首页> 外文期刊>Plant and Cell Physiology >C/D Class MADS Box Genes from Two Monocots, Orchid (Oncidium Gower Ramsey) and Lily (Lilium longiflorum), Exhibit Differentn Effects on Floral Transition and Formation in Arabidopsis thaliana
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C/D Class MADS Box Genes from Two Monocots, Orchid (Oncidium Gower Ramsey) and Lily (Lilium longiflorum), Exhibit Differentn Effects on Floral Transition and Formation in Arabidopsis thaliana

机译:兰花(Oncidium Gower Ramsey)和百合(Lilium longiflorum)两个单子叶植物的C / D类MADS盒基因在拟南芥中显示出对花期过渡和形成的不同影响

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We have characterized three C/D class MADS box genes from an orchid (Oncidium Gower Ramsey) and a lily (Lilium longiflorum). OMADS4 of orchid and LMADS10 of lily are C class gene orthologs, whereas OMADS2 of orchid is a putative D class gene ortholog. The identity of these three genes is further supported by the presence of conserved motifs in the C-terminal regions of the proteins. The mRNA for these three genes can be detected in flowers and is absent in vegetative leaves. In flowers, OMADS4 and LMADS10 show similar expression patterns, being specifically expressed in the stamens and carpels. The expression of OMADS2 is restricted to the stigmatic cavity and ovary of the carpel. The similarities of the expression patterns of OMADS4/LMADS10 and OMADS2 to those of C and D class genes, respectively, indicate that their transcriptional regulation is highly evolutionarily conserved in these monocot species. Yeast two-hybrid analysis indicates that both OMADS2 and OMADS4 form homodimers and heterodimers with each other. Similar interactions are observed for LMADS2 and LMADS10. Ectopic expression of LMADS10 causes extremely early flowering, terminal flower formation and conversion of the sepals into carpel-like structures, similar to ectopic expression of the lily D class gene LMADS2. In contrast, 35S::OMADS2 and 35S::OMADS4 cause only early or moderately early flowering in transgenic Arabidopsis plants without floral organ conversion. This result indicates that C/D class genes from the lily have stronger effects than those from the orchid in transgenic Arabidopsis, revealing possible functional diversification of C/D class genes from the two monocots in regulating floral transition and formation.
机译:我们已经表征了兰花(Oncidium Gower Ramsey)和百合(Lilium longiflorum)的三个C / D类MADS盒基因。兰花的OMADS4和百合的LMADS10是C类基因直系同源物,而兰花的OMADS2是推定的D类基因直系同源物。蛋白质的C端区域中存在保守的基序,进一步支持了这三个基因的身份。这三个基因的mRNA可以在花朵中检测到,而在营养叶中却不存在。在花朵中,OMADS4和LMADS10显示相似的表达模式,在雄蕊和心皮中特异性表达。 OMADS2的表达仅限于心房的散影腔和子房。 OMADS4 / LMADS10和OMADS2的表达模式分别与C和D类基因的表达模式相似,表明它们的转录调控在这些单子叶植物物种中高度进化保守。酵母两杂交分析表明,OMADS2和OMADS4彼此形成同二聚体和异二聚体。对于LMADS2和LMADS10,观察到类似的相互作用。 LMADS10的异位表达导致极早的开花,最终花的形成以及萼片转化为心皮状结构,类似于百合D类基因LMADS2的异位表达。相反,35S :: OMADS2和35S :: OMADS4在转基因拟南芥植物中仅引起早期或中等早期开花,而没有花器官转化。该结果表明,在转基因拟南芥中,来自百合的C / D类基因比来自兰花的C / D类基因具有更强的作用,表明来自两个单子叶植物的C / D类基因在调节花的过渡和形成方面可能的功能多样化。

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