Muangprom A, Osborn T C
National Center for Genetic Engineering and Biotechnology, 113 Phaholyothin Road, Klong 1, Klong Luang, 12120 Pathumthani, Thailand.
Theor Appl Genet. 2004 May;108(7):1378-84. doi: 10.1007/s00122-003-1551-2. Epub 2004 Jan 16.
Dwarf genes have been valuable for improving harvestable yield of several crop plants and may be useful in oilseed Brassica. We evaluated a dwarf gene, dwf2, from Brassica rapa in order to determine its phenotypic effects and genetic characteristics. The dwf2 mutant was insensitive to exogenous GA(3) for both plant height and flowering time, suggesting that it is not a mutation in the gibberellin biosynthesis pathway. The dwarf phenotype was controlled by a semidominant allele at a single locus. Near-isogenic lines that were homozygous or heterozygous for dwf2 had 47.4% or 30.0% reduction in plant height, respectively, compared to the tall wild-type line, and the reduction was due to reduced internode length and number of nodes. The dwf2 homozygous and heterozygous lines had the same or significantly higher numbers of primary branches than the wild-type line, but did not differ in flowering time. The DWF2 gene was mapped to the bottom of linkage group R6, in a region having homology to the top of Arabidopsis thaliana chromosome 2. The map position of DWF2 in comparison to markers in A. thaliana suggests it is a homolog of RGA ( repressor of ga1-3), which is a homolog of the wheat "Green Revolution" gene. This dwarf gene could be used to gain more insight on the gibberellin pathway and to reduce lodging problems in hybrid oilseed Brassica cultivars.
矮化基因对于提高多种农作物的可收获产量具有重要价值,并且可能对油菜籽作物有用。我们评估了来自白菜型油菜的一个矮化基因dwf2,以确定其表型效应和遗传特征。dwf2突变体对外源赤霉素(GA3)的株高和开花时间均不敏感,这表明它不是赤霉素生物合成途径中的突变。矮化表型由单个位点上的一个半显性等位基因控制。与高杆野生型品系相比,dwf2纯合或杂合的近等基因系的株高分别降低了47.4%或30.0%,这种降低是由于节间长度和节数减少所致。dwf2纯合和杂合系的一级分枝数量与野生型品系相同或显著更多,但开花时间没有差异。DWF2基因被定位到连锁群R6的底部,该区域与拟南芥2号染色体顶部具有同源性。与拟南芥中的标记相比,DWF2的图谱位置表明它是RGA(ga1-3的抑制因子)的同源物,而RGA是小麦“绿色革命”基因的同源物。这个矮化基因可用于更深入了解赤霉素途径,并减少杂交油菜籽品种的倒伏问题。