Department of Integrative Ecology, Estación Biológica de Doñana-Consejo Superior de Investigación Científica (CSIC), Sevilla, Spain.
PLoS One. 2010 Dec 17;5(12):e14355. doi: 10.1371/journal.pone.0014355.
Analyses of the macroevolutionary correlates of brain structure volumes allow pinpointing of selective pressures influencing specific structures. Here we use a multiple regression framework, including phylogenetic information, to analyze brain structure evolution in 43 Tanganyikan cichlid species. We analyzed the effect of ecological and sexually selected traits for species averages, the effect of ecological traits for each sex separately and the influence of sexual selection on structure dimorphism. Our results indicate that both ecological and sexually selected traits have influenced brain structure evolution. The patterns observed in males and females generally followed those observed at the species level. Interestingly, our results suggest that strong sexual selection is associated with reduced structure volumes, since all correlations between sexually selected traits and structure volumes were negative and the only statistically significant association between sexual selection and structure dimorphism was also negative. Finally, we previously found that monoparental female care was associated with increased brain size. However, here cerebellum and hypothalamus volumes, after controlling for brain size, associated negatively with female-only care. Thus, in accord with the mosaic model of brain evolution, brain structure volumes may not respond proportionately to changes in brain size. Indeed selection favoring larger brains can simultaneously lead to a reduction in relative structure volumes.
分析大脑结构体积的宏观进化相关性,可以确定影响特定结构的选择压力。在这里,我们使用多元回归框架,包括系统发育信息,分析了 43 种坦干伊喀慈鲷物种的大脑结构进化。我们分析了物种平均值的生态和性选择特征的影响、每个性别单独的生态特征的影响以及性选择对结构二态性的影响。我们的结果表明,生态和性选择特征都影响了大脑结构的进化。在男性和女性中观察到的模式通常与在物种水平上观察到的模式一致。有趣的是,我们的结果表明,强烈的性选择与结构体积减少有关,因为性选择特征与结构体积之间的所有相关性均为负相关,并且性选择与结构二态性之间唯一具有统计学意义的关联也是负相关。最后,我们之前发现单亲雌性照顾与大脑大小增加有关。但是,在这里,小脑和下丘脑体积在控制大脑大小后与仅雌性照顾呈负相关。因此,与大脑进化的镶嵌模型一致,大脑结构体积可能不会与大脑大小的变化成比例地响应。实际上,有利于更大大脑的选择可以同时导致相对结构体积的减少。