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在一粒小麦中,一组11个CBF转录因子位于抗冻性基因座Fr-Am2处。

A cluster of 11 CBF transcription factors is located at the frost tolerance locus Fr-Am2 in Triticum monococcum.

作者信息

Miller Andrea K, Galiba Gabor, Dubcovsky Jorge

机构信息

Department of Plant Sciences, University of California, Davis, 95616, USA.

出版信息

Mol Genet Genomics. 2006 Feb;275(2):193-203. doi: 10.1007/s00438-005-0076-6. Epub 2005 Dec 16.

Abstract

Due to the adverse effects of cold temperatures on winter wheat, frost tolerance is an important trait for breeding programs in regions with severe winters. Frost tolerance locus Fr-A(m)2 was recently discovered in diploid wheat (Triticum monococcum L.). This locus was mapped as a QTL on chromosome 5A(m) in the same region as a QTL for the level of transcription of the cold-regulated gene COR14b at 15 degrees C. A CBF transcription factor was mapped in the center of these two overlapping QTLs. However, since the CBF gene family in wheat has numerous members, it was possible that multiple CBF genes were present at Fr-A(m)2. To investigate this possibility we initiated a systematic characterization of the CBF family in T. monococcum. Here we report the molecular characterization of thirteen TmCBF genes. Nine of them were numbered according to the closest barley HvCBF gene, and the other four that have no clear barley orthologues were assigned numbers TmCBF15 to TmCBF18. TmCBF5 and TmCBF18 were mapped on T. monococcum chromosomes 7A(m) and 6A(m), respectively, and are thus not candidates for the Fr-A(m)2 gene. The remaining eleven TmCBF genes are clustered at the Fr-A(m)2 locus within five different Bacterial Artificial Chromosome (BAC) clones. These BACs were mapped using a high-density map and recombination events were found between most BACs. Lines carrying these recombination events will be useful to identify which of the CBF genes is responsible for the differences in frost tolerance between the T. monococcum parental lines at the Fr-A(m)2 locus.

摘要

由于低温对冬小麦有不利影响,在冬季严寒地区,抗冻性是育种计划中的一个重要性状。最近在二倍体小麦(一粒小麦Triticum monococcum L.)中发现了抗冻性位点Fr-A(m)2。该位点被定位为5A(m)染色体上的一个数量性状位点(QTL),与15℃下冷调节基因COR14b转录水平的QTL位于同一区域。一个CBF转录因子被定位在这两个重叠QTL的中心。然而,由于小麦中的CBF基因家族有众多成员,在Fr-A(m)2位点可能存在多个CBF基因。为了研究这种可能性,我们对一粒小麦中的CBF家族进行了系统的特征分析。在此,我们报告了13个TmCBF基因的分子特征。其中9个根据与大麦HvCBF基因最接近的基因进行编号,另外4个没有明确的大麦直系同源基因,被命名为TmCBF15至TmCBF18。TmCBF5和TmCBF18分别定位在一粒小麦的7A(m)和6A(m)染色体上,因此不是Fr-A(m)2基因的候选基因。其余11个TmCBF基因聚集在5个不同的细菌人工染色体(BAC)克隆内的Fr-A(m)2位点。使用高密度图谱对这些BAC进行了定位,并且在大多数BAC之间发现了重组事件。携带这些重组事件的株系将有助于确定在Fr-A(m)2位点上,哪个CBF基因导致了一粒小麦亲本株系之间抗冻性的差异。

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