Evolutionary Quantitative Genetics

Evolutionary Quantitative Genetics

Author: Stevan J. Arnold

Publisher: Oxford University Press

Published: 2023-06-06

Total Pages: 497

ISBN-13: 0192675532

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Evolutionary quantitative genetics (EQG) provides a formal theoretical foundation for quantitatively linking natural selection and genetic variation to the rate and expanse of adaptive evolution. It has become the dominant conceptual framework for interpreting the evolution of quantitative traits in terms of elementary forces (mutation, inheritance, selection, and drift). Despite this success, the relevance of EQG to many biological scenarios remains relatively unappreciated, with numerous fields yet to fully embrace its approach. Part of the reason for this lag is that conceptual advances in EQG have not yet been fully synthesized and made accessible to a wider academic audience. A comprehensive, accessible overview is therefore now timely, and Evolutionary Quantitative Genetics provides this much-needed synthesis. The central argument of the book is that an adaptive landscape concept can be used to understand both evolutionary process within lineages and the pattern of adaptive radiations. In particular, it provides a convincing argument that models with a moving adaptive peak carry us further than any other conceptual approach yet devised. Although additive theory holds center stage, the book mentions and references departures from additivity including non-Gaussian distributions of allelic effects, dominance, epistasis, maternal effects and phenotypic plasticity. This accessible, advanced textbook is aimed principally at students (from senior undergraduate to postgraduate) as well as practising scientists in the fields of evolutionary biology, ecology, physiology, functional morphology, developmental biology, comparative biology, paleontology, and beyond who are interested in how adaptive radiations are produced by evolutionary and ecological processes.


Contemporary Debates in Philosophy of Biology

Contemporary Debates in Philosophy of Biology

Author: Francisco J. Ayala

Publisher: John Wiley & Sons

Published: 2009-11-19

Total Pages: 440

ISBN-13: 9781444314939

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This collection of specially commissioned essays puts top scholarshead to head to debate the central issues in the lively and fastgrowing field of philosophy of biology Brings together original essays on ten of the most hotlydebated questions in philosophy of biology Lively head-to-head debate format sharply defines the issuesand paves the way for further discussion Includes coverage of the new and vital area of evolutionarydevelopmental biology, as well as the concept of a unified species,the role of genes in selection, the differences between micro- andmacro-evolution, and much more Each section features an introduction to the topic as well assuggestions for further reading Offers an accessible overview of this fast-growing and dynamicfield, whilst also capturing the imagination of professionalphilosophers and biologists


Microevolution Rate, Pattern, Process

Microevolution Rate, Pattern, Process

Author: Andrew P. Hendry

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 528

ISBN-13: 9401005850

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From guppies to Galapagos finches and from adaptive landscapes to haldanes, this compilation of contributed works provides reviews, perspectives, theoretical models, statistical developments, and empirical demonstrations exploring the tempo and mode of microevolution on contemporary to geological time scales. New developments, and reviews, of classic and novel empirical systems demonstrate the strength and diversity of evolutionary processes producing biodiversity within species. Perspectives and theoretical insights expand these empirical observations to explore patterns and mechanisms of microevolution, methods for its quantification, and implications for the evolution of biodiversity on other scales. This diverse assemblage of manuscripts is aimed at professionals, graduate students, and advanced undergraduates who desire a timely synthesis of current knowledge, an illustration of exciting new directions, and a springboard for future investigations in the study of microevolution in the wild.


Evolutionary Developmental Biology

Evolutionary Developmental Biology

Author: Laura Nuno de la Rosa

Publisher: Springer

Published: 2020-11-15

Total Pages: 1000

ISBN-13: 9783319329772

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This reference work provides an comprehensive and easily accessible source of information on numerous aspects of Evolutionary Developmental Biology. The work provides an extended overview on the current state of the art of this interdisciplinary and dynamic scientific field. The work is organized in thematic sections, referring to the specific requirements and interests in each section in far detail. “Evolutionary Developmental Biology – A Reference Guide” is intended to provide a resource of knowledge for researchers engaged in evolutionary biology, developmental biology, theoretical biology, philosophy of sciences and history of biology.


Self-Organizing Systems

Self-Organizing Systems

Author: F.Eugene Yates

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 658

ISBN-13: 1461308836

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Technological systems become organized by commands from outside, as when human intentions lead to the building of structures or machines. But many nat ural systems become structured by their own internal processes: these are the self organizing systems, and the emergence of order within them is a complex phe nomenon that intrigues scientists from all disciplines. Unfortunately, complexity is ill-defined. Global explanatory constructs, such as cybernetics or general sys tems theory, which were intended to cope with complexity, produced instead a grandiosity that has now, mercifully, run its course and died. Most of us have become wary of proposals for an "integrated, systems approach" to complex matters; yet we must come to grips with complexity some how. Now is a good time to reexamine complex systems to determine whether or not various scientific specialties can discover common principles or properties in them. If they do, then a fresh, multidisciplinary attack on the difficulties would be a valid scientific task. Believing that complexity is a proper scientific issue, and that self-organizing systems are the foremost example, R. Tomovic, Z. Damjanovic, and I arranged a conference (August 26-September 1, 1979) in Dubrovnik, Yugoslavia, to address self-organizing systems. We invited 30 participants from seven countries. Included were biologists, geologists, physicists, chemists, mathematicians, bio physicists, and control engineers. Participants were asked not to bring manu scripts, but, rather, to present positions on an assigned topic. Any writing would be done after the conference, when the writers could benefit from their experi ences there.


