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675 results for “Introgression”
Data for: Phylogenomic analyses of the Neotropical Artocarpeae (Moraceae) reveal a history of introgression and support the reinstatement of Acanthinophyllum
<p>This molecular study of the Neotropical Artocarpeae, the closest living allies of the Asia-Pacific breadfruit genus, uses phylogenetic and network analyses to untangle the evolutionary history of this difficult group. Results paint a picture of a rapid radiation, with introgression between sympatric species confounding attempts to reconstruct a well-supported bifurcating tree. While bifurcating trees were markedly at odds with morphology, multifurcating phylogenetic network analyses recovered multiple histories, with clearer traces of morphological alliances. The sole unambiguous finding is the sister relationship between <em>Clarisia</em> sect. <em>Acanthinophyllum</em> and the rest of the Neotropical Artocarpeae; as a result, the genus <em>Acanthinophyllum</em> is reinstated.</p>
Data for: Echoes of ancient introgression punctuate stable genomic lineages in the evolution of figs
<p class="MsoNormal"><span>Studies investigating the evolution of flowering plants have long focused on isolating mechanisms such as pollinator specificity. Some recent studies have proposed a role for introgressive hybridization between species, recognizing that isolating processes such as pollinator specialization may not be complete barriers to hybridization. Occasional hybridization may therefore lead to distinct yet reproductively connected lineages.</span></p> <p class="MsoNormal"><span>We investigate the balance between introgression and reproductive isolation in a diverse clade using a densely sampled phylogenomic study of fig trees (<em>Ficus</em>, Moraceae). Co-diversification with specialized pollinating wasps (Agaonidae) is recognized as a major engine of fig diversity, leading to about 850 species. Nevertheless, some studies have focused on the importance of hybridization in <em>Ficus</em>, highlighting the consequences of pollinator sharing. Here we employ dense taxon sampling (520 species) throughout Moraceae and 1,858 loci to investigate phylogenetic relationships and the prevalence of introgression among species throughout the history of <em>Ficus</em>.</span></p> <p class="MsoNormal"><span>We present a well-resolved phylogenomic backbone for <em>Ficus</em>, providing a solid foundation for an updated classification. Our results paint a picture of phylogenetically stable evolution within lineages punctuated by occasional local introgression events likely mediated by local pollinator sharing, illustrated by clear cases of cytoplasmic introgression that have been nearly drowned out of the nuclear genome through subsequent lineage fidelity. The phylogenetic history of figs thus highlights that while hybridization is an important process in plant evolution, the mere ability of species to hybridize locally does not necessarily translate into ongoing introgression between distant lineages, particularly in the presence of obligate plant-pollinator relationships.</span></p>
Introgression between highly divergent fungal sister species
<p><span>To understand how species evolve and adapt to changing environments, it is important to study gene flow and introgression due to their influence on speciation and radiation events. Here, we apply a novel experimental system for investigating these mechanisms using natural populations. The system is based on two fungal sister species with morphological and ecological similarities occurring in overlapping habitats. We examined introgression between these species by conducting whole genome sequencing of individuals from populations in North America and Europe. We assessed genome-wide nucleotide divergence and performed crossing experiments to study reproductive barriers. We further used ABBA-BABA statistics together with a network analysis to investigate introgression, and conducted demographic modelling to gain insight into divergence times and introgression events. The results revealed that the species are highly divergent and incompatible in vitro. Despite this, small regions of introgression were scattered throughout the genomes and one introgression event likely involves a ghost population (extant or extinct). This study demonstrates that introgression can be found among divergent species and that population histories can be studied without collections of all the populations involved. Moreover, the experimental system is shown to be a useful tool for research on reproductive isolation in natural populations.</span></p>
Limited hybridization and introgression despite stocking among endemic Interior Highlands black basses (Centrarchidae: Micropterus)
<p><strong>Aim</strong></p> <p>Smallmouth Bass (<em>Micropterus</em> <em>dolomieu</em>; SMB) are globally popular among anglers and have been widely introduced (i.e., stocked) for population management and sportfishing. Importantly, stocking was prevalent before cryptic diversity within the SMB complex was known, which now includes three newly elevated species: Neosho Bass (<em>M</em>. <em>velox</em>; NB), Little River Bass (<em>M</em>. sp. cf. <em>dolomieu</em> Little River; LRB), and Ouachita Bass (<em>M</em>. sp. cf. <em>dolomieu</em> Ouachita River; OB). We sought to quantify population structure and hybridization and introgression in these three recently described species.