DocumentCode
3604327
Title
Systematic functional genomics resource and annotation for poplar
Author
Jingna Si ; Xiyang Zhao ; Xinyin Zhao ; Rongling Wu
Author_Institution
Nat. Eng. Lab. for Tree Breeding, Beijing Forestry Univ., Beijing, China
Volume
9
Issue
4
fYear
2015
Firstpage
164
Lastpage
171
Abstract
Poplar, as a model species for forestry research, has many excellent characteristics. Studies on functional genes have provided the foundation, at the molecular level, for improving genetic traits and cultivating elite lines. Although studies on functional genes have been performed for many years, large amounts of experimental data remain scattered across various reports and have not been unified via comprehensive statistical analysis. This problem can be addressed by employing bioinformatic methodology and technology to gather and organise data to construct a Poplar Functional Gene Database, containing data on 207 poplar functional genes. As an example, the authors investigated genes of Populus euphratica involved in the response to salt stress. Four small cDNA libraries were constructed and treated with 300 mM NaCl or pure water for 6 and 24 h. Using high-throughput sequencing, they identified conserved and novel miRNAs that were differentially expressed. Target genes were next predicted and detailed functional information derived using the Gene Ontology database and Kyoto Encyclopedia of Genes and Genomes pathway analysis. This information provides a primary visual schema allowing us to understand the dynamics of the regulatory gene network responding to salt stress in Populus.
Keywords
DNA; RNA; bioinformatics; genetics; genomics; molecular biophysics; molecular configurations; statistical analysis; Gene Ontology database; Kyoto Encyclopedia of Genes and Genomes pathway analysis; Poplar Functional Gene Database; Populus euphratica; bioinformatic methodology; cDNA libraries; comprehensive statistical analysis; forestry research; functional genes; genetic traits; high-throughput sequencing; miRNA expression; molecular level; regulatory gene network; salt stress; systematic functional genomics resource;
fLanguage
English
Journal_Title
Systems Biology, IET
Publisher
iet
ISSN
1751-8849
Type
jour
DOI
10.1049/iet-syb.2014.0047
Filename
7181758
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