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Consequences of Lineage-Specific Gene Loss on Functional Evolution of Surviving Paralogs: ALDH1A and Retinoic Acid Signaling in Vertebrate Genomes

Journal Article · · PLoS Genetics
 [1];  [2];  [2];  [2];  [2]
  1. Univ. of Oregon, Eugene, OR (United States). Inst. of Neuroscience; DOE/OSTI
  2. Univ. of Oregon, Eugene, OR (United States). Inst. of Neuroscience
Genome duplications increase genetic diversity and may facilitate the evolution of gene subfunctions. Little attention, however, has focused on the evolutionary impact of lineage-specific gene loss. Here, we show that identifying lineagespecific gene loss after genome duplication is important for understanding the evolution of gene subfunctions in surviving paralogs and for improving functional connectivity among human and model organism genomes. We examine the general principles of gene loss following duplication, coupled with expression analysis of the retinaldehyde dehydrogenase Aldh1a gene family during retinoic acid signaling in eye development as a case study. Humans have three ALDH1A genes, but teleosts have just one or two. We used comparative genomics and conserved syntenies to identify loss of ohnologs (paralogs derived from genome duplication) and to clarify uncertain phylogenies. Analysis showed that Aldh1a1 and Aldh1a2 form a clade that is sister to Aldh1a3-related genes. Genome comparisons showed secondarily loss of aldh1a1 in teleosts, revealing that Aldh1a1 is not a tetrapod innovation and that aldh1a3 was recently lost in medaka, making it the first known vertebrate with a single aldh1a gene. Interestingly, results revealed asymmetric distribution of surviving ohnologs between co-orthologous teleost chromosome segments, suggesting that local genome architecture can influence ohnolog survival. We propose a model that reconstructs the chromosomal history of the Aldh1a family in the ancestral vertebrate genome, coupled with the evolution of gene functions in surviving Aldh1a ohnologs after R1, R2, and R3 genome duplications. Results provide evidence for early subfunctionalization and late subfunction-partitioning and suggest a mechanistic model based on altered regulation leading to heterochronic gene expression to explain the acquisition or modification of subfunctions by surviving ohnologs that preserve unaltered ancestral developmental programs in the face of gene loss.
Research Organization:
Univ. of Oregon, Eugene, OR (United States)
Sponsoring Organization:
National Institutes of Health (NIH); National Science Foundation (NSF); USDOE Office of Science (SC), Biological and Environmental Research (BER). Biological Systems Science Division
OSTI ID:
1627275
Journal Information:
PLoS Genetics, Journal Name: PLoS Genetics Journal Issue: 5 Vol. 5; ISSN 1553-7404
Publisher:
Public Library of ScienceCopyright Statement
Country of Publication:
United States
Language:
English

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ORTHOSCOPE: An Automatic Web Tool for Phylogenetically Inferring Bilaterian Orthogroups with User-Selected Taxa journal March 2019
Animal HECT ubiquitin ligases: evolution and functional implications journal January 2010
Transcriptomes of post-mitotic neurons identify the usage of alternative pathways during adult and embryonic neuronal differentiation journal December 2015
The Evolution of Pepsinogen C Genes in Vertebrates: Duplication, Loss and Functional Diversification journal March 2012
Evolutionary divergence of the vertebrate TNFAIP8 gene family: Applying the spotted gar orthology bridge to understand ohnolog loss in teleosts journal June 2017
The identification of novel regions for reproduction trait in Landrace and Large White pigs using a single step genome-wide association study journal December 2018
Lipid droplet biology and evolution illuminated by the characterization of a novel perilipin in teleost fish journal February 2017
Evolution of gene expression after whole-genome duplication: New insights from the spotted gar genome
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journal September 2017
Evolution of the DAN gene family in vertebrates journal February 2022
The spotted gar genome illuminates vertebrate evolution and facilitates human-teleost comparisons journal March 2016
Evolution by gene loss journal April 2016
Mechanisms of retinoic acid signalling and its roles in organ and limb development journal January 2015
A Comparative View on Sex Differentiation and Gametogenesis Genes in Lungfish and Coelacanths journal May 2018
ORTHOSCOPE: An Automatic Web Tool for Phylogenetically Inferring Bilaterian Orthogroups with User-Selected Taxa journal December 2018
Evolution of gene expression after whole-genome duplication: new insights from the spotted gar genome
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  • Journal of Experimental Zoology Part B: Molecular and Developmental Evolution https://doi.org/10.1101/151944
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Evolution of the DAN gene family in vertebrates posted_content January 2019
Evolution of nodal and nodal‐related genes and the putative composition of the heterodimers that trigger the nodal pathway in vertebrates journal March 2019
Embryogenic staging of fugu, Takifugu rubripes, and expression profiles of aldh1a2, aldh1a3 and cyp26a1: Embryogenic staging of fugu journal June 2011
Wnt evolution and function shuffling in liberal and conservative chordate genomes journal July 2018
Retinoic acid signaling pathways journal July 2019
RA and FGF Signalling Are Required in the Zebrafish Otic Vesicle to Pattern and Maintain Ventral Otic Identities journal December 2014

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