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The cellulose synthase companion proteins act non-redundantly with CELLULOSE SYNTHASE INTERACTING1/POM2 and CELLULOSE SYNTHASE 6

机译:纤维素合酶伴侣蛋白与纤维素合成酶INTERaCTING1 / pOm2和纤维素合成酶6非冗余地起作用

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摘要

Cellulose is a cell wall constituent that is essential for plant growth and development, and an important raw material for a range of industrial applications. Cellulose is synthesized at the plasma membrane by massive cellulose synthase (CesA) complexes that track along cortical microtubules in elongating cells of Arabidopsis through the activity of the protein CELLULOSE SYNTHASE INTERACTING1 (CSI1). In a recent study we identified another family of proteins that also are associated with the CesA complex and microtubules, and that we named COMPANIONS OF CELLULOSE SYNTHASE (CC). The CC proteins protect the cellulose synthesising capacity of Arabidopsis seedlings during exposure to adverse environmental conditions by enhancing microtubule dynamics. In this paper we provide cell biology and genetic evidence that the CSI1 and the CC proteins fulfil distinct functions during cellulose synthesis. We also show that the CC proteins are necessary to aid cellulose synthesis when components of the CesA complex are impaired. These data indicate that the CC proteins have a broad role in aiding cellulose synthesis during environmental changes and when core complex components are non-functional.
机译:纤维素是细胞壁成分,对于植物的生长和发育必不可少,并且是一系列工业应用的重要原材料。纤维素是通过大量纤维素合成酶(CesA)复合物在质膜上合成的,该复合物通过蛋白质纤维素合成酶INTERACTING1(CSI1)的活性沿着拟南芥属伸长细胞中的皮质微管追踪。在最近的研究中,我们鉴定了另一个也与CesA复合物和微管相关的蛋白质家族,我们将其命名为纤维素合成酶(CC)。 CC蛋白通过增强微管动力学来保护拟南芥幼苗在不利的环境条件下的纤维素合成能力。在本文中,我们提供了细胞生物学和遗传学证据,表明CSI1和CC蛋白在纤维素合成过程中具有独特的功能。我们还表明,当CesA复合物的成分受损时,CC蛋白对于辅助纤维素合成是必需的。这些数据表明,CC蛋白在环境变化过程中以及核心复合物组分无功能时,在协助纤维素合成方面具有广泛的作用。

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