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Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids

Divergence of gene expression and alternative splicing is a crucial driving force in the evolution of species; to date, however the molecular mechanism remains unclear. Hybrids of closely related species provide a suitable model to analyze allele-specific expression (ASE) and allele-specific alterna...

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Autores principales: Wang, Yu, Gao, Shan, Zhao, Yue, Chen, Wei-Huang, Shao, Jun-Jie, Wang, Ni-Ni, Li, Ming, Zhou, Guang-Xian, Wang, Lei, Shen, Wen-Jing, Xu, Jing-Tao, Deng, Wei-Dong, Wang, Wen, Chen, Yu-Lin, Jiang, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Science Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680129/
https://www.ncbi.nlm.nih.gov/pubmed/31271004
http://dx.doi.org/10.24272/j.issn.2095-8137.2019.042
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author Wang, Yu
Gao, Shan
Zhao, Yue
Chen, Wei-Huang
Shao, Jun-Jie
Wang, Ni-Ni
Li, Ming
Zhou, Guang-Xian
Wang, Lei
Shen, Wen-Jing
Xu, Jing-Tao
Deng, Wei-Dong
Wang, Wen
Chen, Yu-Lin
Jiang, Yu
author_facet Wang, Yu
Gao, Shan
Zhao, Yue
Chen, Wei-Huang
Shao, Jun-Jie
Wang, Ni-Ni
Li, Ming
Zhou, Guang-Xian
Wang, Lei
Shen, Wen-Jing
Xu, Jing-Tao
Deng, Wei-Dong
Wang, Wen
Chen, Yu-Lin
Jiang, Yu
author_sort Wang, Yu
collection PubMed
description Divergence of gene expression and alternative splicing is a crucial driving force in the evolution of species; to date, however the molecular mechanism remains unclear. Hybrids of closely related species provide a suitable model to analyze allele-specific expression (ASE) and allele-specific alternative splicing (ASS). Analysis of ASE and ASS can uncover the differences in cis-regulatory elements between closely related species, while eliminating interference of trans-regulatory elements. Here, we provide a detailed characterization of ASE and ASS from 19 and 10 transcriptome datasets across five tissues from reciprocal-cross hybrids of horse×donkey (mule/hinny) and cattle×yak (dzo), respectively. Results showed that 4.8%–8.7% and 10.8%–16.7% of genes exhibited ASE and ASS, respectively. Notably, lncRNAs and pseudogenes were more likely to show ASE than protein-coding genes. In addition, genes showing ASE and ASS in mule/hinny were found to be involved in the regulation of muscle strength, whereas those of dzo were involved in high-altitude adaptation. In conclusion, our study demonstrated that exploration of genes showing ASE and ASS in hybrids of closely related species is feasible for species evolution research.
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spelling pubmed-66801292019-08-07 Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids Wang, Yu Gao, Shan Zhao, Yue Chen, Wei-Huang Shao, Jun-Jie Wang, Ni-Ni Li, Ming Zhou, Guang-Xian Wang, Lei Shen, Wen-Jing Xu, Jing-Tao Deng, Wei-Dong Wang, Wen Chen, Yu-Lin Jiang, Yu Zool Res Articles Divergence of gene expression and alternative splicing is a crucial driving force in the evolution of species; to date, however the molecular mechanism remains unclear. Hybrids of closely related species provide a suitable model to analyze allele-specific expression (ASE) and allele-specific alternative splicing (ASS). Analysis of ASE and ASS can uncover the differences in cis-regulatory elements between closely related species, while eliminating interference of trans-regulatory elements. Here, we provide a detailed characterization of ASE and ASS from 19 and 10 transcriptome datasets across five tissues from reciprocal-cross hybrids of horse×donkey (mule/hinny) and cattle×yak (dzo), respectively. Results showed that 4.8%–8.7% and 10.8%–16.7% of genes exhibited ASE and ASS, respectively. Notably, lncRNAs and pseudogenes were more likely to show ASE than protein-coding genes. In addition, genes showing ASE and ASS in mule/hinny were found to be involved in the regulation of muscle strength, whereas those of dzo were involved in high-altitude adaptation. In conclusion, our study demonstrated that exploration of genes showing ASE and ASS in hybrids of closely related species is feasible for species evolution research. Science Press 2019-07-18 /pmc/articles/PMC6680129/ /pubmed/31271004 http://dx.doi.org/10.24272/j.issn.2095-8137.2019.042 Text en © 2019. Editorial Office of Zoological Research, Kunming Institute of Zoology, Chinese Academy of Sciences This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Articles
Wang, Yu
Gao, Shan
Zhao, Yue
Chen, Wei-Huang
Shao, Jun-Jie
Wang, Ni-Ni
Li, Ming
Zhou, Guang-Xian
Wang, Lei
Shen, Wen-Jing
Xu, Jing-Tao
Deng, Wei-Dong
Wang, Wen
Chen, Yu-Lin
Jiang, Yu
Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title_full Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title_fullStr Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title_full_unstemmed Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title_short Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
title_sort allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6680129/
https://www.ncbi.nlm.nih.gov/pubmed/31271004
http://dx.doi.org/10.24272/j.issn.2095-8137.2019.042
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