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Mapping of rhizoctonia root rot resistance genes in sugar beet using pathogen response-related sequences as molecular markers

机译:以病原体反应相关序列为分子标记的甜菜根瘤菌根腐病抗性基因定位

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摘要

Rhizoctonia root and crown rot caused by the fungus Rhizoctonia solani is a serious disease of sugar beet. An F: population from a cross between a resistant and a susceptible parent has been tested for R. solani resistance and a genetic map has been constructed from the corresponding F parents. The map encompasses 38 expressed sequence tags (ESTs) with high similarity to genes which are involved in resistance reactions of plants (R-ESTs) and 25 bacterial artificial chromosomes (BACs) containing nucleotide binding site (NBS)-motifs typical for disease resistance genes. Three quantitative trait loci (QTL) for R. solani resistance were found on chromosomes 4, 5 and 7 collectively explaining 71% of the total phenotypic variation. A number of R-ESTs were mapped in close distance to the R. solani resistance QTL. In contrast, the NBS-BACs mapped to chromosomes 1, 3, 7 and 9 with two major clusters of NBS-BACs on chromosome 3. No linkage between NBS-BACs and R. solani resistance QTL was found. The data are discussed with regard to using R-ESTs and NBS markers for mapping quantitative disease resistances.
机译:真菌Rhizoctonia solani引起的根瘤菌根和冠腐病是甜菜的一种严重疾病。已经测试了来自抗性和易感亲本之间的杂交的F:群体的耐sol。solani抗性,并且已经从相应的F亲本构建了遗传图谱。该图谱包含与植物抗性反应中涉及的基因高度相似的38个表达序列标签(EST)(R-EST)和25个细菌人工染色体(BAC),其中包含疾病抗性基因的典型核苷酸结合位点(NBS)-基序。在4、5和7号染色体上发现了3个solani耐药性的数量性状基因座(QTL),共同解释了71%的总表型变异。许多R-EST都被绘制在与solani耐药QTL相近的位置。相比之下,NBS-BAC映射到染色体1、3、7和9,在3号染色体上有两个主要的NBS-BAC簇。在NBS-BAC和sol.R. solani抗性QTL之间未发现连锁。讨论了有关使用R-EST和NBS标记物绘制定量抗病性的数据。

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