Reconstructing Evolution

Reconstructing Evolution

Author: Olivier Gascuel

Publisher: Oxford University Press

Published: 2007-06-28

Total Pages: 349

ISBN-13: 0199208220

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Evolution is a complex process, acting at multiple scales, from DNA sequences and proteins to populations of species. Understanding and reconstructing evolution is of major importance in numerous subfields of biology. For example, phylogenetics and sequence evolution is central to comparative genomics, attempts to decipher genomes, and molecular epidemiology. Phylogenetics is also the focal point of large-scale international biodiversity assessment initiatives such as the 'Tree ofLife' project, which aims to build the evolutionary tree for all extant species.Since the pioneering work in phylogenetics in the 1960s, models have become increasingly sophisticated to account for the inherent complexity of evolution. They rely heavily on mathematics and aim at modelling and analyzing biological phenomena such as horizontal gene transfer, heterogeneity of mutation, and speciation and extinction processes. This book presents these recent models, their biological relevance, their mathematical basis, their properties, and the algorithms to infer them fromdata. A number of subfields from mathematics and computer science are involved: combinatorics, graph theory, stringology, probabilistic and Markov models, information theory, statistical inference, Monte Carlo methods, continuous and discrete algorithmics.This book arises from the Mathematics of Evolution & Phylogenetics meeting at the Mathematical Institute Henri Poincaré, Paris, in June 2005 and is based on the outstanding state-of-the-art reports presented by the conference speakers. Ten chapters - based around five themes - provide a detailed overview of key topics, from the underlying concepts to the latest results, some of which are at the forefront of current research.


Rates of Evolution

Rates of Evolution

Author: Philip D. Gingerich

Publisher: Cambridge University Press

Published: 2019-05-09

Total Pages: 399

ISBN-13: 1107167248

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An overview of evolutionary rates, analyzing data from laboratory, field and fossil record studies to extract their underlying generation-to-generation rates.


Evolution's Wedge

Evolution's Wedge

Author: David Pfennig

Publisher: Univ of California Press

Published: 2012-10-25

Total Pages: 319

ISBN-13: 0520954041

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Evolutionary biology has long sought to explain how new traits and new species arise. Darwin maintained that competition is key to understanding this biodiversity and held that selection acting to minimize competition causes competitors to become increasingly different, thereby promoting new traits and new species. Despite Darwin’s emphasis, competition’s role in diversification remains controversial and largely underappreciated. In their synthetic and provocative book, evolutionary ecologists David and Karin Pfennig explore competition's role in generating and maintaining biodiversity. The authors discuss how selection can lessen resource competition or costly reproductive interactions by promoting trait evolution through a process known as character displacement. They further describe character displacement’s underlying genetic and developmental mechanisms. The authors then consider character displacement’s myriad downstream effects, ranging from shaping ecological communities to promoting new traits and new species and even fueling large-scale evolutionary trends. Drawing on numerous studies from natural populations, and written for a broad audience, Evolution’s Wedge seeks to inspire future research into character displacement’s many implications for ecology and evolution.


Parasite Diversity and Diversification

Parasite Diversity and Diversification

Author: Serge Morand

Publisher: Cambridge University Press

Published: 2015-02-26

Total Pages: 503

ISBN-13: 1107037654

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By joining phylogenetics and evolutionary ecology, this book explores the patterns of parasite diversity while revealing diversification processes.


Geological Vs. Climatological Diversification in the Mediterranean Area

Geological Vs. Climatological Diversification in the Mediterranean Area

Author: Rosa Maria Lo Presti

Publisher: Logos Verlag Berlin GmbH

Published: 2010

Total Pages: 187

ISBN-13: 3832526889

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The Mediterranean Basin, one of the five mediterranean-climate regions of the world, seems particularly suitable as a model system in which to integrate the study of species divergence (macroevolution) with that of population differentiation (microevolution), as it has been evidenced that both ecological specialization and geographical isolation have been primary determining factors to explain its high biodiversity. In the Mediterranean area, the genus Anthemis L. (Compositae, Anthemideae) provides a suitable plant group with which to link both the macro- and the microevolutionary approaches. It acts as a suitable proxy for the reconstruction of the biogeographical and climatological history of the Mediterranean area, spanning the transition from the subtropical climate of the Early Miocene to the typical Mediterranean environment of the present. On the other side, it includes many closely related groups of species, such as the Anthemis secundiramea group widespread across the Sicilian Channel, which provide suitable models to study the role of geographical and/or ecological diversification on a more local scale. Through the integration of phylogenetic, phylogeographical and eco-climatological reconstructions, this book shows that both macro- and microevolutionary approaches should be involved to understand patterns and processes in the evolution of biodiversity.