Unknown,Transcriptomics,Genomics,Proteomics

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MRNA-Seq for homoeologous gene expression analysis in hexaploid bread wheat


ABSTRACT: Bread wheat (Triticum aestivum) has a large, complex and hexaploid genome consisting of A, B and D homoeologous chromosome sets. Therefore each wheat gene potentially exists as a trio of A, B and D homoeoalleles, each of which may contribute differentially to wheat phenotypes. We describe a novel approach combining wheat cytogenetic resources (chromosome substitution ‘nullisomic-tetrasomic’ lines) with next generation deep sequencing of gene transcripts (RNA-seq), to directly and accurately identify homoeologue-specific single nucleotide variants and quantify the relative homoeoallelic contribution to gene expression. We obtained mRNA-Seq datasets from non-normalized cDNA libraries created from shoot and root tissues of the euploid bread wheat cultivar Chinese Spring, from which the nullitetra lines are derived, from complete sets of chromosome 1 and 5 nullitetras, and from extant relatives of the diploid A (Triticum urartu) and D (Aegilops tauschii) genome donors, herein referred to as A and D genome diploids

INSTRUMENT(S): Illumina Genome Analyzer II

ORGANISM(S): Triticum aestivum

SUBMITTER: Lindsey Leach 

PROVIDER: E-MTAB-4223 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Patterns of homoeologous gene expression shown by RNA sequencing in hexaploid bread wheat.

Leach Lindsey J LJ   Belfield Eric J EJ   Jiang Caifu C   Brown Carly C   Mithani Aziz A   Harberd Nicholas P NP  

BMC genomics 20140411


<h4>Background</h4>Bread wheat (Triticum aestivum) has a large, complex and hexaploid genome consisting of A, B and D homoeologous chromosome sets. Therefore each wheat gene potentially exists as a trio of A, B and D homoeoloci, each of which may contribute differentially to wheat phenotypes. We describe a novel approach combining wheat cytogenetic resources (chromosome substitution 'nullisomic-tetrasomic' lines) with next generation deep sequencing of gene transcripts (RNA-Seq), to directly and  ...[more]

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