Identification of candidate genes associated with CBB resistance in common bean HR45 (Phaseolus vulgaris L.) using cDNA-AFLP

被引:0
作者
Chun Shi
Sarita Chaudhary
Kangfu Yu
Soon J. Park
Alireza Navabi
Phillip E. McClean
机构
[1] Agriculture and Agri-Food Canada,Greenhouse and Processing Crops Research Centre
[2] Canadian Intellectual Property Office (CIPO),Patent Branch, Industry Canada
[3] North Dakota State University,Department of Plant Sciences
来源
Molecular Biology Reports | 2011年 / 38卷
关键词
CBB resistance; Transcript profiling; cDNA-AFLP; Comparative genomics; Candidate genes; L.;
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学科分类号
摘要
Common bacterial blight (CBB), incited by Xanthomonas axonopodis pv. phaseoli (Xap), is a serious seed-borne disease of common bean (Phaseolus vulgaris L.) in both temperate and tropical production zones. The line HR45 is highly resistant to Xap infection on leaves and pods in both field and greenhouse. To understand the molecular mechanisms underlying CBB resistance in HR45, cDNA-amplified fragment length polymorphism (AFLP) technique was used to identify the genes that are differentially expressed in the leaves of HR45 at different time-periods after inoculation. Selective amplifications with 34 primer combinations allowed the visualization of 2,448 transcript-derived fragments (TDFs) in infected leaves, and 259 (10.6%) of them were differentially expressed TDFs (DE-TDFs). Seventy-seven of the DE-TDFs were cloned and sequenced. Thirty-nine of the 77 (50.6%) DE-TDFs representing bean transcripts were not previously reported in any EST database. The expression patterns of 10 representative DE-TDFs were further confirmed by real-time RT-PCR. BLAST analysis suggested that 40% (31 of 77) of the DE-TDFs were homologous to the genes related to metabolism, photosynthesis, and cellular transport, whereas 28% (22 of 77) of the DE-TDFs showed homology to the genes involved in defence response, response to stimulus, enzyme regulation, and transcription regulation. Thus, the 22 pathogenesis-related DE-TDFs were selected as potential functional candidate genes (FCGs) in association with CBB resistance. Meanwhile, six of the DE-TDFs (1FCG and five other DE-TDFs) were in silico mapped to the distal region of the bean linkage group B6 (the genomic location containing the major CBB resistance QTL in HR45) and, therefore, were considered as positional candidate genes (PCGs). This study represents a first step towards the discovery of bean genes expressed upon Xap infection. This information will be useful for elucidating the molecular basis of the resistance response process and identifying the genes that underlie the CBB-resistance.
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页码:75 / 81
页数:6
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共 71 条
[1]  
Miklas PN(2006)Common bean breeding for resistance against biotic and abiotic stresses: from classical to MAS breeding Euphytica 147 105-131
[2]  
Kelly JD(2006) pathovars: model pathogens of a model crop Mol Plant Pathol 7 303-324
[3]  
Beebe SE(2008)Development of STS markers and QTL validation for common bacterial blight resistance in common bean Plant Breed 127 62-68
[4]  
Blair MW(2001)The candidate gene approach in plant genetics: a review Mol Breed 7 275-291
[5]  
Nino-Liu DO(2005)Differential gene expression and characterization of tissue-specific cDNA clones in oil palm using mRNA differential display Mol Biol Rep 32 227-235
[6]  
Ronald PC(2004)Methods for transcriptional profiling in plants. Be fruitful and replicate Plant Physiol 135 637-652
[7]  
Bogdanove AJ(2009)Identification and characterization of differentially expressed genes in the resistance reaction in taro infected with Mol Biol Rep 36 1291-1297
[8]  
Liu S(2004)Identification of powdery mildew-induced barley genes by cDNA-AFLP: functional assessment of an early expressed MAP kinase Plant Mol Biol 55 1-15
[9]  
Yu K(2008)Transcript profiling for Avr4/Cf-4- and Avr9/Cf-9-dependent defence gene expression Eur J Plant Pathol 122 307-314
[10]  
Park SJ(2006)A viral resistance gene from common bean functions across plant families and is up-regulated in a non-virus-specific manner Proc Natl Acad Sci USA 103 11856-11861