Literature DB >> 17252366

Effects of various pregnanes and two 23-nor-5-cholenic acids on cardenolide accumulation in cell and organ cultures of Digitalis lanata.

W Haussmann1, W Kreis, U Stuhlemmer, E Reinhard.   

Abstract

5-Pregnen-3beta-ol-20-one (pregnenolone), 4-pregnene-3,20-dione (progesterone), 5-pregnene-3beta,21-diol-20-one (21-hydroxypregnenolone), 4-pregnen-21 -ol-3,20-dione (cortexone), 5beta-pregnane-3,20-dione, 5alpha-pregnane-3,20-dione, 5beta-pregnan-3alpha-ol-20-one, 5beta-pregnan-3beta-ol-20-one, 5beta-pregnane-3beta,14beta, 21-triol-20-one 3-acetate, 23-nor-5-cholenic acid-3beta,20xi-diol, and 23-nor-3,20(22) E-choladienic acid-3beta-ol were administered to photomixotrophic shoot cultures of Digitalis lanata Ehrh. capable of synthesizing cardenolides, as well as to cardenolide-free tissue cultures, such as auxotrophic, dark-grown shoot cultures and cell suspension cultures of the same plant species. None of the pregnane precursors was qualified to restore cardenolide biosynthesis in the cardenolide-free tissues. The cardenolide content of light-grown shoot cultures, on the other hand, increased by 161%, 240%, 30%, 430% and 80% when 100 mg l(-1) of 21-hydroxypregnenolone, 5beta-pregnane-3,20-dione, 5beta-pregnan-3beta-ol-20-one, 5beta-pregnane-3beta,14beta,21-triol-20-one, 23-nor-5,20 (22) E-choladienic acid-3beta-ol, respectively, were administered. Pregnenolone, progesterone, cortexone, 5alpha-pregnanes, 5beta -pregnan-21-ols, and 23-nor-5-cholenic acid-3beta,20xi-diol, on the other hand, had no visible effect. Two different types of cardenolides (termed fucose-type cardenolides and digitoxose-type cardenolides) were identified which may be formed via different biosynthetic routes. The "norcholanic acid pathway" seems to be operative in D. lanata shoot cultures only in the formation of fucose-type cardenolides.

Entities:  

Year:  1997        PMID: 17252366     DOI: 10.1055/s-2006-957731

Source DB:  PubMed          Journal:  Planta Med        ISSN: 0032-0943            Impact factor:   3.352


  4 in total

1.  Transcriptome and Metabolite analysis reveal candidate genes of the cardiac glycoside biosynthetic pathway from Calotropis procera.

Authors:  Akansha Pandey; Vishakha Swarnkar; Tushar Pandey; Piush Srivastava; Sanjeev Kanojiya; Dipak Kumar Mishra; Vineeta Tripathi
Journal:  Sci Rep       Date:  2016-10-05       Impact factor: 4.379

2.  Biosynthetic approach to combine the first steps of cardenolide formation in Saccharomyces cerevisiae.

Authors:  Christoph Rieck; Daniel Geiger; Jennifer Munkert; Katrin Messerschmidt; Jan Petersen; Juliane Strasser; Nadine Meitinger; Wolfgang Kreis
Journal:  Microbiologyopen       Date:  2019-08-22       Impact factor: 3.139

Review 3.  Quo vadis Cardiac Glycoside Research?

Authors:  Jiří Bejček; Michal Jurášek; Vojtěch Spiwok; Silvie Rimpelová
Journal:  Toxins (Basel)       Date:  2021-05-11       Impact factor: 4.546

4.  RNAi-mediated gene knockdown of progesterone 5β-reductases in Digitalis lanata reduces 5β-cardenolide content.

Authors:  Jan Klein; Elisa Horn; Mona Ernst; Tim Leykauf; Tamara Leupold; Maja Dorfner; Laura Wolf; Anastasiia Ignatova; Wolfgang Kreis; Jennifer Munkert
Journal:  Plant Cell Rep       Date:  2021-06-19       Impact factor: 4.570

  4 in total

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