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Chenopodiaceae

Halostachine, CgH jON. This base was isolated from Halostachis caspica, also given as Halostaehys caspia (Chenopodiaceae), where it is... [Pg.631]

Cyathobasis fruticulosa (Bunge) Aellen (water ext.) Chenopodiaceae -Al ... [Pg.79]

The beet family is botanically named the Chenopodiaceae, or goosefoot family. As well as the crops below, it includes the grain quinoa, and several "edible weeds" such as fat hen, which loves the fertile soil in a vegetable garden. [Pg.244]

Quinolizidine alkaloids (QA) are thought to be typical natural products of many Leguminosae (1-3) but a few isolated occurrences have been reported also in unrelated families, e.g. Chenopodiaceae ( 1 ), Berberidaceae ( ), Papaveraceae ( ), Scrophulariaceae ( ), Santalaceae ( ), Solanaceae ( ), and Ranunculaceae (J ). These observations could indicate that the genes for QA biosynthesis are probably not restricted to the Leguminosae but are widely distributed in the plant kingdom however, they are only rarely expressed in the other families. We could support this belief by recent experiments using plant cell suspension cultures. A short-term and transientQA formation could be detected after induction even in "QA-free" species, such as Daucus, Spinacia, Conium, and Symphytum (6). [Pg.524]

Quinolizidine alkaloids (lupine alkaloids) occur in the family Leguminosae, especially the subfamily Papilionaceae. They are also found in some species of other families such as Chenopodiaceae, Berberidaceae, Papaveraceae, Nymphaeaceae, Ranunculaceae, Scrophulariaceae, Solanaceae, Compositae, Rubiaceae, Monimiaceae, Ericaceae, and Adociidae. [Pg.118]

Saccharum qfficinarum L., Gramineae and sugar beet, Beta vulgaris L., Chenopodiaceae, Ang./sweetening agent... [Pg.239]

Apioside Salsola collina aerial parts Chenopodiaceae 151... [Pg.758]

Xylosyl(l —> 4)rhamnoside-7-rhamnoside Chenopodium murale whole plant Chenopodiaceae 198... [Pg.761]

Rhamnoside-7-xylosyl(l —> 2)rhamnoside Chenopodium murale aerial parts Chenopodiaceae 199... [Pg.761]

Sulfate-7-ci-arabinopyranoside Atriplex hortensis leaves Chenopodiaceae 274... [Pg.765]

Galactoside Cornulaca monacantha aerial parts Chenopodiaceae 309... [Pg.766]

Caffeoylsophoroside) Bassia muricata aerial parts Chenopodiaceae 345... [Pg.768]

Xylosyl(l — 3)rhamnosyl(l — 6)glucoside Hamada scoparia leaves Chenopodiaceae 384... [Pg.770]

Quercetagetin 6,3 -dimethyl ether (spinacetin) 3-(2"-Apiosylgentiobioside) Spinacia oleracea leaves Chenopodiaceae 417... [Pg.773]

Methylenedioxyflavonol glycosides 3-Methoxy-5-hydroxy-6,7-methylenedioxyflavone 4 -Glucuronide Spirmcia oleracea leaves Chenopodiaceae 464... [Pg.776]

Two known dihydroflavonols, 3-hydroxy-5-methoxy-6,7-methylenedioxyflavanone and 3,5,7,4 -tetrahydroxy-3 -methoxyflavanone, are produced as phytoalexins by sugarbeet roots Beta vulgaris, Chenopodiaceae) when inoculated with Rhizoctonia solani. They had not been previously reported for B. vulgaris ... [Pg.962]

Voznesenskaya, E.V., Fraceschi, V.R., Kiirats, O., Artyusheva, E.G., Freitag, H., Edwards, G.E. (2002) Proof of C4 photosynthesis without Kranz anatomy in Bienertia cyclaptera (Chenopodiaceae). Plant J. 31, 649-662. [Pg.786]

Alangium lamarckii (Alangiaceae) pms 5 80 Corispermum leptopyrum (Chenopodiaceae) app 34,421 77 Desmodium tiliaefolium (Fabaceae) phy 12,193 73... [Pg.85]


See other pages where Chenopodiaceae is mentioned: [Pg.35]    [Pg.116]    [Pg.772]    [Pg.81]    [Pg.55]    [Pg.10]    [Pg.299]    [Pg.301]    [Pg.310]    [Pg.589]    [Pg.70]    [Pg.79]    [Pg.85]    [Pg.557]    [Pg.65]    [Pg.114]    [Pg.757]    [Pg.757]    [Pg.759]    [Pg.770]    [Pg.781]    [Pg.788]    [Pg.858]    [Pg.860]    [Pg.589]    [Pg.45]   
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