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细胞分裂素外排转运蛋白ABCC4参与拟南芥根系发育。

The cytokinin efflux transporter ABCC4 participates in Arabidopsis root system development.

作者信息

Uragami Takuya, Kiba Takatoshi, Kojima Mikiko, Takebayashi Yumiko, Tozawa Yuzuru, Hayashi Yuki, Kinoshita Toshinori, Sakakibara Hitoshi

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya 464-8601, Japan.

RIKEN Center for Sustainable Resource Science, Tsurumi, Yokohama 230-0045, Japan.

出版信息

Plant Physiol. 2024 Dec 24;197(1). doi: 10.1093/plphys/kiae628.

Abstract

The directional and sequential flow of cytokinin in plants is organized by a complex network of transporters. Genes involved in several aspects of cytokinin transport have been characterized; however, much of the elaborate system remains elusive. In this study, we used a transient expression system in tobacco (Nicotiana benthamiana) leaves to screen Arabidopsis (Arabidopsis thaliana) transporter genes and isolated ATP-BINDING CASSETTE TRANSPORTER C4 (ABCC4). Validation through drug-induced expression in Arabidopsis and heterologous expression in budding yeast revealed that ABCC4 effluxes the active form of cytokinins. During the seedling stage, ABCC4 was highly expressed in roots, and its expression was upregulated in response to cytokinin application. Loss-of-function mutants of ABCC4 displayed enhanced primary root elongation, similar to mutants impaired in cytokinin biosynthesis or signaling, that was suppressed by exogenous trans-zeatin treatment. In contrast, overexpression of the gene led to suppression of root elongation. These results suggest that ABCC4 plays a role in the efflux of active cytokinin, thereby contributing to root growth regulation. Additionally, cytokinin-dependent enlargement of stomatal aperture was impaired in the loss-of-function and overexpression lines. Our findings contribute to unraveling the many complexities of cytokinin flow and enhance our understanding of the regulatory mechanisms underlying root system development and stomatal opening in plants.

摘要

细胞分裂素在植物中的定向和顺序流动是由一个复杂的转运蛋白网络组织的。参与细胞分裂素运输多个方面的基因已得到表征;然而,这个精细系统的许多部分仍然难以捉摸。在本研究中,我们利用烟草(本氏烟草)叶片中的瞬时表达系统筛选拟南芥(Arabidopsis thaliana)转运蛋白基因,并分离出ATP结合盒转运蛋白C4(ABCC4)。通过在拟南芥中药物诱导表达以及在芽殖酵母中的异源表达进行验证,结果表明ABCC4外排细胞分裂素的活性形式。在幼苗期,ABCC4在根中高度表达,其表达在施加细胞分裂素后上调。ABCC4功能缺失突变体表现出主根伸长增强,类似于细胞分裂素生物合成或信号传导受损的突变体,而外源反式玉米素处理可抑制这种现象。相反,该基因的过表达导致根伸长受到抑制。这些结果表明ABCC4在活性细胞分裂素的外排中起作用,从而有助于调节根的生长。此外,功能缺失和过表达株系中细胞分裂素依赖的气孔孔径增大受到损害。我们的研究结果有助于揭示细胞分裂素流动的诸多复杂性,并增进我们对植物根系发育和气孔开放潜在调控机制的理解。

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