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两种新型内质网病毒共同感染一种卵菌病原体,调节宿主卵菌的发育阶段和对杀菌剂的敏感性。

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

作者信息

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

机构信息

Laboratory of Molecular and Cellular Biology, Graduate School of Agriculture, Tokyo University of Agriculture and Technology, Fuchu, Japan.

Research and Education Center for Prevention of Global Infectious Diseases of Animals, Tokyo University of Agriculture and Technology, Fuchu, Japan.

出版信息

Front Microbiol. 2021 Feb 3;12:633502. doi: 10.3389/fmicb.2021.633502. eCollection 2021.

Abstract

Two novel endornaviruses, Phytophthora endornavirus 2 (PEV2) and Phytophthora endornavirus 3 (PEV3) were found in isolates of a pathogen of asparagus collected in Japan. A molecular phylogenetic analysis indicated that PEV2 and PEV3 belong to the genus . 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 sp. specific to Douglas fir. PEV2 and PEV3 were detected at high titers in two original 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 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.

摘要

在日本采集的一种芦笋病原菌分离物中发现了两种新型内质网病毒,即疫霉内质网病毒2(PEV2)和疫霉内质网病毒3(PEV3)。分子系统发育分析表明,PEV2和PEV3属于该属。PEV2和PEV3基因组分别由14345和13810个碱基对组成,它们分别包含4640和4603个密码子的单一开放阅读框。它们的多聚蛋白包含RNA解旋酶、UDP-糖基转移酶和RNA依赖性RNA聚合酶的保守结构域,这些结构域在其他甲型内质网病毒中是保守的。PEV2与褐藻内质网病毒2密切相关,而PEV3与疫霉内质网病毒1(PEV1)密切相关,PEV1感染一种特定于花旗松的疫霉。在两个原始疫霉分离物中检测到高滴度的PEV2和PEV3,并且我们在继代培养过程中发现了一个病毒滴度低的亚分离物。我们使用高滴度和低滴度分离物来评估病毒对疫霉宿主的生长、发育和杀菌剂敏感性的影响。高滴度分离物产生的菌丝菌落比低滴度分离物小,游动孢子囊数量多得多。这些结果表明,PEV2和PEV3抑制菌丝生长并刺激游动孢子囊形成。高滴度分离物比低滴度分离物对杀菌剂苯噻菌酯异丙酯、噁唑菌酮和百菌清更敏感。相反,与低滴度分离物相比,高滴度分离物对杀菌剂甲霜灵(一种RNA聚合酶I抑制剂)的敏感性较低。这些结果表明,PEV2和PEV3的持续感染可能会潜在地影响宿主卵菌对杀菌剂的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6637/7902037/2e0c72b137f1/fmicb-12-633502-g001.jpg

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