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TITANOTHERE ALLOMETRY, HETEROCHRONY, AND BIOMECHANICS: REVISING AN EVOLUTIONARY CLASSIC.雷兽的异速生长、发育异时性与生物力学:修订一部进化经典著作
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ONTOGENY AND PHYLOGENY IN HORSE SKULL EVOLUTION.马颅骨进化中的个体发育与系统发育
Evolution. 1984 Jan;38(1):1-15. doi: 10.1111/j.1558-5646.1984.tb00254.x.
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Homeotic effects, somitogenesis and the evolution of vertebral numbers in recent and fossil amniotes.同源异形效应、体节发生和现代及化石羊膜动物椎体数目的演化。
Proc Natl Acad Sci U S A. 2010 Feb 2;107(5):2118-23. doi: 10.1073/pnas.0912622107. Epub 2010 Jan 11.
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Diversity trends and their ontogenetic basis: an exploration of allometric disparity in rodents.多样性趋势及其个体发生基础:对啮齿动物的比例差异的探索。
Proc Biol Sci. 2010 Apr 22;277(1685):1227-34. doi: 10.1098/rspb.2009.1958. Epub 2009 Dec 16.
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Influence of sequence heterochrony on hadrosaurid dinosaur postcranial development.序列异时性对鸭嘴龙类恐龙颅后发育的影响。
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Insular dwarfism in hippos and a model for brain size reduction in Homo floresiensis.河马的岛屿侏儒化及弗洛勒斯人脑部尺寸缩小的模型。
Nature. 2009 May 7;459(7243):85-8. doi: 10.1038/nature07922.
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Palaeoanthropology: Homo floresiensis from head to toe.古人类学:弗洛勒斯人从头到脚
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New protocetid whale from the middle eocene of pakistan: birth on land, precocial development, and sexual dimorphism.来自巴基斯坦始新世中期的新原鲸科鲸类:陆地出生、早熟发育与两性异形
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合弓类动物的发育古生物学:在哺乳动物及其最近亲的个体发生中的化石记录。

Developmental palaeontology in synapsids: the fossil record of ontogeny in mammals and their closest relatives.

机构信息

Paläontologisches Institut und Museum, Karl Schmid-Strasse 4, CH-8006 Zürich, Switzerland.

出版信息

Proc Biol Sci. 2010 Apr 22;277(1685):1139-47. doi: 10.1098/rspb.2009.2005. Epub 2010 Jan 13.

DOI:10.1098/rspb.2009.2005
PMID:20071389
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2842820/
Abstract

The study of fossilized ontogenies in mammals is mostly restricted to postnatal and late stages of growth, but nevertheless can deliver great insights into life history and evolutionary mechanisms affecting all aspects of development. Fossils provide evidence of developmental plasticity determined by ecological factors, as when allometric relations are modified in species which invaded a new space with a very different selection regime. This is the case of dwarfing and gigantism evolution in islands. Skeletochronological studies are restricted to the examination of growth marks mostly in the cement and dentine of teeth and can provide absolute age estimates. These, together with dental replacement data considered in a phylogenetic context, provide life-history information such as maturation time and longevity. Palaeohistology and dental replacement data document the more or less gradual but also convergent evolution of mammalian growth features during early synapsid evolution. Adult phenotypes of extinct mammals can inform developmental processes by showing a combination of features or levels of integration unrecorded in living species. Some adult features such as vertebral number, easily recorded in fossils, provide indirect information about somitogenesis and hox-gene expression boundaries. Developmental palaeontology is relevant for the discourse of ecological developmental biology, an area of research where features of growth and variation are fundamental and accessible among fossil mammals.

摘要

研究哺乳动物的化石个体发育主要局限于出生后和生长后期,但仍能深入了解影响发育各个方面的生活史和进化机制。化石为生态因素决定的发育可塑性提供了证据,例如当进入具有非常不同选择机制的新空间的物种的比例关系发生变化时。这就是岛屿上的侏儒化和巨型化进化的情况。骨骼年代学研究仅限于检查牙齿的牙质和牙骨质中的生长标记,可以提供绝对年龄估计。这些,连同在系统发育背景下考虑的牙齿替换数据,提供了生活史信息,如成熟时间和寿命。古组织学和牙齿替换数据记录了在早期合弓动物进化过程中,哺乳动物生长特征或多或少地逐渐但也趋同进化。灭绝哺乳动物的成年表型可以通过显示在现存物种中未记录的特征或整合水平的组合来提供发育过程的信息。一些成年特征,如脊椎数量,在化石中很容易记录,可以提供关于体节发生和同源盒基因表达边界的间接信息。发育古生物学与生态发育生物学的论述有关,该研究领域的特征是生长和变异是基础,并且在化石哺乳动物中是可获得的。