Tamura K, Yamada T
National Agricultural Research Center for Hokkaido Region, National Agriculture and Food Research Organization, Hitsujigaoka, Toyohira, Sapporo, 062-8555, Japan.
Theor Appl Genet. 2007 Jan;114(2):273-83. doi: 10.1007/s00122-006-0430-z. Epub 2006 Oct 31.
CBF/DREB1 proteins are the most important regulators of the cold temperature signaling pathway in many plants. CBF genes are candidates for low-temperature tolerance QTL in wheat and barley. Ten novel putative CBF cDNAs of perennial ryegrass (Lolium perenne L.) have been isolated from cold-treated leaf tissue. Their primary structures contain some conserved motifs, characteristic of the gene class. Phylogenetic analysis revealed that LpCBF genes were attributable to the HvCBF3-, and HvCBF4-subgroups following the previously proposed classification of barley CBF genes. RT-PCR analysis revealed that the expression of LpCBF genes was rapidly induced in response to low temperature and that the expression pattern under the low-temperature conditions for a long period was different between the various LpCBF genes. Five of the ten LpCBF genes were assigned to the genetic linkage map using the p150/112 reference mapping population. LpCBFIb, LpCBFII, LpCBFIIIb and LpCBFIIIc were mapped on LG5 forming a cluster within 2.2 cM, while LpCBFVb was located on LG1. Based on comparative genetic studies, conserved synteny for CBF gene family was observed between the Triticeae cereals and perennial ryegrass. Information on the perennial ryegrass CBF genes at both the molecular and genetic level obtained in this study would be useful for the further study on the role of CBF genes and low-temperature tolerance in grasses.
CBF/DREB1蛋白是许多植物低温信号通路中最重要的调节因子。CBF基因是小麦和大麦中耐低温QTL的候选基因。从经低温处理的叶片组织中分离出了多年生黑麦草(Lolium perenne L.)的10个新的假定CBF cDNA。它们的一级结构包含一些该基因类别的保守基序。系统发育分析表明,按照先前提出的大麦CBF基因分类,LpCBF基因属于HvCBF3 - 和HvCBF4亚组。RT-PCR分析表明,LpCBF基因的表达在低温响应下迅速被诱导,并且在长期低温条件下,不同LpCBF基因的表达模式有所不同。利用p150/112参考作图群体,将10个LpCBF基因中的5个定位到了遗传连锁图谱上。LpCBFIb、LpCBFII、LpCBFIIIb和LpCBFIIIc定位在LG5上,在2.2 cM范围内形成一个簇,而LpCBFVb位于LG1上。基于比较遗传学研究,在小麦族谷类作物和多年生黑麦草之间观察到了CBF基因家族的保守同线性。本研究在分子和遗传水平上获得的关于多年生黑麦草CBF基因的信息,将有助于进一步研究CBF基因在禾本科植物中的作用以及耐低温性。