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首页> 外文期刊>Aquatic Biology >Differences in the physiological response of inter- and subtidal Antarctic limpets Nacella concinna to aerial exposure
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Differences in the physiological response of inter- and subtidal Antarctic limpets Nacella concinna to aerial exposure

机译:潮间和潮下南极帽铃对空中暴露的生理反应差异

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摘要

ABSTRACT: Antarctic intertidal zones are extremely harsh environments, and the Antarctic limpet Nacella concinna is one of the most conspicuous components of the macrofauna, colonizing such areas at King George Island, South Shetlands. The limpet subpopulation encompasses an intertidal and a subtidal ecomorph; these differ with respect to shell height and inner volume. We studied morphological, behavioural and physiological traits that distinguish both N. concinna subpopulations. We found a higher volume to circumference ratio of intertidal versus subtidal limpets to go along with a drastically reduced loss of body water during air exposure in intertidal specimens. Smaller intertidal limpets were less susceptible to desiccation than larger individuals. Further, the intertidal snails avoided accumulation of anaerobic metabolites (succinate, lactate and propionate), whereas subtidal limpets switched to anaerobic fermentation when exposed to air for 12 h. Only acetate accumulated in both types of snails after 12 h. Mean pO2 in shell water was higher in intertidal (2.6 kPa) than subtidal individuals (1.3 kPa) when submersed under water, and only the intertidal snails appeared able to respire air on emersion. These differences document strong physiological diversification between shore levels and shell morphs in the Antarctic limpet subpopulation at King George Island.
机译:摘要:南极潮间带地区的环境极为恶劣,南极帽贝(iacella continna)是大型动物区系中最显眼的部分之一,在南设得兰群岛的乔治王岛上定居。帽贝亚群包括潮间带和潮下带生态型。这些在壳体高度和内部容积方面有所不同。我们研究了区分N的形态,行为和生理特征。 concinna 亚群。我们发现潮间标本和潮间标本的体积与周长之比更高,而且潮间标本在暴露于空气中时体内水分的流失也大大减少。较小的潮间带帽贝比较大的个体更不容易干燥。此外,潮间蜗牛避免了厌氧代谢产物(琥珀酸盐,乳酸盐和丙酸盐)的积累,而潮下则在暴露于空气中超过12小时后转为厌氧发酵。 12小时后,两种类型的蜗牛中仅积累乙酸盐。浸入水中时,潮间带壳水中的平均pO 2 高于潮间带个体(1.3 kPa),潮间带(2.6 kPa)高于潮间带个体(见潮间蜗牛)。这些差异证明了乔治国王岛南极帽贝亚群的海岸水平和壳形之间的强烈生理多样性。

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