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首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Integration of small RNAs and mRNAs by high-throughput sequencing reveals a complex regulatory network in Chinese sea cucumber, Russian sea cucumber and their hybrids
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Integration of small RNAs and mRNAs by high-throughput sequencing reveals a complex regulatory network in Chinese sea cucumber, Russian sea cucumber and their hybrids

机译:通过高通量测序的小RNA和MRNA的整合揭示了中国海参,俄罗斯海黄瓜及其杂种中的复杂监管网络

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The body wall of the sea cucumber is an important tissue with high nutritional value. In this study, the parents of Apostichopus japonicus were derived from Russia (R) and China (C). We examined the transcriptional profiles in the body wall from F1 hybrids (CR and RC) and purebreds (CC and RR) at 9 months. In total, 34.07 G clean data were obtained from the transcriptome, 100,870 unigenes were identified, and 26,483 unigenes were annotated. Based on edgeR, 1097-4,587differentially expressed genes (DEGs) were identified. In total, 50.72 M clean data were obtained from the small RNA libraries, and 202 miRNAs were identified, including 7 known miRNAs and 195 novel miRNAs. In total, 175 miRNAs were identified as significantly differentially expressed miRNAs (diffmRNAs). Additionally, 3538 target genes were predicted, and 2243 genes were annotated in NR, COG, GO and KEGG. Furthermore, the relationships between the small RNAs and transcripts were identified, and the novel miRNA functions were predicted by integrating the small RNAs and transcriptome. According to the saponins content, RR was lower than other lines. DEGs involved in the biosynthesis of saponins were identified, including 23 DEGs involved in glycosyl, 21 DEGs involved in P450s, 5 DEGs involved in transferases and 15 DEGs involved in OSCs, from these, gdp-l-fucose, fucTcpa2 and cyp17A1 may affect the differences in the saponins development of the body wall in RR purebreds. In addition, miRNA_11347 and miRNA 32095 was associated in saponins. Our study provides fundamental information regarding the molecular mechanism of the heterosis of the sea cucumber and may suggest strategies for the selection of rapidly growing and highly nutritive strains of sea cucumber in aquaculture.
机译:海参的车身壁是具有高营养价值的重要组织。在这项研究中,血小平群岛父母源自俄罗斯(R)和中国(C)。我们在9个月内检查了F1杂交种(Cr和RC)和纯种(CC和RR)的体壁中的转录型材。总共,从转录组中获得34.07g清洁数据,鉴定了100,870个unegenes,并注释了26,483个unigenes。基于edger,确定了1097-4,587个细化的基因(DEGS)。总共可以从小RNA文库获得50.72M清洁数据,并鉴定出202mIRNA,其中包括7个已知的miRNA和195个新的miRNA。总共,鉴定了175 miRNA,如显着差异表达的miRNA(Diffmrnas)。另外,预测了3538个靶基因,并在NR,COG,GO和Kegg中注释2243个基因。此外,鉴定了小RNA和转录物之间的关系,通过整合小RNA和转录组来预测新的miRNA函数。根据Saponins含量,RR低于其他线。鉴定涉及皂苷的生物合成的Degs,包括23只参与糖基,参与P450s的21只参与,参与转移酶的5次,涉及OSC的15°,来自这些,GDP-L-岩藻糖,导体CPA2和CYP17A1可能影响RR纯血统中车身墙体开发皂苷开发的差异。此外,miRNA_11347和miRNA 32095在皂苷中有关。我们的研究提供了有关海参的杂种优势的分子机制的基本信息,并可能表明在水产养殖中选择快速生长和高营养的海参菌株的策略。

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