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54 results for “hybrid incompatibilities”
Evidence that genomic incompatibilities and other multilocus processes impact hybrid fitness in a rattlesnake hybrid zone
<p>Hybrid zones provide valuable opportunities to understand the genomic mechanisms that promote speciation by providing insight into factors involved in intermediate stages of speciation. Here we investigate introgression in a hybrid zone between two rattlesnake species (<em>Crotalus viridis</em> and <em>C. oreganus concolor</em>) that have undergone historical allopatric divergence and recent range expansion and secondary contact. We use Bayesian genomic cline models to characterize genomic patterns of introgression between these lineages and identify loci potentially subject to selection in hybrids. We find evidence for a large number of genomic regions with biased ancestry that deviate from the genomic background in hybrids (i.e., excess ancestry loci), which tend to be associated with genomic regions with higher recombination rates. We also identify suites of excess ancestry loci that show highly correlated allele frequencies (including conspecific and heterospecific combinations) across physically unlinked genomic regions in hybrids. Our findings provide evidence for multiple multilocus evolutionary processes impacting hybrid fitness in this system.</p>
Fitness consequences of hybridization in a predominantly selfing species: insights into the role of dominance and epistatic incompatibilities
<p>Studying the consequences of hybridization on plant performance is insightful to understand the adaptive potential of populations, notably at local scales. Due to reduced effective recombination, predominantly selfing species are organized in highly homozygous multi-locus-genotypes (or lines) that accumulate genetic differentiation both among- and within-populations. This high level of homozygosity facilitates the dissection of the genetic basis of hybrid performance in highly selfing species, which gives insights into the mechanisms of reproductive isolation between lines. Here, we explored the fitness consequences of hybridization events between natural inbred lines of the predominantly selfing species Medicago truncatula, at both within- and among-populations scales. We found that hybridization has opposite effects pending on studied fitness proxies, with dry mass showing heterosis, and seed production showing outbreeding depression. Although we found significant patterns of heterosis and outbreeding depression, they did not differ significantly for within- compared to among-population crosses. Family-based analyses allowed us to determine that hybrid differentiation was mostly due to dominance and epistasis. Dominance and/or dominant epistatic interactions increased dry mass, while decreasing seed production, and recessive epistatic interactions mostly had a positive effect on both fitness proxies. Our results illustrate how genetic incompatibilities can accumulate at a very local scale among multi-locus-genotypes, and how non-additive genetic effects contributes to heterosis and outbreeding depression.</p>
Data from: The ecology of hybrid incompatibilities
<p><span></span></p> <p>Ecologically-mediated selection against hybrids, caused by hybrid phenotypes fitting poorly into available niches, is typically viewed as distinct from selection caused by epistatic Dobzhansky-Muller hybrid incompatibilities. Here, we illustrate how selection against transgressive phenotypes in hybrids manifests as incompatibility. After outlining our logic, we summarize current approaches for studying ecology-based selection on hybrids. We then quantitatively review QTL-mapping studies and find traits differing between parent taxa are typically polygenic. Next, we describe how verbal models of selection on hybrids translate to phenotypic and genetic fitness landscapes, highlighting emerging approaches for detecting polygenic incompatibilities. Finally, in a synthesis of published data, we report that trait transgression—and thus possibly extrinsic hybrid incompatibility—in hybrids escalates with the phenotypic divergence between parents. We discuss conceptual implications and conclude that studying the ecological basis of hybrid incompatibility will facilitate new discoveries about mechanisms of speciation.</p>
Hybrid incompatibilities and transgressive gene expression between two closely related subspecies of Drosophila
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Integrative genomic phylogeography reveals signs of mitonuclear incompatibility in a natural hybrid goby population
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Fitness consequences of hybridization in a predominantly selfing species: insights into the role of dominance and epistatic incompatibilities
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Data from: Interspecific crossing and genetic mapping reveal intrinsic genomic incompatibility between two Senecio species that form a hybrid zone on Mount Etna, Sicily
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Data from: Completing the hybridization triangle: the inheritance of genetic incompatibilities during homoploid hybrid speciation in ragworts (Senecio).
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Data from: A rare exception to Haldane’s rule: Are X chromosomes key to hybrid incompatibilities?
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Recovery from hybrid breakdown reveals a complex genetic architecture of mitonuclear incompatibilities
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Evidence that genomic incompatibilities and other multilocus processes impact hybrid fitness in a rattlesnake hybrid zone
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Data from: Strong hybrid male incompatibilities impede the spread of a selfish chromosome between populations of a fly
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Data from: Chromosome-wide impacts on the expression of incompatibilities in hybrids of Tigriopus californicus
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Evaluating evidence of mitonuclear incompatibilities with the sex chromosomes in an avian hybrid zone
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Analysis of ancestry heterozygosity suggests that hybrid incompatibilities in threespine stickleback are environment-dependent
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Data from: Reduced incompatibility in the production of second generation hybrids between two Magnolia species revealed by Bayesian gene dispersal modeling
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Data from: High-resolution mapping reveals hundreds of genetic incompatibilities in hybridizing fish species
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Data from: The ecology of hybrid incompatibilities
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Data from: Hybrid speciation by sorting of parental incompatibilities in Italian sparrows
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Natural hybridization reveals incompatible alleles that cause melanoma in swordtail fish
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