Characterization of disease resistance gene candidates of the nucleotide binding site (NBS) type from banana and correlation of a transcriptional polymorphism with resistance to Fusarium oxysporum f.sp. cubense race 4

被引:0
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作者
Santy Peraza-Echeverria
James L. Dale
Rob M. Harding
Mike K. Smith
Chris Collet
机构
[1] Queensland University of Technology,Centre for Tropical Crops and Biocommodities
[2] Unidad de Biotecnología,Department of Primary Industries and Fisheries
[3] Centro de Investigación Científica de Yucatán (CICY),School of Life Sciences
[4] Maroochy Research Station,undefined
[5] Queensland University of Technology,undefined
来源
Molecular Breeding | 2008年 / 22卷
关键词
Banana; Disease; NBS; Resistance genes;
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学科分类号
摘要
Most plant disease resistance (R) genes encode proteins with a nucleotide binding site and leucine-rich repeat structure (NBS-LRR). In this study, degenerate primers were used to amplify genomic NBS-type sequences from wild banana (Musa acuminata ssp. malaccensis) plants resistant to the fungal pathogen Fusarium oxysporum formae specialis (f. sp.) cubense (FOC) race 4. Five different classes of NBS-type sequences were identified and designated as resistance gene candidates (RGCs). The deduced amino acid sequences of the RGCs revealed the presence of motifs characteristic of the majority of known plant NBS-LRR resistance genes. Structural and phylogenetic analyses grouped the banana RGCs within the non-TIR (homology to Toll/interleukin-1 receptors) subclass of NBS sequences. Southern hybridization showed that each banana RGC is present in low copy number. The expression of the RGCs was assessed by RT-PCR in leaf and root tissues of plants resistant or susceptible to FOC race 4. RGC1, 3 and 5 showed a constitutive expression profile in both resistant and susceptible plants whereas no expression was detected for RGC4. Interestingly, RGC2 expression was found to be associated only to FOC race 4 resistant lines. This finding could assist in the identification of a FOC race 4 resistance gene.
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