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Evolution of the bHLH Genes Involved in Stomatal Development: Implications for the Expansion of Developmental Complexity of Stomata in Land Plants

机译:参与气孔发育的bHLH基因的进化:对陆地植物气孔发育复杂性扩展的影响

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摘要

Stomata play significant roles in plant evolution. A trio of closely related basic Helix-Loop-Helix (bHLH) subgroup Ia genes, SPCH, MUTE and FAMA, mediate sequential steps of stomatal development, and their functions may be conserved in land plants. However, the evolutionary history of the putative SPCH/MUTE/FAMA genes is still greatly controversial, especially the phylogenetic positions of the bHLH Ia members from basal land plants. To better understand the evolutionary pattern and functional diversity of the bHLH genes involved in stomatal development, we made a comprehensive evolutionary analysis of the homologous genes from 54 species representing the major lineages of green plants. The phylogenetic analysis indicated: (1) All bHLH Ia genes from the two basal land plants Physcomitrella and Selaginella were closely related to the FAMA genes of seed plants; and (2) the gymnosperm ‘SPCH’ genes were sister to a clade comprising the angiosperm SPCH and MUTE genes, while the FAMA genes of gymnosperms and angiosperms had a sister relationship. The revealed phylogenetic relationships are also supported by the distribution of gene structures and previous functional studies. Therefore, we deduce that the function of FAMA might be ancestral in the bHLH Ia subgroup. In addition, the gymnosperm “SPCH” genes may represent an ancestral state and have a dual function of SPCH and MUTE, two genes that could have originated from a duplication event in the common ancestor of angiosperms. Moreover, in angiosperms, SPCHs have experienced more duplications and harbor more copies than MUTEs and FAMAs, which, together with variation of the stomatal development in the entry division, implies that SPCH might have contributed greatly to the diversity of stomatal development. Based on the above, we proposed a model for the correlation between the evolution of stomatal development and the genes involved in this developmental process in land plants.
机译:气孔在植物进化中起重要作用。密切相关的基本螺旋-螺旋-螺旋(bHLH)Ia亚基三组基因SPCH,MUTE和FAMA介导了气孔发育的顺序步骤,其功能在陆地植物中得以保留。然而,推定的SPCH / MUTE / FAMA基因的进化历史仍然存在很大争议,特别是来自基础陆地植物的bHLH Ia成员的系统发育位置。为了更好地了解参与气孔发育的bHLH基因的进化模式和功能多样性,我们对代表绿色植物主要谱系的54个物种的同源基因进行了全面的进化分析。系统发育分析表明:(1)两种基础陆生植物小立碗藓和卷柏的bHLH Ia基因均与种子植物的FAMA基因密切相关。 (2)裸子植物的SPCH基因是由被子植物SPCH和MUTE基因组成的进化枝的姊妹,而裸子植物和被子植物的FAMA基因具有姐妹关系。基因结构的分布和以前的功能研究也支持所揭示的系统发育关系。因此,我们推断在bHLH Ia亚组中,FAMA的功能可能是祖先的。此外,裸子植物“ SPCH”基因可能代表祖先状态,并具有SPCH和MUTE的双重功能,这两个基因可能源于被子植物共同祖先的复制事件。此外,在被子植物中,SPCH比 MUTE FAMA 具有更多的重复和更多的副本,这与入口区气孔发育的变化一起暗示了< em> SPCH 可能为气孔发育的多样性做出了巨大贡献。基于以上所述,我们提出了一个模型,用于陆地植物气孔发育的进化与参与该发育过程的基因之间的相关性。

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