首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >The missing link: Do cortical microtubules define plasma membrane nanodomains that modulate cellulose biosynthesis?
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The missing link: Do cortical microtubules define plasma membrane nanodomains that modulate cellulose biosynthesis?

机译:缺失的环节:皮质微管是否定义了调节纤维素生物合成的质膜纳米域?

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摘要

Cellulose production is a crucial aspect of plant growth and development. It is functionally linked to cortical microtubules, which self-organize into highly ordered arrays often situated in close proximity to plasma membrane-bound cellulose synthase complexes (CSCs). Although most models put forward to explain the microtubule-cellulose relationship have considered mechanisms by which cortical microtubule arrays influence the orientation of cellulose microfibrils, little attention has been paid to how microtubules affect the physicochemical properties of cellulose. A recent study using the model system Arabidopsis, however, indicates that microtubules can modulate the crystalline and amorphous content of cellulose microfibrils. Microtubules are required during rapid growth for reducing crystalline content, which is predicted to increase the degree to which cellulose is tethered by hemicellulosic polysaccharides. Such tethering is, in turn, critical for maintaining unidirectional cell expansion. In this article, we hypothesize that cortical microtubules influence the crystalline content of cellulose either by controlling plasma membrane fluidity or by modulating the deposition of noncellulosic wall components in the vicinity of the CSCs. We discuss the current limitations of imaging technology to address these hypotheses and identify the image acquisition and processing strategies that will integrate live imaging with super resolution three-dimensional information.
机译:纤维素生产是植物生长和发育的关键方面。它在功能上与皮层微管相连,皮层微管自组织成高度有序的阵列,通常位于与质膜结合的纤维素合酶复合物(CSC)紧密相邻的位置。尽管大多数解释微管与纤维素关系的模型都考虑了皮质微管阵列影响纤维素微纤维取向的机制,但很少有人关注微管如何影响纤维素的理化性质。然而,最近使用拟南芥模型系统的研究表明,微管可以调节纤维素微纤维的结晶和无定形含量。在快速生长过程中需要微管以减少结晶含量,这预计会增加半纤维素多糖束缚纤维素的程度。反过来,这种束缚对于维持单向细胞扩张至关重要。在本文中,我们假设皮质微管通过控制质膜流动性或通过调节CSCs附近非纤维素壁成分的沉积来影响纤维素的晶体含量。我们讨论了成像技术的当前局限性,以解决这些假设,并确定了将实时成像与超分辨率三维信息整合在一起的图像采集和处理策略。

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