Skip to Content
Merck
  • A leafhopper saliva protein mediates horizontal transmission of viral pathogens from insect vectors into rice phloem.

A leafhopper saliva protein mediates horizontal transmission of viral pathogens from insect vectors into rice phloem.

Communications biology (2022-03-06)
Wei Wu, Ge Yi, Xinwei Lv, Qianzhuo Mao, Taiyun Wei
ABSTRACT

Numerous insects transmit viruses together with saliva to plant phloem, but the roles of saliva components remain elusive. Here, we report that calcium-binding protein (CBP), a universal insect saliva protein, is modified to benefit horizontal transmission of a devastating rice reovirus into plant phloem. CBP effectively competes with virus-induced filaments to target and traverse actin-based apical plasmalemma into saliva-stored cavities in salivary glands of leafhopper vector. Thus, the inhibition of CBP expression by viral infection facilitates filament-mediated viral secretion into salivary cavities and then into plant phloem. Furthermore, virus-mediated reduction of CBP secretion causes an increase of cytosolic Ca2+ levels in rice, triggering substantial callose deposition and H2O2 production. Thus, viruliferous vectors encounter stronger feeding barriers, probe more frequently, and secrete more saliva into plants, ultimately enhancing viral transmission. We thus conclude that the inhibition of CBP secretion facilitates viral secretion and increases host defense response to benefit viral transmission.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Rabbit IgG (whole molecule)–Peroxidase antibody produced in goat, affinity isolated antibody
Sigma-Aldrich
Anti-ACTIN-α-1 antibody produced in rabbit, affinity isolated antibody
Sigma-Aldrich
Anti-6-His antibody produced in rabbit, affinity isolated antibody
Sigma-Aldrich
Anti-Glutathione-S-Transferase (GST) antibody, Mouse monoclonal, clone GST-2, purified from hybridoma cell culture