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catharanthus roseus/phosphatase

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The Protein Phosphatases ATUNIS1 and ATUNIS2 Regulate Cell Wall Integrity in Tip-Growing Cells.

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Fast tip-growing plant cells such as pollen tubes (PTs) and root hairs (RHs) require a robust coordination between their internal growth machinery and modifications of their extracellular rigid, yet extensible, cell wall (CW). Part of this essential coordination is governed by members of the

Effect of Glomus species on physiology and biochemistry of Catharanthus roseus.

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The present study on efficacy of different Glomus species, an arbuscular mycorrhizal (AM) fungus (G. aggregatum, G. fasciculatum, G. mosseae, G. intraradices) on various growth parameters such as biomass, macro and micronutrients, chlorophyll, protein, cytokinin and alkaloid content and phosphatase
The effect of long-term phosphate (Pi) starvation of up to 3 weeks on the levels of purine nucleotides and related compounds was examined using suspension-cultured Catharanthus roseus cells. Levels of adenine and guanine nucleotides, especially ATP and GTP, were markedly reduced during

Involvement of rapid nucleotide synthesis in recovery from phosphate starvation of Catharanthus roseus cells.

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Growth of suspension-cultured Catharanthus roseus cells ceased during phosphate starvation, but the cells grew again upon addition of Pi even after long-term starvation. The metabolic fate of [(33)P]Pi was studied in 1-week-old stationary phase cells in ordinary culture and in 1- or 2-week-old

Antidiabetic and antioxidant properties of alkaloids from Catharanthus roseus (L.) G. Don.

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Catharanthus roseus (L.) G. Don is a herbal plant traditionally used by local populations in India, South Africa, China and Malaysia to treat diabetes. The present study reports the in vitro antioxidant and antidiabetic activities of the major alkaloids isolated from Catharanthus roseus (L.) G. Don
Vindoline, an indole alkaloid present in the leaves of Catharanthus roseus plant, has been recently reported to have insulotropic effects. This present study evaluated the possible hepatoprotective effects of vindoline in a type 2 diabetes mellitus rat model. Diabetes mellitus was induced by

Comparative effects of petrol and diesel on enzyme activity in Tympanotonus fuscatus after sublethal exposure.

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Pollution of the aquatic environment by petroleum and its products is common the world over. This study is aimed at examining sublethal effects of petrol and diesel on enzymes in Tympanotonus fuscatus namely: Aspartate Transaminase (AST) (E.C. 2.6.1.1), Alanine Transaminase (ALT) (E.C. 2.6.2.2) and
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