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急性升温及热驯化对美西螈最大心率的影响。

The effect of acute warming and thermal acclimation on maximum heart rate of the common killifish Fundulus heteroclitus.

机构信息

Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada.

Faculty of Land and Food Systems, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

J Fish Biol. 2019 Dec;95(6):1441-1446. doi: 10.1111/jfb.14159. Epub 2019 Nov 11.

Abstract

Common killifish Fundulus heteroclitus were acclimated to ecologically relevant temperatures (5, 15 and 33°C) and their maximum heart rate (f ) was measured at each acclimation temperature during an acute warming protocol. Acclimation to 33°C increased peak f by up to 32% and allowed the heart to beat rhythmically at a temperature 10°C higher when compared with acclimation to 5°C. Independent of acclimation temperature, peak f occurred about 3°C cooler than the temperature that first produced cardiac arrhythmias. Thus, when compared with previously published values for the critical thermal maximum of F. heteroclitus, the temperature for peak f was cooler and the temperature that first produced cardiac arrhythmias was similar to these critical thermal maxima. The considerable thermal plasticity of f demonstrated in the present study is entirely consistent with eurythermal ecology of killifish, as shown previously for another eurythermal fish Gillichthys mirabilis.

摘要

常见的花鳉鱼 Fundulus heteroclitus 适应了生态相关的温度(5、15 和 33°C),并在急性升温过程中在每个适应温度下测量了最大心率 (f)。适应 33°C 可使峰值 f 提高高达 32%,并使心脏在比适应 5°C 时高 10°C 的温度下保持有节奏地跳动。与适应温度无关,峰值 f 发生的温度比首次产生心律失常的温度低约 3°C。因此,与之前发表的花鳉鱼的临界热最大值相比,峰值 f 的温度较低,而首次产生心律失常的温度与这些临界热最大值相似。本研究中 f 表现出的相当大的热可塑性与花鳉鱼的广温生态学完全一致,之前对另一种广温鱼类奇异双锯鱼 Gillichthys mirabilis 的研究也表明了这一点。

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