Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis

Switchgrass rust caused by is a major limiting factor for switchgrass ( L.) production, especially in monoculture. Natural populations of switchgrass displayed diverse reactions to when evaluated in an Ardmore, OK, field. To identify the differentially expressed genes during the rust infection pro...

Full description

Bibliographic Details
Main Authors: Desalegn D. Serba, Srinivasa Rao Uppalapati, Shreyartha Mukherjee, Nick Krom, Yuhong Tang, Kirankumar S. Mysore, Malay C. Saha
Format: Article
Language:English
Published: Wiley 2015-07-01
Series:The Plant Genome
Online Access:https://dl.sciencesocieties.org/publications/tpg/articles/8/2/plantgenome2014.10.0075
id doaj-6502ff4d24d34966a2f01fc06657fdf3
record_format Article
spelling doaj-6502ff4d24d34966a2f01fc06657fdf32020-11-25T03:45:56ZengWileyThe Plant Genome1940-33722015-07-018210.3835/plantgenome2014.10.0075plantgenome2014.10.0075Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq AnalysisDesalegn D. SerbaSrinivasa Rao UppalapatiShreyartha MukherjeeNick KromYuhong TangKirankumar S. MysoreMalay C. SahaSwitchgrass rust caused by is a major limiting factor for switchgrass ( L.) production, especially in monoculture. Natural populations of switchgrass displayed diverse reactions to when evaluated in an Ardmore, OK, field. To identify the differentially expressed genes during the rust infection process and the mechanisms of switchgrass rust resistance, transcriptome analysis using RNA-Seq was conducted in two pseudo-F parents (‘PV281’ and ‘NFGA472’), and three moderately resistant and three susceptible progenies selected from a three-generation, four-founder switchgrass population (K5 × A4) × (AP13 × VS16). On average, 23.5 million reads per sample (leaf tissue was collected at 0, 24, and 60 h post-inoculation (hpi)) were obtained from paired-end (2 × 100 bp) sequencing on the Illumina HiSeq2000 platform. Mapping of the RNA-Seq reads to the switchgrass reference genome (AP13 ver. 1.1 assembly) constructed a total of 84,209 transcripts from 98,007 gene loci among all of the samples. Further analysis revealed that host defense-related genes, including the nucleotide binding site–leucine-rich repeat domain containing disease resistance gene analogs, play an important role in resistance to rust infection. Rust-induced gene (RIG) transcripts inherited across generations were identified. The rust-resistant gene transcripts can be a valuable resource for developing molecular markers for rust resistance. Furthermore, the rust-resistant genotypes and gene transcripts identified in this study can expedite rust-resistant cultivar development in switchgrass.https://dl.sciencesocieties.org/publications/tpg/articles/8/2/plantgenome2014.10.0075
collection DOAJ
language English
format Article
sources DOAJ
author Desalegn D. Serba
Srinivasa Rao Uppalapati
Shreyartha Mukherjee
Nick Krom
Yuhong Tang
Kirankumar S. Mysore
Malay C. Saha
spellingShingle Desalegn D. Serba
Srinivasa Rao Uppalapati
Shreyartha Mukherjee
Nick Krom
Yuhong Tang
Kirankumar S. Mysore
Malay C. Saha
Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
The Plant Genome
author_facet Desalegn D. Serba
Srinivasa Rao Uppalapati
Shreyartha Mukherjee
Nick Krom
Yuhong Tang
Kirankumar S. Mysore
Malay C. Saha
author_sort Desalegn D. Serba
title Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
title_short Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
title_full Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
title_fullStr Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
title_full_unstemmed Transcriptome Profiling of Rust Resistance in Switchgrass Using RNA-Seq Analysis
title_sort transcriptome profiling of rust resistance in switchgrass using rna-seq analysis
publisher Wiley
series The Plant Genome
issn 1940-3372
publishDate 2015-07-01
description Switchgrass rust caused by is a major limiting factor for switchgrass ( L.) production, especially in monoculture. Natural populations of switchgrass displayed diverse reactions to when evaluated in an Ardmore, OK, field. To identify the differentially expressed genes during the rust infection process and the mechanisms of switchgrass rust resistance, transcriptome analysis using RNA-Seq was conducted in two pseudo-F parents (‘PV281’ and ‘NFGA472’), and three moderately resistant and three susceptible progenies selected from a three-generation, four-founder switchgrass population (K5 × A4) × (AP13 × VS16). On average, 23.5 million reads per sample (leaf tissue was collected at 0, 24, and 60 h post-inoculation (hpi)) were obtained from paired-end (2 × 100 bp) sequencing on the Illumina HiSeq2000 platform. Mapping of the RNA-Seq reads to the switchgrass reference genome (AP13 ver. 1.1 assembly) constructed a total of 84,209 transcripts from 98,007 gene loci among all of the samples. Further analysis revealed that host defense-related genes, including the nucleotide binding site–leucine-rich repeat domain containing disease resistance gene analogs, play an important role in resistance to rust infection. Rust-induced gene (RIG) transcripts inherited across generations were identified. The rust-resistant gene transcripts can be a valuable resource for developing molecular markers for rust resistance. Furthermore, the rust-resistant genotypes and gene transcripts identified in this study can expedite rust-resistant cultivar development in switchgrass.
url https://dl.sciencesocieties.org/publications/tpg/articles/8/2/plantgenome2014.10.0075
work_keys_str_mv AT desalegndserba transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT srinivasaraouppalapati transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT shreyarthamukherjee transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT nickkrom transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT yuhongtang transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT kirankumarsmysore transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
AT malaycsaha transcriptomeprofilingofrustresistanceinswitchgrassusingrnaseqanalysis
_version_ 1724508818716491776