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Spore adhesion and cell wall formation in Gelidium floridanum (Rhodophyta, Gelidiales)

机译:Gelidium佛罗里达菊属植物的孢子粘附和细胞壁形成(肾小球,牙龈)

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The attachment of spores to a substratum is essential for their germination and, therefore, to the completion of the life cycle of the red algae. In most red algae, spores are liberated without a cell wall, within a sheath of mucilage which is responsible for their primary attachment. Utilizing fluorescent-labeled lectins, we identified carbohydrate residues and their locations in the mucilage and cell walls of spores of Gelidium floridanum. Cell wall formation and mucilage composition were studied with calcofluor, toluidine blue - O (AT-O), alcian blue (AB) and periodic acid-Schiff (PAS). In the mucilage we identified alpha-D mannose, alpha-D glucose, bate-D-galactose, N-acetyl-glucosamine and N-acetyl-galactosamine. The first two sugar residues were not found in the cell wall of the germ tube but they were present on the rhizoid's cell wall indicating their importance to substrate adhesion. A cell wall is produced soon after the spore's attachment, beginning with a polar deposition of cellulose and its gradual spread around the spore as indicated by calcofluor. The cell wall matrix was positive to AB and metachromatic to AT-O, indicating acidic polysaccharides, while cellulose microfibrills were positive to PAS. A polar disorganization of the cell wall triggers the process of germination. As spores are the natural form of propagation of Gelidium, the understanding of the mechanisms of spore attachment may contribute to the cultivation of this valuable seaweed.
机译:孢子与底层的附着对于它们的萌发至关重要,因此,完成红藻的生命周期。在大多数红藻类中,在没有细胞壁的情况下释放出孢子,在粘膜形状内,这是负责其主要附着的。利用荧光标记的凝集素,我们将碳水化合物残留物及其在佛罗里达菊属植物孢子的粘液和细胞壁中鉴定出碳水化合物残留物。用Coprofluor,甲苯胺蓝 - O(AT-O),Alcian Blue(AB)和碘酸 - 席夫(PAS)研究了细胞壁形成和粘液组合物。在粘液中,我们鉴定了α-D甘露糖,α-D葡萄糖,Bate-D-半乳糖,N-乙酰基 - 葡糖胺和N-乙酰基 - 半乳糖胺。在生物管的细胞壁中未发现前两种糖残基,但它们存在于根茎的细胞壁上,表明它们对基板粘附的重要性。在孢子的附着之后,在纤维素的极性沉积开始并如Coprofluor所示,从纤维素的极性沉积开始,从纤维素的极性沉积开始,开始细胞壁。细胞壁基质对AB和对酸性多糖的阳性至Ab和对酸性多糖的阳性,而纤维素微纤维率为PAS阳性。细胞壁的极性紊乱触发萌发过程。由于孢子是肠果繁殖的自然形式,因此了解孢子附件机制可能有助于这种有价值的海藻的培养。

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