蚯蚓的神经索转录组注释

Vasanthakumar Ponesakki , Sayan Paul , Dinesh Kumar Sudalai Mani, Veeraragavan Rajendiran, Paulkumar Kanniah, Sudhakar Sivasubramaniam
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引用次数: 14

摘要

在环节动物中,神经索是控制感觉和行为生理的重要器官。由于蚯蚓基因组资源不足,因此对其转录组数据进行综合分析,以监测其在神经索中的基因表达,并预测其在物种神经传递和感觉知觉中的作用。本研究的重点是通过注释Gong等人(2010)从蚯蚓Eisenia fetida中制备的神经索组织转录组数据集,识别潜在的转录本并预测其功能特征。使用BLASTX算法在NCBI nr数据库中成功标注了9762个转录本,其中7680个转录本被分配到44354个GO术语。保守结构域分析显示p环NTPase结构域和钙结合EF-hand结构域的过度表达。COG功能注释将5860个转录序列划分为25个功能类。此外,发现4502个序列与124个KEGG通路相匹配。经注释的contig数据集显示了22个与海洋环节动物Platynereis dumerilii相当匹配的关键神经肽,表明它们可能在神经传递和神经调节中起作用。此外,我们还鉴定了108个人类干细胞标记物同源物,包括关键的表观遗传调控因子、转录抑制因子和细胞周期调控因子,这些调控因子可能与神经元和节段再生有关。该神经索转录组完整的功能注释可以进一步用于解释与神经元发育、神经系统再生和神经索功能相关的遗传和分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Annotation of nerve cord transcriptome in earthworm Eisenia fetida

In annelid worms, the nerve cord serves as a crucial organ to control the sensory and behavioral physiology. The inadequate genome resource of earthworms has prioritized the comprehensive analysis of their transcriptome dataset to monitor the genes express in the nerve cord and predict their role in the neurotransmission and sensory perception of the species. The present study focuses on identifying the potential transcripts and predicting their functional features by annotating the transcriptome dataset of nerve cord tissues prepared by Gong et al., 2010 from the earthworm Eisenia fetida. Totally 9762 transcripts were successfully annotated against the NCBI nr database using the BLASTX algorithm and among them 7680 transcripts were assigned to a total of 44,354 GO terms. The conserve domain analysis indicated the over representation of P-loop NTPase domain and calcium binding EF-hand domain. The COG functional annotation classified 5860 transcript sequences into 25 functional categories. Further, 4502 contig sequences were found to map with 124 KEGG pathways. The annotated contig dataset exhibited 22 crucial neuropeptides having considerable matches to the marine annelid Platynereis dumerilii, suggesting their possible role in neurotransmission and neuromodulation. In addition, 108 human stem cell marker homologs were identified including the crucial epigenetic regulators, transcriptional repressors and cell cycle regulators, which may contribute to the neuronal and segmental regeneration. The complete functional annotation of this nerve cord transcriptome can be further utilized to interpret genetic and molecular mechanisms associated with neuronal development, nervous system regeneration and nerve cord function.

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