Alkaloid and Nitrogenated Compounds from Different Sections of Coryphantha macromeris Plants and Callus Cultures

Author:

Viera-Escareño Valeria1,Perez-Molphe Balch Eugenio2,Gómez-Aguirre Yenny Adriana23ORCID,Ramos-Herrera Oscar Javier1,Abdi Gholamreza4ORCID,Cruz-Sosa Francisco5ORCID,Cabañas-García Emmanuel6

Affiliation:

1. Unidad Profesional Interdisciplinaria de Ingeniería Campus Zacatecas, Instituto Politécnico Nacional, Blvd. del Bote 202 Cerro del Gato, Ejido La Escondida, Col. Ciudad Administrativa, Zacatecas 98160, Mexico

2. Departamento de Química, Centro de Ciencias Básicas, Universidad Autónoma de Aguascalientes, Av. Universidad 940, Aguascalientes 20100, Mexico

3. CONACyT Research Fellow—Departamento de Química, Centro de Ciencias Básicas, Universidad Autónoma de Aguascalientes, Av. Universidad 940, Aguascalientes 20100, Mexico

4. Department of Biotechnology, Persian Gulf Research Institute, Persian Gulf University, Bushehr 75169, Iran

5. Departamento de Biotecnología, Universidad Autónoma Metropolitana, Campus Iztapalapa, Ferrocarril de San Rafael Atlixco 186, Mexico City 09310, Mexico

6. Centro de Estudios Científicos y Tecnológicos No. 18, Instituto Politécnico Nacional, Blvd. del Bote 202, Zacatecas 98160, Mexico

Abstract

One of the distinctive characteristics of cacti species is the presence of alkaloids. Alkaloids are nitrogenated molecules with hallucinogenic and pharmacological properties in humans and other animals. Plant cell, tissue, and organ culture have emerged as an effective tool for investigating the biosynthesis of a variety of functional metabolites and for studying the preservation of endangered plant species. In this study, we examined the alkaloid and nitrogenated compound profiles of the aerial and radicular sections of Coryphantha macromeris plants that were cultivated in both greenhouse and in vitro conditions. Additionally, we analyzed the callus cultures generated from stem discs. To perform these analyses, Ultra-High-Performance Liquid Chromatography coupled with High-Resolution Mass Spectrometry (UHPLC-PDA-HESI-Orbitrap-MS/MS) was utilized. Under the working parameters, 78 compounds were detected, and 61 of them were identified. Among the identified compounds, the in vitro plants presented 24 compounds, greenhouse plants a total of 21 compounds, and callus tissue 16 compounds. On the other hand, 7 compounds (laurydiethanolamine, toluic acids, and their derivatives) were detected in all systems, suggesting that these metabolites may serve as markers to help find the authenticity of C. macromeris preparations, and that, plant and cell-tissue cultures with this plant species are suitable for the biosynthesis of the selected compounds. In addition, our research suggests that no alkaloids with reported psychotropic properties are present in C. macromeris.

Funder

National Council for Science and Technology

National Polytechnic Institute

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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