Inhibition of the JAZ1 gene causes activation of camalexin biosynthesis in Arabidopsis callus cultures

Journal of Biotechnology
2021.0

Abstract

Indole alkaloid camalexin has potential medicinal properties such as suppressing the viability of leukemic but not normal cells. Camalexin is not produced in plants and an external factor is required to activate its biosynthesis. In this work, we stimulated camalexin biosynthesis in Arabidopsis calli by blocking one of repressors of the jasmonate pathway, the jasmonate ZIM-domain protein 1 (JAZ1) by using amiRNA targeting JAZ1 gene transcripts. Inhibition of the JAZ1 gene led to an increase in camalexin content from trace amounts in control culture to 9 microg/g DW in the jaz1 line without affecting growth. In addition, JAZ1 silencing enhanced tolerance to cold stress with simultaneous increasing camalexin content up to 30 microg/g DW. Real-time quantitative PCR determination of marker gene expression showed that effects caused by the JAZ1 silencing might be realized through crosslinking JA, ROS, and abscisic acid signaling pathways. Thus, targeting the distal components of signaling pathways can be suggested as a tool for bioengineering of secondary metabolism, along with standard techniques for targeting biosynthetic genes or genes encoding transcription factors. CI - Copyright (c) 2021 Elsevier B.V. All rights reserved.

Knowledge Graph

Similar Paper

Inhibition of the JAZ1 gene causes activation of camalexin biosynthesis in Arabidopsis callus cultures
Journal of Biotechnology 2021.0
Jasmonate-Dependent Induction of Indole Glucosinolates in Arabidopsis by Culture Filtrates of the Nonspecific Pathogen<i>Erwinia carotovora</i>  
Plant Physiology 2001.0
Camalexin is synthesized from indole-3-acetaldoxime, a key branching point between primary and secondary metabolism in <i>Arabidopsis</i>
Proceedings of the National Academy of Sciences 2004.0
Evolution of camalexin and structurally related indolic compounds
Phytochemistry 2009.0
Transcriptomic and Metabolomic Analyses Reveals That Exogenous Methyl Jasmonate Regulates Galanthamine Biosynthesis in Lycoris longituba Seedlings
Frontiers in Plant Science 2021.0
The Multifunctional Enzyme CYP71B15 (PHYTOALEXIN DEFICIENT3) Converts Cysteine-Indole-3-Acetonitrile to Camalexin in the Indole-3-Acetonitrile Metabolic Network of<i>Arabidopsis thaliana</i>   
The Plant Cell 2009.0
Origin of the Thiazole Ring of Camalexin, a Phytoalexin from Arabidopsis thaliana
Plant Physiology 1997.0
The camalexins: New phytoalexins produced in the leaves of camelina sativa (cruciferae).
Tetrahedron 1991.0
Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
Frontiers in Plant Science 2022.0
Metabolomics analysis reveals both plant variety and choice of hormone treatment modulate vinca alkaloid production in Catharanthus roseus
Plant Direct 2020.0