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Identification and comparative analysis of Eriocheir sinensis microRNA transcriptome from claw muscles related molting

机译:爪肌相关蜕皮的 Eriocheir sinensis microRNA转录组的鉴定和比较分析

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Molting is a critical developmental process for crustaceans, during which the claw muscles undergo periodic atrophy and restoration. The regulatory mechanism of this special muscle reshuffle around ecdysis was not clear. To investigate the molecular mechanism underlying the muscle changes in crustaceans, we used Illumina/Solexa deep sequencing technology to sequence small RNA libraries prepared from claw muscles of Eriocheir sinensis in three molting stages (inter-molt C stage, later pre-molt D~(3–4)stage and post molt A–B stage). The sequencing resulted in 8,054,808, 9,944,487 and 10,202,589 high-quality clean reads, corresponding to 2767, 2676, and 2891 unique miRNAs for the A–B, C and D~(3–4)stage samples, respectively. Bioinformatic analyses identified 1485 mature miRNAs, among which 1392 miRNAs belong to 218 miRNA families and 93 miRNAs belong to unknown families. Altogether, 115 miRNAs were differentially expressed among the three molting stages, and they were clustered into 5 subclusters according to their expression patterns. GO and KEGG analysis revealed that the predicted targets of the differentially expressed miRNAs are particularly associated with gene expression, protein degradation and synthesis, muscle atrophy and development, post-embryonic morphogenesis, and anatomical structure development. Our findings suggest that the differentially expressed miRNAs and their target genes play important roles in growth and development of crab muscles induced by molting.
机译:蜕皮是甲壳动物的关键发育过程,在此过程中,爪状肌肉会周期性萎缩和恢复。蜕皮周围这种特殊的肌肉改组的调节机制尚不清楚。为了研究甲壳动物肌肉变化的潜在分子机制,我们使用Illumina / Solexa深度测序技术对由中华绒螯蟹的爪肌制备的小RNA文库进行了三个蜕皮阶段(蜕皮C阶段,后来蜕皮前D〜( 3-4)阶段和蜕皮后的A–B阶段)。测序结果分别得到了8,054,808、9,944,487和10,202,589个高质量的纯净读段,分别对应于A–B,C和D〜(3-4)级样品的2767、2676和2891个独特的miRNA。生物信息学分析鉴定出1485个成熟的miRNA,其中1392个miRNA属于218个miRNA家族,而93个miRNA属于未知家族。在这三个蜕皮阶段中,总共有115个miRNA差异表达,并根据它们的表达模式将它们分为5个亚类。 GO和KEGG分析表明,差异表达的miRNA的预测靶标尤其与基因表达,蛋白质降解和合成,肌肉萎缩和发育,胚胎后形态发生以及解剖结构发育有关。我们的发现表明,差异表达的miRNA及其靶基因在蜕皮诱导的蟹肌生长发育中起重要作用。

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