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Fine Mapping for Identification of Citrus Alternaria Brown Spot Candidate Resistance Genes and Development of New SNP Markers for Marker-Assisted Selection

机译:精细映射用于鉴定柑橘交替链褐斑候选抗性基因和用于标记辅助选择的新SNP标记的开发

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摘要

Alternaria brown spot (ABS) is a serious disease affecting susceptible citrus genotypes, which is a strong concern regarding citrus breeding programs. Resistance is conferred by a recessive locus (ABSr) previously located by our group within a 3.3 Mb genome region near the centromere in chromosome III. This work addresses fine-linkage mapping of this region for identifying candidate resistance genes and develops new molecular markers for ABS-resistance effective marker-assisted selection (MAS). Markers closely linked to ABSr locus were used for fine mapping using a 268-segregating diploid progeny derived from a heterozygous susceptible × resistant cross. Fine mapping limited the genomic region containing the ABSr resistance gene to 366 kb, flanked by markers at 0.4 and 0.7 cM. This region contains nine genes related to pathogen resistance. Among them, eight are resistance (R) gene homologs, with two of them harboring a serine/threonine protein kinase domain. These two genes along with a gene encoding a S-adenosyl-L-methionine-dependent-methyltransferase protein, should be considered as strong candidates for ABS-resistance. Moreover, the closest SNP was genotyped in 40 citrus varieties, revealing very high association with the resistant/susceptible phenotype. This new marker is currently used in our citrus breeding program for ABS-resistant parent and cultivar selection, at diploid, triploid and tetraploid level.
机译:交链孢霉褐斑病(ABS)是一种严重的疾病,影响易感柑橘的基因型,这是柑橘育种计划中的一个重要问题。抵抗力是由我们小组先前位于III号染色体着丝粒附近3.3 Mb基因组区域内的隐性基因座(ABSr)赋予的。这项工作解决了该区域的精细连锁定位,以鉴定候选抗性基因,并开发了用于ABS抗性有效标记辅助选择(MAS)的新分子标记。使用与ABSr基因座紧密相连的标记,使用来自杂合易感×抗性杂交的268个分离的二倍体后代进行精细定位。精细定位将含有ABSr抗性基因的基因组区域限制为366 kb,两侧是0.4和0.7 cM的标记。该区域包含九种与病原体抗性有关的基因。其中,八个是抗性(R)基因同源物,其中两个具有丝氨酸/苏氨酸蛋白激酶结构域。这两个基因以及编码S-腺苷-L-蛋氨酸依赖性甲基转移酶蛋白的基因一起应被视为抗ABS的强候选基因。此外,在40个柑橘品种中对最接近的SNP进行了基因分型,表明与抗药性/敏感性表型的关联性非常高。目前,我们在柑橘育种计划中使用了这种新标记,用于二倍体,三倍体和四倍体水平的耐ABS亲本和品种选择。

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