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Full-length transcriptome assembly of andrias davidianus (amphibia: caudata) skin via hybrid sequencing

机译:通过混合测序的Andrias Davidianus(Amphibia:Caudata)皮肤的全长转录组合

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摘要

The Chinese giant salamander, Andrias davidianus, is the largest amphibian species in the world; it is thus an economically and ecologically important species. The skin of A. davidianus exhibits complex adaptive structural and functional adaptations to facilitate survival in aquatic and terrestrial ecosystems. Here, we report the first full-length amphibian transcriptome from the dorsal skin of A. davidianus, which was assembled using hybrid sequencing and the PacBio and Illumina platforms. A total of 153,038 transcripts were hybrid assembled (mean length of 2039 bp and N50 of 2172 bp), and 133,794 were annotated in at least one database (nr, Swiss-Prot, KEGG, KOGs, GO, and nt). A total of 58,732, 68,742, and 115,876 transcripts were classified into 24 KOG categories, 1903 GO term categories, and 46 KEGG pathways (level 2), respectively. A total of 207,627 protein-coding regions, 785 transcription factors, 27,237 potential long non-coding RNAs, and 8299 simple sequence repeats were also identified. The hybrid-assembled transcriptome recovered more full-length transcripts, had a higher N50 contig length, and a higher annotation rate of unique genes compared with that assembled in previous studies using next-generation sequencing. The high-quality full-length reference gene set generated in this study will help elucidate the genetic characteristics of A. davidianus skin and aid the identification of functional skin proteins.
机译:中国巨人蝾螈,andrias davidianus,是世界上最大的两栖动物;因此是一种经济和生态的重要物种。 A. Davidianus的皮肤展示了复杂的自适应结构和功能适应,以促进水生和陆地生态系统的生存。在这里,我们从A. Davidianus的背部皮肤报告第一个全长两栖转录组,使用杂化测序和PACBIO和Illumina平台组装。共组装了153,038份转录物(平均长度为2039bp和2172bp的N50),并且在至少一个数据库中注释133,794(nr,瑞士 - prot,Kegg,Kogs,Go和NT)。总共58,732,68,742和115,876份转录物分别分为24个Kog类别,1903个Go术语类别和46 kegg路径(2级)。还鉴定了总共207,627个蛋白质编码区,785转录因子,27,237个潜在的长编码RNA和8299个简单的序列重复。杂化组装的转录组回收了更高的全长转录物,具有较高的N50 CONTIG长度,与使用下一代测序的先前研究组装的唯一基因的注释率较高。本研究中产生的高质量全长参考基因集将有助于阐明A. Davidianus皮肤的遗传特征,并有助于鉴定功能性皮肤蛋白质。

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