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首页> 外文期刊>Frontiers in Plant Science >Brassinosteroids Inhibit Autotropic Root Straightening by Modifying Filamentous-Actin Organization and Dynamics
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Brassinosteroids Inhibit Autotropic Root Straightening by Modifying Filamentous-Actin Organization and Dynamics

机译:通过改变丝状肌动蛋白组织和动态来抑制芸苔类固醇矫正

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When positioned horizontally, roots grow down toward the direction of gravity. This phenomenon, called gravitropism, is influenced by most of the major plant hormones including brassinosteroids. Epi-brassinolide (eBL) was previously shown to enhance root gravitropism, a phenomenon similar to the response of roots exposed to the actin inhibitor, latrunculin B (LatB). This led us to hypothesize that eBL might enhance root gravitropism through its effects on filamentous-actin (F-actin). This hypothesis was tested by comparing gravitropic responses of maize ( Zea mays ) roots treated with eBL or LatB. LatB- and eBL-treated roots displayed similar enhanced downward growth compared with controls when vertical roots were oriented horizontally. Moreover, the effects of the two compounds on root growth directionality were more striking on a slowly-rotating two-dimensional clinostat. Both compounds inhibited autotropism, a process in which the root straightened after the initial gravistimulus was withdrawn by clinorotation. Although eBL reduced F-actin density in chemically-fixed Z. mays roots, the impact was not as strong as that of LatB. Modification of F-actin organization after treatment with both compounds was also observed in living roots of barrel medic ( Medicago truncatula ) seedlings expressing genetically encoded F-actin reporters. Like in fixed Z. mays roots, eBL effects on F-actin in living M. truncatula roots were modest compared with those of LatB. Furthermore, live cell imaging revealed a decrease in global F-actin dynamics in hypocotyls of etiolated M. truncatula seedlings treated with eBL compared to controls. Collectively, our data indicate that eBL-and LatB-induced enhancement of root gravitropism can be explained by inhibited autotropic root straightening, and that eBL affects this process, in part, by modifying F-actin organization and dynamics.
机译:水平定位时,根部朝向重力升高。这种称为祖食的现象受到大多数主要植物激素的影响,包括芸苔类固醇。先前表明Epi-Brassinolide(EBL)以增强Root agitropism,一种类似于暴露于肌动蛋白抑制剂的根部的响应的现象,Latrunculin B(Latb)。这导致我们假设EBL通过其对丝状肌动蛋白(F-Actin)的影响可以增强Root Tracitropism。通过比较用EBL或LATB处理的玉米(ZEA Mays)根的致原状反应来测试该假设。当垂直根水平定向时,与对照相比,LATB-和EBL处理的根部显示出类似的下降增长。此外,两种化合物对根生长方向性的影响在缓慢旋转的二维螺旋状螺旋状椎间鼠柱上更突出。两种化合物抑制了自同步,是通过临床撤回初始毛动造就后直接的根系的方法。虽然EBL在化学固定的Z中减少了F-肌动蛋白密度。梅子根,影响与LATB的影响不那么强。在表达遗传编码的F-Actin记者的枪管(Medicago Truncatula)幼苗的生物根系中也观察到F-actin组织的修饰。与固定的Z.Mays Roots一样,与Latb的生活M. Truncatula Roots的F-Actin对F-Actin的影响效果。此外,活细胞成像显示用EBL处理与对照治疗的过硫酸盐幼苗的幼粒子的全球F-肌动蛋白动态的降低。统称,我们的数据表明,通过抑制的自同胞根矫直可以解释EBL和LATB诱导的根颅重血性,并且EBL部分地通过改变F-Actin组织和动态来影响该过程。

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