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Use of Random Amplified Polymorphic DNA Markers in Breeding for Major Gene Resistance to Plant Pathogens

机译:随机扩增多态性DNA标记在对植物病原体主要基因抗性育种中的应用

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摘要

Markers are of interest to plant breeders as a source of genetic information on crops and for use in indirect selection of traits linked with the markers. Selection based on the marker would be more efficient provided there was tight linkage between the marker and the trait of interest [<5 centimorgans (cM)] and assuming selection for the marker was more convenient (faster, cheaper, reproducible, expressed earlier). Markers for disease resistance offer the additional advantage of permitting selectionfor resistance in the absence of the pathogen or a variant of the pathogen. This feature is of particular interest to a plant breeder who may be reluctant either to work directly with or to introduce a pathogen where quarantine restrictions prevent itsintroduction. Markers linked to various resistance genes would greatly facilitate breeding for multiple disease resistance, since selection based on markers could be readily incorporated into a breeding program. This approach would be of particular interest with pathogens that exhibit inconsistent expression due to environmental or other factors. A single technology that would indirectly permit selection for diverse disease resistance genes would be highly desirable and extremely useful in breeding fordisease resistance. Indirect selection as an efficient and practical means of developing disease-resistant culti-vars will depend on the identification of markers that are easy to score and tightly linked to different resistance genes.
机译:标记是植物育种者感兴趣的,它是作物遗传信息的来源,可用于间接选择与标记相关的性状。如果标记与感兴趣的性状之间存在紧密的联系[<5 centimorgans(cM)],并且假设选择标记更方便(更快,更便宜,可重现,更早表达),则基于标记的选择将更加有效。抗病标记物提供了另外的优点,即在没有病原体或病原体变异的情况下,可以选择抗药性。对于可能不愿直接与病原体合作或不愿引入病原体的检疫人员而言,此功能特别受植物育种人员的关注。与各种抗性基因连锁的标记将极大地促进多种疾病抗性的育种,因为基于标记的选择很容易纳入育种程序。对于由于环境或其他因素而导致表达不一致的病原体,此方法尤其有用。可以间接选择不同抗病基因的单一技术将是非常理想的,并且在培育抗病性方面非常有用。间接选择作为开发抗病品种的有效方法,将取决于鉴定容易得分且与不同抗病基因紧密联系的标记。

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