Quantitative trait loci affecting amylose, amylopectin and starch content in maize recombinant inbred lines [QTL]
2000
Sene, M. (Universite de Paris 11, Orsay (France). Institut de Biotechnologie des Plantes, Laboratoire Structure et Metabolisme des Plantes) | Causse, M. | Damerval, C. | Thevenot, C. | Prioul, J.L.
The loci explaining the variability of quantitative traits related to starch content and composition (amylose, amylopectin and water soluble fraction) were searched for in maize kernels. Multifactorial genetic methods were used to detect and locate QTLs (quantitative trait loci) on a genetic map consisting mainly of RFLP markers for genes with known function. The genetic material was recombinant inbred fines originating from parents differing in starch structure (dent vs. flint). Kernels were harvested from field grown plants for two successive years and under two pollination systems. Main effect and epistasis QTLs were detected using two methods, composite interval mapping (MQTL) and ANOVA. Despite large year-to-year differences, physiologically meaningful cg-locations were observed between trait QTLs. Moreover, the number of expressed sequences on our map allowed the search for cg-locations between QTLs and genes involved in carbohydrate metabolism. The main cg-location was between an amylose QTL and Shrunken 2 (SH2) locus, on chromosome 3 (SH2 encoding for the large subunit of ADPglucose pyrophosphorylase). The importance of this locus as a candidate gene for a starch QTL is in agreement with previous studies based either on QTL cg-locations or on reversant analysis. Other cg-locations were observed between amylose and amylopectin QTLs and the two loci of IVR1 invertase genes on chromosomes 2 and 10. Further comparison with previously detected QTLs for carbohydrate metabolism in maize leaves showed consistent cg-location in map regions devoid of candidate genes, such as near chromosome 1S telomere. The possible contribution of regulatory genes in this region is discussed.
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