Liu Jun-Jun, Ekramoddoullah Abul K M
Pacific Forestry Centre, Canadian Forest Service, Natural Resources Canada, 506 West Burnside Road, Victoria, BC V8Z 1M5, Canada.
Genome. 2009 Jan;52(1):77-88. doi: 10.1139/G08-106.
The WRKY gene family represents an ancient and highly complex group of transcription factors involved in signal transduction pathways of numerous plant developmental processes and host defense response. Up to now, most WRKY proteins have been identified in a few angiosperm species. Identification of WRKY genes in a conifer species would facilitate a comprehensive understanding of the evolutionary and function-adaptive process of this superfamily in plants. We performed PCR on genomic DNA to clone WRKY sequences from western white pine (Pinus monticola), one of the most valuable conifer species endangered by white pine blister rust (Cronartium ribicola). In total, 83 P. monticola WRKY (PmWRKY) sequences were identified using degenerate primers targeted to the WRKY domain. A phylogenetic analysis revealed that PmWRKY members fell into four major groups (1, 2a+2b, 2c, and 2d+2e) described in Arabidopsis and rice. Because of high genetic diversity of the PmWRKY family, a modified AFLP method was used to detect DNA polymorphism of this gene family. Polymorphic fragments accounted for 17%-35% of total PCR products in the AFLP profiles. Among them, one WRKY AFLP marker was linked to the major resistance gene (Cr2) against C. ribicola. The results of this study provide basic genomic information for a conifer WRKY gene family, which will pave the way for elucidating gene evolutionary mechanisms in plants and unveiling the precise roles of PmWRKY in conifer development and defense response.
WRKY基因家族是一组古老且高度复杂的转录因子,参与众多植物发育过程和宿主防御反应的信号转导途径。到目前为止,大多数WRKY蛋白已在少数被子植物物种中被鉴定出来。在针叶树物种中鉴定WRKY基因将有助于全面了解该超家族在植物中的进化和功能适应过程。我们对基因组DNA进行PCR,以从西部白松(Pinus monticola)中克隆WRKY序列,西部白松是最有价值的针叶树物种之一,受到白松疱锈病(Cronartium ribicola)的威胁而濒临灭绝。总共使用针对WRKY结构域的简并引物鉴定出83个西部白松WRKY(PmWRKY)序列。系统发育分析表明,PmWRKY成员分为拟南芥和水稻中描述的四个主要组(1、2a + 2b、2c和2d + 2e)。由于PmWRKY家族的高遗传多样性,采用改良的AFLP方法检测该基因家族的DNA多态性。在AFLP图谱中,多态性片段占总PCR产物的17% - 35%。其中,一个WRKY AFLP标记与抗白松疱锈病的主要抗性基因(Cr2)连锁。本研究结果为针叶树WRKY基因家族提供了基础基因组信息,这将为阐明植物基因进化机制以及揭示PmWRKY在针叶树发育和防御反应中的精确作用铺平道路。