</p> <p><strong>Location</strong></p> <p>Species-level diversity, particularly in the basin-restricted LRB and OB in the Ouachita Mountains within the Central Interior Highlands (CIH), North America, suggests the presence of distinct genetic variation that could be eroded by introgression. </p> <p><strong>Methods</strong></p> <p>We estimated interspecific introgression and intraspecific population differentiation in the Smallmouth Bass species complex (SMB-C) using 472 specimens comprising SMB, NB, LRB, and OB, including the naturally sympatric Spotted Bass (<em>M</em>. <em>punctulatus</em>; SPB). Genomic samples were genotyped on a SNP panel of 192 loci designed to detect allele-sharing on multiple hierarchical levels. </p> <p><strong>Results</strong></p> <p>We found low range-wide hybridization between species in the SMB-C and SPB (mostly SMB-C backcrosses), and interspecific heterozygosity varied, indicating differential introgression. Range-wide hybridization between species in the CIH and SMB was similar overall (but mostly F<sub>2</sub> and CIH backcrosses) and was observed in streams with known SMB stocking in connected reservoirs. Interspecific heterozygosity in SMB hybrids was also generally lower, indicating later-generation backcrosses. We found strong population structure in the Ouachita Mountains (LRB and OB). </p> <p><strong>Main Conclusions</strong></p> <p>Despite isolated incidences of natural (SPB) and human-mediated (SMB) introgression, genomic identity appears intact in endemic LRB and OB, suggesting potential ecological or behavioral isolating mechanisms preventing cross-species reproduction. Our findings reveal that genetic variation remains in cryptic, basin-restricted species in the Ouachita Mountains ecoregion that may be managed for long-term conservation.</p>
Ghost introgression in ricefishes of the genus Adrianichthys in an ancient Wallacean lake
<p><span>Because speciation might have been promoted by ancient introgression from an extinct lineage, it is important to detect the existence of "ghost introgression" in focal taxa and examine its contribution to their diversification. In this study, we examined possible ghost introgression and its contributions to the diversification of ricefishes of the genus <em>Adrianichthys</em>in Lake Poso, an ancient lake on Sulawesi Island, in which some extinctions are known to have occurred. Population genomic analysis revealed that two extant <em>Adrianichthys</em> species, <em>A. oophorus</em> and <em>A. poptae</em>, are reproductively isolated from each other. Comparisons of demographic models demonstrated that introgression from a ghost population, which diverged from the common ancestor of <em>A. oophorus</em> and <em>A. poptae</em>, is essential for reconstructing the demographic history of <em>Adrianichthys</em>. The best model estimated that the divergence of the ghost population greatly predated the divergence between <em>A. oophorus</em> and <em>A. poptae</em>, and that the ghost population secondarily contacted the two extant species within Lake Poso more recently. Genome scans and simulations detected a greatly divergent locus, which cannot be explained without ghost introgression. This locus was also completely segregated between <em>A. oophorus</em> and <em>A. poptae</em>. These findings suggest that variants that came from a ghost population have contributed to the divergence between <em>A. oophorus</em>and <em>A. poptae</em>, but the large time-lag between their divergence and ghost introgression indicates that the contribution of introgression may be restricted.</span></p>
Comparative transmission genetics of introgressed chromatin in reciprocal advanced backcross populations in Gossypium (cotton) polyploids
<p>Introgression is a potential source of valuable genetic variation and interspecific introgression lines are important resources for plant breeders to access novel alleles. Experimental advanced-generation backcross populations contain individuals with genomic compositions similar to those resulting from natural interspecific hybridization and provide opportunities to study the nature and transmission pattern of donor chromatin in recipient genomes. Here, we analyze transmission of donor chromatin in reciprocal backcrosses between <em>G. hirsutum</em> and <em>G. barbadense</em>. Across the genome, recurrent backcrossing in both backgrounds yielded donor chromatin at slightly higher frequencies than the Mendelian expectation in BC<sub>5</sub>F<sub>1</sub> plants, while the average frequency of donor alleles in BC<sub>5</sub>F<sub>2</sub> segregating families was less than expected. In the two subgenomes of polyploid cotton, the rate of donor chromatin introgression was similar. Although donor chromatin was tolerated over much of the recipient genomes, 21 regions recalcitrant to donor alleles were identified. Only limited correspondence is observed between the recalcitrant regions in the two backgrounds, suggesting the effect of species background on introgression of donor segments. Genetic breakdown was progressive, with floral abscission and seed inviability ongoing during backcrossing cycles. Regions of either high or low introgression tended to be in terminal chromosomal regions that are generally rich in both genes and crossover events, with long stretches around the centromere having limited crossover activity resulting in relatively constant low introgression frequencies. Constraints on fixation and selection of donor alleles highlights the challenges of utilizing introgression breeding in crop improvement.</p>
Genomic divergence and introgression between cryptic species of a widespread North American songbird
<p>Analysis of genomic variation among related populations can sometimes reveal distinct species that were previously undescribed due to similar morphological appearances, and close examination of such cases can provide much insight regarding speciation. Genomic data can also reveal the role of reticulated evolution in differentiation and speciation. White-breasted nuthatches (<em>Sitta carolinensis</em>) are widely distributed North American songbirds that are currently classified as a single species but have been suspected to represent a case of cryptic speciation. Previous genetic analyses suggested four divergent groups, but it was unclear whether these represented multiple reproductively isolated species. Using extensive genomic sampling of over 350 white-breasted nuthatches from across North America and a new chromosome-level reference genome, we asked if white-breasted nuthatches are comprised of multiple species and whether introgression has occurred between divergent populations. Genomic variation of over 300,000 loci revealed four highly differentiated populations (Pacific, n = 45; Eastern, n = 23; Rocky