AI Article Synopsis

  • Aegilops variabilis No. 1 shows strong resistance to cereal cyst nematode (CCN), but limited genomic data has hampered research into its resistance traits.
  • Using RNA-Seq, researchers generated a comprehensive root transcriptome for Ae. variabilis No. 1, identifying over 118,000 unigenes and significant pathways linked to plant stress resistance.
  • This transcriptome profiling paves the way for future studies on the genes and molecular mechanisms that confer resistance to CCN in this plant species.

Article Abstract

Background: Aegilops variabilis No.1 is highly resistant to cereal cyst nematode (CCN). However, a lack of genomic information has restricted studies on CCN resistance genes in Ae. variabilis and has limited genetic applications in wheat breeding.

Results: Using RNA-Seq technology, we generated a root transcriptome at a sequencing depth of 4.69 gigabases of Ae. variabilis No. 1 from a pooled RNA sample. The sample contained equal amounts of RNA extracted from CCN-infected and untreated control plants at three time-points. Using the Trinity method, nearly 52,081,238 high-quality trimmed reads were assembled into a non-redundant set of 118,064 unigenes with an average length of 500 bp and an N50 of 599 bp. The total assembly was 59.09 Mb of unique transcriptome sequences with average read-depth coverage of 33.25×. In BLAST searches of our database against public databases, 66.46% (78,467) of the unigenes were annotated with gene descriptions, conserved protein domains, or gene ontology terms. Functional categorization further revealed 7,408 individual unigenes and three pathways related to plant stress resistance.

Conclusions: We conducted high-resolution transcriptome profiling related to root development and the response to CCN infection in Ae. variabilis No.1. This research facilitates further studies on gene discovery and on the molecular mechanisms related to CCN resistance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3439707PMC
http://dx.doi.org/10.1186/1471-2164-13-133DOI Listing

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