Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes

Abstract Root-knot nematode (RKN) disease is a soil-borne disease. However, most studies on RKN have focused on the screening of agents and the cultivation of resistant varieties, and reports on the interaction of RKNs with soil microorganisms are few. In this study, we performed Illumina high-throu...

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Main Authors: Kuo Huang, Qipeng Jiang, Liehua Liu, Shuting Zhang, Chaoli Liu, Haitao Chen, Wei Ding, Yongqiang Zhang
Format: Article
Language:English
Published: SpringerOpen 2020-04-01
Series:AMB Express
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13568-020-01006-6
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spelling doaj-78b55dc7343d4dafab52c6ac20da86302020-11-25T02:01:14ZengSpringerOpenAMB Express2191-08552020-04-0110111110.1186/s13568-020-01006-6Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodesKuo Huang0Qipeng Jiang1Liehua Liu2Shuting Zhang3Chaoli Liu4Haitao Chen5Wei Ding6Yongqiang Zhang7College of Plant Protection, Southwest UniversityCollege of Plant Protection, Southwest UniversityCollege of Plant Protection, Southwest UniversityCollege of Plant Protection, Southwest UniversityCollege of Plant Protection, Southwest UniversityChongqing Institute of Tobacco ScienceCollege of Plant Protection, Southwest UniversityCollege of Plant Protection, Southwest UniversityAbstract Root-knot nematode (RKN) disease is a soil-borne disease. However, most studies on RKN have focused on the screening of agents and the cultivation of resistant varieties, and reports on the interaction of RKNs with soil microorganisms are few. In this study, we performed Illumina high-throughput sequencing to analyze diseased and healthy soil and the microbial-community changes in rhizosphere soil after microbial treatment (Pseudomonas flurescens, Bacillus subtilis, Paecolomyces lilacinus). Results showed significant differences in the bacterial community richness and diversity between diseased and healthy soil and the presence of different microbial species. After treatment, the richness and diversity of microbial communities in soil, as well as the number and incidence of second-stage juvenile of RKNs, decreased. Through linear discriminant analysis effect size, Pearson correlation, and Venn diagram analysis, we screened five genera that were closely related to disease occurrence, among which Pseudomonas was most related to disease inhibition. Our results suggested that the occurrence of tobacco RKN was related to changes in soil microbial communities, and that the interactions among Pseudomonas, Bryobacter, Variibacter, Coniochaeta, and Metarhizium affected the health of rhizosphere soil.http://link.springer.com/article/10.1186/s13568-020-01006-6Root-knot nematodeSoil-borne diseaseMicrobial communityPseudomonas
collection DOAJ
language English
format Article
sources DOAJ
author Kuo Huang
Qipeng Jiang
Liehua Liu
Shuting Zhang
Chaoli Liu
Haitao Chen
Wei Ding
Yongqiang Zhang
spellingShingle Kuo Huang
Qipeng Jiang
Liehua Liu
Shuting Zhang
Chaoli Liu
Haitao Chen
Wei Ding
Yongqiang Zhang
Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
AMB Express
Root-knot nematode
Soil-borne disease
Microbial community
Pseudomonas
author_facet Kuo Huang
Qipeng Jiang
Liehua Liu
Shuting Zhang
Chaoli Liu
Haitao Chen
Wei Ding
Yongqiang Zhang
author_sort Kuo Huang
title Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
title_short Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
title_full Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
title_fullStr Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
title_full_unstemmed Exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
title_sort exploring the key microbial changes in the rhizosphere that affect the occurrence of tobacco root-knot nematodes
publisher SpringerOpen
series AMB Express
issn 2191-0855
publishDate 2020-04-01
description Abstract Root-knot nematode (RKN) disease is a soil-borne disease. However, most studies on RKN have focused on the screening of agents and the cultivation of resistant varieties, and reports on the interaction of RKNs with soil microorganisms are few. In this study, we performed Illumina high-throughput sequencing to analyze diseased and healthy soil and the microbial-community changes in rhizosphere soil after microbial treatment (Pseudomonas flurescens, Bacillus subtilis, Paecolomyces lilacinus). Results showed significant differences in the bacterial community richness and diversity between diseased and healthy soil and the presence of different microbial species. After treatment, the richness and diversity of microbial communities in soil, as well as the number and incidence of second-stage juvenile of RKNs, decreased. Through linear discriminant analysis effect size, Pearson correlation, and Venn diagram analysis, we screened five genera that were closely related to disease occurrence, among which Pseudomonas was most related to disease inhibition. Our results suggested that the occurrence of tobacco RKN was related to changes in soil microbial communities, and that the interactions among Pseudomonas, Bryobacter, Variibacter, Coniochaeta, and Metarhizium affected the health of rhizosphere soil.
topic Root-knot nematode
Soil-borne disease
Microbial community
Pseudomonas
url http://link.springer.com/article/10.1186/s13568-020-01006-6
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