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ginkgo/carbohydrate

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Qualitative and Quantitative Analysis of Carbohydrate Modification on Glycoproteins from Seeds of Ginkgo biloba.

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Recent progress in the relationship between carbohydrate cross-reactive determinants (CCDs) and allergic response highlights the importance of carbohydrate moieties in the innate immune system. Previous research pointed out that the protein allergen in Ginkgo biloba seeds is glycosylated, and the
Lignin and lignin-carbohydrate complexes are important polymers for lignocellulosic biorefinery and functional materials, but those in ginkgo shells are not effectively analyzed and exploited. Based on this background, milled wood lignins (MWLML and MWLFZ) and
Pollination drop (PD), also known as an ovular secretion, is a critical feature of most wind-pollinated gymnosperms and functions as an essential component of pollination systems. However, the metabolome and small RNAs of gymnosperm PDs is largely unknown. We employed gas chromatography-mass

Requirement of ginkgo pollen-derived tissue cultures for boron and effects of boron deficiency.

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Ginkgo biloba L. pollen-derived tissue, which is made up of small, friable masses of homogeneous parenchymatous cells, was shown to require boron in the culture medium. If no boron is supplied, growth soon stops. Growth responses to additions of boron were observed up to an optimum level of 0.1 mg
The importance of subzero temperature interactions with elevated CO(2) on plant carbon metabolism has received rather little attention, despite their likely role in influencing future vegetation productivity and dynamics. Here we focused on the critical issues of CO(2)-enrichment effects on

Detection of ginkgolide A in Ginkgo biloba cell cultures.

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Ginkgo biloba cells were cultured in two 500 mL shake flasks and in 2 L and 6 L immobilization bioreactors using MS medium supplemented with 1 mg.L(-1) NAA, 0.1 mg.L(-1) K and 30 g.L(-1) sucrose. Specific growth rates were 0.06 d(-1), 0.11 d(-1) and 0.07 d(-1) for the 2 L and 6 L bioreactors and
Leaf extract of Ginkgo biloba (GBE) is increasingly used as a herbal medicine for the treatment of neurodegenerative, cardiovascular and cerebrovascular diseases. Several studies have demonstrated many protective effects of GBE in neurons, the endothelium and liver. In this study, we investigated
Yellow-green leaf mutants are common in higher plants, and these non-lethal chlorophyll-deficient mutants are ideal materials for research on photosynthesis and plant development. A novel xantha mutant of Ginkgo biloba displaying yellow-colour leaves (YL) and green-colour leaves (GL) was identified

Nutritional and hormonal requirements of Ginkgo biloba embryo-derived callus and suspension cell culture.

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Calli were obtained from Ginkgo biloba embryos grown on Murashige and Skoog (MS) medium. The G. biloba cells could grow on either MS or Gamborg B5 mineral salt medium supplemented with sucrose (3% and 2%, respectively) and naphthaleneacetic acid (NAA) and kinetin (K) in concentrations ranging from

Introduction
Type 2 diabetes (T2D) is a widely distributed disease that affects large population worldwide. This study aimed to verify the role of Ginkgo biloba (GB) extract and magnetized water (MW) on the survival rate and functional capabilities of pancreatic β-cells in

Isolation of RNA of high quality and yield from Ginkgo biloba leaves.

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An improved protocol was developed to isolate total RNA in good yield and integrity from Ginkgo biloba leaves containing high levels of flavonoid glycosides, terpene lactones, carbohydrates and polyphenolic secondary metabolites. Polyvinylpolypyrrolidone at 2% and beta-mercaptoethanol at 4% were

Proteomic analysis of the low mutation rate of diploid male gametes induced by colchicine in Ginkgo biloba L.

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Colchicine treatment of G. biloba microsporocytes results in a low mutation rate in the diploid (2n) male gamete. The mutation rate is significantly lower as compared to other tree species and impedes the breeding of new economic varieties. Proteomic analysis was done to identify the proteins that

Biology and chemistry of Ginkgo biloba.

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Ginkgo biloba has been existing on earth since 200 million years and is considered as a "living fossil". It is among the most sold medicinal plants in the world. A number of secondary metabolites representing terpenoids, polyphenols, allyl phenols, organic acids, carbohydrates, fatty acids and
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