McMullen M D, Byrne P F, Snook M E, Wiseman B R, Lee E A, Widstrom N W, Coe E H
Plant Genetics Research Unit, Agricultural Research Service-United States Department of Agriculture, Columbia, MO 65211, USA.
Proc Natl Acad Sci U S A. 1998 Mar 3;95(5):1996-2000. doi: 10.1073/pnas.95.5.1996.
The interpretation of quantitative trait locus (QTL) studies is limited by the lack of information on metabolic pathways leading to most economic traits. Inferences about the roles of the underlying genes with a pathway or the nature of their interaction with other loci are generally not possible. An exception is resistance to the corn earworm Helicoverpa zea (Boddie) in maize (Zea mays L.) because of maysin, a C-glycosyl flavone synthesized in silks via a branch of the well characterized flavonoid pathway. Our results using flavone synthesis as a model QTL system indicate: (i) the importance of regulatory loci as QTLs, (ii) the importance of interconnecting biochemical pathways on product levels, (iii) evidence for "channeling" of intermediates, allowing independent synthesis of related compounds, (iv) the utility of QTL analysis in clarifying the role of specific genes in a biochemical pathway, and (v) identification of a previously unknown locus on chromosome 9S affecting flavone level. A greater understanding of the genetic basis of maysin synthesis and associated corn earworm resistance should lead to improved breeding strategies. More broadly, the insights gained in relating a defined genetic and biochemical pathway affecting a quantitative trait should enhance interpretation of the biological basis of variation for other quantitative traits.
数量性状基因座(QTL)研究的解释受到限制,因为缺乏导致大多数经济性状的代谢途径的信息。通常无法推断潜在基因在某一途径中的作用或它们与其他基因座相互作用的性质。玉米(Zea mays L.)对玉米穗虫Helicoverpa zea(Boddie)的抗性是一个例外,因为玉米穗中通过已充分表征的类黄酮途径的一个分支合成的C-糖基黄酮——玉米素。我们以黄酮合成作为模型QTL系统的研究结果表明:(i)调控基因座作为QTL的重要性,(ii)生物化学途径在产物水平上相互连接的重要性,(iii)中间体“通道化”的证据,即允许相关化合物的独立合成,(iv)QTL分析在阐明特定基因在生化途径中的作用方面的效用,以及(v)在9号染色体短臂上鉴定出一个影响黄酮水平的先前未知的基因座。对玉米素合成及相关玉米穗虫抗性的遗传基础有更深入的了解,应能改进育种策略。更广泛地说,在将影响数量性状的特定遗传和生化途径联系起来方面所获得的见解,应能增强对其他数量性状变异生物学基础的解释。