Mei H W, Li Z K, Shu Q Y, Guo L B, Wang Y P, Yu X Q, Ying C S, Luo L J
Shanghai Agrobiological Gene Center, 2901 Beidi Road, Shanghai, 201106, China.
Theor Appl Genet. 2005 Feb;110(4):649-59. doi: 10.1007/s00122-004-1890-7. Epub 2005 Jan 13.
To understand the types of gene action controlling seven quantitative traits in rice, we carried out quantitative trait locus (QTL) mapping in order to distinguish between the main-effect QTLs (M-QTLs) and digenic epistatic QTLs (E-QTLs) responsible for the trait performance of 254 recombinant inbred lines (RILs) from rice varieties Lemont/Teqing and two backcross hybrid (BCF1) populations derived from these RILs. We identified 44 M-QTL and 95 E-QTL pairs in the RI and BCF1 populations as having significant effects on the mean values and mid-parental heterosis of heading date, plant height, flag leaf length, flag leaf width, panicle length, spikelet number and spikelet fertility. The E-QTLs detected collectively explained a larger portion of the total phenotypic variation than the M-QTLs in both the RI and BCF1 populations. In both BCF1 populations, over-dominant (or under-dominant) loci were more important than additive and complete or partially dominant loci for M-QTLs and E-QTL pairs, thereby supporting prior findings that overdominance resulting from epistatic loci are the primary genetic basis of inbreeding depression and heterosis in rice.
为了解控制水稻7个数量性状的基因作用类型,我们进行了数量性状基因座(QTL)定位,以区分影响水稻品种Lemont/特青的254个重组自交系(RIL)以及由这些RIL衍生的两个回交杂种(BCF1)群体性状表现的主效QTL(M-QTL)和双基因上位性QTL(E-QTL)。我们在RI和BCF1群体中鉴定出44个M-QTL和95对E-QTL,它们对抽穗期、株高、剑叶长、剑叶宽、穗长、小穗数和小穗育性的平均值及中亲杂种优势有显著影响。在RI和BCF1群体中,检测到的E-QTL共同解释的总表型变异比例均大于M-QTL。在两个BCF1群体中,对于M-QTL和E-QTL对,超显性(或亚显性)位点比加性和完全或部分显性位点更重要,从而支持了先前的研究结果,即上位性位点导致的超显性是水稻自交衰退和杂种优势的主要遗传基础。