Cargando…

Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat

The discovery of natural bioactive compounds from endophytes or medicinal plants against plant diseases is an attractive option for reducing the use of chemical fungicides. In this study, three compounds, indole-3-carbaldehyde, indole-3-carboxylic acid (3-ICA), and jasmonic acid (JA), were isolated...

Descripción completa

Detalles Bibliográficos
Autores principales: Que, Yawei, Huang, Donghai, Gong, Shuangjun, Zhang, Xuejiang, Yuan, Bin, Xue, Minfeng, Shi, Wenqi, Zeng, Fansong, Liu, Meilin, Chen, Tingting, Yu, Dazhao, Yan, Xia, Wang, Zhengyi, Yang, Lijun, Xiang, Libo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289256/
https://www.ncbi.nlm.nih.gov/pubmed/35860382
http://dx.doi.org/10.3389/fcimb.2022.898500
_version_ 1784748624149741568
author Que, Yawei
Huang, Donghai
Gong, Shuangjun
Zhang, Xuejiang
Yuan, Bin
Xue, Minfeng
Shi, Wenqi
Zeng, Fansong
Liu, Meilin
Chen, Tingting
Yu, Dazhao
Yan, Xia
Wang, Zhengyi
Yang, Lijun
Xiang, Libo
author_facet Que, Yawei
Huang, Donghai
Gong, Shuangjun
Zhang, Xuejiang
Yuan, Bin
Xue, Minfeng
Shi, Wenqi
Zeng, Fansong
Liu, Meilin
Chen, Tingting
Yu, Dazhao
Yan, Xia
Wang, Zhengyi
Yang, Lijun
Xiang, Libo
author_sort Que, Yawei
collection PubMed
description The discovery of natural bioactive compounds from endophytes or medicinal plants against plant diseases is an attractive option for reducing the use of chemical fungicides. In this study, three compounds, indole-3-carbaldehyde, indole-3-carboxylic acid (3-ICA), and jasmonic acid (JA), were isolated from the EtOAc extract of the culture filtrate of the endophytic fungus Lasiodiplodia pseudotheobromae LPS-1, which was previously isolated from the medicinal plant, Ilex cornuta. Some experiments were conducted to further determine the antifungal activity of these compounds on wheat powdery mildew. The results showed that JA was much more bioactive than indole-3-carbaldehyde and 3-ICA against Blumeria graminis, and the disease severity caused by B. graminis decreased significantly with the concentration increase of JA treatment. The assay of the interaction of 3-ICA and JA indicated that there was a significant synergistic effect between the two compounds on B. graminis in each of the ratios of 3-ICA to JA (3-ICA:JA) ranging from 1:9 to 9:1. When the compound ratio of 3-ICA to JA was 2:8, the synergistic coefficient was the highest as 22.95. Meanwhile, a histological investigation indicated that, under the treatment of JA at 500 μg/ml or 3-ICA:JA (2:8) at 40 μg/ml, the appressorium development and haustorium formation of B. graminis were significantly inhibited. Taken together, we concluded that JA plays an important role in the infection process of B. graminis and that 3-ICA as a synergist of JA enhances the antagonism against wheat powdery mildew.
format Online
Article
Text
id pubmed-9289256
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-92892562022-07-19 Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat Que, Yawei Huang, Donghai Gong, Shuangjun Zhang, Xuejiang Yuan, Bin Xue, Minfeng Shi, Wenqi Zeng, Fansong Liu, Meilin Chen, Tingting Yu, Dazhao Yan, Xia Wang, Zhengyi Yang, Lijun Xiang, Libo Front Cell Infect Microbiol Cellular and Infection Microbiology The discovery of natural bioactive compounds from endophytes or medicinal plants against plant diseases is an attractive option for reducing the use of chemical fungicides. In this study, three compounds, indole-3-carbaldehyde, indole-3-carboxylic acid (3-ICA), and jasmonic acid (JA), were isolated from the EtOAc extract of the culture filtrate of the endophytic fungus Lasiodiplodia pseudotheobromae LPS-1, which was previously isolated from the medicinal plant, Ilex cornuta. Some experiments were conducted to further determine the antifungal activity of these compounds on wheat powdery mildew. The results showed that JA was much more bioactive than indole-3-carbaldehyde and 3-ICA against Blumeria graminis, and the disease severity caused by B. graminis decreased significantly with the concentration increase of JA treatment. The assay of the interaction of 3-ICA and JA indicated that there was a significant synergistic effect between the two compounds on B. graminis in each of the ratios of 3-ICA to JA (3-ICA:JA) ranging from 1:9 to 9:1. When the compound ratio of 3-ICA to JA was 2:8, the synergistic coefficient was the highest as 22.95. Meanwhile, a histological investigation indicated that, under the treatment of JA at 500 μg/ml or 3-ICA:JA (2:8) at 40 μg/ml, the appressorium development and haustorium formation of B. graminis were significantly inhibited. Taken together, we concluded that JA plays an important role in the infection process of B. graminis and that 3-ICA as a synergist of JA enhances the antagonism against wheat powdery mildew. Frontiers Media S.A. 2022-07-04 /pmc/articles/PMC9289256/ /pubmed/35860382 http://dx.doi.org/10.3389/fcimb.2022.898500 Text en Copyright © 2022 Que, Huang, Gong, Zhang, Yuan, Xue, Shi, Zeng, Liu, Chen, Yu, Yan, Wang, Yang and Xiang https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Que, Yawei
Huang, Donghai
Gong, Shuangjun
Zhang, Xuejiang
Yuan, Bin
Xue, Minfeng
Shi, Wenqi
Zeng, Fansong
Liu, Meilin
Chen, Tingting
Yu, Dazhao
Yan, Xia
Wang, Zhengyi
Yang, Lijun
Xiang, Libo
Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title_full Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title_fullStr Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title_full_unstemmed Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title_short Indole-3-Carboxylic Acid From the Endophytic Fungus Lasiodiplodia pseudotheobromae LPS-1 as a Synergist Enhancing the Antagonism of Jasmonic Acid Against Blumeria graminis on Wheat
title_sort indole-3-carboxylic acid from the endophytic fungus lasiodiplodia pseudotheobromae lps-1 as a synergist enhancing the antagonism of jasmonic acid against blumeria graminis on wheat
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9289256/
https://www.ncbi.nlm.nih.gov/pubmed/35860382
http://dx.doi.org/10.3389/fcimb.2022.898500
work_keys_str_mv AT queyawei indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT huangdonghai indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT gongshuangjun indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT zhangxuejiang indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT yuanbin indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT xueminfeng indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT shiwenqi indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT zengfansong indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT liumeilin indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT chentingting indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT yudazhao indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT yanxia indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT wangzhengyi indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT yanglijun indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat
AT xianglibo indole3carboxylicacidfromtheendophyticfunguslasiodiplodiapseudotheobromaelps1asasynergistenhancingtheantagonismofjasmonicacidagainstblumeriagraminisonwheat