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Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete

Two novel endornaviruses, Phytophthora endornavirus 2 (PEV2) and Phytophthora endornavirus 3 (PEV3) were found in isolates of a Phytophthora pathogen of asparagus collected in Japan. A molecular phylogenetic analysis indicated that PEV2 and PEV3 belong to the genus Alphaendornavirus. The PEV2 and PE...

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Autores principales: Uchida, Keiko, Sakuta, Kohei, Ito, Aori, Takahashi, Yumi, Katayama, Yukie, Omatsu, Tsutomu, Mizutani, Tetsuya, Arie, Tsutomu, Komatsu, Ken, Fukuhara, Toshiyuki, Uematsu, Seiji, Okada, Ryo, Moriyama, Hiromitsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7902037/
https://www.ncbi.nlm.nih.gov/pubmed/33633714
http://dx.doi.org/10.3389/fmicb.2021.633502
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author Uchida, Keiko
Sakuta, Kohei
Ito, Aori
Takahashi, Yumi
Katayama, Yukie
Omatsu, Tsutomu
Mizutani, Tetsuya
Arie, Tsutomu
Komatsu, Ken
Fukuhara, Toshiyuki
Uematsu, Seiji
Okada, Ryo
Moriyama, Hiromitsu
author_facet Uchida, Keiko
Sakuta, Kohei
Ito, Aori
Takahashi, Yumi
Katayama, Yukie
Omatsu, Tsutomu
Mizutani, Tetsuya
Arie, Tsutomu
Komatsu, Ken
Fukuhara, Toshiyuki
Uematsu, Seiji
Okada, Ryo
Moriyama, Hiromitsu
author_sort Uchida, Keiko
collection PubMed
description Two novel endornaviruses, Phytophthora endornavirus 2 (PEV2) and Phytophthora endornavirus 3 (PEV3) were found in isolates of a Phytophthora pathogen of asparagus collected in Japan. A molecular phylogenetic analysis indicated that PEV2 and PEV3 belong to the genus Alphaendornavirus. The PEV2 and PEV3 genomes consist of 14,345 and 13,810 bp, and they contain single open reading frames of 4,640 and 4,603 codons, respectively. Their polyproteins contain the conserved domains of an RNA helicase, a UDP-glycosyltransferase, and an RNA-dependent RNA polymerase, which are conserved in other alphaendornaviruses. PEV2 is closely related to Brown algae endornavirus 2, whereas PEV3 is closely related to Phytophthora endornavirus 1 (PEV1), which infects a Phytophthora sp. specific to Douglas fir. PEV2 and PEV3 were detected at high titers in two original Phytophthora sp. isolates, and we found a sub-isolate with low titers of the viruses during subculture. We used the high- and low-titer isolates to evaluate the effects of the viruses on the growth, development, and fungicide sensitivities of the Phytophthora sp. host. The high-titer isolates produced smaller mycelial colonies and much higher numbers of zoosporangia than the low-titer isolate. These results suggest that PEV2 and PEV3 inhibited hyphal growth and stimulated zoosporangium formation. The high-titer isolates were more sensitive than the low-titer isolate to the fungicides benthiavalicarb-isopropyl, famoxadone, and chlorothalonil. In contrast, the high-titer isolates displayed lower sensitivity to the fungicide metalaxyl (an inhibitor of RNA polymerase I) when compared with the low-titer isolate. These results indicate that persistent infection with PEV2 and PEV3 may potentially affect the fungicide sensitivities of the host oomycete.
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spelling pubmed-79020372021-02-24 Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete Uchida, Keiko Sakuta, Kohei Ito, Aori Takahashi, Yumi Katayama, Yukie Omatsu, Tsutomu Mizutani, Tetsuya Arie, Tsutomu Komatsu, Ken Fukuhara, Toshiyuki Uematsu, Seiji Okada, Ryo Moriyama, Hiromitsu Front Microbiol Microbiology Two novel endornaviruses, Phytophthora endornavirus 2 (PEV2) and Phytophthora endornavirus 3 (PEV3) were found in isolates of a Phytophthora pathogen of asparagus collected in Japan. A molecular phylogenetic analysis indicated that PEV2 and PEV3 belong to the genus Alphaendornavirus. The PEV2 and PEV3 genomes consist of 14,345 and 13,810 bp, and they contain single open reading frames of 4,640 and 4,603 codons, respectively. Their polyproteins contain the conserved domains of an RNA helicase, a UDP-glycosyltransferase, and an RNA-dependent RNA polymerase, which are conserved in other alphaendornaviruses. PEV2 is closely related to Brown algae endornavirus 2, whereas PEV3 is closely related to Phytophthora endornavirus 1 (PEV1), which infects a Phytophthora sp. specific to Douglas fir. PEV2 and PEV3 were detected at high titers in two original Phytophthora sp. isolates, and we found a sub-isolate with low titers of the viruses during subculture. We used the high- and low-titer isolates to evaluate the effects of the viruses on the growth, development, and fungicide sensitivities of the Phytophthora sp. host. The high-titer isolates produced smaller mycelial colonies and much higher numbers of zoosporangia than the low-titer isolate. These results suggest that PEV2 and PEV3 inhibited hyphal growth and stimulated zoosporangium formation. The high-titer isolates were more sensitive than the low-titer isolate to the fungicides benthiavalicarb-isopropyl, famoxadone, and chlorothalonil. In contrast, the high-titer isolates displayed lower sensitivity to the fungicide metalaxyl (an inhibitor of RNA polymerase I) when compared with the low-titer isolate. These results indicate that persistent infection with PEV2 and PEV3 may potentially affect the fungicide sensitivities of the host oomycete. Frontiers Media S.A. 2021-02-03 /pmc/articles/PMC7902037/ /pubmed/33633714 http://dx.doi.org/10.3389/fmicb.2021.633502 Text en Copyright © 2021 Uchida, Sakuta, Ito, Takahashi, Katayama, Omatsu, Mizutani, Arie, Komatsu, Fukuhara, Uematsu, Okada and Moriyama. http://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 Microbiology
Uchida, Keiko
Sakuta, Kohei
Ito, Aori
Takahashi, Yumi
Katayama, Yukie
Omatsu, Tsutomu
Mizutani, Tetsuya
Arie, Tsutomu
Komatsu, Ken
Fukuhara, Toshiyuki
Uematsu, Seiji
Okada, Ryo
Moriyama, Hiromitsu
Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title_full Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title_fullStr Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title_full_unstemmed Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title_short Two Novel Endornaviruses Co-infecting a Phytophthora Pathogen of Asparagus officinalis Modulate the Developmental Stages and Fungicide Sensitivities of the Host Oomycete
title_sort two novel endornaviruses co-infecting a phytophthora pathogen of asparagus officinalis modulate the developmental stages and fungicide sensitivities of the host oomycete
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7902037/
https://www.ncbi.nlm.nih.gov/pubmed/33633714
http://dx.doi.org/10.3389/fmicb.2021.633502
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