Trait directed <em>de novo</em> population transcriptome dissects genetic regulation of a balanced polymorphism in phosphorus nutrition/arsenate tolerance in a wild grass <em>Holcus lanatus</em>


Autoria(s): Meharg, Caroline; Khan, Bayezid; Norton, Gareth; Deacon, Claire; Johnson, David; Reinhardt, Richard; Huettel, Bruno; Meharg, Andrew A.
Data(s)

01/01/2014

Resumo

The aim of this study was to characterize the transcriptome of a balanced polymorphism, under the regulation of a single gene, for phosphate fertilizer responsiveness/arsenate toler- ance in wild grass Holcus lanatus genotypes screened from the same habitat.<br/><br/>De novo transcriptome sequencing, RNAseq (RNA sequencing) and single nucleotide poly- morphism (SNP) calling were conducted on RNA extracted from H.lanatus. Roche 454 sequencing data were assembled into c. 22 000 isotigs, and paired-end Illumina reads for phosphorus-starved (P) and phosphorus-treated (P+) genovars of tolerant (T) and nontoler- ant (N) phenotypes were mapped to this reference transcriptome.<br/><br/>Heatmaps of the gene expression data showed strong clustering of each P+/P treated genovar, as well as clustering by N/T phenotype. Statistical analysis identified 87 isotigs to be significantly differentially expressed between N and T phenotypes and 258 between P+ and P treated plants. SNPs and transcript expression that systematically differed between N and T phenotypes had regulatory function, namely proteases, kinases and ribonuclear RNA- binding protein and transposable elements.<br/><br/>A single gene for arsenate tolerance led to distinct phenotype transcriptomes and SNP pro- files, with large differences in upstream post-translational and post-transcriptional regulatory genes rather than in genes directly involved in P nutrition transport and metabolism per se.

Formato

application/pdf

Identificador

http://pure.qub.ac.uk/portal/en/publications/trait-directed-de-novo-population-transcriptome-dissects-genetic-regulation-of-a-balanced-polymorphism-in-phosphorus-nutritionarsenate-tolerance-in-a-wild-grass-holcus-lanatus(c7d66009-3f82-44c9-ba26-cf3dc8c9e69a).html

http://dx.doi.org/10.1111/nph.12491

http://pure.qub.ac.uk/ws/files/16723993/Meharg_TraitDirectedSubmitted.pdf

Idioma(s)

eng

Direitos

info:eu-repo/semantics/openAccess

Fonte

Meharg , C , Khan , B , Norton , G , Deacon , C , Johnson , D , Reinhardt , R , Huettel , B & Meharg , A A 2014 , ' Trait directed de novo population transcriptome dissects genetic regulation of a balanced polymorphism in phosphorus nutrition/arsenate tolerance in a wild grass Holcus lanatus ' New Phytologist , vol 201 , no. 1 , pp. 144-154 . DOI: 10.1111/nph.12491

Palavras-Chave #arsente #Holcus lanatus #phosphorus (P) #tolerance #transcriptome #RNA EDITING SITES #ARSENATE TOLERANCE #TRANSPOSABLE ELEMENTS #PHOSPHATE DEFICIENCY #SEQUENCE ALIGNMENT #YORKSHIRE FOG #IANATUS L #PLANTS #GENOME #IDENTIFICATION
Tipo

article