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PNAS Plus: Auxin response cell-autonomously controls ground tissue initiation in the early Arabidopsis embryo

机译:PNAS Plus:Auxin响应细胞自动控制拟南芥早期胚胎中的地面组织起始

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摘要

Plant organs are typically organized into three main tissue layers. The middle ground tissue layer comprises the majority of the plant body and serves a wide range of functions, including photosynthesis, selective nutrient uptake and storage, and gravity sensing. Ground tissue patterning and maintenance in Arabidopsis are controlled by a well-established gene network revolving around the key regulator SHORT-ROOT (SHR). In contrast, it is completely unknown how ground tissue identity is first specified from totipotent precursor cells in the embryo. The plant signaling molecule auxin, acting through AUXIN RESPONSE FACTOR (ARF) transcription factors, is critical for embryo patterning. The auxin effector ARF5/MONOPTEROS (MP) acts both cell-autonomously and noncell-autonomously to control embryonic vascular tissue formation and root initiation, respectively. Here we show that auxin response and ARF activity cell-autonomously control the asymmetric division of the first ground tissue cells. By identifying embryonic target genes, we show that MP transcriptionally initiates the ground tissue lineage and acts upstream of the regulatory network that controls ground tissue patterning and maintenance. Strikingly, whereas the SHR network depends on MP, this MP function is, at least in part, SHR independent. Our study therefore identifies auxin response as a regulator of ground tissue specification in the embryonic root, and reveals that ground tissue initiation and maintenance use different regulators and mechanisms. Moreover, our data provide a framework for the simultaneous formation of multiple cell types by the same transcriptional regulator.
机译:植物器官通常组织成三个主要组织层。中间的地面组织层占植物主体的大部分,并具有多种功能,包括光合作用,选择性养分吸收和储存以及重力感应。拟南芥中的地面组织模式和维持是由围绕关键调控因子SHORT-ROOT(SHR)围绕的完善的基因网络控制的。相反,完全未知如何首先从胚胎中的全能前体细胞确定地面组织的身份。通过AUXIN响应因子(ARF)转录因子起作用的植物信号分子生长素对于胚胎形成至关重要。植物生长素效应因子ARF5 / MONOPTEROS(MP)分别在细胞自主和非细胞自主中起作用,分别控制胚胎血管组织的形成和根的萌生。在这里,我们显示生长素反应和ARF活性细胞自主控制第一个地面组织细胞的不对称分裂。通过鉴定胚胎靶基因,我们表明MP转录启动地面组织谱系,并在控制地面组织的形成和维持的调节网络的上游起作用。令人惊讶的是,尽管SHR网络依赖于MP,但该MP功能至少部分地独立于SHR。因此,我们的研究确定了生长素应答是胚胎根中地面组织规格的调节剂,并揭示了地面组织的起始和维持使用不同的调节剂和机制。此外,我们的数据提供了一个框架,可通过同一转录调节剂同时形成多种细胞。

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