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Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis

Pythium guiyangense, an oomycete from a genus of mostly plant pathogens, is an effective biological control agent that has wide potential to manage diverse mosquitoes. However, its mosquito-killing mechanisms are almost unknown. In this study, we observed that P. guiyangense could utilize cuticle pe...

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Autores principales: Shen, Danyu, Tang, Zhaoyang, Wang, Cong, Wang, Jing, Dong, Yumei, Chen, Yang, Wei, Yun, Cheng, Biao, Zhang, Meiqian, Grenville-Briggs, Laura J., Tyler, Brett M., Dou, Daolong, Xia, Ai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6502433/
https://www.ncbi.nlm.nih.gov/pubmed/31017897
http://dx.doi.org/10.1371/journal.pgen.1008116
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author Shen, Danyu
Tang, Zhaoyang
Wang, Cong
Wang, Jing
Dong, Yumei
Chen, Yang
Wei, Yun
Cheng, Biao
Zhang, Meiqian
Grenville-Briggs, Laura J.
Tyler, Brett M.
Dou, Daolong
Xia, Ai
author_facet Shen, Danyu
Tang, Zhaoyang
Wang, Cong
Wang, Jing
Dong, Yumei
Chen, Yang
Wei, Yun
Cheng, Biao
Zhang, Meiqian
Grenville-Briggs, Laura J.
Tyler, Brett M.
Dou, Daolong
Xia, Ai
author_sort Shen, Danyu
collection PubMed
description Pythium guiyangense, an oomycete from a genus of mostly plant pathogens, is an effective biological control agent that has wide potential to manage diverse mosquitoes. However, its mosquito-killing mechanisms are almost unknown. In this study, we observed that P. guiyangense could utilize cuticle penetration and ingestion of mycelia into the digestive system to infect mosquito larvae. To explore pathogenic mechanisms, a high-quality genome sequence with 239 contigs and an N50 contig length of 1,009 kb was generated. The genome assembly is approximately 110 Mb, which is almost twice the size of other sequenced Pythium genomes. Further genome analysis suggests that P. guiyangense may arise from a hybridization of two related but distinct parental species. Phylogenetic analysis demonstrated that P. guiyangense likely evolved from common ancestors shared with plant pathogens. Comparative genome analysis coupled with transcriptome sequencing data suggested that P. guiyangense may employ multiple virulence mechanisms to infect mosquitoes, including secreted proteases and kazal-type protease inhibitors. It also shares intracellular Crinkler (CRN) effectors used by plant pathogenic oomycetes to facilitate the colonization of plant hosts. Our experimental evidence demonstrates that CRN effectors of P. guiyangense can be toxic to insect cells. The infection mechanisms and putative virulence effectors of P. guiyangense uncovered by this study provide the basis to develop improved mosquito control strategies. These data also provide useful knowledge on host adaptation and evolution of the entomopathogenic lifestyle within the oomycete lineage. A deeper understanding of the biology of P. guiyangense effectors might also be useful for management of other important agricultural pests.
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spelling pubmed-65024332019-05-23 Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis Shen, Danyu Tang, Zhaoyang Wang, Cong Wang, Jing Dong, Yumei Chen, Yang Wei, Yun Cheng, Biao Zhang, Meiqian Grenville-Briggs, Laura J. Tyler, Brett M. Dou, Daolong Xia, Ai PLoS Genet Research Article Pythium guiyangense, an oomycete from a genus of mostly plant pathogens, is an effective biological control agent that has wide potential to manage diverse mosquitoes. However, its mosquito-killing mechanisms are almost unknown. In this study, we observed that P. guiyangense could utilize cuticle penetration and ingestion of mycelia into the digestive system to infect mosquito larvae. To explore pathogenic mechanisms, a high-quality genome sequence with 239 contigs and an N50 contig length of 1,009 kb was generated. The genome assembly is approximately 110 Mb, which is almost twice the size of other sequenced Pythium genomes. Further genome analysis suggests that P. guiyangense may arise from a hybridization of two related but distinct parental species. Phylogenetic analysis demonstrated that P. guiyangense likely evolved from common ancestors shared with plant pathogens. Comparative genome analysis coupled with transcriptome sequencing data suggested that P. guiyangense may employ multiple virulence mechanisms to infect mosquitoes, including secreted proteases and kazal-type protease inhibitors. It also shares intracellular Crinkler (CRN) effectors used by plant pathogenic oomycetes to facilitate the colonization of plant hosts. Our experimental evidence demonstrates that CRN effectors of P. guiyangense can be toxic to insect cells. The infection mechanisms and putative virulence effectors of P. guiyangense uncovered by this study provide the basis to develop improved mosquito control strategies. These data also provide useful knowledge on host adaptation and evolution of the entomopathogenic lifestyle within the oomycete lineage. A deeper understanding of the biology of P. guiyangense effectors might also be useful for management of other important agricultural pests. Public Library of Science 2019-04-24 /pmc/articles/PMC6502433/ /pubmed/31017897 http://dx.doi.org/10.1371/journal.pgen.1008116 Text en © 2019 Shen et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Shen, Danyu
Tang, Zhaoyang
Wang, Cong
Wang, Jing
Dong, Yumei
Chen, Yang
Wei, Yun
Cheng, Biao
Zhang, Meiqian
Grenville-Briggs, Laura J.
Tyler, Brett M.
Dou, Daolong
Xia, Ai
Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title_full Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title_fullStr Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title_full_unstemmed Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title_short Infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete Pythium guiyangense uncovered by genomic analysis
title_sort infection mechanisms and putative effector repertoire of the mosquito pathogenic oomycete pythium guiyangense uncovered by genomic analysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6502433/
https://www.ncbi.nlm.nih.gov/pubmed/31017897
http://dx.doi.org/10.1371/journal.pgen.1008116
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