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基础代谢率与实验室中小鼠的亲代投资呈正相关。

Basal metabolic rate is positively correlated with parental investment in laboratory mice.

机构信息

Institute of Biology, University of Białystok, Świerkowa 20B, Białystok 15-950, Poland.

出版信息

Proc Biol Sci. 2013 Jan 2;280(1753):20122576. doi: 10.1098/rspb.2012.2576. Print 2013 Feb 22.

Abstract

The assimilation capacity (AC) hypothesis for the evolution of endothermy predicts that the maternal basal metabolic rate (BMR) should be positively correlated with the capacity for parental investment. In this study, we provide a unique test of the AC model based on mice from a long-term selection experiment designed to produce divergent levels of BMR. By constructing experimental families with cross-fostered litters, we were able to control for the effect of the mother as well as the type of pup based on the selected lines. We found that mothers with genetically determined high levels of BMR were characterized by higher parental investment capacity, measured as the offspring growth rate. We also found higher food consumption and heavier visceral organs in the females with high BMR. These findings suggested that the high-BMR females have higher energy acquisition abilities. When the effect of the line type of a foster mother was controlled, the pup line type significantly affected the growth rate only in the first week of life, with young from the high-BMR line type growing more rapidly. Our results support the predictions of the AC model.

摘要

内温动物进化的同化能力(AC)假说预测,母体基础代谢率(BMR)应该与亲代投资能力呈正相关。在这项研究中,我们基于一项长期选择实验中产生的具有不同 BMR 水平的老鼠,提供了对 AC 模型的独特检验。通过构建具有交叉寄养幼崽的实验家庭,我们能够根据选定的系来控制母亲和幼崽类型的影响。我们发现,具有高遗传 BMR 的母亲具有更高的亲代投资能力,表现为后代的生长速度。我们还发现,高 BMR 雌性的食物消耗和内脏器官更重。这些发现表明,高 BMR 雌性具有更高的能量获取能力。当控制养母系类型的影响时,幼崽系类型仅在生命的第一周显著影响生长速度,来自高 BMR 系类型的幼崽生长得更快。我们的结果支持 AC 模型的预测。

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