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多分体病毒介导的昆虫病原真菌生长增强依赖于碳和氮代谢。

The Polymycovirus-Mediated Growth Enhancement of the Entomopathogenic Fungus Is Dependent on Carbon and Nitrogen Metabolism.

作者信息

Filippou Charalampos, Diss Rebecca M, Daudu John O, Coutts Robert H A, Kotta-Loizou Ioly

机构信息

Department of Life Sciences, Imperial College London, London, United Kingdom.

Department of Clinical, Pharmaceutical and Biological Science, University of Hertfordshire, Hatfield, United Kingdom.

出版信息

Front Microbiol. 2021 Feb 2;12:606366. doi: 10.3389/fmicb.2021.606366. eCollection 2021.

Abstract

is a growing family of mycoviruses whose members typically have non-conventional capsids and multi-segmented, double-stranded (ds) RNA genomes. polymycovirus (BbPmV) 1 is known to enhance the growth and virulence of its fungal host, the entomopathogenic ascomycete and popular biological control agent . Here we report the complete sequence of BbPmV-3, which has six genomic dsRNA segments. Phylogenetic analysis of RNA-dependent RNA polymerase (RdRp) protein sequences revealed that BbPmV-3 is closely related to the partially sequenced BbPmV-2 but not BbPmV-1. Nevertheless, both BbPmV-3 and BbPmV-1 have similar effects on their respective host isolates ATHUM 4946 and EABb 92/11-Dm, affecting pigmentation, sporulation, and radial growth. Production of conidia and radial growth are significantly enhanced in virus-infected isolates as compared to virus-free isogenic lines on Czapek-Dox complete and minimal media that contain sucrose and sodium nitrate. However, this polymycovirus-mediated effect on growth is dependent on the carbon and nitrogen sources available to the host fungus. Both BbPmV-3 and BbPmV-1 increase growth of ATHUM 4946 and EABb 92/11-Dm when sucrose is replaced by lactose, trehalose, glucose, or glycerol, while the effect is reversed on maltose and fructose. Similarly, both BbPmV-3 and BbPmV-1 decrease growth of ATHUM 4946 and EABb 92/11-Dm when sodium nitrate is replaced by sodium nitrite, potassium nitrate, or ammonium nitrate. In conclusion, the effects of polymycoviruses on are at least partially mediated its metabolic pathways.

摘要

多分体病毒是一个不断增长的真菌病毒家族,其成员通常具有非常规的衣壳和多片段双链(ds)RNA基因组。已知多分体病毒(BbPmV)1可增强其真菌宿主——昆虫病原子囊菌(一种流行的生物防治剂)的生长和毒力。在这里,我们报告了BbPmV - 3的完整序列,它有六个基因组dsRNA片段。对RNA依赖性RNA聚合酶(RdRp)蛋白序列的系统发育分析表明,BbPmV - 3与部分测序的BbPmV - 2密切相关,但与BbPmV - 1无关。然而,BbPmV - 3和BbPmV - 1对它们各自的宿主分离株ATHUM 4946和EABb 92/11 - Dm具有相似的影响,包括影响色素沉着、孢子形成和径向生长。与不含病毒的同基因系相比,在含有蔗糖和硝酸钠的察氏完全培养基和基本培养基上,病毒感染的分离株中产孢和径向生长显著增强。然而,这种多分体病毒介导的对生长的影响取决于宿主真菌可利用的碳源和氮源。当蔗糖被乳糖、海藻糖、葡萄糖或甘油取代时,BbPmV - 3和BbPmV - 1都会增加ATHUM 4946和EABb 92/11 - Dm的生长,而在麦芽糖和果糖上则相反。同样,当硝酸钠被亚硝酸钠、硝酸钾或硝酸铵取代时,BbPmV - 3和BbPmV - 1都会降低ATHUM 4946和EABb 92/11 - Dm的生长。总之,多分体病毒对[原文此处缺失相关内容]的影响至少部分是由其代谢途径介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea3f/7884332/da160598a8ab/fmicb-12-606366-g001.jpg

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