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      Comparative analysis of testis transcriptomes from triploid and fertile diploid cyprinid fish.

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          Abstract

          The fertility of fish is a key factor in fish breeding. RNA-seq is widely used in high-throughput sequencing and provides a rapid method to examine the molecular mechanisms underlying a biological process. To probe fertility-related molecular mechanisms, we obtained testis transcriptomes from diploid and triploid cyprinid fish and tested for differentially expressed genes (DEGs) in the testis. A total of 6730 transcripts were differentially expressed between the triploid and diploid fish. In these transcripts, 2428 transcripts showed reduced expression and 4302 transcripts were overexpressed in triploid fish compared to the diploid fish. Functional analyses revealed that partial genes related to reproductive, developmental, and locomotion processes, and the axoneme, were differentially expressed in triploid fish relative to diploid fish. Pathway analysis indicated that variations in the gene expression levels of the "ubiquinone and other terpenoid-quinone biosynthesis pathway" and the "apoptotic pathway" played a central role in the sterility of triploid male fish. A series of genes (DNAHs, DNAL1, IFTs, and DNAAF1) associated with sperm flagellar assembly and motility, and testis-specific candidate markers (Tcte1, Tekt1, Tekt4, Spag17, Spag5, Spag9a, Spag1b, and Spef2), had low expression levels in the testis of triploid fish. We validated these DEGs in triploid fish using quantitative PCR to quantify expression of eight representative genes. Furthermore, 276 putative transcription factors, 6 chromatin remodeling factors, and 35 transcription cofactors exhibited differential expression in triploid compared to diploid fish. This study provides insight into the regulatory mechanisms causing sterility in male triploid fish.

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          Author and article information

          Journal
          Biol. Reprod.
          Biology of reproduction
          Society for the Study of Reproduction
          1529-7268
          0006-3363
          Apr 2015
          : 92
          : 4
          Affiliations
          [1 ] Key Laboratory of Protein Chemistry and Fish Developmental Biology of the Education Ministry of China, College of Life Sciences, Hunan Normal University, Changsha, Hunan Province, People's Republic of China.
          [2 ] Key Laboratory of Protein Chemistry and Fish Developmental Biology of the Education Ministry of China, College of Life Sciences, Hunan Normal University, Changsha, Hunan Province, People's Republic of China lsj@hunnu.edu.cn.
          Article
          biolreprod.114.125609
          10.1095/biolreprod.114.125609
          25761592
          427052a2-1346-428c-9d08-205d5abfe0e2
          History

          testis,RNA-seq,cyprinid fish,diploid,spermatogenesis,spermiogenesis,sterility,transcriptome,triploid

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