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Most functional genomics applications of RNAi in animals have used C. elegans and Drosophila, as these are the common model organisms in which RNAi is most effective.
Direct functional studies of GI genes are very rare, and most functional genomics studies rely upon B. pseudomallei gene conservation compared to other species.
Most functional genomics evaluations derive gold standard positives from functional classification schemes that capture associations of genes or proteins with specific biological processes as reported in the literature [ 7, 10, 12, 14- 18].
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To our best knowledge, eFG is the most comprehensive functional genomics database for F. graminearum until now.
Therefore, PB may be most suitable for functional genomics studies in pigs or pig cells, where mutations due to the interruption of genes, and the potential for precise transposition-based rescue is desirable [ 62- 65].
Global analysis of gene expression is one of the most used tools in functional genomics.
This makes HTS one of the most promising tools in functional genomics.
Motivation: High-throughput screens (HTS) by RNAi or small molecules are among the most promising tools in functional genomics.
The most common types of genetic stocks for functional genomics studies include genome-wide insertion and deletion mutants which have been developed in rice by several groups (Guiderdoni et al. 2003; Leung et al. 2003; Upadhyaya et al. 2003).
Thus, despite being critical for functional genomics experiments, most data from a newly sequenced genome does not have even preliminary functional annotation.
In most cases, the bFLICs span the entire CDS of the genes, providing the basis for creating predicted bovine protein sequences to support proteomics and comparative evolutionary research as well as functional genomics and genome annotation.
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