory compensation (decreased PCO), were detected. TEP became more negative with decreasing salinity. Osmoregulation and osmoconformation occurred at low and high salinities, respectively, with complex patterns in individual ions; hemolymph [Mg] was particularly well regulated at levels well below the external seawater at all salinities. Diffusive water flux rates increased at higher salinities. Our results show that C. maenas exhibits wide plasticity of physiological responses when acclimated to different salinities and tolerates substantial disturbances of physiological parameters, illustrating that this species is well adapted to invade and survive in diverse habitats.

摘要

为了评估对盐度环境变化的生理适应能力,将三疣梭子蟹(Carcinus maenas)分别饲养在盐度为 10、20、32(对照)、40 和 50 ppt(13.8±0.6°C)的环境中 7 天。采用闭路呼吸测量系统来评估耗氧率([Formula: see text])、氨排泄率(Jamm)、尿素-N 排泄率(Jurea-N)和扩散水通量(使用 HO)。在血淋巴和海水中测定离子、渗透压、代谢物和酸碱状态,并测量跨上皮电位(TEP)。在最低盐度下,[Formula: see text]和 Jamm 显著增加,更依赖含氮燃料来支持有氧代谢,尽管海水 pH 值较低,但出现内部代谢性碱中毒([HCO]增加)。在较高盐度下,检测到无氧代谢的激活和代谢性酸中毒([HCO]减少和[乳酸]增加),同时伴随着呼吸补偿(PCO 降低)。TEP 随着盐度的降低而变得更负。在低盐度和高盐度下分别发生渗透调节和渗透适应,各离子表现出复杂的模式;在所有盐度下,血淋巴[Mg]的水平都很好地被调节,远低于外海水的水平。扩散水通量率在较高盐度下增加。我们的研究结果表明,三疣梭子蟹在适应不同盐度时表现出广泛的生理反应可塑性,并能耐受生理参数的显著干扰,这表明该物种非常适应入侵和生存在多样化的栖息地。

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