Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.

BACKGROUND: Catfish has a male-heterogametic (XY) sex determination system, but genes involved in gonadogenesis, spermatogenesis, testicular determination, and sex determination are poorly understood. As a first step of understanding the transcriptome of the testis, here, we conducted RNA-Seq analys...

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Main Authors: Fanyue Sun, Shikai Liu, Xiaoyu Gao, Yanliang Jiang, Dayan Perera, Xiuli Wang, Chao Li, Luyang Sun, Jiaren Zhang, Ludmilla Kaltenboeck, Rex Dunham, Zhanjiang Liu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3709890?pdf=render
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spelling doaj-9aaf8292bc3f43db9d3bf21b482a50df2020-11-25T01:26:50ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0187e6845210.1371/journal.pone.0068452Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.Fanyue SunShikai LiuXiaoyu GaoYanliang JiangDayan PereraXiuli WangChao LiLuyang SunJiaren ZhangLudmilla KaltenboeckRex DunhamZhanjiang LiuBACKGROUND: Catfish has a male-heterogametic (XY) sex determination system, but genes involved in gonadogenesis, spermatogenesis, testicular determination, and sex determination are poorly understood. As a first step of understanding the transcriptome of the testis, here, we conducted RNA-Seq analysis using high throughput Illumina sequencing. METHODOLOGY/PRINCIPAL FINDINGS: A total of 269.6 million high quality reads were assembled into 193,462 contigs with a N50 length of 806 bp. Of these contigs, 67,923 contigs had hits to a set of 25,307 unigenes, including 167 unique genes that had not been previously identified in catfish. A meta-analysis of expressed genes in the testis and in the gynogen (double haploid female) allowed the identification of 5,450 genes that are preferentially expressed in the testis, providing a pool of putative male-biased genes. Gene ontology and annotation analysis suggested that many of these male-biased genes were involved in gonadogenesis, spermatogenesis, testicular determination, gametogenesis, gonad differentiation, and possibly sex determination. CONCLUSION/SIGNIFICANCE: We provide the first transcriptome-level analysis of the catfish testis. Our analysis would lay the basis for sequential follow-up studies of genes involved in sex determination and differentiation in catfish.http://europepmc.org/articles/PMC3709890?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Fanyue Sun
Shikai Liu
Xiaoyu Gao
Yanliang Jiang
Dayan Perera
Xiuli Wang
Chao Li
Luyang Sun
Jiaren Zhang
Ludmilla Kaltenboeck
Rex Dunham
Zhanjiang Liu
spellingShingle Fanyue Sun
Shikai Liu
Xiaoyu Gao
Yanliang Jiang
Dayan Perera
Xiuli Wang
Chao Li
Luyang Sun
Jiaren Zhang
Ludmilla Kaltenboeck
Rex Dunham
Zhanjiang Liu
Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
PLoS ONE
author_facet Fanyue Sun
Shikai Liu
Xiaoyu Gao
Yanliang Jiang
Dayan Perera
Xiuli Wang
Chao Li
Luyang Sun
Jiaren Zhang
Ludmilla Kaltenboeck
Rex Dunham
Zhanjiang Liu
author_sort Fanyue Sun
title Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
title_short Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
title_full Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
title_fullStr Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
title_full_unstemmed Male-biased genes in catfish as revealed by RNA-Seq analysis of the testis transcriptome.
title_sort male-biased genes in catfish as revealed by rna-seq analysis of the testis transcriptome.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description BACKGROUND: Catfish has a male-heterogametic (XY) sex determination system, but genes involved in gonadogenesis, spermatogenesis, testicular determination, and sex determination are poorly understood. As a first step of understanding the transcriptome of the testis, here, we conducted RNA-Seq analysis using high throughput Illumina sequencing. METHODOLOGY/PRINCIPAL FINDINGS: A total of 269.6 million high quality reads were assembled into 193,462 contigs with a N50 length of 806 bp. Of these contigs, 67,923 contigs had hits to a set of 25,307 unigenes, including 167 unique genes that had not been previously identified in catfish. A meta-analysis of expressed genes in the testis and in the gynogen (double haploid female) allowed the identification of 5,450 genes that are preferentially expressed in the testis, providing a pool of putative male-biased genes. Gene ontology and annotation analysis suggested that many of these male-biased genes were involved in gonadogenesis, spermatogenesis, testicular determination, gametogenesis, gonad differentiation, and possibly sex determination. CONCLUSION/SIGNIFICANCE: We provide the first transcriptome-level analysis of the catfish testis. Our analysis would lay the basis for sequential follow-up studies of genes involved in sex determination and differentiation in catfish.
url http://europepmc.org/articles/PMC3709890?pdf=render
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