亚洲滨蟹 Hemigrapsus sanguineus 在退潮时空中暴露的新陈代谢率变化

IF 2.1 3区 生物学 Q2 MARINE & FRESHWATER BIOLOGY Marine Biology Pub Date : 2024-05-08 DOI:10.1007/s00227-024-04449-8
Blaine D. Griffen, Ian B. Ashton, Amanda Dominguez-Villalobos, Laura S. Fletcher, Bailey N. Marlow, Vibalia Raj, Lia A. Reese, Tanner C. Reese, Hannah C. Richardson
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摘要

潮间带动物每天都要与物理梯度打交道,这些梯度会在整个海岸上造成压力条件。这些物理梯度会影响生物的生理表现,要求它们做出的反应可能会随海岸高度的不同而不同。我们通过两个现场实验研究了亚洲入侵滨蟹 Hemigrapsus sanguineus 在低潮浸出期间对空中暴露的呼吸反应。第一个实验同时测量了从海岸上不同高度采集的个体的呼吸,这些个体在潮水中浸泡了不同的时间。第二个实验测量的是在同一潮汐高度的不同时间采集的个体的呼吸速率。这些结果表明,在典型低潮期的前半部分,低潮暴露的能量代价最大,但随后会降低。这些呼吸模式有助于该物种在整个分布区广泛分布于潮间带岩石海岸。
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Variation in metabolic rate during low tide aerial exposure in the Asian shore crab Hemigrapsus sanguineus

Intertidal animals deal with physical gradients daily that create stressful conditions across the shore. These physical gradients influence the physiological performance of organisms, requiring responses that may differ with height on the shore. We examined the respiratory response to aerial exposure in the invasive Asian shore crab Hemigrapsus sanguineus during periods of low tide emersion using two field experiments. The first experiment simultaneously measured respiration of individuals collected from different heights on the shore, which had therefore been emersed for different lengths of time. The second experiment measured respiration of individuals collected at different times from the same tidal height. Respiration rates of crabs in both experiments increased immediately after emersion, nearly doubling by and peaking at ~ 1.5 h of aerial exposure, before decreasing again over the next 1.5 h. These results suggest that the energetic cost of low tide exposure is greatest shortly after emersion during the first half of the typical low tide period, but then decreases thereafter. These respiration patterns facilitate the broad intertidal distribution of this species on rocky shores throughout its range.

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来源期刊
Marine Biology
Marine Biology 生物-海洋与淡水生物学
CiteScore
4.20
自引率
8.30%
发文量
133
审稿时长
3-6 weeks
期刊介绍: Marine Biology publishes original and internationally significant contributions from all fields of marine biology. Special emphasis is given to articles which promote the understanding of life in the sea, organism-environment interactions, interactions between organisms, and the functioning of the marine biosphere.
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