首页> 外文OA文献 >Extracellular Matrix Assembly in Diatoms (Bacillariophyceae) (I. A Model of Adhesives Based on Chemical Characterization and Localization of Polysaccharides from the Marine Diatom Achnanthes longipes and Other Diatoms).
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Extracellular Matrix Assembly in Diatoms (Bacillariophyceae) (I. A Model of Adhesives Based on Chemical Characterization and Localization of Polysaccharides from the Marine Diatom Achnanthes longipes and Other Diatoms).

机译:硅藻(芽孢杆菌科)中的细胞外基质组装(I.基于化学特性和来自海洋硅藻拟南芥和其他硅藻的多糖的定位的粘合剂模型)。

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摘要

Extracellular adhesives from the diatoms Achnanthes longipes, Amphora coffeaeformis, Cymbella cistula, and Cymbella mexicana were characterized by monosaccharide and methylation analysis, lectin-fluorescein isothiocyanate localization, and cytochemical staining. Polysaccharide was the major component of adhesives formed during cell motility, synthesis of a basal pad, and/or production of a highly organized shaft. Hot water-insoluble/hot 0.5 M NaHCO3-soluble anionic polysaccharides from A. longipes and A. coffeaeformis adhesives were primarily composed of galactosyl (64-70%) and fucosyl (32-42%) residues. In A. longipes polymers, 2,3-, t-, 3-, and 4-linked/substituted galactosyl, t-, 3-, 4-, and 2-linked fucosyl, and t- and 2-linked glucuronic acid residues predominated. Adhesive polysaccharides from C. cistula were EDTA-soluble, sulfated, consisted of 83% galactosyl (4-, 4,6-, and 3,4-linked/substituted) and 13% xylosyl (t-, 4f/5p-, and 3p-linked/substituted) residues, and contained no uronosyl residues. Ulex europaeus agglutinin uniformly localized [alpha](1,2)-L-fucose units in C. cistula and Achnanthes adhesives formed during motility and in the pads of A. longipes. D-Galactose residues were localized throughout the shafts of C. cistula and capsules of A. coffeaeformis. D-Mannose and/or D-glucose, D-galactose, and [alpha](t)-L-fucose residues were uniformly localized in the outer layers of A. longipes shafts by Cancavalia ensiformis, Abrus precatorius, and Lotus tetragonolobus agglutinin, respectively. A model for diatom cell adhesive structure was developed from chemical characterization, localization, and microscopic observation of extracellular adhesive components formed during the diatom cell-attachment process.
机译:通过单糖和甲基化分析,凝集素-荧光素异硫氰酸酯定位和细胞化学染色,对来自硅藻Achnanthes longipes,咖啡油壶,Cymbella cistula和Cymbella mexicana的细胞外粘合剂进行了表征。多糖是细胞运动,基底垫的合成和/或组织高度轴的形成过程中形成的粘合剂的主要成分。来自A. longipes和A. coffeaeformis胶粘剂的热水不溶/0.5M NaHCO3热可溶阴离子多糖主要由半乳糖基(64-70%)和岩藻糖基(32-42%)残基组成。在A. longipes聚合物中,2,3-,t-,3-和4-连接/取代的半乳糖基,t-,3-,4-和2连接的岩藻糖基以及t和2连接的葡糖醛酸残基占主导地位。来自C. cistula的黏附多糖可溶于EDTA,经硫酸化处理,由83%的半乳糖基(4-,4,6-和3,4-连接/取代的)和13%的木糖基(t-,4f / 5p-和3p-连接的/取代的)残基,并且不含尿苷残基。乌euro凝集素均匀地定位于在运动期间以及在长足ipe的垫中形成的C. cistula和Achnanthes粘合剂中的α(1,2)-L-岩藻糖单元。 D-半乳糖残基位于整个C. cistula的杆身和A. coffeaeformis的胶囊中。 D.甘露糖和/或D-葡萄糖,D-半乳糖和α(t)-L-岩藻糖残基均被Cancavalia ensiformis,Abrus precatorius和Lotus tetragonolobus凝集素均匀地定位在长柄长柄轴的外层中,分别。通过硅藻细胞附着过程中形成的细胞外粘合剂成分的化学表征,定位和微观观察,开发了硅藻细胞粘合剂结构模型。

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