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From Clone to Bone : The Synergy of Morphological and Molecular Tools in Palaeobiology / edited by Robert J. Asher, Johannes Müller.

Contributor(s): Material type: TextTextSeries: Cambridge Studies in Morphology and Molecules: New Paradigms in Evolutionary Bio ; 4 | Cambridge Studies in Morphology and Molecules: New Paradigms in Evolutionary Bio ; 4.Publisher: Cambridge : Cambridge University Press, 2012Description: 1 online resource (396 pages) : digital, PDF file(s)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780511760174 (ebook)
Subject(s): Additional physical formats: Print version: : No titleDDC classification:
  • 560 23
LOC classification:
  • QE721.2.E85 F76 2012
Online resources: Summary: Since the 1980s, a renewed understanding of molecular development has afforded an unprecedented level of knowledge of the mechanisms by which phenotype in animals and plants has evolved. In this volume, top scientists in these fields provide perspectives on how molecular data in biology help to elucidate key questions in estimating paleontological divergence and in understanding the mechanisms behind phenotypic evolution. Paleobiological questions such as genome size, digit homologies, genetic control cascades behind phenotype, estimates of vertebrate divergence dates, and rates of morphological evolution are addressed, with a special emphasis on how molecular biology can inform paleontology, directly and indirectly, to better understand life's past. Highlighting a significant shift towards interdisciplinary collaboration, this is a valuable resource for students and researchers interested in the integration of organismal and molecular biology.
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Title from publisher's bibliographic system (viewed on 04 Apr 2016).

Since the 1980s, a renewed understanding of molecular development has afforded an unprecedented level of knowledge of the mechanisms by which phenotype in animals and plants has evolved. In this volume, top scientists in these fields provide perspectives on how molecular data in biology help to elucidate key questions in estimating paleontological divergence and in understanding the mechanisms behind phenotypic evolution. Paleobiological questions such as genome size, digit homologies, genetic control cascades behind phenotype, estimates of vertebrate divergence dates, and rates of morphological evolution are addressed, with a special emphasis on how molecular biology can inform paleontology, directly and indirectly, to better understand life's past. Highlighting a significant shift towards interdisciplinary collaboration, this is a valuable resource for students and researchers interested in the integration of organismal and molecular biology.

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