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Silencing of PhLA, a CIN-TCP gene, causes defected petal conical epidermal cell formation and results in reflexed corolla lobes in petunia

机译:Phla的沉默,一种CIN-TCP基因,导致缺陷的花瓣锥形表皮细胞形成,并导致喇叭花中的反射花冠裂片

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BACKGROUND:TCP-domain proteins, plant specific transcription factors, play important roles in various developmental processes. CIN-TCPs control leaf curvature in simple leaf species while regulate leaf complexity in compound leaf species. However, the knowledge was largely based on findings in few model species. To extend our knowledge on this group of proteins in Solanaceae species, we identified a CIN-TCP gene from petunia, and studied its functions using virus-induced gene silencing (VIGS).RESULTS:Consistently, silencing of CIN-TCPs increases complexity of tomato leaves, and enhances leaf curvature in Nicotiana benthamiana. However, in petunia (Petunia hybrida), silencing of petunia LA, a CIN-TCP, through VIGS did not obviously affect leaf shape. The silencing, however, enhanced petal curvature. The event was associated with petal expansion at the distal portion where epidermal cell size along the midribs was also increased. The enlarged epidermal cells became flattened. Although shapes of PhLA-silenced flowers largely resemble phmyb1 mutant phenotype, PhMYB1 expression was not affected when PhLA was specifically silenced. Therefore, both PhLA and PhMYB1 are required to regulate flower morphology. In corolla, PhLA and miR319 deferentially express in different regions with strong expressions in limb and tube region respectively.CONCLUSIONS:In conclusion, unlike LA-like genes in tomato and N. benthamiana, PhLA plays a more defined role in flower morphogenesis, including petal curvature and epidermal cell differentiation.
机译:背景:TCP域蛋白,植物特异性转录因子,在各种发育过程中起重要作用。 CIN-TCPS控制叶曲率在简单叶谱中,同时调节复合叶物种中的叶片复杂性。然而,知识在很大程度上基于少数模型物种中的发现。为了在茄科物种中的这一组蛋白质中扩展我们的知识,我们鉴定了来自矮牵牛的Cin-TCP基因,并使用病毒诱导的基因沉默研究其功能(Vigs)。结果:始终如一地,Cin-TCP的沉默增加了番茄的复杂性叶子,增强尼古利亚纳·宾夕法尼亚州尼累累的叶曲率。然而,在培养皿(Petonia Hybrida)中,通过Vigs的Petunia La的沉默,Cin-TCP并未影响叶形。然而,沉默增强了花瓣曲率。该事件在远端部分的瓣膜膨胀相关,其中表皮细胞沿着中间体的表皮细胞大小也增加。扩大的表皮细胞变平。虽然Phla沉默的花朵的形状在很大程度上类似于pHMyB1突变表型,但当Phla特别沉默时,PhMyB1表达不受影响。因此,PHLA和PHMYB1都需要调节花卉形态。在Corolla,Phla和mir319分别在不同地区的不同地区脱近表达,分别在不同的区域和管区。结论:总之,与番茄和N.Nenthamiana中的La样基因不同,Phla在花卉形态发生中发挥更规定的作用,包括花瓣曲率和表皮细胞分化。

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