RL-SAGE and microarray analysis of the rice transcriptome after Rhizoctonia solani infection
- 20 June 2007
- journal article
- Published by Springer Nature in Molecular Genetics and Genomics
- Vol. 278 (4) , 421-431
- https://doi.org/10.1007/s00438-007-0260-y
Abstract
Sheath blight caused by the fungal pathogen Rhizoctonia solani is an emerging problem in rice production worldwide. To elucidate the molecular basis of rice defense to the pathogen, RNA isolated from R. solani-infected leaves of Jasmine 85 was used for both RL-SAGE library construction and microarray hybridization. RL-SAGE sequence analysis identified 20,233 and 24,049 distinct tags from the control and inoculated libraries, respectively. Nearly half of the significant tags (≥2 copies) from both libraries matched TIGR annotated genes and KOME full-length cDNAs. Among them, 42% represented sense and 7% antisense transcripts, respectively. Interestingly, 60% of the library-specific (≥10 copies) and differentially expressed (>4.0-fold change) tags were novel transcripts matching genomic sequence but not annotated genes. About 70% of the genes identified in the SAGE libraries showed similar expression patterns (up or down-regulated) in the microarray data obtained from three biological replications. Some candidate RL-SAGE tags and microarray genes were located in known sheath blight QTL regions. The expression of ten differentially expressed RL-SAGE tags was confirmed with RT-PCR. The defense genes associated with resistance to R. solani identified in this study are useful genomic materials for further elucidation of the molecular basis of the defense response to R. solani and fine mapping of target sheath blight QTLs.Keywords
This publication has 31 references indexed in Scilit:
- Magnaporthe griseaInfection Triggers RNA Variation and Antisense Transcript Expression in RicePlant Physiology, 2007
- AtERF14, a Member of the ERF Family of Transcription Factors, Plays a Nonredundant Role in Plant DefensePlant Physiology, 2006
- Large-Scale Identification of Expressed Sequence Tags Involved in Rice and Rice Blast Fungus InteractionPlant Physiology, 2005
- Analysis of the transcriptional complexity of Arabidopsis thaliana by massively parallel signature sequencingNature Biotechnology, 2004
- A comparison of global gene expression measurement technologies in Arabidopsis thalianaComparative and Functional Genomics, 2004
- Robust-LongSAGE (RL-SAGE): A Substantially Improved LongSAGE Method for Gene Discovery and Transcriptome AnalysisPlant Physiology, 2004
- Isolation and characterization of novel defense response genes involved in compatible and incompatible interactions between rice and Magnaporthe griseaTheoretical and Applied Genetics, 2003
- Evaluation of gene expression measurements from commercial microarray platformsNucleic Acids Research, 2003
- Rice ESTs with disease-resistance gene- or defense-response gene-like sequences mapped to regions containing major resistance genes or QTLsMolecular Genetics and Genomics, 2001
- Major Gene, Nonallelic Sheath Blight Resistance from the Rice Cultivars Jasmine 85 and TeqingCrop Science, 1999