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54 results for “hybrid incompatibilities”
Data from: Fine mapping of dominant X-linked incompatibility alleles in Drosophila hybrids
Sex chromosomes have a large effect on reproductive isolation and play an important role in hybrid inviability. In Drosophila hybrids, X-linked genes have pronounced deleterious effects on fitness in male hybrids, which have only one X chromosome. Several studies have succeeded at locating and identifying recessive X-linked alleles involved in hybrid inviability. Nonetheless, the density of dominant X-linked alleles involved in interspecific hybrid viability remains largely unknown. In this report, we study the effects of a panel of small fragments of the D. melanogaster X-chromosome carried on the D. melanogaster Y-chromosome in three kinds of hybrid males: D. melanogaster/D. santomea, D. melanogaster/D. simulans and D. melanogaster/D. mauritiana. D. santomea and D. melanogaster diverged over 10 million years ago, while D. simulans (and D. mauritiana) diverged from D. melanogaster over 3 million years ago. We find that the X-chromosome from D. melanogaster carries dominant alleles that are lethal in mel/san, mel/sim, and mel/mau hybrids, and more of these alleles are revealed in the most divergent cross. We then compare these effects on hybrid viability with two D. melanogaster intraspecific crosses. Unlike the interspecific crosses, we found no X-linked alleles that cause lethality in intraspecific crosses. Our results reveal the existence of dominant alleles on the X-chromosome of D. melanogaster which cause lethality in three different interspecific hybrids. These alleles only cause inviability in hybrid males, yet have little effect in hybrid females. This suggests that X-linked elements that cause hybrid inviability in males might not do so in hybrid females due to differing sex chromosome interactions.
Data from: The genomics of incompatibility factors and sex determination in hybridizing species of Cottus (Pisces)
Cottus rhenanus and Cottus perifretum have formed hybrid lineages and narrow hybrid zones that can be best explained through the action of natural selection. However, the underlying selective forces as well as their genomic targets are not well understood. This study identifies genomic regions in the parental species that cause hybrid incompatibilities and tests whether these manifest in a sex-specific manner to learn about processes that affect natural hybridization in Cottus. Interspecific F2 crosses were analyzed for 255 markers for genetic mapping and to detect transmission distortion as a sign for genetic incompatibilities. The Cottus map consists of 24 linkage groups with a total length of 1575.4 cM. A male heterogametic (XY) sex determination region was found on different linkage groups in the two parental species. Genetic incompatibilities were incomplete, varied among individuals and populations and were not associated with the heterogametic sex. The variance between populations and individuals makes it unlikely that there are species-specific incompatibility loci that could affect the gene pool of natural hybrids in a simple and predictable way. Conserved synteny with sequenced fish genomes permits to genetically study the Cottus genome through the transfer of genomic information from the model fish species. Homology relationships of candidate genomic regions in Cottus indicate that sex determination is not based on the same genomic regions found in other fish species. This suggests a fast evolutionary turnover of the genetic basis of sex determination that, together with the small size of the heterogametic regions, may contribute to the absence of fitness effects related to the Haldane's rule.
Salinity, not genetic incompatibilities, limits the establishment of the invasive hybrid cattail Typha × glauca in coastal wetlands
<p>A single pair of co-existing species that can successfully hybridize may produce many more hybrids in some regions than in others. The reasons for this are not well understood, but could help explain processes such as species diversification or the range expansion of invasive hybrids. The widespread cattails <i>Typha latifolia </i>and <i>T. angustifolia </i>seldom hybridize in some parts of their range, but in other areas produce the dominant hybrid <i>T. </i>× <i>glauca. </i>We used a combination of field and greenhouse experiments to investigate why <i>T. </i>× <i>glauca </i>has invaded wetlands in the Laurentian Great Lakes region of southern Ontario, Canada, but is much less common in the coastal wetlands of NS in eastern Canada. One potentially important environmental difference between these two regions is salinity. We therefore tested three hypotheses: 1) <i>T. latifolia </i>and <i>T. angustifolia </i>in NS are genetically incompatible; 2) the germination or growth of <i>T. </i>× <i>glauca </i>is reduced by salinity;<i> </i>and 3) <i>T. latifolia, </i>a main competitor of <i>T. </i>× <i>glauca</i>, is locally adapted to saline conditions in NS. Our experiments showed that NS <i>T. latifolia </i>and <i>T. angustifolia </i>are genetically compatible, and that saline conditions do not impede growth of hybrid plants. However, we also found that under conditions of high salinity, germination rates of hybrid seeds were substantially lower than those of NS <i>T. latifolia. </i> In addition, germination rates of NS<i> T. latifolia </i>were higher than those of Ontario <i>T. latifolia, </i>suggesting local adaptation to salinity in coastal wetlands. This study adds to the growing body of literature which identifies the important roles that local habitat and adaptation can play in the distributions and characteristics of hybrid zones. </p>
Data from: The genetic architecture of hybrid incompatibilities and their effect on barriers to introgression in secondary contact
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Data from: Detection of genetic incompatibilities in non-model systems using simple genetic markers: hybrid breakdown in the haplodiploid spider mite Tetranychus evansi
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Salinity, not genetic incompatibilities, limits the establishment of the invasive hybrid cattail Typha × glauca in coastal wetlands
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Data from: Hybrid breakdown caused by epistasis-based recessive incompatibility in a cross of rice (Oryza sativa L.)
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Data from: The genomics of incompatibility factors and sex determination in hybridizing species of Cottus (Pisces)
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Data from: The genomic and ecological context of hybridization affects the probability that symmetrical incompatibilities drive hybrid speciation
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Data from: Fine mapping of dominant X-linked incompatibility alleles in Drosophila hybrids
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Data from: Hybrid incompatibilities, local adaptation, and the genomic distribution of natural introgression between species
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Analysis of Hybrid Incompatability between C nigoni and C briggsae by mRNA sequencing
GEO Series GSE76306. Caenorhabditis nigoni; Caenorhabditis briggsae. 14 samples. Type: Expression profiling by high throughput sequencing.
Allele specific effects of a Drosophila hybrid incompatibility gene
GEO Series GSE118291. Drosophila melanogaster. 6 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
Analysis of Hybrid Incompatability between C nigoni and C briggsae
GEO Series GSE75763. Caenorhabditis nigoni; Caenorhabditis briggsae. 3 samples. Type: Non-coding RNA profiling by high throughput sequencing.
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