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温度驯化会改变美洲螯龙虾的心脏性能。

Temperature acclimation alters cardiac performance in the lobster Homarus americanus.

作者信息

Camacho Joseph, Qadri Syed Aman, Wang Hongkun, Worden Mary Kate

机构信息

Department of Neuroscience, University of Virginia, Charlottesville, VA 22908, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2006 Dec;192(12):1327-34. doi: 10.1007/s00359-006-0162-1. Epub 2006 Sep 7.

Abstract

The American lobster is a poikilotherm that inhabits a marine environment where temperature varies over a 25 degrees C range and depends on the winds, the tides and the seasons. To determine how cardiac performance depends on the water temperature to which the lobsters are acclimated we measured lobster heart rates in vivo. The upper limit for cardiac function in lobsters acclimated to 20 degrees C is approximately 29 degrees C, 5 degrees C warmer than that measured in lobsters acclimated to 4 degrees C. Warm acclimation also slows the lobster heart rate within the temperature range from 4 to 12 degrees C. Both effects are apparent after relatively short periods of warm acclimation (3-14 days). However, warm acclimation impairs cardiac function at cold temperatures: following several hours exposure to frigid (<5 degrees C) temperatures heart rates become slow and arrhythmic in warm acclimated, but not cold acclimated, lobsters. Thus, acclimation temperature determines the thermal limits for cardiac function at both extremes of the 25 degrees C temperature range lobsters inhabit in the wild. These observations suggest that regulation of cardiac thermal tolerance by the prevailing environmental temperature protects against the possibility of cardiac failure due to thermal stress.

摘要

美洲龙虾是一种变温动物,栖息于海洋环境中,那里的温度在25摄氏度范围内变化,且受风向、潮汐和季节影响。为了确定心脏功能如何取决于龙虾所适应的水温,我们在活体状态下测量了龙虾的心率。适应20摄氏度水温的龙虾心脏功能的上限约为29摄氏度,比适应4摄氏度水温的龙虾所测得的上限高5摄氏度。在4至12摄氏度的温度范围内,温暖适应也会使龙虾的心率减慢。在相对较短的温暖适应期(3至14天)后,这两种效应都很明显。然而,温暖适应会损害龙虾在低温下的心脏功能:在暴露于寒冷(<5摄氏度)温度数小时后,适应温暖环境而非寒冷环境的龙虾心率会变慢且出现心律失常。因此,适应温度决定了龙虾在其野生栖息地所栖息的25摄氏度温度范围两端的心脏功能热极限。这些观察结果表明,由当时的环境温度调节心脏耐热性可防止因热应激导致心力衰竭的可能性。

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