Yasuno Naoko, Yasui Yuta, Takamure Itsuro, Kato Kiyoaki
Department of Crop Science Obihiro University of Agriculture and Veterinary Medicine, Nishi Inada-cho, Obihiro, Hokkaido, Japan.
J Hered. 2007 Mar-Apr;98(2):169-72. doi: 10.1093/jhered/esl069. Epub 2007 Jan 20.
Mutant genes, reduced culm number 1 (rcn1) and bunketsuwaito tillering dwarf (d3), affect tiller number in rice (Oryza sativa L.) in opposite directions. The d3 mutant was reported to increase tiller number and reduce plant stature. Our objective was to compare the phenotype of the d3rcn1 double mutant with each single mutant and parental rice cultivar "Shiokari" and to clarify whether the Rcn1 gene interacted with the D3 gene. We recovered a new rcn1 mutant from Shiokari and developed d3rcn1 double mutant with Shiokari genetic background. A new rcn1 mutant, designated as "S-97-61" exhibited a reduction in tiller number and plant stature to about the same level as the previously reported original rcn1 mutant. Three near-isogenic lines, rcn1 mutant, d3 mutant, and d3rcn1 double mutant, were grown together with the parental Shiokari. The reduction in tillering by the rcn1 mutation was independent of the d3 genotype, and tillering number of d3rcn1 double mutant was between those of the d3 and rcn1 mutants. These results demonstrated that the Rcn1 gene was not involved in the D3-associated pathway in tillering control.
突变基因,即水稻少蘖1号(rcn1)和桶科威特分蘖矮化基因(d3),对水稻(Oryza sativa L.)的分蘖数产生相反的影响。据报道,d3突变体可增加分蘖数并降低株高。我们的目的是比较d3rcn1双突变体与每个单突变体以及亲本水稻品种“紫香”的表型,并阐明Rcn1基因是否与D3基因相互作用。我们从紫香中获得了一个新的rcn1突变体,并培育出具有紫香遗传背景的d3rcn1双突变体。一个新的rcn1突变体,命名为“S-97-61”,其分蘖数和株高的降低程度与先前报道的原始rcn1突变体大致相同。三个近等基因系,即rcn1突变体、d3突变体和d3rcn1双突变体,与亲本紫香一起种植。rcn1突变导致的分蘖减少与d3基因型无关,d3rcn1双突变体的分蘖数介于d3和rcn1突变体之间。这些结果表明,Rcn1基因不参与D3相关的分蘖控制途径。