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Rapid biosynthesis and characterization of silver nanoparticles from the leaf extract of Tropaeolum majus L. and its enhanced in-vitro antibacterial, antifungal, antioxidant and anticancer properties.

Journal of Photochemistry and Photobiology. B: Biology, 2019
Eco-friendly biosynthesis of nanoparticles from medicinal plants as reducing agent has gained importance due to its potential therapeutic uses. In the present study Silver nanoparticles (AgNPs) were eco-friendly synthesized using the leaf extracts of the
Saritha Valsalam   +8 more
semanticscholar   +1 more source

746. TROPAEOLUM MAJUS

Curtis's Botanical Magazine, 2012
The garden nasturtium is not known in the wild, but is by far the most commonly grown member of the Tropaeolaceae. After its introduction from Peru into the Netherlands in the late 17th century, it spread rapidly across gardens, and because of its value as a source of vitamin C, it was distributed to harbours and oceanic islands to fight scurvy amongst
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Embryo-suspensor of Tropaeolum majus: Identification of gibberellin A63

Phytochemistry, 1987
Abstract Embryos and suspensors of Tropaeolum majus at the same stages of seed development were analysed for gibberellins by GC-MS. GA 63 was the only gibberellin present in both tissues. The amount of GA 63 in the suspensor is higher than in the embryo.
PICCIARELLI, PIERO, ALPI, AMEDEO
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Tropaeolum majus L.

2018
Pflanzensammlung Dietmar Brandes: Digitale ...
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The genetics of tropaeolum majus

Journal of Genetics, 1936
1. The inheritance of 13 genes inTropaeolum majus has been studied. 2. These genes include: Three controlling morphological characters (B, I, D). Three controlling leaf colour (V, X, Y). Seven controlling flower colour, (1) plastids (P, Q), (2) anthocyanin (A, G, R, S, L). 3.
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Early embryogenesis in Tropaeolum majus L.: Diversification of plastids

Planta, 1976
Embryogeny in the nasturtium is characterized by the development of a large, tripartite suspensor and storing cotyledons. A light and electron microscopic study revealed an early diversification of the plastids in the various regions of the suspensor and the embryo proper.
W, Nagl, S, Kühner
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Chromoplasts of Tropaeolum majus L.: Structure and development

Planta, 1976
The fine structure of chromoplasts in epidermal cells of flower petals of Tropaeolum has been investigated by light, polarizing, and electron microscopy at different stages of development. The pale greenish-yellow petals still enclosed in the bud contain barely differentiated chloroplasts with few, irregular grana.
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Keimungsverhalten der Kapuzinerkresse Tropaeolum majus L.

2023
This bachelor thesis focuses on different priming techniques for Tropaeolum majus (T. majus) seeds reaching from mechanical scarification to cold stratification. Furthermore, chemical stratification by using different concentrations of sulfuric acid (H2SO4) (0 %, 47.5 %, 95 %) for three different soak times (5 min, 10 min, 30 min) were also conducted ...
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Chromoplasts of Tropaeolum majus L.: Isolation and characterization of lipoprotein elements

Planta, 1976
Chromoplasts of unfolding petals of Tropaeolum majus contain large amounts of filaments (which, in sections, appear as tubules), and unevenshaped, isodiametric to elongated bodies (IBs). These structural elements are the major sites of the chromoplast pigments.
F, Winkenbach   +3 more
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Xyloglucan (amyloid) formation in the cotyledons of Tropaeolum majus L. seeds

Plant Cell Reports, 1986
Mature seeds of Tropaeolum majus L. contain the cell wall polysaccharide xyloglucan (amyloid), protein and lipid as storage substances. The transitory occurrence of starch during the process of seed development could be substantiated.[U-(14)C]-labelled xylose, glucose and glucuronic acid were fed to ripening seeds and the incorporation of radioactivity
A, Hoth, W, Blaschek, G, Franz
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