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首页> 外文期刊>Frontiers in Plant Science >Division of Labor Between Two Actin Nucleators—the Formin FH1 and the ARP2/3 Complex—in Arabidopsis Epidermal Cell Morphogenesis
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Division of Labor Between Two Actin Nucleators—the Formin FH1 and the ARP2/3 Complex—in Arabidopsis Epidermal Cell Morphogenesis

机译:两种肌动蛋白成核患者之间的劳动分工 - 甲状腺素FH1和ARP2 / 3复合体<斜斜体>拟南芥表皮细胞形态发生

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The ARP2/3 complex and formins are the only known plant actin nucleators. Besides their actin-related functions, both systems also modulate microtubule organization and dynamics. Loss of the main housekeeping Arabidopsis thaliana Class I membrane-targeted formin FH1 (At3g25500) is known to increase cotyledon pavement cell lobing, while mutations affecting ARP2/3 subunits exhibit an opposite effect. Here we examine the role of FH1 and the ARP2/3 complex subunit ARPC5 (At4g01710) in epidermal cell morphogenesis with focus on pavement cells and trichomes using a model system of single fh1 and arpc5 , as well as double fh1 arpc5 mutants. While cotyledon pavement cell shape in double mutants mostly resembled single arpc5 mutants, analysis of true leaf epidermal morphology, as well as actin and microtubule organization and dynamics, revealed a more complex relationship between the two systems and similar, rather than antagonistic, effects on some parameters. Both fh1 and arpc5 mutations increased actin network density and increased cell shape complexity in pavement cells and trichomes of first true leaves, in contrast to cotyledons. Thus, while the two actin nucleation systems have complementary roles in some aspects of cell morphogenesis in cotyledon pavement cells, they may act in parallel in other cell types and developmental stages.
机译:ARP2 / 3复合物和Formins是唯一已知的植物肌动蛋白成核患者。除了与肌动蛋白相关的功能外,两个系统还调制微管组织和动力学。已知造成拟南芥I型膜靶标蛋白FH1(AT3G25500)的损失是增加子叶路面细胞裂解,而影响ARP2 / 3亚基的突变表现出相反的效果。在这里,我们在表皮细胞形态发生中检查FH1和ARP2 / 3复合亚基ARPC5(AT4G01710)的作用,其使用单个FH1和ARPC5的模型系统,以及双重FH1 ARPC5突变体的映射细胞和毛状体。虽然双突变体中的子叶路面细胞形状大多类似单个ARPC5突变体,但是对真实叶片表皮形态的分析以及肌动蛋白和微管组织和动力学,揭示了两种系统之间更复杂的关系,而不是对拮抗作用而言参数。与子叶相比,FH1和ARPC5突变均增加了肌动蛋白网络密度和蜂窝状细胞中的细胞形状复杂性,并与第一个真实叶子的毛细胞形状复杂性。因此,虽然两种肌动蛋白成核系统在子叶路面细胞中细胞形态发生的一些方面具有互补的作用,但它们可以在其他细胞类型和发育阶段中平行起作用。

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