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Survey of the Bradysia odoriphaga Transcriptome Using PacBio Single-Molecule Long-Read Sequencing

机译:使用PacBio单分子长读测序技术对大花椰菜迟发性转录组进行调查

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摘要

The damage caused by Bradysia odoriphaga is the main factor threatening the production of vegetables in the Liliaceae family. However, few genetic studies of B. odoriphaga have been conducted because of a lack of genomic resources. Many long-read sequencing technologies have been developed in the last decade; therefore, in this study, the transcriptome including all development stages of B. odoriphaga was sequenced for the first time by Pacific single-molecule long-read sequencing. Here, 39,129 isoforms were generated, and 35,645 were found to have annotation results when checked against sequences available in different databases. Overall, 18,473 isoforms were distributed in 25 various Clusters of Orthologous Groups, and 11,880 isoforms were categorized into 60 functional groups that belonged to the three main Gene Ontology classifications. Moreover, 30,610 isoforms were assigned into 44 functional categories belonging to six main Kyoto Encyclopedia of Genes and Genomes functional categories. Coding DNA sequence (CDS) prediction showed that 36,419 out of 39,129 isoforms were predicted to have CDS, and 4319 simple sequence repeats were detected in total. Finally, 266 insecticide resistance and metabolism-related isoforms were identified as candidate genes for further investigation of insecticide resistance and metabolism in B. odoriphaga.
机译:香菜花椰菜(Bradysia odoriphaga)造成的损害是威胁百合科家庭蔬菜生产的主要因素。然而,由于缺乏基因组资源,很少进行过香豆芽孢杆菌的遗传研究。在过去的十年中,已经开发了许多长读测序技术。因此,在这项研究中,通过太平洋单分子长读测序首次对包括香豆芽孢杆菌所有发育阶段的转录组进行了测序。在这里,生成了39,129个同工型,当对照不同数据库中可用的序列进行检查时,发现35,645个具有注释结果。总体上,将18,473个同工型分布在25个直系同源群体中,并将​​11,880个同工型分为60个功能组,这些功能组属于三个主要的基因本体论分类。此外,将30,610个同工型分配到44个功能类别中,这些功能类别分别属于《京都议定书》的6个主要基因和基因组功能类别。编码DNA序列(CDS)预测表明,预测到39129个同工型中有36419个具有CDS,并且总共检测到4319个简单序列重复。最终,鉴定了266种杀虫剂抗性和与代谢有关的同工型作为候选基因,用于进一步研究B.odoriphaga中的杀虫剂抗性和代谢。

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