Department of Horticulture and Crop Science, The Ohio State University, 1680 Madison Avenue, Wooster, OH 44691, USA.
Theor Appl Genet. 2011 Aug;123(3):465-74. doi: 10.1007/s00122-011-1599-3. Epub 2011 May 4.
Fruit weight is an important character in many crops. In tomato (Solanum lycopersicum), fruit weight is controlled by many loci, some of which have a major effect on the trait. Fruit weight 11.3 (fw11.3) and fasciated (fas) have been mapped to the same region on chromosome 11. We sought to determine whether these loci represent alleles of the same or separate genes. We show that fas and fw11.3 are not allelic and instead represent separate genes. The fw11.3 locus was fine-mapped to a 149-kb region comprised of 22 predicted genes. Unlike most fruit weight loci, gene action at fw11.3 indicates that the mutant allele is partially dominant over the wild allele. We also investigate the nature of the genome rearrangement at the fas locus and demonstrate that the mutation is due to a 294-kb inversion disrupting the YABBY gene known to underlie the fas locus.
果实重量是许多作物的一个重要特征。在番茄(Solanum lycopersicum)中,果实重量由许多基因座控制,其中一些对该性状有很大影响。果实重量 11.3(fw11.3)和束腰(fas)已被定位到 11 号染色体的同一区域。我们试图确定这些基因座是否代表同一或不同基因的等位基因。我们表明 fas 和 fw11.3 不是等位基因,而是代表不同的基因。fw11.3 基因座被精细定位到一个由 22 个预测基因组成的 149-kb 区域。与大多数果实重量基因座不同,fw11.3 基因座的基因作用表明,突变等位基因在一定程度上是显性的,超过了野生等位基因。我们还研究了 fas 基因座的基因组重排的性质,并证明该突变是由于一个 294-kb 的倒位破坏了已知是 fas 基因座基础的 YABBY 基因。