DNA多态性在遗传作图中的应用。

Christopher A Cullis
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引用次数: 23

摘要

分子标记的引入使遗传学发生了革命性的变化。可用的多态性范围正在增加,大规模cDNA和基因组测序的出现是可用标记物不断增加的来源。在某种程度上,任何特定标记类型应用于实验系统的难易程度取决于该系统可用的基因组信息的数量。然而,比较基因组学正在使更广泛的标记技术应用于相对缺乏信息的系统。可用的标记类型包括限制性片段长度多态性,扩增片段长度多态性,勒索扩增多态性dna,简单序列重复,单核苷酸多态性和小插入/删除。这些分子标记可以解决的问题类型包括:用于鉴定有趣位点的遗传和物理图谱的生成、基于标记的基因标签的开发、农学上重要基因的基于图谱的克隆、共效作图、标记辅助选择和数量性状分析。技术的持续发展,包括新的高通量方法,例如那些应用于单核苷酸多态性的方法,将改变当前问题可以回答的便捷性,并使目前无法进行的新分析成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The use of DNA polymorphisms in genetic mapping.

The introduction of molecular markers has revolutionized genetics. The range of polymorphisms that are available is increasing and the advent of large-scale cDNA and genomic sequencing is a source of an ever-increasing set of available markers. The ease with which any particular marker type can be applied to an experimental system depends, to some extent, on the amount of genomic information available for that system. However, comparative genomics is enabling a wider range of marker technology to be applied to relatively information-poor systems. The types of markers that are available include restriction fragment length polymorphisms, amplified fragment length polymorphisms, ransom amplified polymorphic DNAs, simple sequence repeats, single nucleotide polymorphisms and small insertions/deletions. The types of questions that can be addressed with these molecular markers include the generation of genetic and physical maps for the identification of interesting loci, the development of marker-based gene tags, map-based cloning of agronomically important genes, synteny mapping, marker-assisted selection and quantitative trait analysis. The continued development of technology including new high throughput methods, for example those being applied to single nucleotide polymorphisms, will change the ease with which current questions can be answered as well as enable new analyses that are presently impossible to undertake.

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