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秀丽隐杆线虫的热偏好:一个零模型及实证检验

Thermal preference of Caenorhabditis elegans: a null model and empirical tests.

作者信息

Anderson Jennifer L, Albergotti Lori, Proulx Stephen, Peden Colin, Huey Raymond B, Phillips Patrick C

机构信息

Center for Ecology and Evolutionary Biology, University of Oregon, Eugene, OR 97402, USA.

出版信息

J Exp Biol. 2007 Sep;210(Pt 17):3107-16. doi: 10.1242/jeb.007351.

Abstract

The preferred body temperature of ectotherms is typically inferred from the observed distribution of body temperatures in a laboratory thermal gradient. For very small organisms, however, that observed distribution might misrepresent true thermal preferences. Tiny ectotherms have limited thermal inertia, and so their body temperature and speed of movement will vary with their position along the gradient. In order to separate the direct effects of body temperature on movement from actual preference behaviour on a thermal gradient, we generate a null model (i.e. of non-thermoregulating individuals) of the spatial distribution of ectotherms on a thermal gradient and test the model using parameter values estimated from the movement of nematodes (Caenorhabditis elegans) at fixed temperatures and on a thermal gradient. We show that the standard lab strain N2, which is widely used in thermal gradient studies, avoids high temperature but otherwise does not exhibit a clear thermal preference, whereas the Hawaiian natural isolate CB4856 shows a clear preference for cool temperatures ( approximately 17 degrees C). These differences are not influenced substantially by changes in the starting position of worms in the gradient, the natal temperature of individuals or the presence and physiological state of bacterial food. These results demonstrate the value of an explicit null model of thermal effects and highlight problems in the standard model of C. elegans thermotaxis, showing the value of using natural isolates for tests of complex natural behaviours.

摘要

变温动物的偏好体温通常是根据在实验室热梯度中观察到的体温分布推断出来的。然而,对于非常小的生物来说,观察到的分布可能会歪曲真正的热偏好。微小的变温动物热惯性有限,因此它们的体温和移动速度会随着它们在梯度上的位置而变化。为了将体温对运动的直接影响与热梯度上的实际偏好行为区分开来,我们生成了一个变温动物在热梯度上空间分布的零模型(即非体温调节个体的模型),并使用从线虫(秀丽隐杆线虫)在固定温度和热梯度上的运动估计的参数值来测试该模型。我们发现,广泛用于热梯度研究的标准实验室菌株N2避开高温,但在其他方面没有表现出明显的热偏好,而夏威夷自然分离株CB4856则明显偏好凉爽温度(约17摄氏度)。这些差异在很大程度上不受线虫在梯度中的起始位置、个体的出生温度或细菌食物的存在及生理状态变化的影响。这些结果证明了热效应明确零模型的价值,并突出了秀丽隐杆线虫趋温性标准模型中的问题,显示了使用自然分离株测试复杂自然行为的价值。

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