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首页> 外文期刊>British Poultry Science >Identification and characterisation of microRNAs and Piwi-interacting RNAs in cockerels' spermatozoa by Solexa sequencing
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Identification and characterisation of microRNAs and Piwi-interacting RNAs in cockerels' spermatozoa by Solexa sequencing

机译:SOLEXA测序鉴定和表征COCKERELS精子中的微小腹和PIWI相互作用RNA

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1. There has been substantial research focused on the roles of microRNAs (miRNAs) and Piwi-interacting RNAs (piRNAs) derived from mammalian spermatozoa; however, comparatively little is known about the role of spermatozoa-derived miRNAs and piRNAs within breeding cockerels' spermatozoa.2. A small RNA library of cockerels' spermatozoa was constructed using Illumina high-throughput sequencing technology. Unique sequences with lengths of 18-26 nucleotides were mapped to miRBase 21.0 and unique sequences with lengths of 25-37 nucleotides were mapped to a piRNA database. A total of 1311 miRNAs and 2448 potential piRNAs were identified. Based on stem-loop qRT-PCR, 8 miRNAs were validated.3. Potential target genes of the abundant miRNAs were predicted, and further Kyoto Encyclopedia of Genes and Genomes database (KEGG) and Gene Ontology (GO) analyses were performed, which revealed that some candidate miRNAs were involved in the spermatogenesis process, spermatozoa epigenetic programming and further embryonic development.5. GO and KEGG analyses based on mapping genes of expressed piRNAs were performed, which revealed that spermatozoal piRNAs could play important regulatory roles in embryonic development of offspring.6. The search for endogenous spermatozoa miRNAs and piRNAs will contribute to a preliminary database for functional and molecular mechanistic studies in embryonic development and spermatozoa epigenetic programming.
机译:1.重点研究了微小RNA(miRNA)和PIWI-相互作用的RNA(PIRNA)衍生自哺乳动物精子的角质;然而,相对较少地讨论了精子唑衍生的miRNA和PiRNA在育种公鸡的精子中的作用。使用Illumina高通量测序技术构建了公鸡精子的小RNA文库。长度为18-26个核苷酸的独特序列被映射到miRBASE 21.0中,并且将长度为25-37个核苷酸的唯一序列映射到PiRNA数据库。鉴定了总共1311名miRNA和2448个潜在的PiRNA。基于茎环QRT-PCR,验证了8个miRNA。预测丰富的miRNA的潜在靶基因,并进行了基因和基因组数据库(Kegg)和基因本体(GO)分析的进一步京都百科全书,这表明一些候选MiRNA参与了精子发生过程,精子外观编程和进一步胚胎发育。进行基于表达PiRNA的映射基因的GO和KEGG分析,显示精子PIRNA可以在后代的胚胎发育中发挥重要的调节作用。寻找内源性精子麦芽菌和PiRNA将有助于胚胎发育中功能和分子机制研究的初步数据库和精子术语表观编程。

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