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Comparative proteomic analysis provides new insight into differential transmission of two begomoviruses by a whitefly | Virology Journal | Full Text

Comparative proteomic analysis provides new insight into differential transmission of two begomoviruses by a whitefly | Virology Journal | Full Text

Virology Journal

Comparative proteomic analysis provides new insight into differential transmission of two begomoviruses by a whitefly

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Contributed equally
Virology Journal201916:32
  • Received: 9 January 2019
  • Accepted: 26 February 2019
  • Published: 

Abstract

Background

Viruses in the genus Begomovirus (Family Geminiviridae) include many important economic plant viruses transmitted by whiteflies of the Bemisia tabaci species complex. In general, different begomoviruses may be acquired and transmitted by the same whitefly species with different efficiencies. For example, the species Mediterranean (MED) in this whitefly species complex transmits tomato yellow leaf curl virus (TYLCV) at a higher efficiency than papaya leaf curl China virus (PaLCuCNV). However, the proteomic responses of whitefly to the infection of different begomoviruses remain largely unknown.

Methods

We used iTRAQ-based proteomics coupled with RT-qPCR to investigate and compare responses of the MED whitefly to the infection of TYLCV and PaLCuCNV.

Results

Totally, 259, 395 and 74 differently expressed proteins (DEPs) were identified in the comparisons of TYLCV-infected vs. un-infected, PaLCuCNV-infected vs. un-infected, and TYLCV-infected vs. PaLCuCNV-infected whiteflies, respectively. These proteins appear associated with catabolic process, metabolic process, transport, defense response, cell cycle, and receptor. The comparisons of TYLCV-infected vs. un-infected and PaLCuCNV-infected vs. un-infected shared some similar DEPs, indicating possible involvement of laminin subunit alpha, dystroglycan, integrin alpha-PS2 and cuticle proteins in viral transport as well as the role of putative defense proteins 3 and PITH in anti-viral response. However, 20S proteasome subunits associated with regulation of virus degradation and accumulation were up-regulated in PaLCuCNV-infected but not in TYLCV-infected whiteflies, which may be related to the constraints of PaLCuCNV accumulation in MED.

Conclusions

These findings provide valuable clues for unravelling the roles of some whitefly proteins in begomovirus transmission.

Keywords

  • Whitefly
  • Begomovirus
  • Virus transmission
  • iTRAQ-based proteomics

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