Zhang Wenheng, Xiang Qiu-Yun Jenny, Thomas David T, Wiegmann Brian M, Frohlich Michael W, Soltis Douglas E
Department of Plant Biology, North Carolina State University, Raleigh, NC 27695-7612, USA.
Mol Phylogenet Evol. 2008 Apr;47(1):175-95. doi: 10.1016/j.ympev.2007.12.022. Epub 2008 Jan 1.
The MADS-box gene family encodes critical regulators determining floral organ development. Understanding evolutionary patterns and processes of MADS-box genes is an important step toward unraveling the molecular basis of floral morphological evolution. In this study, we investigated the evolution of PI-like genes of the MADS-box family in the dogwood genus Cornus (Cornaceae). Cornus is a eudicot lineage in the asterids clade, and is intriguing in evolving petaloid bract morphology in two major lineages within the genus. The gene genealogy reconstructed using genomic DNA and cDNA sequences suggests multiple PI-like gene duplication events in Cornus. An ancient duplication event resulted in two ancient paralogs, CorPI-A and CorPI-B, which have highly diverged intron regions. Duplication of CorPI-A further resulted in two paralogs in one subgroup of Cornus, the BW group that does not produce modified bracts. Most species analyzed were found to contain more than one copy of the PI-like gene with most copies derived recently within species. Estimation and comparison of dN/dS ratios revealed relaxed selection in the PI-like gene in Cornus in comparison with the gene in the closely related outgroups Alangium and Davidia, and in other flowering plants. Selection also differed among major gene copies, CorPI-A and CorPI-B, and among different morphological subgroups of Cornus. Variation in selection pressures may indicate functional changes in PI-like genes after gene duplication and among different lineages. Strong positive selection at three amino acid sites of CorPI was also detected from a region critical for dimerization activity. Total substitution rates of the CorPI gene also differ among lineages of Cornus, showing a trend similar to that found in dN/dS ratios. We also found that the CorPI-A copy contains informative phylogenetic information when compared across species of Cornus.
MADS-box基因家族编码决定花器官发育的关键调控因子。了解MADS-box基因的进化模式和过程是揭示花形态进化分子基础的重要一步。在本研究中,我们调查了山茱萸科山茱萸属中MADS-box家族PI-like基因的进化情况。山茱萸属是菊分支中的真双子叶植物分支,在该属的两个主要分支中进化出花瓣状苞片形态,这很有趣。利用基因组DNA和cDNA序列重建的基因谱系表明,山茱萸属中存在多个PI-like基因重复事件。一次古老的重复事件产生了两个古老的旁系同源基因CorPI-A和CorPI-B,它们的内含子区域高度分化。CorPI-A的重复进一步在山茱萸属的一个亚组(不产生变异苞片的BW组)中产生了两个旁系同源基因。分析发现,大多数被分析的物种都含有多个PI-like基因拷贝,其中大多数拷贝是最近在物种内产生的。dN/dS比率的估计和比较显示,与近缘外类群八角枫属和珙桐属以及其他开花植物中的基因相比,山茱萸属中PI-like基因的选择压力有所放松。主要基因拷贝CorPI-A和CorPI-B之间以及山茱萸属不同形态亚组之间的选择也存在差异。选择压力的变化可能表明基因重复后以及不同谱系中PI-like基因的功能发生了变化。在对二聚化活性至关重要的一个区域中,还检测到CorPI的三个氨基酸位点存在强烈的正选择。CorPI基因的总替换率在山茱萸属的不同谱系中也有所不同,呈现出与dN/dS比率相似的趋势。我们还发现,当跨山茱萸属物种进行比较时,CorPI-A拷贝包含信息丰富的系统发育信息。