Content area

Abstract

Key message

Robust RNAi-mediated resistance to multiplePotyvirus strains and isolates, but not to Secovirus BPMV, was conferred by expressing a short SMVP3 hairpin in soybean plants.

Engineering resistance to multiple Potyvirus strains is of great interest because of a wide variability of the virus strains, and mixed infections of multiple viruses or strains commonly associated with field grown soybean. In this study, RNAi-mediated silencing of the soybean mosaic virus (SMV) P3 cistron, which is reported to participate in virus movements and pathogenesis and to be the putative determinant of SMV virulence, was used to induce resistance to multiple Potyvirus strains and isolates in soybean. A 302 bp inverted repeat (IR) of the P3 cistron, isolated from the SMV strain SC3, was introduced into soybean. The transgenic lines exhibited stable and enhanced resistance to SMV SC3 under field conditions over 3 consecutive years. The transgenic lines also showed significantly enhanced resistance to four other SMV strains (SC7, SC15, SC18, and SMV-R, a novel recombinant found in China), the soybean-infecting bean common mosaic virus (BCMV) and watermelon mosaic virus (WMV). Nevertheless, no significant differences were found between transgenic plants and their non-transformed (NT) counterparts in terms of resistance to bean pod mottle virus (BPMV, Secoviridae). Consistent with the results of resistance evaluations, the expression of the respective viral CP cistrons and virus accumulation were significantly lower in seven Potyvirus strains and isolates than in the NT plants, but not in BCMV-inoculated transgenic lines. The results demonstrate the effectiveness of engineering resistance to multiple Potyvirus strains and isolates via RNAi-mediated SMV P3 cistron silencing, and thus provide an effective control strategy against Potyvirus infections in soybean and other crops.

Details

Title
RNAi-mediated SMV P3 cistron silencing confers significantly enhanced resistance to multiple Potyvirus strains and isolates in transgenic soybean
Author
Yang, Xiangdong 1 ; Niu, Lu 1 ; Zhang, Wei 1 ; Yang, Jing 1 ; Xing, Guojie 1 ; He, Hongli 1 ; Guo, Dongquan 1 ; Du, Qian 1 ; Qian, Xueyan 1 ; Yao, Yao 1 ; Li, Qiyun 1 ; Dong, Yingshan 1 

 Jilin Provincial Key Laboratory of Agricultural Biotechnology, Jilin Academy of Agricultural Sciences, Changchun, China 
Pages
103-114
Publication year
2018
Publication date
Jan 2018
Publisher
Springer Nature B.V.
ISSN
07217714
e-ISSN
1432203X
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1985830292
Copyright
Plant Cell Reports is a copyright of Springer, (2017). All Rights Reserved.