Leseberg Charles H, Li Aili, Kang Hui, Duvall Melvin, Mao Long
Department of Biological Sciences, Northern Illinois University, DeKalb, IL 60115, USA.
Gene. 2006 Aug 15;378:84-94. doi: 10.1016/j.gene.2006.05.022. Epub 2006 Jul 10.
Populus trichocarpa (poplar) is distinguished from its herbaceous counterparts Arabidopsis and rice by its woody structure, perennial life cycle, and dioecious, two-whorled flowers. MADS-box genes are known to be involved in many important processes during plant development. Investigation of the poplar genome revealed 105 putative functional MADS-box genes and 12 pseudogenes. These numbers are comparable to those in Arabidopsis. However, poplar has 64 type II MADS-box genes, implying a higher birth rate when compared with Arabidopsis (64 vs.47). In addition to duplications for floral organ identity genes, TM3-like, StMADS11, ANR1 and Bs clades were significantly increased. As indicated by the phylogenetic analysis, there exist at least two MIKC* MADS-box genes in the poplar genome. In contrast, only 41 putative functional type I genes and 9 pseudogenes were found, suggesting that the poplar type I MADS-box genes have experienced a lower rate in both birth and death. Poplar MADS-box genes were distributed on all linkage groups (LGs), except LG XIX. Like other gene families, poplar MADS-box gene family has expanded through tandem gene duplication and segmental duplication events as demonstrated by two genomic regions where clustered MADS-box genes exhibited high similarities in the MADS-box domains. A survey of poplar EST sequences showed that MADS-box genes were expressed in wood and cambium tissues, which are specific to woody plants. The expression of common MADS-box gene in tree-specific tissues suggests that the novel function combinations of a set of genes similar to those in herbaceous plants may account for the development of woody characteristics in poplar.
毛果杨与草本植物拟南芥和水稻不同,它具有木质结构、多年生生命周期以及雌雄异株、两轮花。已知MADS-box基因参与植物发育过程中的许多重要进程。对毛果杨基因组的研究揭示了105个推定的功能性MADS-box基因和12个假基因。这些数量与拟南芥中的数量相当。然而,毛果杨有64个II型MADS-box基因,这意味着与拟南芥相比其产生率更高(64个对47个)。除了花器官特征基因的重复外,TM3-like、StMADS11、ANR1和Bs进化枝显著增加。系统发育分析表明,毛果杨基因组中至少存在两个MIKC* MADS-box基因。相比之下,仅发现41个推定的功能性I型基因和9个假基因,这表明毛果杨I型MADS-box基因在产生和消亡方面的速率较低。毛果杨MADS-box基因分布在除第XIX连锁群之外的所有连锁群上。与其他基因家族一样,毛果杨MADS-box基因家族通过串联基因重复和片段重复事件进行了扩展,如两个基因组区域所示,其中成簇的MADS-box基因在MADS-box结构域中表现出高度相似性。对毛果杨EST序列的调查表明,MADS-box基因在木材和形成层组织中表达,这些组织是木本植物特有的。常见MADS-box基因在树木特定组织中的表达表明,一组与草本植物中相似的基因的新功能组合可能解释了毛果杨木质特征的发育。