Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1

Plant-mediated interactions between plant viruses and their vectors are important determinants of the population dynamics of both types of organisms in the field. The whitefly Bemisia tabaci can establish mutualism with begomoviruses via their shared host plants. This mutualism is achieved by the in...

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Main Authors: Chi Zou, Yan-Ni Shu, Jing-Jing Yang, Li-Long Pan, Jing Zhao, Na Chen, Shu-Sheng Liu, Xiao-Wei Wang
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-08-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fpls.2020.574557/full
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spelling doaj-49e0c5f24e154259adf55a33b0e937442020-11-25T03:54:54ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2020-08-011110.3389/fpls.2020.574557574557Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1Chi ZouYan-Ni ShuJing-Jing YangLi-Long PanJing ZhaoNa ChenShu-Sheng LiuXiao-Wei WangPlant-mediated interactions between plant viruses and their vectors are important determinants of the population dynamics of both types of organisms in the field. The whitefly Bemisia tabaci can establish mutualism with begomoviruses via their shared host plants. This mutualism is achieved by the interaction between virulence factors and their host proteins. While the virulence factor βC1 encoded by tomato yellow leaf curl China betasatellite (TYLCCNB), a subviral agent associated to the begomovirus tomato yellow leaf curl China virus (TYLCCNV), may interact with plant protein MYC2, thereby establishing the indirect mutualism between TYLCCNV and whitefly, whether other mechanisms are involved remains unknown. Here, we found the in vitro and in vivo interactions between βC1 and tobacco protein S-phase kinase associated protein 1 (NtSKP1). Silencing the expression of NtSKP1 enhanced the survival rate and fecundity of whiteflies on tobacco plants. NtSKP1 could activate the transcription of genes in jasmonic acid (JA) pathways by impairing the stabilization of JAZ1 protein. Moreover, βC1-NtSKP1 interaction could interfere JAZ1 degradation and attenuate the plant JA defense responses. These results revealed a novel mechanism underlying the better performance of whiteflies on TYLCCNV/TYLCCNB-infected plants.https://www.frontiersin.org/article/10.3389/fpls.2020.574557/fulltripartite interactiontomato yellow leaf curl China virus/tomato yellow leaf curl China betasatelliteβC1whiteflyplant defense response
collection DOAJ
language English
format Article
sources DOAJ
author Chi Zou
Yan-Ni Shu
Jing-Jing Yang
Li-Long Pan
Jing Zhao
Na Chen
Shu-Sheng Liu
Xiao-Wei Wang
spellingShingle Chi Zou
Yan-Ni Shu
Jing-Jing Yang
Li-Long Pan
Jing Zhao
Na Chen
Shu-Sheng Liu
Xiao-Wei Wang
Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
Frontiers in Plant Science
tripartite interaction
tomato yellow leaf curl China virus/tomato yellow leaf curl China betasatellite
βC1
whitefly
plant defense response
author_facet Chi Zou
Yan-Ni Shu
Jing-Jing Yang
Li-Long Pan
Jing Zhao
Na Chen
Shu-Sheng Liu
Xiao-Wei Wang
author_sort Chi Zou
title Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
title_short Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
title_full Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
title_fullStr Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
title_full_unstemmed Begomovirus-Associated Betasatellite Virulence Factor βC1 Attenuates Tobacco Defense to Whiteflies via Interacting With Plant SKP1
title_sort begomovirus-associated betasatellite virulence factor βc1 attenuates tobacco defense to whiteflies via interacting with plant skp1
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2020-08-01
description Plant-mediated interactions between plant viruses and their vectors are important determinants of the population dynamics of both types of organisms in the field. The whitefly Bemisia tabaci can establish mutualism with begomoviruses via their shared host plants. This mutualism is achieved by the interaction between virulence factors and their host proteins. While the virulence factor βC1 encoded by tomato yellow leaf curl China betasatellite (TYLCCNB), a subviral agent associated to the begomovirus tomato yellow leaf curl China virus (TYLCCNV), may interact with plant protein MYC2, thereby establishing the indirect mutualism between TYLCCNV and whitefly, whether other mechanisms are involved remains unknown. Here, we found the in vitro and in vivo interactions between βC1 and tobacco protein S-phase kinase associated protein 1 (NtSKP1). Silencing the expression of NtSKP1 enhanced the survival rate and fecundity of whiteflies on tobacco plants. NtSKP1 could activate the transcription of genes in jasmonic acid (JA) pathways by impairing the stabilization of JAZ1 protein. Moreover, βC1-NtSKP1 interaction could interfere JAZ1 degradation and attenuate the plant JA defense responses. These results revealed a novel mechanism underlying the better performance of whiteflies on TYLCCNV/TYLCCNB-infected plants.
topic tripartite interaction
tomato yellow leaf curl China virus/tomato yellow leaf curl China betasatellite
βC1
whitefly
plant defense response
url https://www.frontiersin.org/article/10.3389/fpls.2020.574557/full
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