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BrYV 和 PEMV-2 的协同感染会增加烟草原生质体中 BrYV 和 BrYV 衍生 siRNA 的积累。

Synergistic infection of BrYV and PEMV 2 increases the accumulations of both BrYV and BrYV-derived siRNAs in Nicotiana benthamiana.

机构信息

State Key Laboratory for Agro-Biotechnology and Ministry of Agriculture Key Laboratory for Plant Pathology, China Agricultural University, Beijing, 100193, P. R. China.

出版信息

Sci Rep. 2017 Mar 27;7:45132. doi: 10.1038/srep45132.

Abstract

Viral synergism is caused by co-infection of two unrelated viruses, leading to more severe symptoms or increased titres of one or both viruses. Synergistic infection of phloem-restricted poleroviruses and umbraviruses has destructive effects on crop plants. The mechanism underlying this synergy remains elusive. In our study, synergism was observed in co-infections of a polerovirus Brassica yellows virus (BrYV) and an umbravirus Pea enation mosaic virus 2 (PEMV 2) on Nicotiana benthamiana, which led to (1) increased titres of BrYV, (2) appearance of severe symptoms, (3) gain of mechanical transmission capacity of BrYV, (4) broader distribution of BrYV to non-vascular tissues. Besides, profiles of virus-derived small interfering RNAs (vsiRNAs) from BrYV and PEMV 2 in singly and doubly infected plants were obtained by small RNA deep sequencing. Our results showed that accumulation of BrYV vsiRNAs increased tremendously and ratio of positive to negative strand BrYV vsiRNAs differed between singly infected and co-infected plants. Positions to which the BrYV vsiRNAs mapped to the viral genome varied considerably during synergistic infection. Moreover, target genes of vsiRNAs were predicted and annotated. Our results revealed the synergistic characteristics during co-infection of BrYV and PEMV 2, and implied possible effects of synergism have on vsiRNAs.

摘要

病毒协同作用是由两种不相关的病毒共同感染引起的,导致一种或两种病毒的症状更严重或滴度增加。韧皮部限制的马铃薯 Y 病毒(BrYV)和 Umbraviruses 协同感染对作物植物具有破坏性影响。这种协同作用的机制仍然难以捉摸。在我们的研究中,在 BrYV 和 Umbravirus Pea enation mosaic virus 2(PEMV 2)对 Nicotiana benthamiana 的共同感染中观察到协同作用,这导致了(1)BrYV 的滴度增加,(2)出现严重症状,(3)BrYV 的机械传播能力获得,(4)BrYV 更广泛地分布到非血管组织。此外,通过小 RNA 深度测序获得了 BrYV 和 PEMV 2 在单感染和双感染植物中的病毒衍生小干扰 RNA(vsiRNA)的图谱。我们的结果表明,BrYV vsiRNAs 的积累量大大增加,并且单感染和共感染植物中 BrYV 正链和负链 vsiRNA 的比例不同。在协同感染期间,vsiRNA 映射到病毒基因组的位置变化很大。此外,预测和注释了 vsiRNA 的靶基因。我们的结果揭示了 BrYV 和 PEMV 2 共感染期间的协同特征,并暗示协同作用可能对 vsiRNA 产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d70c/5366869/54dcd25b995b/srep45132-f1.jpg

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