Literature DB >> 28615283

Cis- and Trans-regulatory Effects on Gene Expression in a Natural Population of Drosophila melanogaster.

Naoki Osada1,2,3, Ryutaro Miyagi4, Aya Takahashi5,6.   

Abstract

Cis- and trans-regulatory mutations are important contributors to transcriptome evolution. Quantifying their relative contributions to intraspecific variation in gene expression is essential for understanding the population genetic processes that underlie evolutionary changes in gene expression. Here, we have examined this issue by quantifying genome-wide, allele-specific expression (ASE) variation using a crossing scheme that produces F1 hybrids between 18 different Drosophila melanogaster strains sampled from the Drosophila Genetic Reference Panel and a reference strain from another population. Head and body samples from F1 adult females were subjected to RNA sequencing and the subsequent ASE quantification. Cis- and trans-regulatory effects on expression variation were estimated from these data. A higher proportion of genes showed significant cis-regulatory variation (∼28%) than those that showed significant trans-regulatory variation (∼9%). The sizes of cis-regulatory effects on expression variation were 1.98 and 1.88 times larger than trans-regulatory effects in heads and bodies, respectively. A generalized linear model analysis revealed that both cis- and trans-regulated expression variation was strongly associated with nonsynonymous nucleotide diversity and tissue specificity. Interestingly, trans-regulated variation showed a negative correlation with local recombination rate. Also, our analysis on proximal transposable element (TE) insertions suggested that they affect transcription levels of ovary-expressed genes more pronouncedly than genes not expressed in the ovary, possibly due to defense mechanisms against TE mobility in the germline. Collectively, our detailed quantification of ASE variations from a natural population has revealed a number of new relationships between genomic factors and the effects of cis- and trans-regulatory factors on expression variation.
Copyright © 2017 by the Genetics Society of America.

Entities:  

Keywords:  allele-specific expression; cis-regulatory variation; nucleotide diversity; trans-regulatory variation; transposable element

Mesh:

Year:  2017        PMID: 28615283      PMCID: PMC5560811          DOI: 10.1534/genetics.117.201459

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  80 in total

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5.  Compensatory cis-trans evolution and the dysregulation of gene expression in interspecific hybrids of Drosophila.

Authors:  Christian R Landry; Patricia J Wittkopp; Clifford H Taubes; Jose M Ranz; Andrew G Clark; Daniel L Hartl
Journal:  Genetics       Date:  2005-09-02       Impact factor: 4.562

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Authors:  Trudy F C Mackay; Stephen Richards; Eric A Stone; Antonio Barbadilla; Julien F Ayroles; Dianhui Zhu; Sònia Casillas; Yi Han; Michael M Magwire; Julie M Cridland; Mark F Richardson; Robert R H Anholt; Maite Barrón; Crystal Bess; Kerstin Petra Blankenburg; Mary Anna Carbone; David Castellano; Lesley Chaboub; Laura Duncan; Zeke Harris; Mehwish Javaid; Joy Christina Jayaseelan; Shalini N Jhangiani; Katherine W Jordan; Fremiet Lara; Faye Lawrence; Sandra L Lee; Pablo Librado; Raquel S Linheiro; Richard F Lyman; Aaron J Mackey; Mala Munidasa; Donna Marie Muzny; Lynne Nazareth; Irene Newsham; Lora Perales; Ling-Ling Pu; Carson Qu; Miquel Ràmia; Jeffrey G Reid; Stephanie M Rollmann; Julio Rozas; Nehad Saada; Lavanya Turlapati; Kim C Worley; Yuan-Qing Wu; Akihiko Yamamoto; Yiming Zhu; Casey M Bergman; Kevin R Thornton; David Mittelman; Richard A Gibbs
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Authors:  Andrew B Adrian; Josep M Comeron
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4.  Polymorphism and Divergence of Novel Gene Expression Patterns in Drosophila melanogaster.

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8.  Unraveling regulatory divergence, heterotic malleability, and allelic imbalance switching in rice due to drought stress.

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9.  Cis and trans effects differentially contribute to the evolution of promoters and enhancers.

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10.  Contributions of cis- and trans-Regulatory Evolution to Transcriptomic Divergence across Populations in the Drosophila mojavensis Larval Brain.

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