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Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle

The posttranscriptional gene regulation mediated by microRNA plays an important role in the development and function of male and female reproductive organs and germ cells in mammals, including cattle. In the present study, we identified novel and differentially expressed miRNAs in the testis and ova...

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Autores principales: Huang, Jinming, Ju, Zhihua, Li, Qiuling, Hou, Qinlei, Wang, Changfa, Li, Jianbin, Li, Rongling, Wang, Lingling, Sun, Tao, Hang, Suqin, Gao, Yundong, Hou, Minghai, Zhong, Jifeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164151/
https://www.ncbi.nlm.nih.gov/pubmed/21912509
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author Huang, Jinming
Ju, Zhihua
Li, Qiuling
Hou, Qinlei
Wang, Changfa
Li, Jianbin
Li, Rongling
Wang, Lingling
Sun, Tao
Hang, Suqin
Gao, Yundong
Hou, Minghai
Zhong, Jifeng
author_facet Huang, Jinming
Ju, Zhihua
Li, Qiuling
Hou, Qinlei
Wang, Changfa
Li, Jianbin
Li, Rongling
Wang, Lingling
Sun, Tao
Hang, Suqin
Gao, Yundong
Hou, Minghai
Zhong, Jifeng
author_sort Huang, Jinming
collection PubMed
description The posttranscriptional gene regulation mediated by microRNA plays an important role in the development and function of male and female reproductive organs and germ cells in mammals, including cattle. In the present study, we identified novel and differentially expressed miRNAs in the testis and ovary in Holstein cattle by combining the Solexa sequencing with bioinformatics. In total 100 and 104 novel pre-miRNAs were identified in testicular and ovarian tissues, encoding 122 and 136 mature miRNAs, respectively. Of these, 6 miRNAs appear to be bovine-specific. A total of 246 known miRNAs were co-expressed in the testicular and ovarian tissues. Of the known miRNAs, twenty-one testis-specific and nine ovary-specific (1-23 reads) were found. Approximately 30.5% of the known bovine miRNAs in this study were found to have >2-fold differential expression within the two respective reproductive organ systems. The putative miRNA target genes of miRNAs were involved in pathways associated with reproductive physiology. Both known and novel tissue-specific miRNAs are expressed by Real-time quantitative PCR analysis in dairy cattle. This study expands the number of miRNAs known to be expressed in cattle. The patterns of miRNAs expression differed significantly between the bovine testicular and ovarian tissues, which provide important information on sex differences in miRNA expression. Diverse miRNAs may play an important regulatory role in the development of the reproductive organs in Holstein cattle.
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spelling pubmed-31641512011-09-12 Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle Huang, Jinming Ju, Zhihua Li, Qiuling Hou, Qinlei Wang, Changfa Li, Jianbin Li, Rongling Wang, Lingling Sun, Tao Hang, Suqin Gao, Yundong Hou, Minghai Zhong, Jifeng Int J Biol Sci Research Paper The posttranscriptional gene regulation mediated by microRNA plays an important role in the development and function of male and female reproductive organs and germ cells in mammals, including cattle. In the present study, we identified novel and differentially expressed miRNAs in the testis and ovary in Holstein cattle by combining the Solexa sequencing with bioinformatics. In total 100 and 104 novel pre-miRNAs were identified in testicular and ovarian tissues, encoding 122 and 136 mature miRNAs, respectively. Of these, 6 miRNAs appear to be bovine-specific. A total of 246 known miRNAs were co-expressed in the testicular and ovarian tissues. Of the known miRNAs, twenty-one testis-specific and nine ovary-specific (1-23 reads) were found. Approximately 30.5% of the known bovine miRNAs in this study were found to have >2-fold differential expression within the two respective reproductive organ systems. The putative miRNA target genes of miRNAs were involved in pathways associated with reproductive physiology. Both known and novel tissue-specific miRNAs are expressed by Real-time quantitative PCR analysis in dairy cattle. This study expands the number of miRNAs known to be expressed in cattle. The patterns of miRNAs expression differed significantly between the bovine testicular and ovarian tissues, which provide important information on sex differences in miRNA expression. Diverse miRNAs may play an important regulatory role in the development of the reproductive organs in Holstein cattle. Ivyspring International Publisher 2011-08-18 /pmc/articles/PMC3164151/ /pubmed/21912509 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Huang, Jinming
Ju, Zhihua
Li, Qiuling
Hou, Qinlei
Wang, Changfa
Li, Jianbin
Li, Rongling
Wang, Lingling
Sun, Tao
Hang, Suqin
Gao, Yundong
Hou, Minghai
Zhong, Jifeng
Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title_full Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title_fullStr Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title_full_unstemmed Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title_short Solexa Sequencing of Novel and Differentially Expressed MicroRNAs in Testicular and Ovarian Tissues in Holstein Cattle
title_sort solexa sequencing of novel and differentially expressed micrornas in testicular and ovarian tissues in holstein cattle
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164151/
https://www.ncbi.nlm.nih.gov/pubmed/21912509
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