Nilsson J-A, Akesson M, Nilsson J F
Department of Animal Ecology, Lund University, Lund, Sweden.
J Evol Biol. 2009 Sep;22(9):1867-74. doi: 10.1111/j.1420-9101.2009.01798.x. Epub 2009 Aug 3.
We report the first study with the aim to estimate heritability in a wild population, a nest box breeding population of blue tits. We estimated heritability as well as genetic and phenotypic correlations of resting metabolic rate (RMR), body mass and tarsus length with an animal model based on data from a split cross-fostering experiment with brood size manipulations. RMR and body mass, but not tarsus length, showed significant levels of explained variation but for different underlying reasons. In body mass, the contribution to the explained variation is mainly because of a strong brood effect, while in RMR it is mainly because of a high heritability. The additive variance in RMR was significant and the heritability was estimated to 0.59. The estimates of heritability of body mass (0.08) and tarsus length (0.00) were both low and based on nonsignificant additive variances. Thus, given the low heritability (and additive variances) in body mass and tarsus length the potential for direct selection on RMR independent of the two traits is high in this population. However, the strong phenotypic correlation between RMR and mass (0.643 +/- 0.079) was partly accounted for by a potentially strong, although highly uncertain, genetic correlation (1.178 +/- 0.456) between the two traits. This indicates that the additive variance of body mass, although low, might still somewhat constrain the independent evolvability of RMR.
我们报告了第一项旨在估计野生种群(蓝山雀巢箱繁殖种群)遗传力的研究。我们基于一项带有育雏规模操纵的交叉寄养实验数据,利用动物模型估计了静息代谢率(RMR)、体重和跗骨长度的遗传力以及遗传和表型相关性。RMR和体重(而非跗骨长度)显示出显著的可解释变异水平,但原因不同。在体重方面,对可解释变异的贡献主要是由于强烈的育雏效应,而在RMR方面,主要是由于高遗传力。RMR的加性方差显著,遗传力估计为0.59。体重(0.08)和跗骨长度(0.00)的遗传力估计值都很低,且基于不显著的加性方差。因此,鉴于体重和跗骨长度的低遗传力(和加性方差),该种群中独立于这两个性状对RMR进行直接选择的潜力很高。然而,RMR与体重之间强烈的表型相关性(0.643±0.079)部分是由这两个性状之间潜在的强遗传相关性(1.178±0.456)所导致的,尽管这种相关性高度不确定。这表明体重的加性方差虽然很低,但仍可能在一定程度上限制RMR的独立进化能力。