Institute of Horticultural Production Systems, Department Phytomedicine, Leibniz University Hannover, Herrenhäuser Str. 2, 30419, Hannover, Germany.
Leibniz Institute DSMZ, German Collection of Microorganisms and Cell Cultures, Inhoffenstraße 7 B, 38124, Braunschweig, Germany.
Arch Microbiol. 2023 Mar 22;205(4):129. doi: 10.1007/s00203-023-03477-0.
Since the first report in 2009, at least ten additional viruses have been identified and assigned to the proposed virus family Alternaviridae. Here we report two new mycoviruses tentatively assigned to this family, both identified as members of the fungal family Nectriaceae, which were isolated from surface-disinfected apple roots (Malus x domestica, Borkh.) affected by apple replant disease (ARD). ARD is a highly complex, worldwide-occurring disease resulting from plant reactions to a disturbed (micro)-biome and leads to high economic losses every year. The first alternavirus characterized in this study was identified in a Dactylonectria torresensis isolate. The virus was tentatively named dactylonectria torresensis alternavirus 1 (DtAV1) as the first member of the proposed new species Alternavirus dactylonectriae. The second virus was identified in an isolate of Ilyonectria robusta and was tentatively named ilyonectria robusta alternavirus 1 (IrAV1) as the first member of the proposed new species Alternavirus ilyonectriae. Full genomic sequences of the viruses were determined and are presented. Further, we found hints for putative components of a methyl transferase machinery using in silico approaches. This putative protein domain is encoded by segment 2. However, this result only establishes the basis for subsequent studies in which the function must be confirmed experimentally in vitro. Thus, this is the first study where a function is predicted to all three genomic segments within the group of the alternaviruses. These findings provide further insights into the virome of ARD-associated fungi and are therefore another brick in the wall of understanding the complexity of the disease.
自 2009 年首次报告以来,至少又有十种病毒被鉴定并被分配到拟议的病毒科 Alternaviridae。在这里,我们报告了两种新的真菌病毒,暂时被分配到这个家族,它们都是从受苹果再植病(ARD)影响的表面消毒苹果根(Malus x domestica,Borkh.)中分离出来的真菌科 Nectriaceae 的成员。ARD 是一种高度复杂的、全球性的疾病,是由植物对受干扰的(微生物)生物群落的反应引起的,每年都会导致巨大的经济损失。本研究中首次表征的 alternaviridae 病毒是在 Dactylonectria torresensis 分离物中发现的。该病毒被暂时命名为 dactylonectria torresensis alternavirus 1(DtAV1),作为拟议的新种 Alternavirus dactylonectriae 的第一个成员。第二种病毒是在 Ilyonectria robusta 的一个分离物中鉴定出来的,被暂时命名为 ilyonectria robusta alternavirus 1(IrAV1),作为拟议的新种 Alternavirus ilyonectriae 的第一个成员。病毒的全长基因组序列已被确定并呈现出来。此外,我们使用计算机方法找到了推测的甲基转移酶机制的组成部分的线索。该推测的蛋白结构域由片段 2 编码。然而,这一结果仅为随后的研究奠定了基础,在这些研究中,功能必须在体外实验中得到证实。因此,这是第一项对 alternaviruses 组的三个基因组片段都预测功能的研究。这些发现为 ARD 相关真菌的病毒组提供了进一步的认识,因此是理解该疾病复杂性的又一块基石。