首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >BAC-derived markers converted from RFLP linked to Phytophthora capsici resistance in pepper (Capsicum annuum L.)
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BAC-derived markers converted from RFLP linked to Phytophthora capsici resistance in pepper (Capsicum annuum L.)

机译:从RFLP转换而来的BAC标记与辣椒(Capsicum annuum L.)的辣椒疫霉菌抗性相关

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摘要

Phytophthora capsici Leonian, an oomycete pathogen, is a serious problem in pepper worldwide. Its resistance in pepper is controlled by quantitative trait loci (QTL). To detect QTL associated with P. capsici resistance, a molecular linkage map was constructed using 100 F(2) individuals from a cross between Capsicum annuum 'CM334' and C. annuum 'Chilsungcho'. This linkage map consisted of 202 restriction fragment length polymorphisms (RFLPs), 6 WRKYs and 1 simple sequence repeat (SSR) covering 1482.3 cM, with an average interval marker distance of 7.09 cM. QTL mapping of Phytophthora root rot and damping-off resistance was performed in F(2:3) originated from a cross between resistant Mexican landrace C. annuum 'CM334' and susceptible Korean landrace C. annuum 'Chilsungcho' using composite interval mapping (CIM) analysis. Four QTL explained 66.3% of the total phenotypic variations for root rot resistance and three 44.9% for damping-off resistance. Of these QTL loci, two were located close to RFLP markers CDI25 on chromosome 5 (P5) and CT211A on P9. A bacterial artificial chromosome (BAC) library from C. annuum 'CM334' was screened with these two RFLP probes to obtain sequence information around the RFLP marker loci for development of PCR-based markers. CDI25 and CT211 probes identified seven and eight BAC clones, respectively. Nine positive BAC clones containing probe regions were sequenced and used for cytogenetic analysis. One single-nucleotide amplified polymorphism (SNAP) for the CDI25 locus, and two SSRs and cleaved amplified polymorphic sequence (CAPS) for CT211 were developed using sequences of the positive BAC clones. These markers will be valuable for rapid selection of genotypes and map-based cloning for resistance genes against P. capsici.
机译:辣椒的致病菌辣椒疫霉是全世界辣椒中的一个严重问题。其对辣椒的抗性由数量性状基因座(QTL)控制。若要检测与辣椒辣椒抗性相关的QTL,使用100个F(2​​)个人从辣椒辣椒'CM334'和辣椒辣椒'Chilsungcho'之间的杂交中构建了分子连锁图。该连锁图由202个限制性片段长度多态性(RFLP),6个​​WRKY和1个简单序列重复(SSR)组成,覆盖1482.3 cM,平均间隔标记距离为7.09 cM。利用复合区间作图法(CIM),在F(2:3)中进行了疫霉根腐病和阻尼抗性的QTL作图,该F(2:3)来源于抗性墨西哥地方种C.annuum'CM334'和易感的韩国地方种C.annuum'Chilsungcho'之间的杂交。 )分析。四个QTL解释了66.3%的总根表型变异为根腐烂,而三个为44.9%的抗阻尼性。在这些QTL位点中,有两个位于5号染色体(P5)上的RFLP标记CDI25和P9上的CT211A附近。用这两个RFLP探针筛选了来自C. annuum'CM334'的细菌人工染色体(BAC)文库,以获取围绕RFLP标记基因座的序列信息,以开发基于PCR的标记。 CDI25和CT211探针分别鉴定了七个和八个BAC克隆。对包含探针区的9个阳性BAC克隆进行测序,并用于细胞遗传学分析。使用阳性BAC克隆的序列开发了一个CDI25基因座的单核苷酸扩增多态性(SNAP),以及CT211的两个SSR和裂解的扩增多态性序列(CAPS)。这些标记对于快速选择基因型和抗辣椒的抗性基因基于图谱的克隆将是有价值的。

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