首页> 外文期刊>The Plant Cell >The Trihelix Transcription Factor GTL1 Regulates Ploidy-Dependent Cell Growth in the Arabidopsis Trichome.
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The Trihelix Transcription Factor GTL1 Regulates Ploidy-Dependent Cell Growth in the Arabidopsis Trichome.

机译:Trihelix转录因子GTL1调节拟南芥培养体中的倍增性依赖性细胞生长。

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Leaf trichomes in Arabidopsis thaliana develop through several distinct cellular processes, such as patterning, differentiation, and growth. Although recent studies have identified several key transcription factors as regulating early patterning and differentiation steps, it is still largely unknown how these regulatory proteins mediate subsequent trichome development, which is accompanied by rapid cell growth and branching. Here, we report a novel trichome mutation in Arabidopsis, which in contrast with previously identified mutants, increases trichome cell size without altering its overall patterning or branching. We show that the corresponding gene encodes a GT-2-LIKE1 (GTL1) protein, a member of the trihelix transcription factor family. GTL1 is present within the nucleus during the postbranching stages of trichome development, and its loss of function leads to an increase in the nuclear DNA content only in trichomes that have completed branching. Our data further demonstrate that the gtl1 mutation modifies the expression of several cell cycle genes and partially rescues the ploidy defects in the cyclin-dependent kinase inhibitor mutant siamese. Taken together, this study provides the genetic evidence for the requirement of transcriptional regulation in the repression of ploidy-dependent plant cell growth as well as for an involvement of GTL trihelix proteins in this regulation.
机译:拟南芥的叶子毛状体通过几种不同的细胞过程,例如图案化,分化和生长。尽管最近的研究已经确定了几种关键转录因子作为调节早期图案化和分化步骤,但仍然很大程度上未知这些调节蛋白如何调解随后的毛细血管发育,这伴随着快速的细胞生长和分支。在这里,我们报告了拟南芥中的一种新型培养型突变,其与先前鉴定的突变体相比,增加毛状体细胞尺寸而不改变其整体图案化或分支。我们表明,相应的基因编码了GT-2样的1(GTL1)蛋白,Trihelix转录因子家族的成员。 GTL1存在于培养的培养体发育的后支撑阶段内的核中,其功能损失导致核DNA含量的增加仅在已完成分支的毛状体中增加。我们的数据进一步证明了GTL1突变改变了几种细胞周期基因的表达,并部分地抵押细胞周期蛋白依赖性激酶抑制剂突变体硅粒中的倍率缺陷。在一起占据了这项研究,为抑制倍率依赖性植物细胞生长的转录调控提供了遗传证据,以及GTL三链蛋白在本调节中的累积。

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