Mountains North, n = 138; and Rocky Mountains South, n = 150) with geographic ranges that are adjacent. We observed a moderate degree of admixture between Rocky Mountain populations but only a small number of hybrids between the Rockies and the Eastern population. The rarity of hybrids together with high levels of differentiation between populations is supportive of populations having some level of reproductive isolation. Between populations, we show evidence for introgression from a divergent ghost lineage of white-breasted nuthatches into the Rocky Mountains South population, which is otherwise closely related to Rocky Mountains North. We conclude that white-breasted nuthatches are best considered at least 3 species and that ghost lineage introgression has contributed to differentiation between the two Rocky Mountain populations. White-breasted nuthatches provide a dramatic case of morphological similarity despite high genomic differentiation, and the varying levels of reproductive isolation among the four groups provide an example of the speciation continuum. </p>
Data from: Introgression underlies phylogenetic uncertainty but not parallel plumage evolution in a recent songbird radiation
<p class="MsoNormal"><span>Instances of parallel phenotypic evolution offer great opportunities to understand the evolutionary processes underlying phenotypic changes. However, confirming parallel phenotypic evolution and studying its causes requires a robust phylogenetic framework. One such example is the "black-and-white wagtails", a group of five species in the songbird genus </span><em><span>Motacilla</span></em><span>: one species, the White Wagtail (</span><em><span>M. alba</span></em><span>), shows wide intra-specific plumage variation, while the four others form two pairs of very similar-looking species (African Pied Wagtail </span><em><span>M. aguimp </span></em><span>+ Mekong Wagtail </span><em><span>M. samveasnae</span></em><span><em><span> </span></em>and Japanese Wagtail </span><em><span>M. grandis</span></em><span><em><span> </span></em>+ White-browed Wagtail </span><em><span>M. maderaspatensis</span></em><span>, respectively). However, the two species in each of these pairs were not recovered as sisters in previous phylogenetic inferences. Their relationships varied depending on the markers used, suggesting that gene tree heterogeneity might have hampered accurate phylogenetic inference. Here, we use whole genome resequencing data to explore the phylogenetic relationships within this group, with a special emphasis on characterizing the extent of gene tree heterogeneity and its underlying causes. We first used multispecies coalescent methods to generate a "complete evidence" phylogenetic hypothesis based on genome-wide variants, while accounting for incomplete lineage sorting and introgression. We then investigated the variation in phylogenetic signal across the genome, to quantify the extent of discordance across genomic regions, and test its underlying causes. We found that wagtail genomes are mosaics of regions supporting variable genealogies, because of ILS and inter-specific introgression. The most common topology across the genome, supporting </span><em><span>M. alba</span></em><span> and </span><em><span>M. aguimp</span></em><span> as sister species, appears to be influenced by ancient introgression. Additionally, we inferred another ancient introgression event, between </span><em><span>M. alba</span></em><span> and </span><em><span>M. grandis</span></em><span>. By combining results from multiple analyses, we propose a phylogenetic network for the black-and-white wagtails that confirms that similar phenotypes evolved in non-sister lineages, supporting parallel plumage evolution. Furthermore, the inferred reticulations do not connect species with similar plumage coloration, suggesting that introgression does not underlie parallel plumage evolution in this group. Our results demonstrate the importance of investigation of genome-wide patterns of gene tree heterogeneity to help understanding the mechanisms underlying phenotypic evolution.</span></p>
Supplementary data from: Introgression across narrow contact zones shapes the genomic landscape of phylogenetic variation in an African bird clade
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Asymmetric allelic introgression across a hybrid zone of the coal tit (Periparus ater) in the central Himalayas
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Data from: Introgression of non-native mitochondrial haplotypes from farmed to wild Atlantic salmon
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Signals interpreted as archaic introgression are driven primarily by accelerated evolution in Africa
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Data from: Molecular evidence of introgression between water frog species (Anura: Telmatobiidae) in the high Andes
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Data from: A new species and introgression in eastern Asian hemlocks (Pinaceae: Tsuga)
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Data for: Phylogenomic analyses of the Neotropical Artocarpeae (Moraceae) reveal a history of introgression and support the reinstatement of Acanthinophyllum
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Hybrid zone analysis using coalescent-based estimates of introgression and migration in plateau fence lizards (Sceloporus tristichus)
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Data from: Introgression between divergent corn borer species in a region of sympatry: implications on the evolution and adaptation of pest arthropods
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High-quality SNPs from genic regions highlight introgression patterns among European white oaks (Quercus petraea and Q. robur)
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Complex polyploids: Origins, genomic composition, and role of introgressed alleles
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Crossing experiment and mating trial data for New Zealand Dolomedes undergoing introgression
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