首页> 外文期刊>The Plant Cell >The Arabidopsis Floral Homeotic Proteins APETALA3 and PISTILLATA Negatively Regulate the BANQUO Genes Implicated in Light Signaling.
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The Arabidopsis Floral Homeotic Proteins APETALA3 and PISTILLATA Negatively Regulate the BANQUO Genes Implicated in Light Signaling.

机译:拟南芥花卉同源蛋白质APETALA3和PISTILLATA负调控光信号中牵涉的BANQUO基因。

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The Arabidopsis thaliana MADS box transcription factors APETALA3 (AP3) and PISTILLATA (PI) heterodimerize and are required to specify petal identity, yet many details of how this regulatory process is effected are unclear. We have identified three related genes, BHLH136/BANQUO1 (BNQ1), BHLH134/BANQUO2 (BNQ2), and BHLH161/BANQUO3 (BNQ3), as being directly and negatively regulated by AP3 and PI in petals. BNQ1, BNQ2, and BNQ3 encode products belonging to a family of atypical non-DNA binding basic helix-loop-helix (bHLH) proteins that heterodimerize with and negatively regulate bHLH transcription factors. We show that bnq3 mutants have pale-green sepals and carpels and decreased chlorophyll levels, suggesting that BNQ3 has a role in regulating light responses. The ap3 bnq3 double mutant displays pale second-whorl organs, supporting the hypothesis that BNQ3 is downstream of AP3. Consistent with a role in light response, we show that the BNQ gene products regulate the function of HFR1 (for LONG HYPOCOTYL IN FAR-RED1), which encodes a bHLH protein that regulates photomorphogenesis through modulating phytochrome and cryptochrome signaling. The BNQ genes also are required for appropriate regulation of flowering time. Our results suggest that petal identity is specified in part through downregulation of BNQ-dependent photomorphogenic and developmental signaling pathways.
机译:拟南芥MADS盒转录因子APETALA3(AP3)和PISTILLATA(PI)异源二聚体,并需要指定花瓣的身份,但是尚不清楚如何实现此调控过程的许多细节。我们已经确定了三个相关基因,BHLH136 / BANQUO1(BNQ1),BHLH134 / BANQUO2(BNQ2)和BHLH161 / BANQUO3(BNQ3),直接受花瓣中的AP3和PI负调控。 BNQ1,BNQ2和BNQ3编码属于非典型非DNA结合基本螺旋-环-螺旋(bHLH)蛋白家族的产品,这些蛋白与bHLH转录因子异源二聚体并对其负调控。我们显示bnq3突变体具有浅绿色的萼片和心皮和降低的叶绿素水平,表明BNQ3在调节光响应中具有作用。 ap3 bnq3双重突变体显示出苍白的第二器官,支持BNQ3在AP3下游的假说。与在光响应中的作用一致,我们显示BNQ基因产物调节HFR1(对于FAR-RED1中的长水杨酸)的功能,后者编码通过调节植物色素和隐色素信号传导来调节光形态发生的bHLH蛋白。 BNQ基因对于开花时间的适当调节也是必需的。我们的结果表明,通过下调BNQ依赖的光形态发生和发育信号通路,可以指定花瓣的身份。

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