Department of Cell Biology & Anatomy, Alberta Children's Hospital Research Institute, University of Calgary, Calgary, AB T2N 4N1, Canada.
McCaig Bone and Joint Institute, Cumming School of Medicine, University of Calgary, Calgary, AB T2N 4N1, Canada.
Integr Comp Biol. 2019 Nov 1;59(5):1369-1381. doi: 10.1093/icb/icz105.
Allometry refers to the ways in which organismal shape is associated with size. It is a special case of integration, or the tendency for traits to covary, in that variation in size is ubiquitous and evolutionarily important. Allometric variation is so commonly observed that it is routinely removed from morphometric analyses or invoked as an explanation for evolutionary change. In this case, familiarity is mistaken for understanding because rarely do we know the mechanisms by which shape correlates with size or understand their significance. As with other forms of integration, allometric variation is generated by variation in developmental processes that affect multiple traits, resulting in patterns of covariation. Given this perspective, we can dissect the genetic and developmental determinants of allometric variation. Our work on the developmental and genetic basis for allometric variation in craniofacial shape in mice and humans has revealed that allometric variation is highly polygenic. Different measures of size are associated with distinct but overlapping patterns of allometric variation. These patterns converge in part on a common genetic basis. Finally, environmental modulation of size often generates variation along allometric trajectories, but the timing of genetic and environmental perturbations can produce deviations from allometric patterns when traits are differentially sensitive over developmental time. These results question the validity of viewing allometry as a singular phenomenon distinct from morphological integration more generally.
生物体的形状与大小有关,这种关系被称为生长比率。生长比率是整合的一个特例,即特征之间存在相关性的趋势,因为大小的变化是普遍存在的,而且在进化上很重要。生长比率的变化是如此普遍,以至于它通常会从形态计量分析中去除,或者被作为进化变化的解释。在这种情况下,由于我们很少了解形状与大小相关的机制,或者理解它们的意义,因此熟悉程度被误认为是理解。与其他形式的整合一样,生长比率的变化是由影响多个特征的发育过程的变化产生的,导致了相关性的模式。从这个角度来看,我们可以剖析生长比率变化的遗传和发育决定因素。我们在小鼠和人类颅面形状生长比率变化的发育和遗传基础上的工作表明,生长比率变化是高度多基因的。不同的大小测量值与不同但重叠的生长比率变化模式相关。这些模式部分集中在共同的遗传基础上。最后,环境对大小的调节通常会沿着生长比率轨迹产生变化,但遗传和环境干扰的时间可以在特征在发育过程中对大小敏感程度不同时,产生与生长比率模式的偏差。这些结果质疑将生长比率视为与更广泛的形态整合不同的单一现象的有效性。