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In-situ analysis of pectic polysaccharides in seed mucilage and at the root surface of Arabidopsis thaliana

机译:拟南芥种子黏液中和根表面果胶多糖的原位分析

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Pectic polysaccharides are a complex set of macromolecules of the primary cell wall matrix with distinct structural domains. The biosynthesis, organisation and function of these domains within cell wall matrices are poorly understood. An immersion immunofluorescence labelling technique was developed for the in-situ analysis of pectic polysaccharides at the surface of seeds and seedlings of Arabidopsis thaliana (L.) Heynh., and used to investigate the occurrence of pectic homogalacturonan (HG) and rhamnogalacturonan-I (RG-I) epitopes. Seed mucilage appeared to consist of two regions: a highly methyl-esterified HG was a major component throughout the mucilage, while an inner region with relatively low porosity was stabilized by calcium-based HG cross-linking. The small size and transparency of Arabidopsis roots allowed the occurrence of pectic HG and RG-I epitopes at root surfaces to be directly determined on whole-mount preparations. Pectic epitopes were not distributed evenly over root surfaces and were notably absent from lateral root apices and from the surface of root hairs. The use of defined antibody probes in the immersion immunolabelling protocol will be useful for the analysis of the influence of growth conditions and genetic factors on pectic polysaccharides in Arabidopsis.
机译:果胶多糖是具有不同结构域的初级细胞壁基质大分子的复杂集合。这些域在细胞壁基质中的生物合成,组织和功能了解甚少。开发了一种浸没免疫荧光标记技术,用于在拟南芥(L.)Heynh。的种子和幼苗表面上对果胶多糖进行原位分析,并用于研究果胶同半乳糖醛酸(HG)和鼠李半乳糖醛酸聚糖-I( RG-1)表位。种子黏液似乎由两个区域组成:高度甲基化的HG是整个黏液中的主要成分,而孔隙率较低的内部区域则通过钙基HG交联而得以稳定。拟南芥根的小尺寸和透明性使得直接在整装制剂中确定在根表面上果胶HG和RG-1表位的出现。果胶表位在根表面不均匀分布,并且在侧根和根毛表面明显不存在。在浸没免疫标记方案中使用确定的抗体探针将有助于分析拟南芥中生长条件和遗传因素对果胶多糖的影响。

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