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Genetic Architecture and Ecological Speciation in Heliconius Butterflies

Genetic Architecture and Ecological Speciation in Heliconius Butterflies
Author: Richard Merrill
Publisher:
Total Pages:
Release: 2013
Genre:
ISBN:

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It is now widely accepted that adaptation to different ecological niches can result in the evolution of new species. However, when gene flow persists speciation must overcome the antagonism between selection and recombination: Specifically, if gene flow persists, recombination will break down the genetic associations between alleles that characterise emerging species and cause reproductive isolation. Accordingly, genetic architectures that impede recombination can slow the breakdown of linkage disequilibrium and facilitate speciation. Mimicry in tropical butterflies has long been championed as an example of adaptation driving speciation. In the Neotropical genus Heliconius, distantly related pairs of unpalatable species often converge on the same bright warning-pattern to more efficiently advertise their distastefulness to predators. In contrast, closely related taxa often belong to different mimicry rings. The sister species, Heliconius melpomene and H. cydno are sympatric across much of Central and northern South America. Using artificial butterflies I reveal selection against non-mimetic hybrid colour patterns between these two species. These colour patterns are also used as mating cues and mimetic shifts may cause both pre-mating and post-mating isolation. However, shifts in colour pattern cannot drive reproductive isolation alone; rather, they must be accompanied by corresponding mate preferences. Associations between trait and preference loci may be broken down by mating and subsequent recombination. I demonstrate a genetic linkage between loci for both male and female mate preference and wing colour pattern in Heliconius cydno and H. melpomene. In addition, I present evidence for further associations between alleles affecting hybrid sterility and host-plant use and colour pattern loci. All this implies that linkage between traits that contribute to reproductive and ecological isolation is a general phenomenon in Heliconius with an underlying adaptive basis. Overall these results expose a genetic mechanism that, by impeding recombination, can facilitate speciation in the face of gene flow.


The Ecology and Evolution of Heliconius Butterflies

The Ecology and Evolution of Heliconius Butterflies
Author: Chris D. Jiggins
Publisher: Oxford University Press
Total Pages: 321
Release: 2017
Genre: Nature
ISBN: 0199566577

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This is the first thorough and accessible treatment of the scientific literature on the ecology, genetics, and adaptive radiation of Heliconius butterflies: a classic model system in evolutionary biology.


From Wing Pattern Genes to the Chemistry of Speciation

From Wing Pattern Genes to the Chemistry of Speciation
Author: Bárbara Huber
Publisher:
Total Pages: 0
Release: 2015
Genre:
ISBN:

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How does biological diversification occur in the face of genetic exchange? How do reproductive barriers evolve and function? What is the role of adaptive traits in promoting diversification and speciation? These open questions in evolutionary biology are at the core of this project. In order to tackle them, we have focused on butterflies in the neo-tropical genus which are an important component of the diverse butterfly communities in the Neo-tropics. Butterflies in the genus Heliconius are unpalatable to predators, use warning colours to advertise their defences, and mimic other defended butterflies in their local communities. The genus has undergone an adaptive radiation in wing colour patterns as a result of natural selection for mimicry, and is also well known for assortative mating based on wing pattern. I have extended the current knowledge about the ecological function and the genetic basis of wing color patterns in these butterflies and explored the importance of wing coloration relative to chemical signaling in the early stages of diversification. To this aim, I have characterised the adaptive divergence between lineages at different stages of the speciation continuum, by integrating genomic, phenotypic, behavioural, chemical and ecological data. More precisely, I have studied the so-called silvaniform sub-clade of Heliconius, known for harbouring species with tiger patterns that participate in mimicry with large groups of other closely and distantly-related species. My work includes the comparative description of the genetic architecture of wing pattern adaptation in two species, H. hecale and H. ismenius, using crosses, genome-wide next-generation genotyping, and advanced morphometrics of colour patterns. I have also explored the importance of natural and sexual selection on wing-patterning loci at early stages of divergence in the genus. In particular, I have analysed the structure and maintenance of a hybrid zone between two distinctly coloured parapatric races of H. hecale by using a combination of population genetics and genomics, coupled to a phenotypic analysis of the clines and to behavioural assays on male-based mate choice. Finally, I have carried out genome-wide analyses of divergence and gene flow with whole genome sequencing data to look for evidence of introgression between coexisting, hybridising co-mimetic species. This was again coupled to experiments on mating preferences and behavior, and yielded evidence for important differences in putative pheromone signals which may mediate species recognition and the maintenance of species boundaries. Overall, my results show that although selection on wing pattern divergence have been central to the diversification of the genus Heliconius, the accumulation of other barriers to gene flow may be important for the speciation process to be completed.


Speciation and Patterns of Diversity

Speciation and Patterns of Diversity
Author: Roger Butlin
Publisher: Cambridge University Press
Total Pages: 346
Release: 2009-01-22
Genre: Science
ISBN: 9780521709637

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The diversity of species of plants and animals is the net result of the origin of new species by the splitting of existing lineages (speciation) and the loss of species through extinction. Why there are more species in some groups of organisms, in some places or at some times depends on the balance of these processes. This book explores the interaction between mechanisms and rates of speciation and these patterns of biological diversity, and is unusual in that it brings together the viewpoints of ecologists interested in the processes that generate patterns of diversity and evolutionary biologists who focus on mechanisms of speciation. It is intended to stimulate dialogue between these groups and so promote a more complete understanding of biological diversity.


