The old and new faces of morphology: the legacy of D'Arcy Thompson's 'theory of transformations' and 'laws of growth'

被引:32
作者
Abzhanov, Arhat [1 ,2 ]
机构
[1] Imperial Coll London, Dept Life Sci, Ascot SL5 7PY, Berks, England
[2] Nat Hist Museum, Cromwell Rd, London SW7 5BD, England
来源
DEVELOPMENT | 2017年 / 144卷 / 23期
基金
美国国家科学基金会;
关键词
D'Arcy Thompson; Growth and form; Theory of transformations; Laws of growth; Evolution; Morphology; Morphometrics; BEAK-SHAPE VARIATION; DARWINS FINCHES; GEOMETRIC MORPHOMETRICS; DEVELOPMENTAL PROGRAMS; CONVERGENT EVOLUTION; ADAPTIVE RADIATION; DIVERSIFICATION; ONTOGENY; CONSTRAINT; PHYLOGENY;
D O I
10.1242/dev.137505
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
In 1917, the publication of On Growth and Form by D'Arcy Wentworth Thompson challenged both mathematicians and naturalists to think about biological shapes and diversity as more than a confusion of chaotic forms generated at random, but rather as geometric shapes that could be described by principles of physics and mathematics. Thompson's work was based on the ideas of Galileo and Goethe on morphology and of Russell on functionalism, but he was first to postulate that physical forces and internal growth parameters regulate biological forms and could be revealed via geometric transformations in morphological space. Such precise mathematical structure suggested a unifying generative process, as reflected in the title of the book. To Thompson it was growth that could explain the generation of any particular biological form, and changes in ontogeny, rather than natural selection, could then explain the diversity of biological shapes. Whereas adaptationism, widely accepted in evolutionary biology, gives primacy to extrinsic factors in producing morphological variation, Thompson's 'laws of growth' provide intrinsic directives and constraints for the generation of individual shapes, helping to explain the 'profusion of forms, colours, and other modifications' observed in the living world.
引用
收藏
页码:4284 / 4297
页数:14
相关论文
共 97 条
[21]  
Brady R., 1987, Goethe and the sciences, P257
[22]   Phylogenetics and diversification of tanagers (Passeriformes: Thraupidae), the largest radiation of Neotropical songbirds [J].
Burns, Kevin J. ;
Shultz, Allison J. ;
Title, Pascal O. ;
Mason, Nicholas A. ;
Barker, F. Keith ;
Klicka, John ;
Lanyon, Scott M. ;
Lovette, Irby J. .
MOLECULAR PHYLOGENETICS AND EVOLUTION, 2014, 75 :41-77
[23]  
Burns KJ, 2002, EVOLUTION, V56, P1240
[24]   Scaling and shear transformations capture beak shape variation in Darwin's finches [J].
Campas, O. ;
Mallarino, R. ;
Herrel, A. ;
Abzhanov, A. ;
Brenner, M. P. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (08) :3356-3360
[25]   Geometric morphometric analyses provide evidence for the adaptive character of the Tanganyikan cichlid fish radiations [J].
Clabaut, Celine ;
Bunje, Paul M. E. ;
Salzburger, Walter ;
Meyer, Axel .
EVOLUTION, 2007, 61 (03) :560-578
[26]  
Darwin C, 1845, J RESEARCHES NATURAL
[27]  
Darwin C.R., 1903, MORE LETT CHARLES DA, V1
[28]  
del Hoyo J., 2017, HDB BIRDS WORLD ALIV, DOI DOI 10.2173/BOW.BUBCHA1.01
[29]   Geometric morphometrics of the shoulder girdle in extant turtles (Chelonii) [J].
Depecker, M ;
Berge, C ;
Penin, X ;
Renous, S .
JOURNAL OF ANATOMY, 2006, 208 (01) :35-45
[30]   Three-Dimensional Geometric Morphometric Analysis of Fossil Canid Mandibles and Skulls [J].
Drake, Abby Grace ;
Coquerelle, Michael ;
Kosintsev, Pavel A. ;
Bachura, Olga P. ;
Sablin, Mikhail ;
Gusev, Andrei V. ;
Fleming, Lacey S. ;
Losey, Robert J. .
SCIENTIFIC REPORTS, 2017, 7