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Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss

casper has been a widely used transparent mutant of zebrafish. It possesses a combined loss of reflective iridophores and light-absorbing melanophores, which gives rise to its almost transparent trunk throughout larval and adult stages. Nevertheless, genomic causal mutations of this transparent phen...

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Autores principales: Bian, Chao, Chen, Weiting, Ruan, Zhiqiang, Hu, Zhe, Huang, Yu, Lv, Yunyun, Xu, Tengfei, Li, Jia, Shi, Qiong, Ge, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7177266/
https://www.ncbi.nlm.nih.gov/pubmed/32235607
http://dx.doi.org/10.3390/ijms21072385
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author Bian, Chao
Chen, Weiting
Ruan, Zhiqiang
Hu, Zhe
Huang, Yu
Lv, Yunyun
Xu, Tengfei
Li, Jia
Shi, Qiong
Ge, Wei
author_facet Bian, Chao
Chen, Weiting
Ruan, Zhiqiang
Hu, Zhe
Huang, Yu
Lv, Yunyun
Xu, Tengfei
Li, Jia
Shi, Qiong
Ge, Wei
author_sort Bian, Chao
collection PubMed
description casper has been a widely used transparent mutant of zebrafish. It possesses a combined loss of reflective iridophores and light-absorbing melanophores, which gives rise to its almost transparent trunk throughout larval and adult stages. Nevertheless, genomic causal mutations of this transparent phenotype are poorly defined. To identify the potential genetic basis of this fascinating morphological phenotype, we constructed genome maps by performing genome sequencing of 28 zebrafish individuals including wild-type AB strain, roy orbison (roy), and casper mutants. A total of 4.3 million high-quality and high-confidence homozygous single nucleotide polymorphisms (SNPs) were detected in the present study. We also identified a 6.0-Mb linkage disequilibrium block specifically in both roy and casper that was composed of 39 functional genes, of which the mpv17 gene was potentially involved in the regulation of iridophore formation and maintenance. This is the first report of high-confidence genomic mutations in the mpv17 gene of roy and casper that potentially leads to defective splicing as one major molecular clue for the iridophore loss. Additionally, comparative transcriptomic analyses of skin tissues from the AB, roy and casper groups revealed detailed transcriptional changes of several core genes that may be involved in melanophore and iridophore degeneration. In summary, our updated genome and transcriptome sequencing of the casper and roy mutants provides novel genetic clues for the iridophore loss. These new genomic variation maps will offer a solid genetic basis for expanding the zebrafish mutant database and in-depth investigation into pigmentation of animals.
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spelling pubmed-71772662020-04-28 Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss Bian, Chao Chen, Weiting Ruan, Zhiqiang Hu, Zhe Huang, Yu Lv, Yunyun Xu, Tengfei Li, Jia Shi, Qiong Ge, Wei Int J Mol Sci Article casper has been a widely used transparent mutant of zebrafish. It possesses a combined loss of reflective iridophores and light-absorbing melanophores, which gives rise to its almost transparent trunk throughout larval and adult stages. Nevertheless, genomic causal mutations of this transparent phenotype are poorly defined. To identify the potential genetic basis of this fascinating morphological phenotype, we constructed genome maps by performing genome sequencing of 28 zebrafish individuals including wild-type AB strain, roy orbison (roy), and casper mutants. A total of 4.3 million high-quality and high-confidence homozygous single nucleotide polymorphisms (SNPs) were detected in the present study. We also identified a 6.0-Mb linkage disequilibrium block specifically in both roy and casper that was composed of 39 functional genes, of which the mpv17 gene was potentially involved in the regulation of iridophore formation and maintenance. This is the first report of high-confidence genomic mutations in the mpv17 gene of roy and casper that potentially leads to defective splicing as one major molecular clue for the iridophore loss. Additionally, comparative transcriptomic analyses of skin tissues from the AB, roy and casper groups revealed detailed transcriptional changes of several core genes that may be involved in melanophore and iridophore degeneration. In summary, our updated genome and transcriptome sequencing of the casper and roy mutants provides novel genetic clues for the iridophore loss. These new genomic variation maps will offer a solid genetic basis for expanding the zebrafish mutant database and in-depth investigation into pigmentation of animals. MDPI 2020-03-30 /pmc/articles/PMC7177266/ /pubmed/32235607 http://dx.doi.org/10.3390/ijms21072385 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bian, Chao
Chen, Weiting
Ruan, Zhiqiang
Hu, Zhe
Huang, Yu
Lv, Yunyun
Xu, Tengfei
Li, Jia
Shi, Qiong
Ge, Wei
Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title_full Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title_fullStr Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title_full_unstemmed Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title_short Genome and Transcriptome Sequencing of casper and roy Zebrafish Mutants Provides Novel Genetic Clues for Iridophore Loss
title_sort genome and transcriptome sequencing of casper and roy zebrafish mutants provides novel genetic clues for iridophore loss
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7177266/
https://www.ncbi.nlm.nih.gov/pubmed/32235607
http://dx.doi.org/10.3390/ijms21072385
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