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Biological Pathway Analysis for de Novo Transcriptomes through Multiple Reference Species Selections

  • Chun Cheng Liu
  • , Chien Ming Chen
  • , Cin Han Yang
  • , Tun Wen Pai
  • , Phaik Eem Lim
  • , Siew Moi Phang
  • , Sze Wan Poong
  • , Kok Keong Lee

研究成果: 書籍/報告/會議論文中的章節會議投稿同行評審

3 引文 斯高帕斯(Scopus)

摘要

For de novo transcriptome analysis, choosing a closest reference model specie in terms of evolutionary distance is a general approach for gene mapping and genome annotations. However, not every selected reference model species possesses comprehensive genome annotations and curated information, and the total number of mapped genes from the selected reference species could not be fully expected either. Due to inefficient mapped genes from the selected reference model species, the following functional pathway analysis on transcriptome datasets would be seriously affected. To solve this problem, we proposed an improved approach based on multiple reference model species selection, especially for KEGG pathway analysis on differentially expressed genes. Applying union operations on individually mapped genes from different selected species, we could significantly promote the integrity of gene mapping results in KEGG pathways and provide realistic P-values for each identified pathway. Furthermore, based on mapped genes and KGML datasets, we applied various gray-levels, colors and shapes to present gene expression conditions on each biological pathway. Taking NGS transcriptomic datasets from an unknown Antarctic green alga species as an experimental example and selecting three published known species including Chlamydomonas reinhardtii, Chlorella variabilis, and Coccomyxa subellipsoidea as candidate reference species, we compared the results of pathway enrichment analysis by adopting different selections of reference species. We found that integrating all mapped genes from various model species provided a better result compared to using any single reference species. Some missed important biological pathways could be retrieved under an identical threshold setting of P-value, such as Ribosome, Pyrimidine metabolism and ABC transporters pathways. Therefore, we believe appropriate selection of multiple reference species is necessary and significant for transcriptome analysis on de novo species.

原文English
主出版物標題Proceedings - 2016 10th International Conference on Complex, Intelligent, and Software Intensive Systems, CISIS 2016
編輯Leonard Barolli, Fatos Xhafa, Makoto Ikeda
發行者Institute of Electrical and Electronics Engineers Inc.
頁面210-214
頁數5
ISBN(電子)9781509009879
DOIs
出版狀態Published - 19 12月 2016
事件10th International Conference on Complex, Intelligent, and Software Intensive Systems, CISIS 2016 - Fukuoka, Japan
持續時間: 6 7月 20168 7月 2016

出版系列

名字Proceedings - 2016 10th International Conference on Complex, Intelligent, and Software Intensive Systems, CISIS 2016

Conference

Conference10th International Conference on Complex, Intelligent, and Software Intensive Systems, CISIS 2016
國家/地區Japan
城市Fukuoka
期間6/07/168/07/16

文獻附註

Publisher Copyright:
© 2016 IEEE.

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