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A strong response to selection on mass-independent maximal metabolic rate without a correlated response in basal metabolic rate

机译:对质量独立的最大代谢率的选择具有强烈的反应而基础代谢率没有相关的反应

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摘要

Metabolic rates are correlated with many aspects of ecology, but how selection on different aspects of metabolic rates affects their mutual evolution is poorly understood. Using laboratory mice, we artificially selected for high maximal mass-independent metabolic rate (MMR) without direct selection on mass-independent basal metabolic rate (BMR). Then we tested for responses to selection in MMR and correlated responses to selection in BMR. In other lines, we antagonistically selected for mice with a combination of high mass-independent MMR and low mass-independent BMR. All selection protocols and data analyses included body mass as a covariate, so effects of selection on the metabolic rates are mass adjusted (that is, independent of effects of body mass). The selection lasted eight generations. Compared with controls, MMR was significantly higher (11.2%) in lines selected for increased MMR, and BMR was slightly, but not significantly, higher (2.5%). Compared with controls, MMR was significantly higher (5.3%) in antagonistically selected lines, and BMR was slightly, but not significantly, lower (4.2%). Analysis of breeding values revealed no positive genetic trend for elevated BMR in high-MMR lines. A weak positive genetic correlation was detected between MMR and BMR. That weak positive genetic correlation supports the aerobic capacity model for the evolution of endothermy in the sense that it fails to falsify a key model assumption. Overall, the results suggest that at least in these mice there is significant capacity for independent evolution of metabolic traits. Whether that is true in the ancestral animals that evolved endothermy remains an important but unanswered question.
机译:代谢率与生态学的许多方面相关,但是对代谢率不同方面的选择如何影响它们的相互进化的了解却很少。使用实验室小鼠,我们人为选择了最高的最大质量独立代谢率(MMR),而没有直接选择质量独立基础代谢率(BMR)。然后,我们测试了MMR中对选择的响应以及BMR中对选择的相关响应。在其他方面,我们拮抗选择高质量独立的MMR和低质量独立的BMR组合的小鼠。所有选择方案和数据分析都将体重作为协变量,因此,对代谢率的选择影响已进行质量调整(即,与体重影响无关)。选择持续了八代。与对照组相比,在选择用于增加MMR的品系中,MMR显着更高(11.2%),而BMR略高(但不显着)(2.5%)。与对照组相比,在拮抗选择品系中,MMR显着较高(5.3%),而BMR较低但不显着(4.2%)。育种价值分析显示,高MMR系中BMR升高无正向遗传趋势。在MMR和BMR之间检测到弱的正遗传相关性。弱的正遗传相关性支持有氧能力模型用于吸热的进化,因为它不能伪造关键模型假设。总体而言,结果表明至少在这些小鼠中,代谢特征的独立进化具有显着的能力。这在吸热进化的祖先动物中是否成立,仍然是一个重要但尚未回答的问题。

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