The essential role of arginine biosynthetic genes in lunate conidia formation, conidiation, mycelial growth, and virulence of nematophagous fungus, Esteya vermicolaCBS115803
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Published:2023-10-13
Issue:2
Volume:80
Page:786-796
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ISSN:1526-498X
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Container-title:Pest Management Science
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language:en
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Short-container-title:Pest Management Science
Author:
Chen Chi12,
Hu Zhijuan12,
Zheng Xinyao12,
Yuan Jingjie12,
Zou Run12,
Wang Yilan12,
Peng Xuan12,
Xie Chengjian12ORCID
Affiliation:
1. Biology of Plant Environmental Adaptations Chongqing Normal University Chongqing China
2. The Chongqing Key Laboratory of Molecular Biology of Plant Environmental Adaptations Chongqing Normal University Chongqing China
Abstract
AbstractBACKGROUNDThe pinewood nematode (Bursaphelenchus xylophilus) causes severe damage to pine trees. The nematophagous fungus, Esteya vermicola, exhibits considerable promise in the biological control of Bursaphelenchus xylophilus due to its infectivity. Notably, the lunate conidia produced by E. vermicola can infect Bursaphelenchus xylophilus. In the study, we aim to investigate the genes involved in the formation of the lunate conidia of E. vermicola CBS115803.RESULTSEsteya vermicola CBS115803 yielded 95% lunate conidia on the complete medium (CM) and 86% bacilloid conidia on the minimal medium (MM). Transcriptomic analysis of conidia from both media revealed a significant enrichment of differentially expressed genes in the pathway related to ‘cellular amino acid biosynthesis and metabolism’. Functional assessment showed that the knockout of two arginine biosynthesis genes (EV232 and EV289) resulted in defects in conidia germination, mycelial growth, lunate conidia formation, and virulence of E. vermicola CBS115803 in Bursaphelenchus xylophilus. Remarkably, the addition of arginine to the MM improved mycelial growth, conidiation and lunate conidia formation in the mutants and notably increased conidia yield and the lunate conidia ratio in the wild‐type E. vermicola CBS115803.CONCLUSIONThis investigation confirms the essential role of two arginine biosynthesis genes in lunate conidia formation in E. vermicola CBS115803. The findings also suggest that the supplementation of arginine to the culture medium can enhance the lunate conidia yield. These insights contribute significantly to the application of E. vermicola CBS115803 in managing Bursaphelenchus xylophilus infections. © 2023 Society of Chemical Industry.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Chongqing Municipality
Subject
Insect Science,Agronomy and Crop Science,General Medicine
Cited by
1 articles.
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