首页> 外文期刊>Plant and cell physiology >Four Orchid (Oncidium Gower Ramsey) AP1/AGL9-like MADS Box Genes Show Novel Expression Patterns and Cause Different Effects on Floral Transition and Formation in Arabidopsis thaliana.
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Four Orchid (Oncidium Gower Ramsey) AP1/AGL9-like MADS Box Genes Show Novel Expression Patterns and Cause Different Effects on Floral Transition and Formation in Arabidopsis thaliana.

机译:四个兰花(文心兰Ramsey)AP1 / AGL9样的MADS盒基因显示新的表达模式,并在拟南芥中对花的过渡和形成造成不同的影响。

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Four AP1/AGL9 functional MADS box genes were characterized from the orchid (Oncidium Gower Ramsey). OMADS6 is a SEP3 ortholog, OMADS11 is a SEP1/2 ortholog, OMADS7 is an AGL6-like gene and OMADS10 is a putative paleoAP1 ortholog. The identity of these four genes was further supported by the presence of conserved motifs in the C-terminal regions of the proteins. OMADS6 showed an expression pattern different from SEP3 orthologs, with expression in the sepal, petal, lip and carpel, and was barely detected in the stamen. The expression pattern for OMADS11 was similar to OMADS6 and different from SEP1/2 orthologs since its expression was undetectable in the stamen. The expression pattern for OMADS7 was nearly identical to OMADS6. The similarities in the expression patterns of the SEP/AGL6-like genes OMADS6, 11 and 7 indicated that their transcriptional regulation is highly evolutionarily conserved in the orchid. Unlike OMADS6/11/7, OMADS10 was only expressed in vegetative leaves and in the lip and carpel of mature flowers, which distinguishes it from most genes in the SQUA subfamily. Ectopic expression of OMADS6, 11 or 7 caused extremely early flowering, whereas 35S::OMADS10 only caused moderately early flowering in transgenic Arabidopsis plants. In addition, flower organ conversions, such as carpelloid sepals and staminoid petals, were observed in 35S::OMADS6 and carpelloid sepals were produced in 35S::OMADS7, while flower organ conversions were not observed in 35S::OMADS11 or 35S::OMADS10 transgenic flowers. This result reveals possible functional diversification of the orchid AP1/AGL9 genes OMADS6, 11, 7 and 10 in regulating flower transition and formation.
机译:从兰花(Oncidium Gower Ramsey)鉴定了四个AP1 / AGL9功能性MADS盒基因。 OMADS6是SEP3直系同源物,OMADS11是SEP1 / 2直系同源物,OMADS7是AGL6样基因,OMADS10是推定的paleAAP1直系同源物。在蛋白质的C端区域中存在保守的基序,进一步支持了这四个基因的身份。 OMADS6表现出与SEP3直系同源基因不同的表达模式,在萼片,花瓣,嘴唇和心皮中均有表达,在雄蕊中几乎未检测到。 OMADS11的表达模式与OMADS6相似,并且不同于SEP1 / 2直系同源物,因为在雄蕊中无法检测到它的表达。 OMADS7的表达模式几乎与OMADS6相同。 SEP / AGL6样基因OMADS6、11和7的表达模式相似,表明它们的转录调控在兰花中高度进化保守。与OMADS6 / 11/7不同,OMADS10仅在营养叶和成熟花的唇和心皮中表达,这使其与SQUA亚科的大多数基因区分开。 OMADS6、11或7的异位表达导致极早开花,而35S :: OMADS10仅在转基因拟南芥植物中引起中等早开花。此外,在35S :: OMADS6中观察到了花器官转化,例如类胡萝卜素萼片和类雄蕊花瓣,在35S :: OMADS7中产生了类胡萝卜素萼片,而在35S :: OMADS11或35S :: OMADS10中未观察到花器官转化。转基因花。该结果揭示了兰花AP1 / AGL9基因OMADS6、11、7和10在调节花的过渡和形成中可能的功能多样化。

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