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An Atypical Thioredoxin Imparts Early Resistance to Sugarcane Mosaic Virus in Maize
Molecular Plant
  • Qingqing Liu, China Agricultural University
  • Huanhuan Liu, China Agricultural University
  • Yangqing Gong, China Agricultural University
  • Yongfu Tao, China Agricultural University
  • Lu Jiang, China Agricultural University
  • Weiliang Zuo, China Agricultural University
  • Qin Yang, China Agricultural University
  • Jianrong Ye, China Agricultural University
  • Jinsheng Lai, China Agricultural University
  • Jianyu Wu, Henan Agriculture University
  • Thomas Lubberstedt, Iowa State University
  • Mingliang Xu, China Agricultural University
Document Type
Article
Publication Version
Accepted Manuscript
Publication Date
3-6-2017
DOI
10.1016/j.molp.2017.02.002
Abstract

Sugarcane mosaic virus (SCMV) causes substantial losses of grain yield and forage biomass in susceptible maize worldwide. A major quantitative trait locus, Scmv1, has been identified to impart strong resistance to SCMV at the early infection stage. Here, we demonstrate that ZmTrxh, encoding an atypical h-type thioredoxin, is the causal gene at Scmv1, and that its transcript abundance correlated strongly with maize resistance to SCMV. ZmTrxh alleles, whether they are resistant or susceptible, share the identical coding/proximal promoter regions, but vary in the upstream regulatory regions. ZmTrxh lacks two canonical cysteines in the thioredoxin active-site motif and exists uniquely in the maize genome. Because of this, ZmTrxh is unable to reduce disulfide bridges but possesses a strong molecular chaperone-like activity. ZmTrxh is dispersed in maize cytoplasm to suppress SCMV viral RNA accumulation. Moreover, ZmTrxh-mediated maize resistance to SCMV showed no obvious correlation with the salicylic acid- and jasmonic acid-related defense signaling pathways. Taken together, our results indicate that ZmTrxh exhibits a distinct defense profile in maize resistance to SCMV, differing from previously characterized dominant or recessive potyvirus resistance genes.

Comments

This is a manuscript published as Liu, Qingqing, Huanhuan Liu, Yangqing Gong, Yongfu Tao, Lu Jiang, Weiliang Zuo, Qin Yang et al. "An atypical thioredoxin imparts early resistance to Sugarcane Mosaic Virus in Maize." Molecular Plant 10, no. 3 (2017): 483-497. doi: 10.1016/j.molp.2017.02.002. Posted with permission.

Copyright Owner
Springer Verlag
Language
en
File Format
application/pdf
Citation Information
Qingqing Liu, Huanhuan Liu, Yangqing Gong, Yongfu Tao, et al.. "An Atypical Thioredoxin Imparts Early Resistance to Sugarcane Mosaic Virus in Maize" Molecular Plant Vol. 10 Iss. 3 (2017) p. 483 - 497
Available at: http://works.bepress.com/thomas-lubberstedt/52/