Tran Thi-Ngoc-Bich, Cheng Hao-Wen, Xie Xing-Yun, Raja Joseph A J, Yeh Shyi-Dong
Department of Plant Pathology, National Chung Hsing University, Taichung, Taiwan, R.O.C.
Faculty of Agronomy, Nong Lam University-Ho Chi Minh City, Viet Nam.
Phytopathology. 2023 Aug;113(8):1583-1594. doi: 10.1094/PHYTO-01-23-0019-R. Epub 2023 Oct 1.
The application of attenuated viruses has been widely practiced for protecting crops from infection by related severe strains of the same species. Papaya ringspot virus W-type (PRSV W) and zucchini yellow mosaic virus (ZYMV) devastate cucurbits worldwide. However, the prevailing of these two viruses in cucurbits cannot be prevented by a single protective virus. In this study, we disclosed that co-infection of horn melon plants by two mild strains, PRSV P-type (PRSV P) HA5-1 and ZYMV-ZAC (a previously developed mild mutant of ZYMV) confers concurrent protection against PRSV P and ZYMV. Consequently, mild mutants of PRSV W were created by site-directed mutagenesis through modifications of the pathogenicity motifs FRNK and PD in helper component-protease (HC-Pro). A stable PRSV W mutant WAC (PRSV-WAC) with R181I and D397N mutations in HC-Pro was generated, inducing mild mottling, followed by symptomless recovery in cucurbits. Horn melon plants pre-infected by PRSV-WAC and ZYMV-ZAC showed no apparent interference on viral accumulation with no synergistic effects on symptoms. An agroinfiltration assay of mixed HC-Pros of WAC + ZAC revealed no additive effect of RNA silencing suppression. PRSV-WAC or ZYMV-ZAC alone only antagonized a severe strain of homologous virus, while co-infection with these two mild strains provided complete protection against both PRSV W and ZYMV. Similar results were reproduced in muskmelon and watermelon plants, indicating the feasibility of a two-in-one vaccine for concurrent control of PRSV W and ZYMV in cucurbits.
减毒病毒的应用已广泛用于保护作物免受同一物种相关强毒株的感染。番木瓜环斑病毒W型(PRSV-W)和小西葫芦黄花叶病毒(ZYMV)在全球范围内对葫芦科作物造成严重破坏。然而,单一的保护性病毒无法预防这两种病毒在葫芦科作物中的流行。在本研究中,我们发现用两种温和毒株,即PRSV P型(PRSV-P)HA5-1和ZYMV-ZAC(一种先前开发的ZYMV温和突变体)共同感染角瓜植株,可同时抵御PRSV-P和ZYMV。因此,通过对辅助成分蛋白酶(HC-Pro)中的致病基序FRNK和PD进行修饰,利用定点诱变技术构建了PRSV-W的温和突变体。产生了一种在HC-Pro中具有R181I和D397N突变的稳定PRSV-W突变体WAC(PRSV-WAC),在葫芦科作物中诱导轻度斑驳,随后无症状恢复。预先感染PRSV-WAC和ZYMV-ZAC的角瓜植株对病毒积累没有明显干扰,对症状也没有协同作用。对WAC + ZAC的混合HC-Pro进行的农杆菌浸润试验表明,RNA沉默抑制没有累加效应。单独的PRSV-WAC或ZYMV-ZAC仅能对抗同源病毒的强毒株,而这两种温和毒株共同感染则能完全抵御PRSV-W和ZYMV。在甜瓜和西瓜植株中也得到了类似结果,表明二合一疫苗同时防控葫芦科作物中PRSV-W和ZYMV的可行性。