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asplenium fontanum/polysaccharide

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OBJECTIVE This work investigates the involvement of local differentiation of cell wall matrix polysaccharides and the role of microtubules in the morphogenesis of mesophyll cells (MCs) of three types (lobed, branched and palisade) in the dicotyledon Vigna sinensis and the fern Asplenium

Multiple-physiological benefits of bird's nest fern (Asplenium australasicum) frond extract for dermatological applications.

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p-coumaric acid and fucose-rich polysaccharide have been studied for many bio-functions in skin including cutaneous protection from oxidative damage and antiageing, respectively, as well as wound healing. The physiological activities of various bird's nest fern extracts (BNFE), containing
Some bioactive properties of p-coumaric acid and fucose-rich polysaccharide in skin health have been studied, including melanogenesis inhibition of the phenolic acid and growth inhibitory effects of the polysaccharide on melanoma. The dermatological benefits of bird's nest fern extracts (BNFE),

The role of callose in guard-cell wall differentiation and stomatal pore formation in the fern Asplenium nidus.

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OBJECTIVE The pattern of callose deposition was followed in developing stomata of the fern Asplenium nidus to investigate the role of this polysaccharide in guard cell (GC) wall differentiation and stomatal pore formation. METHODS Callose was localized by aniline blue staining and immunolabelling

Effect of enzyme-assisted extraction on the physicochemical properties of mucilage from the fronds of Asplenium australasicum (J. Sm.) Hook.

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Enzyme-assisted extraction (EAE) possesses the advantages of being environmentally friendly and easily operated owing to relatively mild reaction conditions. Thus, mucilage from Asplenium australasicum was extracted with xylanase, glucanase and simultaneous application of both enzymatic preparations

Ultrastructure and composition of cell wall appositions in the roots of Asplenium (Polypodiales).

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Cell wall appositions (CWAs), formed by the deposition of extra wall material at the contact site with microbial organisms, are an integral part of the response of plants to microbial challenge. Detailed histological studies of CWAs in fern roots do not exist. Using light and electron microscopy we
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