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在苹果园中白绢根腐病菌Rosellinia necatrix 中出现类似真菌病毒的双链 RNA。

Appearance of mycovirus-like double-stranded RNAs in the white root rot fungus, Rosellinia necatrix, in an apple orchard.

机构信息

Institute of Fruit Tree Science, National Agriculture and Food Research Organization (NARO), Iwate, Japan.

出版信息

FEMS Microbiol Ecol. 2013 Jan;83(1):49-62. doi: 10.1111/j.1574-6941.2012.01454.x. Epub 2012 Aug 14.

Abstract

In general, mycoviruses are transmitted through hyphal anastomosis between vegetatively compatible strains of the same fungi, and their entire intracellular life cycle within host fungi limits transmission to separate species and even to incompatible strains belonging to the same species. Based on field observations of the white root rot fungus, Rosellinia necatrix, we found two interesting phenomena concerning mycovirus epidemiology. Specifically, apple trees in an orchard were inoculated with one or two R. necatrix strains that belonged to different mycelial compatibility groups (MCGs), strains W563 (virus-free, MCG139) and NW10 (carrying a mycovirus-like double-stranded (ds) RNA element (N10), MCG442). Forty-two sub-isolates of R. necatrix, which were retrieved 2-3 years later, were all genetically identical to W563 or NW10: however, 22 of the sub-isolates contained novel dsRNAs. Six novel dsRNAs (S1-S6) were isolated: S1 was a new victorivirus; S2, S3, and S4 were new partitiviruses; and S5 and S6 were novel viruses that could not be assigned to any known mycovirus family. N10 dsRNA was detected in three W563 sub-isolates. These findings indicated that novel mycoviruses, from an unknown source, were infecting strains W563 and NW10 of R. necatrix in the soil, and that N10 dsRNA was being transmitted between incompatible strains, NW10 to W563.

摘要

一般来说,真菌病毒通过相同真菌的营养体亲和菌株的菌丝融合进行传播,其在宿主真菌中的整个细胞内生命周期限制了它们向不同种属,甚至向同一物种的不亲和菌株的传播。基于对白根腐病菌 Rosellinia necatrix 的野外观察,我们发现了两个关于真菌病毒流行病学的有趣现象。具体来说,果园中的苹果树被接种了属于不同菌丝亲和群(MCG)的一种或两种 Rosellinia necatrix 菌株,菌株 W563(无病毒,MCG139)和 NW10(携带一种类似真菌病毒的双链(ds)RNA 元件(N10),MCG442)。两年或三年后,我们从果园中取回了 42 个 Rosellinia necatrix 的亚分离株,它们都与 W563 或 NW10 完全相同:然而,其中 22 个亚分离株含有新的 dsRNA。我们分离出了六种新的 dsRNA(S1-S6):S1 是一种新的 victorivirus;S2、S3 和 S4 是新的 partitiviruses;S5 和 S6 是新型病毒,无法归入任何已知的真菌病毒科。在三个 W563 亚分离株中检测到了 N10 dsRNA。这些发现表明,来自未知来源的新型真菌病毒正在感染土壤中的 Rosellinia necatrix 的 W563 和 NW10 菌株,并且 N10 dsRNA 正在不亲和菌株之间传播,从 NW10 传播到 W563。

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