Cargando…

Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance

Breeding for disease resistance is the most effective strategy to control diseases, particularly with broad‐spectrum disease resistance in many crops. However, knowledge on genes and mechanism of broad‐spectrum resistance and trade‐off between defence and growth in crops is limited. Here, we show th...

Descripción completa

Detalles Bibliográficos
Autores principales: Yin, Xin, Zou, Baohong, Hong, Xuexue, Gao, Mingjun, Yang, Weibing, Zhong, Xiangbin, He, Yang, Kuai, Peng, Lou, Yonggen, Huang, Jirong, Hua, Jian, He, Zuhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6041448/
https://www.ncbi.nlm.nih.gov/pubmed/29356349
http://dx.doi.org/10.1111/pbi.12890
_version_ 1783338998613147648
author Yin, Xin
Zou, Baohong
Hong, Xuexue
Gao, Mingjun
Yang, Weibing
Zhong, Xiangbin
He, Yang
Kuai, Peng
Lou, Yonggen
Huang, Jirong
Hua, Jian
He, Zuhua
author_facet Yin, Xin
Zou, Baohong
Hong, Xuexue
Gao, Mingjun
Yang, Weibing
Zhong, Xiangbin
He, Yang
Kuai, Peng
Lou, Yonggen
Huang, Jirong
Hua, Jian
He, Zuhua
author_sort Yin, Xin
collection PubMed
description Breeding for disease resistance is the most effective strategy to control diseases, particularly with broad‐spectrum disease resistance in many crops. However, knowledge on genes and mechanism of broad‐spectrum resistance and trade‐off between defence and growth in crops is limited. Here, we show that the rice copine genes OsBON1 and OsBON3 are critical suppressors of immunity. Both OsBON1 and OsBON3 changed their protein subcellular localization upon pathogen challenge. Knockdown of OsBON1 and dominant negative mutant of OsBON3 each enhanced resistance to rice bacterial and fungal pathogens with either hemibiotrophic or necrotrophic lifestyles. The defence activation in OsBON1 knockdown mutants was associated with reduced growth, both of which were largely suppressed under high temperature. In contrast, overexpression of OsBON1 or OsBON3 decreased disease resistance and promoted plant growth. However, neither OsBON1 nor OsBON3 could rescue the dwarf phenotype of the Arabidopsis BON1 knockout mutant, suggesting a divergence of the rice and Arabidopsis copine genes. Our study therefore shows that the rice copine genes play a negative role in regulating disease resistance and their expression level and protein location likely have a large impact on the balance between immunity and agronomic traits.
format Online
Article
Text
id pubmed-6041448
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-60414482018-07-15 Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance Yin, Xin Zou, Baohong Hong, Xuexue Gao, Mingjun Yang, Weibing Zhong, Xiangbin He, Yang Kuai, Peng Lou, Yonggen Huang, Jirong Hua, Jian He, Zuhua Plant Biotechnol J Research Articles Breeding for disease resistance is the most effective strategy to control diseases, particularly with broad‐spectrum disease resistance in many crops. However, knowledge on genes and mechanism of broad‐spectrum resistance and trade‐off between defence and growth in crops is limited. Here, we show that the rice copine genes OsBON1 and OsBON3 are critical suppressors of immunity. Both OsBON1 and OsBON3 changed their protein subcellular localization upon pathogen challenge. Knockdown of OsBON1 and dominant negative mutant of OsBON3 each enhanced resistance to rice bacterial and fungal pathogens with either hemibiotrophic or necrotrophic lifestyles. The defence activation in OsBON1 knockdown mutants was associated with reduced growth, both of which were largely suppressed under high temperature. In contrast, overexpression of OsBON1 or OsBON3 decreased disease resistance and promoted plant growth. However, neither OsBON1 nor OsBON3 could rescue the dwarf phenotype of the Arabidopsis BON1 knockout mutant, suggesting a divergence of the rice and Arabidopsis copine genes. Our study therefore shows that the rice copine genes play a negative role in regulating disease resistance and their expression level and protein location likely have a large impact on the balance between immunity and agronomic traits. John Wiley and Sons Inc. 2018-02-25 2018-08 /pmc/articles/PMC6041448/ /pubmed/29356349 http://dx.doi.org/10.1111/pbi.12890 Text en © 2018 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Yin, Xin
Zou, Baohong
Hong, Xuexue
Gao, Mingjun
Yang, Weibing
Zhong, Xiangbin
He, Yang
Kuai, Peng
Lou, Yonggen
Huang, Jirong
Hua, Jian
He, Zuhua
Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title_full Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title_fullStr Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title_full_unstemmed Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title_short Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance
title_sort rice copine genes osbon1 and osbon3 function as suppressors of broad‐spectrum disease resistance
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6041448/
https://www.ncbi.nlm.nih.gov/pubmed/29356349
http://dx.doi.org/10.1111/pbi.12890
work_keys_str_mv AT yinxin ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT zoubaohong ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT hongxuexue ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT gaomingjun ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT yangweibing ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT zhongxiangbin ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT heyang ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT kuaipeng ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT louyonggen ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT huangjirong ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT huajian ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance
AT hezuhua ricecopinegenesosbon1andosbon3functionassuppressorsofbroadspectrumdiseaseresistance