Butterflies

Butterflies
Author: Carol L. Boggs
Publisher: University of Chicago Press
Total Pages: 784
Release: 2003-07
Genre: Nature
ISBN: 9780226063171

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In Butterflies: Ecology and Evolution Taking Flight, the world's leading experts synthesize current knowledge of butterflies to show how the study of these fascinating creatures as model systems can lead to deeper understanding of ecological and evolutionary patterns and processes in general. The twenty-six chapters are organized into broad functional areas, covering the uses of butterflies in the study of behavior, ecology, genetics and evolution, systematics, and conservation biology. Especially in the context of the current biodiversity crisis, this book shows how results found with butterflies can help us understand large, rapid changes in the world we share with them—for example, geographic distributions of some butterflies have begun to shift in response to global warming, giving early evidence of climate change that scientists, politicians, and citizens alike should heed. The first international synthesis of butterfly biology in two decades, Butterflies: Ecology and Evolution Taking Flight offers students, scientists, and amateur naturalists a concise overview of the latest developments in the field. Furthermore, it articulates an exciting new perspective of the whole group of approximately 15,000 species of butterflies as a comprehensive model system for all the sciences concerned with biodiversity and its preservation. Contributors: Carol L. Boggs, Paul M. Brakefield, Adriana D. Briscoe, Dana L. Campbell, Elizabeth E. Crone, Mark Deering, Henri Descimon, Erika I. Deinert, Paul R. Ehrlich, John P. Fay, Richard ffrench-Constant, Sherri Fownes, Lawrence E. Gilbert, André Gilles, Ilkka Hanski, Jane K. Hill, Brian Huntley, Niklas Janz, Greg Kareofelas, Nusha Keyghobadi, P. Bernhard Koch, Claire Kremen, David C. Lees, Jean-François Martin, Antónia Monteiro, Paulo César Motta, Camille Parmesan, William D. Patterson, Naomi E. Pierce, Robert A. Raguso, Charles Lee Remington, Jens Roland, Ronald L. Rutowski, Cheryl B. Schultz, J. Mark Scriber, Arthur M. Shapiro, Michael C. Singer, Felix Sperling, Curtis Strobeck, Aram Stump, Chris D. Thomas, Richard VanBuskirk, Hans Van Dyck, Richard I. Vane-Wright, Ward B. Watt, Christer Wiklund, and Mark A. Willis


Mimicry in Butterflies

Mimicry in Butterflies
Author: Reginald Crundall Punnett
Publisher:
Total Pages: 242
Release: 1915
Genre: Butterflies
ISBN:

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Genetics of Adaptation

Genetics of Adaptation
Author: Rodney Mauricio
Publisher: Springer Science & Business Media
Total Pages: 207
Release: 2005-07-20
Genre: Science
ISBN: 1402038364

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An enduring controversy in evolutionary biology is the genetic basis of adaptation. Darwin emphasized "many slight differences" as the ultimate source of variation to be acted upon by natural selection. In the early 1900’s, this view was opposed by "Mendelian geneticists", who emphasized the importance of "macromutations" in evolution. The Modern Synthesis resolved this controversy, concluding that mutations in genes of very small effect were responsible for adaptive evolution. A decade ago, Allen Orr and Jerry Coyne reexamined the evidence for this neo-Darwinian view and found that both the theoretical and empirical basis for it were weak. Orr and Coyne encouraged evolutionary biologists to reexamine this neglected question: what is the genetic basis of adaptive evolution? In this volume, a new generation of biologists have taken up this challenge. Using advances in both molecular genetic and statistical techniques, evolutionary geneticists have made considerable progress in this emerging field. In this volume, a diversity of examples from plant and animal studies provides valuable information for those interested in the genetics and evolution of complex traits.


Ecological Genomics

Ecological Genomics
Author: Christian R. Landry
Publisher: Springer Science & Business Media
Total Pages: 358
Release: 2013-11-25
Genre: Science
ISBN: 9400773471

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Researchers in the field of ecological genomics aim to determine how a genome or a population of genomes interacts with its environment across ecological and evolutionary timescales. Ecological genomics is trans-disciplinary by nature. Ecologists have turned to genomics to be able to elucidate the mechanistic bases of the biodiversity their research tries to understand. Genomicists have turned to ecology in order to better explain the functional cellular and molecular variation they observed in their model organisms. We provide an advanced-level book that covers this recent research and proposes future development for this field. A synthesis of the field of ecological genomics emerges from this volume. Ecological Genomics covers a wide array of organisms (microbes, plants and animals) in order to be able to identify central concepts that motivate and derive from recent investigations in different branches of the tree of life. Ecological Genomics covers 3 fields of research that have most benefited from the recent technological and conceptual developments in the field of ecological genomics: the study of life-history evolution and its impact of genome architectures; the study of the genomic bases of phenotypic plasticity and the study of the genomic bases of adaptation and speciation.