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甜菜坏死黄脉病毒基因组RNA在其介体获取过程中的相对频率动态及负载情况

Relative frequency dynamics and loading of beet necrotic yellow vein virus genomic RNAs during the acquisition by its vector .

作者信息

Guo Yi, Dall'Ara Mattia, Baldo David, Gilmer David, Ratti Claudio

机构信息

DISTAL-Plant Pathology, University of Bologna, Bologna, Italy.

Institute for Sustainable Plant Protection, National Research Council of Italy, Turin, Italy.

出版信息

J Virol. 2025 Jan 31;99(1):e0141024. doi: 10.1128/jvi.01410-24. Epub 2024 Dec 16.

Abstract

UNLABELLED

The beet necrotic yellow vein virus (BNYVV) is a multipartite virus with the highest number (up to five) of genomic segments among RNA viruses. Classified as a soil-borne virus, it is persistently transmitted by the protozoan . Previous studies have demonstrated that the relative frequency of the BNYVV genomic RNAs was modified depending on the host plant as well as the infected organ, resulting in distinct stoichiometric ratios between the viral RNAs. In this study, we investigate whether infection by the vector influences the relative abundance of BNYVV RNAs within the roots of the host plant . Furthermore, we examine the relative frequency of BNYVV genomic segments and the viral load of BNYVV at two different stages of 's biological cycle: zoospore and resting spore. Our finding offers new insights into understanding the biology of this soil-borne virus and its vector. Notably, the variations in the relative accumulation of BNYVV RNAs observed in zoospores and resting spores, along with a higher viral load in zoospores compared to resting spores, invite consideration of the virus's replicative capacity within the vector.

IMPORTANCE

Our understanding of the transmission of plant viruses by protozoan vectors remains poor and fragmented. The fate of viral elements in the living stages of the vector is unknown. Here, we first established a protocol allowing the purification of two forms of the vector free of cellular contaminants. This permitted the examination of the relative frequencies of beet necrotic yellow vein virus RNAs in the roots of its natural host and in two forms of its protozoan vector, , responsible for virus transmission. Our findings provide new insights into virus behavior during vector transmission, allowing us to analyze how the virus regulates its RNA frequencies and load within the vector. By focusing on the early stages of viral transmission and separating virus acquisition from transmission to new hosts, we pave the way for experiments aimed at elucidating the molecular mechanisms behind viral acquisition and the maintenance of viral genome integrity by .

摘要

未标记

甜菜坏死黄脉病毒(BNYVV)是一种多分体病毒,在RNA病毒中基因组片段数量最多(多达五个)。它被归类为土传病毒,由原生动物持续传播。先前的研究表明,BNYVV基因组RNA的相对频率会根据宿主植物以及受感染器官而改变,导致病毒RNA之间出现不同的化学计量比。在本研究中,我们调查了载体感染是否会影响宿主植物根内BNYVV RNA的相对丰度。此外,我们在载体的两个不同生物周期阶段:游动孢子和休眠孢子,研究了BNYVV基因组片段的相对频率以及BNYVV的病毒载量。我们的发现为理解这种土传病毒及其载体的生物学特性提供了新的见解。值得注意的是,在游动孢子和休眠孢子中观察到的BNYVV RNA相对积累的变化,以及与休眠孢子相比游动孢子中更高的病毒载量,促使人们考虑病毒在载体内的复制能力。

重要性

我们对原生动物载体传播植物病毒的理解仍然匮乏且零散。病毒元件在载体存活阶段的命运尚不清楚。在这里,我们首先建立了一种方案,能够纯化两种不含细胞污染物的载体形式。这使得我们能够检测甜菜坏死黄脉病毒RNA在其天然宿主根中以及在负责病毒传播的两种原生动物载体形式中的相对频率。我们的发现为病毒在载体传播过程中的行为提供了新的见解,使我们能够分析病毒如何调节其在载体内的RNA频率和载量。通过关注病毒传播的早期阶段,并将病毒获取与传播到新宿主分开,我们为旨在阐明病毒获取背后的分子机制以及由[载体名称]维持病毒基因组完整性的实验铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e30a/11784302/8d1187344c48/jvi.01410-24.f001.jpg

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