首页> 外文期刊>Plant and cell physiology >The C-Terminal Sequence and PI motif of the Orchid (Oncidium Gower Ramsey) PISTILLATA (PI) Ortholog Determine its Ability to Bind AP3 Orthologs and Enter the Nucleus to Regulate Downstream Genes Controlling Petal and Stamen Formation
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The C-Terminal Sequence and PI motif of the Orchid (Oncidium Gower Ramsey) PISTILLATA (PI) Ortholog Determine its Ability to Bind AP3 Orthologs and Enter the Nucleus to Regulate Downstream Genes Controlling Petal and Stamen Formation

机译:兰花(Oncidium Gower Ramsey)PISTILLATA(PI)直系同源物的C末端序列和PI基序决定了其结合AP3直系同源物并进入核以调节控制花瓣和雄蕊形成的下游基因的能力。

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This study focused on the investigation of the effects of the PI motif and C-terminus of the Oncidium Gower Ramsey MADS box gene 8 (OMADS8), a PISTILLATA (PI) ortholog, on floral organ formation. 35S::OMADS8 completely rescued and 35S::OMADS8-PI (with the PI motif deleted) partially rescued petal/stamen formation, whereas these deficiencies were not rescued by 35S::OMADS8-C (C-terminal 29 amino acids deleted) in pi-1 mutants. OMADS8 could interact with Arabidopsis APETALA3 (AP3) and enter the nucleus. The nuclear entry efficiency was reduced for OMADS8-PI/AP3 and OMADS8-C/AP3. OMADS8 could also interact with OMADS5/OMADS9 (the Oncidium AP3 ortholog) and enter the nucleus with an efficiency only slightly affected by the deletion of the C-terminal sequence or PI motif. However, the stability of the OMADS8/OMADS5 and OMADS8/OMADS9 complexes was significantly reduced by deletion of the C-terminal sequence or PI motif. Further analysis indicated that the expression of genes downstream of AP3/PI (BNQ1/BNQ2/GNC/At4g30270) was compensated by 35S::OMADS8 and 35S::OMADS8-PI to a level similar to wild-type plants but was not affected by 35S::OMADS8-C in the pi-1 mutants. A similar FRET (fluorescence resonance energy transfer) efficiency was observed for Arabidopsis AGAMOUS (AG) and the Oncidium AG ortholog OMADS4 for OMADS8, OMADS8-PI and OMADS8-C. These results indicated that the OMADS8 PI motif and C-terminus were valuable for the interaction of OMADS8 with the AP3 orthologs to form higher order heterotetrameric complexes that regulated petal/stamen formation in both Oncidium orchids and transgenic Arabidopsis. However, the C-terminal sequence and PI motif were dispensable for the interaction of OMADS8 with the AG orthologs.
机译:这项研究的重点是调查Pistillata(PI)直系同源基因的Oncidium Gorcids Gower Ramsey MADS box基因8(OMADS8)的PI基序和C末端对花器官形成的影响。 35S :: OMADS8得以完全拯救,而35S :: OMADS8-PI(缺失了PI基序)部分拯救了花瓣/雄蕊的形成,而35S :: OMADS8-C(C末端的29个氨基酸被删除)并未消除这些缺陷。 pi-1突变体。 OMADS8可以与拟南芥APETALA3(AP3)相互作用并进入细胞核。 OMADS8-PI / AP3和OMADS8-C / AP3的核进入效率降低。 OMADS8还可以与OMADS5 / OMADS9(Oncidium AP3直系同源物)相互作用,并进入核中,其效率仅受C端序列或PI基序缺失的影响很小。但是,OMADS8 / OMADS5和OMADS8 / OMADS9复合物的稳定性通过删除C端序列或PI基序而大大降低。进一步的分析表明,AP3 / PI(BNQ1 / BNQ2 / GNC / At4g30270)下游基因的表达被35S :: OMADS8和35S :: OMADS8-PI补偿至与野生型植物相似的水平,但不受其影响pi-1突变体中的35S :: OMADS8-C。对于拟南芥AGAMOUS(AG)和Oncidium AG直系同源物OMADS4,对于OMADS8,OMADS8-PI和OMADS8-C观察到相似的FRET(荧光共振能量转移)效率。这些结果表明,OMADS8 PI基序和C末端对于OMADS8与AP3直向同源物的相互作用形成较高阶的异四聚体复合物具有重要价值,该复合物可调节文心兰和转基因拟南芥中的花瓣/雄蕊形成。然而,C末端序列和PI基序对于OMADS8与AG直系同源物的相互作用是必不可少的。

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