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人工选择揭示了肢体延长的发育机制。

Artificial selection sheds light on developmental mechanisms of limb elongation.

机构信息

Department of Comparative Biology and Experimental Medicine, Faculty of Veterinary Medicine, University of Calgary, AB T2N4N1, Canada.

McCaig Institute for Bone and Joint Health, Calgary, AB T2N4N1, Canada.

出版信息

Evolution. 2018 Apr;72(4):825-837. doi: 10.1111/evo.13447. Epub 2018 Mar 1.

DOI:10.1111/evo.13447
PMID:29436719
Abstract

Species diversity in limb lengths and proportions is thought to have evolved adaptively in the context of locomotor and habitat specialization, but the heritable cellular processes that drove this evolution within species are poorly understood. In this study, we take a novel "micro-evo-devo" approach, using artificial selection on relative limb length to amplify phenotypic variation in a population of mice, known as Longshanks, to examine the cellular mechanisms of postnatal limb development that contribute to intraspecific limb length variation. Cross-sectional growth data indicate that differences in bone length between Longshanks and random-bred controls are not due to prolonged growth, but to accelerated growth rates. Histomorphometric and cell proliferation assays on proximal tibial growth plates show that Longshanks' increased limb bone length is associated with an increased number of proliferative chondrocytes. In contrast, we find no differences in other growth plate cellular features known to underlie interspecific differences in limb bone size and shape, such as the rates of chondrocyte proliferation or the size and number of hypertrophic cells in the growth plate. These data suggest that small differences among individuals in the number of proliferating chondrocytes are a potentially important determinant of selectable intraspecific variation in individual limb bone lengths, independent of body size.

摘要

肢体长度和比例的物种多样性被认为是在运动和栖息地特化的背景下适应性进化的,但驱动物种内这种进化的可遗传细胞过程还知之甚少。在这项研究中,我们采用了一种新颖的“微观进化发育”方法,通过对相对肢体长度的人工选择,在一种名为 Longshanks 的老鼠种群中放大表型变异,以研究导致同种内肢体长度变异的产后肢体发育的细胞机制。横截面生长数据表明,Longshanks 和随机繁殖对照之间骨长度的差异不是由于生长延长,而是由于生长速度加快。对近端胫骨生长板的组织形态计量学和细胞增殖测定表明,Longshanks 增加的肢体骨长度与增殖软骨细胞数量的增加有关。相比之下,我们没有发现与肢体骨大小和形状的种间差异有关的其他生长板细胞特征存在差异,例如软骨细胞增殖率或生长板中肥大细胞的大小和数量。这些数据表明,增殖软骨细胞数量在个体之间的微小差异可能是个体肢体骨长度可选择的种内变异的一个重要决定因素,而与体型无关。

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