1.

Record Nr.

UNINA9910825070703321

Autore

Wagner Günter P.

Titolo

Homology, genes, and evolutionary innovation / / Günter P. Wagner

Pubbl/distr/stampa

Princeton, New Jersey : , : Princeton University Press, , 2014

©2014

ISBN

1-4008-5146-7

Edizione

[Course Book]

Descrizione fisica

1 online resource (495 p.)

Disciplina

571.8/5

Soggetti

Developmental genetics

Evolution (Biology)

Genetic regulation

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Description based upon print version of record.

Nota di bibliografia

Includes bibliographical references and index.

Nota di contenuto

Front matter -- Contents -- Preface -- Introduction: What This Book Aims to Do and What It Is Not -- Part I. Concepts and Mechanisms -- Part II. Paradigms and Research Programs -- References -- Index

Sommario/riassunto

Homology-a similar trait shared by different species and derived from common ancestry, such as a seal's fin and a bird's wing-is one of the most fundamental yet challenging concepts in evolutionary biology. This groundbreaking book provides the first mechanistically based theory of what homology is and how it arises in evolution. Günter Wagner, one of the preeminent researchers in the field, argues that homology, or character identity, can be explained through the historical continuity of character identity networks-that is, the gene regulatory networks that enable differential gene expression. He shows how character identity is independent of the form and function of the character itself because the same network can activate different effector genes and thus control the development of different shapes, sizes, and qualities of the character. Demonstrating how this theoretical model can provide a foundation for understanding the evolutionary origin of novel characters, Wagner applies it to the origin and evolution of specific systems, such as cell types; skin, hair, and feathers; limbs and digits; and flowers. The first major synthesis of homology to be published in decades, Homology, Genes, and



Evolutionary Innovation reveals how a mechanistically based theory can serve as a unifying concept for any branch of science concerned with the structure and development of organisms, and how it can help explain major transitions in evolution and broad patterns of biological diversity.