Literature DB >> 32450381

Alkane-, alkene-, alkyne-γ-lactones and ryanodane diterpenes from aeroponically grown Persea indica roots.

Braulio M Fraga1, Carmen E Díaz2, Patricia Bolaños2, María Bailén3, María Fe Andrés3, Azucena González-Coloma4.   

Abstract

This work presents the study of the roots of the Macaronesian paleoendemism Persea indica (L.) Spreng. The root biomass of this protected tree species has been produced by soil-less aeroponic culture under controlled environment. This system has important advantages over traditional plant production techniques because it provides opportunities to optimize the yield of metabolite production under well-controlled conditions, thereby facilitating commercial-scale production of bioactive compounds. Thus, for the first time a study of this type has permitted the isolation from the roots of seven undescribed dextrorotatory lactones: the alkane-γ-lactones (+)-majoranolide and (+)-dihydromajorenolide, the alkene-γ-lactones (+)-majorenolide and (+)-majorenolide acetate, and the alkyne-γ-lactones, (+)-majorynolide, (+)-majorynolide acetate and (+)-isomajorynolide. In addition, thirteen known compounds were also isolated including two possible avocadofurane precursors, avocadynone acetate and avocadenone acetate, the monoterpene esters cis- and trans-p-coumarate of (-)-borneol, and the ryanoid diterpenes cinnzeylanone, anhidrocinnzeylanine, cinnzeylanine, cinnzeylanol, epiryanodol, perseanol, cinncassiol E, perseaindicol and secoperseanol. The configuration at C-14 de two ryanodane diterpenes has also been revised in this work. Furthermore, (-)-borneol cis-p-coumarate has showed to be insecticidal to S. littoralis and cytotoxic to insect (Sf9) cells, (+)-majorenolide antifeedant to aphids and cytotoxic to Sf9, cinnceylanol antifeedant and insecticidal to S. littoralis, and (+)-majorynolide (2), insecticidal against S. littoralis, cytotoxic to Sf9 and nematicidal, suggesting a defensive role for these compounds.
Copyright © 2020 Elsevier Ltd. All rights reserved.

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Keywords:  (−)-Borneol esters; Aeroponic cultures; Alkyl-γ-lactones; Avocadynone acetate; Biological activity; Diterpenes; Isomajorynolide; Lauraceae; Monoterpenes; Persea indica; Ryanodanes

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Year:  2020        PMID: 32450381     DOI: 10.1016/j.phytochem.2020.112398

Source DB:  PubMed          Journal:  Phytochemistry        ISSN: 0031-9422            Impact factor:   4.072


  2 in total

1.  Caerulines A and B, Flavonol Diacylglycosides from Persea caerulea.

Authors:  Juan Manuel Álvarez-Caballero; Luis Enrique Cuca-Suárez; Ericsson Coy-Barrera; Alegría Carrasco-Pancorbo; Lucía Olmo-García; Jesús Martin; Mercedes de la Cruz; Ignacio Peŕez-Victoria; Fernando Reyes
Journal:  ACS Omega       Date:  2021-11-23

2.  Sustainable Production of Insecticidal Compounds from Persea indica.

Authors:  Azucena Gonzalez-Coloma; María Fe Andrés; Rodrigo Contreras; Gustavo E Zúñiga; Carmen Elisa Díaz
Journal:  Plants (Basel)       Date:  2022-02-03
  2 in total

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