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Comprehensive analysis of alternative splicing in rice and comparative analyses with Arabidopsis

BMC Genomics · 2006 · Vol. 7(1) · pp. 327–327
Matthew A. CampbellBrian J. HaasJohn P. HamiltonStephen M. MountC. Robin Buell

Abstract

Alternative splicing is widespread in both rice and Arabidopsis and these species share many common features. Interestingly, alternative splicing may play a role beyond creating novel combinations of transcripts that expand the proteome. Many isoforms will presumably have negative consequences for protein structure and function, suggesting that their biological role involves post-transcriptional regulation of gene expression.

RNA Research and SplicingRNA modifications and cancerRNA and protein synthesis mechanismsBiologyAlternative splicingArabidopsisRNA splicingGeneticsExpressed sequence tagOryza sativaComputational biologyCoding regionGene isoform

MeSH terms

OryzaArabidopsisAlternative SplicingDNA, ComplementaryExpressed Sequence Tags

Funding

  • National Science Foundation
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