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首页> 外文期刊>Journal of phycology >Interactions of the mix-linked beta-(1,3)/beta-(1,4)-D-xylans in the cell walls of Palmaria palmata (Rhodophyta)
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Interactions of the mix-linked beta-(1,3)/beta-(1,4)-D-xylans in the cell walls of Palmaria palmata (Rhodophyta)

机译:混合连接的β-(1,3)/β-(1,4)-D-木聚糖在棕榈果(Rhodophyta)细胞壁中的相互作用

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Algal cell wall mechanical properties, crucial for biological functions and commercial applications, rely on interactions in macromolecular assemblies. In an effort to better understand the interactions of the matrix-phase beta-(1,3)/(1,4)-d-xylan in the edible seaweed Palmaria palmata ((L.) O. Kuntze, Rhodophyta, Palmariales), sequential extractions by saline, alkaline, and chaotropic solutions were done. The chemical composition and structure and the physicochemical properties of the isolated xylan revealed that it was partly acidic, probably due to the presence of sulfate (up to 5%) and phosphate groups (up to 4%). Although such acidity suggested ionic interactions of xylan in the cell walls, the high yields of polysaccharide extracted by alkali and particularly by 8 M urea and 4.5 M guanidium thiocyanate demonstrated that it was mainly hydrogen bonded in the cell wall. H-bonds did not appear to be related to the mean proportions of beta-(1,3) and beta-(1,4)-d-xylose linkages because these did not differ between extracts of increasing alkalinity. However, the decreasing molar weight and intrinsic viscosity of extracts obtained by alkaline solution containing a reducing agent used to prevent polysaccharide degradation suggested the presence of an alkali-labile component in the xylan. These results are discussed with regard to the role of potential wall proteins as a means of control of these interactions. [References: 42]
机译:藻类细胞壁的机械性能对生物学功能和商业应用至关重要,它依赖于大分子组装体中的相互作用。为了更好地了解可食用海藻Palmaria palmata((L.)O.Kuntze,Rhodophyta,Palmariales)中基质相β-(1,3)/(1,4)-d-木聚糖的相互作用,依次用盐水,碱性和离液溶液萃取。分离出的木聚糖的化学组成,结构和理化性质表明它部分呈酸性,这可能是由于存在硫酸盐(最高5%)和磷酸基团(最高4%)引起的。尽管这种酸度暗示了木聚糖在细胞壁中的离子相互作用,但是通过碱特别是通过8M尿素和4.5M硫氰酸胍提取的多糖的高产率证明其主要是氢键合在细胞壁中。 H键似乎与β-(1,3)和β-(1,4)-d-木糖键的平均比例无关,因为在增加碱度的提取物中这两个键没有区别。然而,通过含有用于防止多糖降解的还原剂的碱性溶液获得的提取物的摩尔质量和特性粘度的降低表明在木聚糖中存在对碱不稳定的组分。关于潜在壁蛋白作为控制这些相互作用的手段的作用,讨论了这些结果。 [参考:42]

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