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首页> 外文期刊>Universal Journal of Agricultural Research >Detection of Blast Resistant Gene in Rice by Host-pathogen Interaction and DNA-Marker
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Detection of Blast Resistant Gene in Rice by Host-pathogen Interaction and DNA-Marker

机译:宿主病原菌相互作用和DNA标记技术检测水稻抗瘟基因

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Rice blast disease caused by Pyricularia oryzae is a major disease in Bangladesh. In the search of resistant source against P. oryzae, resistant gene (R-gene) was assessed by (i) host-pathogen interaction and (ii) PCR-based screening at the laboratory of Bangladesh Rice Research Institute. One hundred and forty four plant materials were classified into 10 cultivar groups (CG) based on their reaction patterns to four distinct blast isolates (SDBI; standard differential blast isolate) H-11-64, H-1-8, H-1-1 and H-11-67. The reaction patterns of plant materials to these four standard blast isolates indicated presence of Pish, Pi9, Pita2 and Pita genes and their combination in the genetic background of tested plant materials. Gene specific primer 195R-1/195F-1, Pita440 (YL153)/Pita440 (YL154), OSM89 and AOL45/AOL48 were used to identify and confirm the presence of Pi9, Pita, Pita2 and Pish genes in plant materials, respectively through PCR-based assay. Plant materials, H13, H23, H25, H35, H47, H49, H136, H138 harbored all three genes, Pita, Pita2 and Pish in their genetic background. The Pi9 gene together with Pita2 was detected in local rice cultivar H100 and H129, which were confirmed by DNA analysis in PCR assay. These materials could be used in gene pyramiding in promising high yielding cultivar for durable blast resistance.
机译:由稻瘟病菌引起的稻瘟病是孟加拉国的主要疾病。在寻找对米曲霉的抗性来源时,通过(i)宿主-病原体相互作用和(ii)在孟加拉国水稻研究所的实验室进行基于PCR的筛选,评估了抗性基因(R-gene)。根据一百四十四种植物材料对四种不同的原始分离株(SDBI;标准差异原始分离株)H-11-64,H-1-8,H-1-的反应模式,将其分类为10个栽培品种组(CG)。 1和H-11-67。植物材料对这四个标准胚芽菌株的反应模式表明存在Pish,Pi9,Pita2和Pita基因,以及它们在被测植物材料的遗传背景中的组合。基因特异性引物195R-1 / 195F-1,Pita440(YL153)/ Pita440(YL154),OSM89和AOL45 / AOL48用于分别通过PCR鉴定和确认植物材料中存在Pi9,Pita,Pita2和Pish基因的分析。植物材料H13,H23,H25,H35,H47,H49,H136,H138在它们的遗传背景中都包含Pita,Pita2和Pish这三个基因。在当地水稻品种H100和H129中检测到了Pi9基因和Pita2,通过PCR分析中的DNA分析证实了该基因。这些材料可用于有前途的高产栽培品种,以实现持久的抗瘟性,从而用于基因金字塔。

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