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低温及其卫星RNA共感染导致甜菜黑色焦枯病毒变体致病性增强

Improved Pathogenicity of a Beet Black Scorch Virus Variant by Low Temperature and Co-infection with Its Satellite RNA.

作者信息

Xu Jin, Liu Deshui, Zhang Yongliang, Wang Ying, Han Chenggui, Li Dawei, Yu Jia-Lin, Wang Xian-Bing

机构信息

State Key Laboratory of Agro-Biotechnology, China Agricultural UniversityBeijing, China; Key Laboratory of Pollinating Insect Biology, Ministry of Agriculture, Institute of Apicultural Research, Chinese Academy of Agricultural SciencesBeijing, China.

State Key Laboratory of Agro-Biotechnology, China Agricultural University Beijing, China.

出版信息

Front Microbiol. 2016 Nov 4;7:1771. doi: 10.3389/fmicb.2016.01771. eCollection 2016.

Abstract

Co-infection of none-coding satellite RNAs (sat-RNAs) usually inhibits replication and attenuates disease symptoms of helper viruses. However, we find that the sat-RNA of (BBSV) and low temperature (18°C) additively enhance the systemic infection of BBSV in . Northern blotting hybridization revealed a relatively reduced accumulation of BBSV-derived small interfering RNAs (siRNAs) in presence of sat-RNA as compared to that of BBSV alone. Cloning and sequencing of total small RNAs showed that more than 50% of the total small RNAs sequenced from BBSV-infected plants were BBSV-siRNAs, whereas the abundance of sat-siRNAs were higher than BBSV-siRNAs in the sat-RNA co-infected plants, indicating that the sat-RNA occupies most of the silencing components and possibly relieves the RNA silencing-mediated defense against BBSV. Interestingly, the 5' termini of siRNAs derived from BBSV and sat-RNA were dominated by Uridines (U) and Adenines (A), respectively. Besides, the infection of BBSV alone and with sat-RNA induce down-regulation of miR168 and miR403, respectively, which leads to high accumulation of their targets, () and . Our work reveals the profiles of siRNAs of BBSV and sat-RNA and provides an additional clue to investigate the complicated interaction between the helper virus and sat-RNA.

摘要

非编码卫星RNA(sat-RNAs)的共感染通常会抑制辅助病毒的复制并减轻其病害症状。然而,我们发现(蚕豆萎蔫病毒BBSV)的卫星RNA与低温(18°C)协同增强了BBSV在(蚕豆)中的系统感染。Northern印迹杂交显示,与单独感染BBSV相比,在存在卫星RNA的情况下,BBSV衍生的小干扰RNA(siRNAs)积累相对减少。对总小RNA进行克隆和测序表明,从感染BBSV的植物中测序得到的总小RNA中,超过50%是BBSV-siRNAs,而在卫星RNA共感染的植物中,卫星siRNAs的丰度高于BBSV-siRNAs,这表明卫星RNA占据了大部分沉默组分,并可能减轻了RNA沉默介导的对BBSV的防御。有趣的是,源自BBSV和卫星RNA的siRNAs的5'末端分别以尿嘧啶(U)和腺嘌呤(A)为主。此外,单独感染BBSV和与卫星RNA共同感染分别诱导了miR168和miR403的下调,这导致了它们的靶标(AGO1)和(未知基因)的高积累。我们的工作揭示了BBSV和卫星RNA的siRNAs概况,并为研究辅助病毒与卫星RNA之间复杂的相互作用提供了额外线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5352/5095503/9c511ecbced0/fmicb-07-01771-g0001.jpg

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