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The Rapid Evolution of X-linked Male-Biased Gene Expression and the Large-X Effect in Drosophila yakuba, D. santomea, and Their Hybrids

Overview of attention for article published in Molecular Biology and Evolution, July 2012
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Article details
Title
The Rapid Evolution of X-linked Male-Biased Gene Expression and the Large-X Effect in Drosophila yakuba, D. santomea, and Their Hybrids
Published in
Molecular Biology and Evolution, July 2012
DOI 10.1093/molbev/mss190
Pubmed ID
Authors
Abstract

The X chromosome has a large effect on hybrid dysfunction, particularly on hybrid male sterility. Although the evidence for this so-called large-X effect is clear, its molecular causes are not yet fully understood. One possibility is that, under certain conditions, evolution proceeds faster in X-linked than in autosomal loci (i.e., faster-X effect) due to both natural selection and their hemizygosity in males, an effect that is expected to be greatest in genes with male-biased expression. Here, I study genome-wide variation in transcript abundance between Drosophila yakuba and D. santomea, within these species and in their hybrid males to evaluate both the faster-X and large-X effects at the level of expression. I find that in X-linked male-biased genes (MBGs) expression evolves faster than in their autosomal counterparts, an effect that is accompanied by a unique reduction in expression polymorphism. This suggests that Darwinian selection is driving expression differences between species, likely enhanced by the hemizygosity of the X chromosome in males. Despite the recent split of the two sister species under study, abundant changes in both cis- and trans-regulatory elements underlie expression divergence in the majority of the genes analyzed, with significant differences in allelic ratios of transcript abundance between the two reciprocal F(1) hybrid males. Cis-trans coevolution at molecular level, evolved shortly after populations become isolated, may therefore contribute to explain the breakdown of the regulation of gene expression in hybrid males. Additionally, the X chromosome plays a large role in this hybrid male misexpression, which affects not only MBG but also, to a lesser degree, nonsex-biased genes. Interestingly, hybrid male misexpression is concentrated mostly in autosomal genes, likely facilitated by the rapid evolution of sex-linked trans-acting factors. I suggest that the faster evolution of X-linked MBGs, at both protein and expression levels, contributes to explain the large effect of the X chromosome on hybrid male sterility, likely mediating widespread autosomal misexpression through the preferential recognition of cis-regulatory elements by conspecific trans-acting factors (i.e., cis-trans conspecific recognition).

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X Demographics

X Demographics

The data shown below were collected from the profiles of 2 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley demographics

Mendeley demographics

The data shown below were compiled from readership statistics for 76 Mendeley readers of this research output. Click here to see the associated Mendeley record.
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Geographical breakdown

Geographical breakdown
Country Count As %
United States 2 3%
Sweden 1 1%
Netherlands 1 1%
Japan 1 1%
Colombia 1 1%
Brazil 1 1%
Unknown 69 91%

Demographic breakdown

Readers by professional status
Readers by professional status Count As %
Student > Ph. D. Student 22 29%
Researcher 15 20%
Student > Master 8 11%
Professor > Associate Professor 5 7%
Student > Bachelor 3 4%
Other 6 8%
Unknown 17 22%
Readers by discipline
Readers by discipline Count As %
Agricultural and Biological Sciences 44 58%
Biochemistry, Genetics and Molecular Biology 14 18%
Chemistry 1 1%
Unknown 17 22%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 12 October 2012.
All research outputs
#18,325,288
of 26,806,895 outputs
Outputs from Molecular Biology and Evolution
#4,671
of 5,394 outputs
Outputs of similar age
#120,591
of 181,520 outputs
Outputs of similar age from Molecular Biology and Evolution
#34
of 58 outputs
Altmetric has tracked 26,806,895 research outputs across all sources so far. This one is in the 21st percentile – i.e., 21% of other outputs scored the same or lower than it.
So far Altmetric has tracked 5,394 research outputs from this source. They typically receive a lot more attention than average, with a mean Attention Score of 18.2. This one is in the 7th percentile – i.e., 7% of its peers scored the same or lower than it.
Older research outputs will score higher simply because they've had more time to accumulate mentions. To account for age we can compare this Altmetric Attention Score to the 181,520 tracked outputs that were published within six weeks on either side of this one in any source. This one is in the 24th percentile – i.e., 24% of its contemporaries scored the same or lower than it.
We're also able to compare this research output to 58 others from the same source and published within six weeks on either side of this one. This one is in the 31st percentile – i.e., 31% of its contemporaries scored the same or lower than it.