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The OitaAG and OitaSTK genes of the orchid Orchis italica: a comparative analysis with other C- and D-class MADS-box genes

机译:兰花Orchis italica的OitaAG和OitaSTK基因:与其他C级和D级MADS-box基因的比较分析

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According to the ABCDE model of flower development, the C- and D- class MADS box genes are involved in the formation of male and female reproductive organs (fused to form the column in orchids) and in ovule maturation (triggered by fertilization in orchids). In the present study, we report the isolation of the Orchis italica genes OitaAG and OitaSTK, homologs of the C-class AGAMOUS and the D-class SEEDSTICK genes of Arabidopsis, respectively. Analysis of their expression profiles reveals high levelsof mRNA in columns and ovaries, particularly after pollination. However, weak expression is also detectable in the inner tepals (OitaAG) and the lip and root (OitaSTK). This expression profile is only partially overlapping with those reported in other orchid species and may be the consequence of a different evolutionary history of these functional gene classes in orchids. The genomic characterization of the OitaAG and OitaSTK genes shows that a high number of traces of mobile elements are present in introns and could have contributed to the size expansion of some of them (e.g., intron 2 and 3 of OitaAG and intron 3, 4 and 5 of OitaSTK). Nucleotide sequences of intron 1 of the OitaSTK gene and other STK-like genes do not share regulatory motifs, whereassequence comparison of intron 2 of the OitaAG gene with that of intron 2 of other AG-like genes reveals, for the first time in an orchid species, the presence of conserved cis-regulatory boxes and binding sites for transcription factors that positively(e.g., LEAFY and WUSCHEL) or negatively (e.g., BELLRINGER) regulate the expression of the AG homologs in dicots and monocots.
机译:根据花卉发育的ABCDE模型,C级和D级MADS盒基因参与雄性和雌性生殖器官的形成(在兰花中融合形成柱)和胚珠成熟(在兰花中受精触发) 。在本研究中,我们报告了Orchis italica基因OitaAG和OitaSTK的分离,分别是拟南芥C类AGAMOUS和D类SEEDSTICK基因的同源物。分析它们的表达谱显示,在柱和卵巢中mRNA水平很高,尤其是授粉后。但是,在内部花被(OitaAG)和嘴唇和根部(OitaSTK)中也可以检测到弱表达。该表达谱仅与其他兰花物种报道的表达谱部分重叠,并且可能是兰花中这些功能基因类别的不同进化史的结果。 OitaAG和OitaSTK基因的基因组表征表明,内含子中存在大量痕量的移动元件,可能有助于其中一些的大小扩展(例如,OitaAG的内含子2和3以及内含子3、4和5)。 OitaSTK的5)。 OitaSTK基因的内含子1和其他类似STK的基因的核苷酸序列不共享调控基序,而OitaAG基因的内含子2与其他AG样基因的内含子2的序列比较首次揭示了在兰花中物种,保守的顺式调控盒和阳性(例如,LEAFY和WUSCHEL)或阴性(例如,BELLRINGER)的转录因子结合位点的存在,可以调节双子叶植物和单子叶植物中AG同源物的表达。

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