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LOVE ON WINGS, a Dof family protein regulates floral vasculature in Vigna radiata

机译:对翅膀的热爱,DOF家族蛋白质在Vigna Radiata调节花卉脉管系统

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The interaction among plants and their pollinators has been a major factor which enriched floral traits known as pollination syndromes and promoted the diversification of flowering plants. One of the bee-pollination syndromes in Faboideae with keel blossoms is the formation of a landing platform by wing and keel petals. However, the molecular mechanisms of elaborating a keel blossom remain unclear. By performing large scale mutagenesis, we isolated and characterized a mutant in Vigna radiata, love on wings (low), which shows developmental defects in petal asymmetry and vasculature, leading to a failure in landing platform formation. We cloned the locus through map-based cloning together with RNA-sequencing (RNA-seq) analysis. We found that LOW encoded a nucleus-localized Dof-like protein and was expressed in the flower provascular and vascular tissues. A single copy of LOW was detected in legumes, in contrast with other taxa where there seems to be at least 2 copies. Thirty one Dof proteins have been identified from the V. radiata’s genome, which can be further divided into four Major Cluster of Orthologous Groups (MCOGs). We also showed that ectopic expression of LOW in Arabidopsis driven by its native promoter caused changes in petal vasculature pattern. To summarize, our study isolated a legume Dof-like factor LOW from V. radiata, which affects vasculature development in this species and this change can, in turn, impact petal development and overall morphology of keel blossom.
机译:植物及其传导素之间的相互作用是富含授粉综合征的花卉特征的主要因素,并促进开花植物的多样化。具有龙骨叶片的Bee授粉综合征之一是由翼和龙骨花瓣形成着陆平台。然而,阐述龙骨开花的分子机制仍然不清楚。通过进行大规模诱变,我们分离并表征Vigna Radiata的突变体,爱的翅膀(低),显示出花瓣不对称和脉管系统的发育缺陷,导致着陆平台形成失败。我们通过基于地图的克隆与RNA测序(RNA-SEQ)分析一起克隆了轨迹。我们发现低编码了核局部DOF样蛋白,并在花潜在血管和血管组织中表达。在豆类中检测到单一的低副本,与其他出分类群相比,似乎至少有2份。已经从V.Radiata的基因组中鉴定了三十一型DOF蛋白质,其可以进一步分为四个主要的正交组(MCOG)。我们还表明,由其天然启动子驱动的拟南芥的异位表达引起了花瓣血管系统模式的变化。总而言之,我们的研究孤立了从V.Radiata的豆科植物DOF样因子低,这影响了这种物种中的血管系统的发展,而这种变化可以反过来妨碍龙骨发育和龙骨叶片的整体形态。

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