Synthesis of New Steroidal Carbamates with Plant-Growth-Promoting Activity: Theoretical and Experimental Evidence

Pacheco, Daylin Fernandez; Gonzalez Ceballos, Leonardo; Castro, Armando Zaldo; Conde Gonzalez, Marcos R.; Gonzalez de la Torre, Laura; Rostgaard, Lia Perez; Coll Garcia, Yamilet

Abstract

A priority of modern agriculture is to use novel and environmentally friendly plant-growth promoter compounds to increase crop yields and avoid the indiscriminate use of synthetic fertilizers. Brassinosteroids are directly involved in the growth and development of plants and are considered attractive candidates to solve this problem. Obtaining these metabolites from their natural sources is expensive and cumbersome since they occur in extremely low concentrations in plants. For this reason, much effort has been dedicated in the last decades to synthesize brassino-steroids analogs. In this manuscript, we present the synthesis and characterization of seven steroi-dal carbamates starting from stigmasterol, β-sitosterol, diosgenin and several oxygenated derivatives of it. The synthesis route for functionalization of diosgenin included epoxidation and epoxy opening reactions, reduction of carbonyl groups, selective oxidation of hydroxyl groups, among others. All the obtained compounds were characterized by1H and13C NMR, HRMS, and their melting points are also reported. Rice lamina inclination test performed at different concentrations es-tablished that all reported steroidal carbamates show plant-growth-promoting activity. A molecular docking study evaluated the affinity of the synthesized compounds towards the BRI1-BAK1 receptor from Arabidopsis thaliana and three of the docked compounds displayed a binding energy lower than brassinolide.

Más información

Título según WOS: Synthesis of New Steroidal Carbamates with Plant-Growth-Promoting Activity: Theoretical and Experimental Evidence
Título según SCOPUS: Synthesis of new steroidal carbamates with plant-growth-promoting activity: Theoretical and experimental evidence
Título de la Revista: International Journal of Molecular Sciences
Volumen: 22
Número: 5
Editorial: Multidisciplinary Digital Publishing Institute (MDPI)
Fecha de publicación: 2021
Página final: 19
Idioma: English
DOI:

10.3390/ijms22052330

Notas: ISI, SCOPUS