Salvi Silvio, Tuberosa Roberto
Department of Agroenvironmental Science and Technology, University of Bologna, Viale Fanin, 44, 40127 Bologna, Italy.
Trends Plant Sci. 2005 Jun;10(6):297-304. doi: 10.1016/j.tplants.2005.04.008.
Recent technical advancements and refinement of analytical methods have enabled the loci (quantitative trait loci, QTLs) responsible for the genetic control of quantitative traits to be dissected molecularly. To date, most plant QTLs have been cloned using a positional cloning approach following identification in experimental crosses. In some cases, an association between sequence variation at a candidate gene and a phenotype has been established by analysing existing genetic accessions. These strategies can be refined using appropriate genetic materials and the latest developments in genomics platforms. We foresee that although QTL analysis and cloning addressing naturally occurring genetic variation should shed light on mechanisms of plant adaptation, a greater emphasis on approaches relying on mutagenesis and candidate gene validation is likely to accelerate the pace of discovering the genes underlying QTLs.
近期技术的进步以及分析方法的完善,使得负责数量性状遗传控制的基因座(数量性状基因座,QTL)能够在分子层面进行剖析。迄今为止,大多数植物QTL是在实验杂交中鉴定出来后,采用定位克隆方法克隆得到的。在某些情况下,通过分析现有的遗传材料,已确定候选基因的序列变异与表型之间存在关联。利用合适的遗传材料和基因组学平台的最新进展,可以优化这些策略。我们预计,尽管针对自然发生的遗传变异进行QTL分析和克隆应能阐明植物适应机制,但更加强调依赖诱变和候选基因验证的方法可能会加快发现QTL潜在基因的步伐。