Wang Yaqin, Liu Hui, Wang Zhanqi, Guo Yushuang, Hu Tao, Zhou Xueping
State Key Laboratory of Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou, China.
Key Laboratory of Vector Biology and Pathogen Control of Zhejiang Province, College of Life Sciences, Huzhou University, Huzhou, China.
Front Microbiol. 2022 Aug 16;13:964156. doi: 10.3389/fmicb.2022.964156. eCollection 2022.
Firespike leafroll-associated virus (FLRaV) is a major pathogen associated with firespike () leafroll disease. Phylogenetic analysis showed that FLRaV possesses typical traits of subgroup II members of ampeloviruses, but encodes two additional proteins, P25 and P37. Here, we determined the microfilament localization of P25 protein. Posttranscriptional gene silencing (PTGS) assay showed that both FLRaV P25 and P37 were able to suppress the local and systemic PTGS and FLRaV P25 was capable of suppressing the green fluorescent protein (GFP) gene silencing triggered by both sense RNA-induced PTGS (S-PTGS) and inverted repeat RNA-induced PTGS (IR-PTGS). In contrast, FLRaV P37 was only able to inhibit the GFP silencing triggered by the S-PTGS but not the IR-PTGS. In the transcriptional gene silencing (TGS) assay, only FLRaV P25 was found to be able to reverse established TGS-mediated silencing of GFP in 16-TGS plants. We also found that FLRaV P25 could aggravate the disease symptom and viral titer of potato virus X in . These results suggest that FLRaV P25 and P37 may have crucial roles in overcoming host RNA silencing, which provides key insights into our understanding of the molecular mechanisms underlying FLRaV infection.
烟火树卷叶相关病毒(FLRaV)是一种与烟火树(Clerodendrum inerme)卷叶病相关的主要病原体。系统发育分析表明,FLRaV具有葡萄病毒属II亚组成员的典型特征,但编码另外两种蛋白质,即P25和P37。在此,我们确定了P25蛋白的微丝定位。转录后基因沉默(PTGS)试验表明,FLRaV的P25和P37均能够抑制局部和系统PTGS,并且FLRaV的P25能够抑制由正义RNA诱导的PTGS(S-PTGS)和反向重复RNA诱导的PTGS(IR-PTGS)触发的绿色荧光蛋白(GFP)基因沉默。相比之下,FLRaV的P37仅能够抑制由S-PTGS触发的GFP沉默,而不能抑制IR-PTGS触发的GFP沉默。在转录基因沉默(TGS)试验中,仅发现FLRaV的P25能够逆转16-TGS植物中已建立的TGS介导的GFP沉默。我们还发现,FLRaV的P25可加重本氏烟草中马铃薯X病毒的病害症状和病毒滴度。这些结果表明,FLRaV的P25和P37可能在克服宿主RNA沉默方面具有关键作用,这为我们理解FLRaV感染的分子机制提供了重要见解。