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Molecular Diagnostics for Complex Pest and Disease Resistance and Tuber Quality Traits: Concept, Achievements and Perspectives

机译:复杂病虫害抗性和块茎品质性状的分子诊断:概念,成就和观点

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摘要

We summarize the concept of molecular diagnostic of complex traits related to pest and disease resistance and to tuber quality of potato, and describe recent achievements and perspectives. Many potato characteristics are controlled by multiple genetic and environmental factors. Knowing the genes and their allelic variants that underlay these characteristics allows developing molecular diagnostic tools to select for improved potato cultivars. Diagnostic DNA-based markers can be used to identify superior genotypes (precision breeding). Diagnostic markers can be identified by combining quantitative trait locus mapping, candidate gene mapping and association mapping using functional and positional candidate genes as markers. This approach was successfully used to identify loci, which contribute to the natural variation of important agronomic traits, including resistance against root cyst nematodes, late blight and wart disease and tuber quality (resistance to bruising and chip colour). In the future, whole genome association mapping based on single-nucleotide polymorphism genotyping methods in combination with the annotated potato genome sequence will allow identifying additional genes and gene variants controlling agronomic performance in potato. Prerequisites are accurate phenotyping under field conditions of advanced breeding materials, cost-effective and reliable genome-wide genotyping methods, and user-friendly software tools allowing to extract knowledge from massive quantities of data. This will further facilitate molecular diagnosis, selection and combination of superior alleles in potato-breeding programmes.
机译:我们总结了与病虫害和马铃薯的块茎品质有关的复杂性状的分子诊断概念,并描述了近期的成就和观点。许多马铃薯特性受多种遗传和环境因素控制。了解了构成这些特征的基因及其等位基因变体,可以开发出分子诊断工具来选择改良的马铃薯品种。基于诊断性DNA的标记可用于识别优异的基因型(精确育种)。诊断标记可以通过使用功能和位置候选基因作为标记,结合定量性状基因座图谱,候选基因图谱和关联图谱来鉴定。该方法已成功用于鉴定基因座,该基因座有助于重要农艺性状的自然变异,包括对根囊肿线虫的抗性,晚疫病和疣病以及块茎质量(对青紫和片色的抵抗力)。将来,基于单核苷酸多态性基因分型方法的全基因组关联图谱与带注释的马铃薯基因组序列相结合,将能够确定控制马铃薯农艺性能的其他基因和基因变体。先决条件是在先进育种材料的野外条件下进行准确的表型分析,具有成本效益且可靠的全基因组基因分型方法,以及易于使用的软件工具,可从大量数据中提取知识。这将进一步促进马铃薯育种计划中的分子诊断,优良等位基因的选择和组合。

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