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New techniques enable comparative analysis of microtubule orientation, wall texture, and growth rate in intact roots of Arabidopsis.新技术能够对拟南芥完整根中的微管方向、细胞壁纹理和生长速率进行比较分析。
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2
Wall architecture in the cellulose-deficient rsw1 mutant of Arabidopsis thaliana: microfibrils but not microtubules lose their transverse alignment before microfibrils become unrecognizable in the mitotic and elongation zones of roots.拟南芥纤维素缺陷型rsw1突变体的细胞壁结构:在根的有丝分裂区和伸长区,微纤丝在变得无法识别之前,微纤丝而非微管失去了它们的横向排列。
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Cellulose microfibril alignment recovers from DCB-induced disruption despite microtubule disorganization.尽管微管紊乱,但纤维素微纤丝排列可从DCB诱导的破坏中恢复。
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Cortical microtubule patterning in roots of Arabidopsis thaliana primary cell wall mutants reveals the bidirectional interplay with cell expansion.拟南芥初生细胞壁突变体根中的皮层微管模式揭示了与细胞扩张的双向相互作用。
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Understanding pectin cross-linking in plant cell walls.了解植物细胞壁中的果胶交联。
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TANGLED1 Recruitment to Aberrant Cell Plate Fusion Sites in Maize.TANGLED1被招募至玉米异常细胞板融合位点
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Cellulose assembles into helical bundles of uniform handedness in cell walls with abnormal pectin composition.纤维素在细胞壁中组装成具有异常果胶组成的均匀手性的螺旋束。
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The role of microtubules in microalgae: promotion of lipid accumulation and extraction.微管在微藻中的作用:促进脂质积累与提取。
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Detecting the orientation of newly-deposited crystalline cellulose with fluorescent CBM3.利用荧光CBM3检测新沉积的结晶纤维素的取向
Cell Surf. 2022 Nov 13;8:100089. doi: 10.1016/j.tcsw.2022.100089. eCollection 2022 Dec.
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The localization of PHRAGMOPLAST ORIENTING KINESIN1 at the division site depends on the microtubule-binding proteins TANGLED1 and AUXIN-INDUCED IN ROOT CULTURES9 in Arabidopsis.PHRAGMOPLAST ORIENTING KINESIN1 在分裂部位的定位依赖于拟南芥中的微管结合蛋白 TANGLED1 和 AUXIN-INDUCED IN ROOT CULTURES9。
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8
A combination of scanning electron microscopy and broad argon ion beam milling provides intact structure of secondary tissues in woody plants.扫描电子显微镜和宽氩离子束铣削的组合为木质植物的次生组织提供了完整的结构。
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MOR1/MAP215 acts synergistically with katanin to control cell division and anisotropic cell elongation in Arabidopsis.MOR1/MAP215 与katanin 协同作用,控制拟南芥的细胞分裂和各向异性细胞伸长。
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Cytoplasmic Linker Protein-Associating Protein at the Nexus of Hormone Signaling, Microtubule Organization, and the Transition From Division to Differentiation in Primary Roots.激素信号传导、微管组织以及初生根从分裂到分化转变过程中的连接点处的细胞质连接蛋白相关蛋白
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新技术能够对拟南芥完整根中的微管方向、细胞壁纹理和生长速率进行比较分析。

New techniques enable comparative analysis of microtubule orientation, wall texture, and growth rate in intact roots of Arabidopsis.

作者信息

Sugimoto K, Williamson R E, Wasteneys G O

机构信息

Plant Cell Biology Group, Research School of Biological Sciences, Australian National University, Canberra, Australian Capital Territory 2601, Australia.

出版信息

Plant Physiol. 2000 Dec;124(4):1493-506. doi: 10.1104/pp.124.4.1493.

DOI:10.1104/pp.124.4.1493
PMID:11115865
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1539303/
Abstract

This article explores root epidermal cell elongation and its dependence on two structural elements of cells, cortical microtubules and cellulose microfibrils. The recent identification of Arabidopsis morphology mutants with putative cell wall or cytoskeletal defects demands a procedure for examining and comparing wall architecture and microtubule organization patterns in this species. We developed methods to examine cellulose microfibrils by field emission scanning electron microscopy and microtubules by immunofluorescence in essentially intact roots. We were able to compare cellulose microfibril and microtubule alignment patterns at equivalent stages of cell expansion. Field emission scanning electron microscopy revealed that Arabidopsis root epidermal cells have typical dicot primary cell wall structure with prominent transverse cellulose microfibrils embedded in pectic substances. Our analysis showed that microtubules and microfibrils have similar orientation only during the initial phase of elongation growth. Microtubule patterns deviate from a predominantly transverse orientation while cells are still expanding, whereas cellulose microfibrils remain transverse until well after expansion finishes. We also observed microtubule-microfibril alignment discord before cells enter their elongation phase. This study and the new technology it presents provide a starting point for further investigations on the physical properties of cell walls and their mechanisms of assembly.

摘要

本文探讨了根表皮细胞的伸长及其对细胞的两种结构成分——皮层微管和纤维素微纤丝的依赖性。最近对具有假定细胞壁或细胞骨架缺陷的拟南芥形态突变体的鉴定,需要一种用于检查和比较该物种细胞壁结构和微管组织模式的方法。我们开发了通过场发射扫描电子显微镜检查纤维素微纤丝以及通过免疫荧光在基本完整的根中检查微管的方法。我们能够在细胞扩张的等效阶段比较纤维素微纤丝和微管的排列模式。场发射扫描电子显微镜显示,拟南芥根表皮细胞具有典型的双子叶植物初生细胞壁结构,在果胶物质中嵌入有突出的横向纤维素微纤丝。我们的分析表明,微管和微纤丝仅在伸长生长的初始阶段具有相似的取向。在细胞仍在扩张时,微管模式偏离主要横向取向,而纤维素微纤丝在扩张结束后很久仍保持横向。我们还在细胞进入伸长阶段之前观察到微管 - 微纤丝排列不一致。这项研究及其所展示的新技术为进一步研究细胞壁的物理性质及其组装机制提供了一个起点。