Båga Monica, Fowler D Brian, Chibbar Ravindra N
Department of Plant Science, University of Saskatchewan, 51 Campus Drive, Saskatoon, Saskatchewan, S7N 5A8 Canada.
J Exp Bot. 2009;60(12):3575-85. doi: 10.1093/jxb/erp199. Epub 2009 Jun 24.
Autumn-seeded winter cereals acquire tolerance to freezing temperatures and become vernalized by exposure to low temperature (LT). The level of accumulated LT tolerance depends on the cold acclimation rate and factors controlling timing of floral transition at the shoot apical meristem. In this study, genomic loci controlling the floral transition time were mapped in a winter wheat (T. aestivum L.) doubled haploid (DH) mapping population segregating for LT tolerance and rate of phenological development. The final leaf number (FLN), days to FLN, and days to anthesis were determined for 142 DH lines grown with and without vernalization in controlled environments. Analysis of trait data by composite interval mapping (CIM) identified 11 genomic regions that carried quantitative trait loci (QTLs) for the developmental traits studied. CIM analysis showed that the time for floral transition in both vernalized and non-vernalized plants was controlled by common QTL regions on chromosomes 1B, 2A, 2B, 6A and 7A. A QTL identified on chromosome 4A influenced floral transition time only in vernalized plants. Alleles of the LT-tolerant parent, Norstar, delayed floral transition at all QTLs except at the 2A locus. Some of the QTL alleles delaying floral transition also increased the length of vegetative growth and delayed flowering time. The genes underlying the QTLs identified in this study encode factors involved in regional adaptation of cold hardy winter wheat.
秋播冬性谷类作物获得耐冻性并通过暴露于低温(LT)而被春化。积累的耐低温水平取决于冷驯化速率以及控制茎尖分生组织处花期转变时间的因素。在本研究中,在一个冬小麦(普通小麦)双单倍体(DH)作图群体中定位了控制花期转变时间的基因组位点,该群体在耐低温性和物候发育速率方面存在分离。测定了142个DH系在有春化和无春化条件下于可控环境中生长时的最终叶片数(FLN)、达到FLN的天数以及开花天数。通过复合区间作图(CIM)对性状数据进行分析,鉴定出11个携带所研究发育性状数量性状位点(QTL)的基因组区域。CIM分析表明,春化和未春化植株的花期转变时间均由1B、2A、2B、6A和7A染色体上的共同QTL区域控制。在4A染色体上鉴定出的一个QTL仅影响春化植株的花期转变时间。耐低温亲本Norstar的等位基因在除2A位点外的所有QTL处均延迟花期转变。一些延迟花期转变的QTL等位基因还增加了营养生长长度并延迟了开花时间。本研究中鉴定出的QTL所对应的基因编码参与抗寒冬小麦区域适应性的因子。