University of Toronto, Department of Ecology and Evolutionary Biology, 25 Willcocks Street, Toronto, ON, Canada, M5S 3B2.
J Exp Biol. 2013 Mar 1;216(Pt 5):850-8. doi: 10.1242/jeb.075408. Epub 2012 Nov 15.
Temperature-dependent behaviours in Caenorhabditis elegans, such as thermotaxis and isothermal tracking, are complex behavioural responses that integrate sensation, foraging and learning, and have driven investigations to discover many essential genetic and neural pathways. The ease of manipulation of the Caenorhabditis model system also has encouraged its application to comparative analyses of phenotypic evolution, particularly contrasts of the classic model C. elegans with C. briggsae. And yet few studies have investigated natural genetic variation in behaviour in any nematode. Here we measure thermotaxis and isothermal tracking behaviour in genetically distinct strains of C. briggsae, further motivated by the latitudinal differentiation in C. briggsae that is associated with temperature-dependent fitness differences in this species. We demonstrate that C. briggsae performs thermotaxis and isothermal tracking largely similar to that of C. elegans, with a tendency to prefer its rearing temperature. Comparisons of these behaviours among strains reveal substantial heritable natural variation within each species that corresponds to three general patterns of behavioural response. However, intraspecific genetic differences in thermal behaviour often exceed interspecific differences. These patterns of temperature-dependent behaviour motivate further development of C. briggsae as a model system for dissecting the genetic underpinnings of complex behavioural traits.
秀丽隐杆线虫的温度依赖性行为,如趋热性和等温跟踪,是复杂的行为反应,整合了感觉、觅食和学习,并且推动了许多重要的遗传和神经途径的发现。秀丽隐杆线虫模型系统易于操作,也鼓励了其在表型进化的比较分析中的应用,特别是经典模式秀丽隐杆线虫与 C. briggsae 的对比。然而,很少有研究调查任何线虫的行为中的自然遗传变异。在这里,我们测量了遗传上不同的 C. briggsae 菌株的趋热性和等温跟踪行为,这进一步受到 C. briggsae 的纬度分化的推动,这种分化与该物种中温度依赖性适应性差异有关。我们证明 C. briggsae 的趋热性和等温跟踪行为与 C. elegans 大致相似,倾向于偏好其饲养温度。对这些行为在菌株之间的比较揭示了每个物种内存在大量可遗传的自然变异,这些变异对应于三种一般的行为反应模式。然而,热行为的种内遗传差异通常超过种间差异。这些温度依赖性行为模式促使进一步开发 C. briggsae 作为一个模型系统,以剖析复杂行为特征的遗传基础。