Cargando…

Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1

Steady-state SUMOylome of a plant is adjusted locally during developmental transitions and more globally during stress exposures. We recently reported that basal immunity in Arabidopsis thaliana against Pseudomonas syringae pv tomato strain DC3000 (PstDC3000) is associated with strong enhancements i...

Descripción completa

Detalles Bibliográficos
Autores principales: Kasera, Mritunjay, Ingole, Kishor D., Rampuria, Sakshi, Walia, Yashika, Gassmann, Walter, Bhattacharjee, Saikat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8514785/
https://www.ncbi.nlm.nih.gov/pubmed/34660568
http://dx.doi.org/10.3389/fcell.2021.680760
_version_ 1784583470631092224
author Kasera, Mritunjay
Ingole, Kishor D.
Rampuria, Sakshi
Walia, Yashika
Gassmann, Walter
Bhattacharjee, Saikat
author_facet Kasera, Mritunjay
Ingole, Kishor D.
Rampuria, Sakshi
Walia, Yashika
Gassmann, Walter
Bhattacharjee, Saikat
author_sort Kasera, Mritunjay
collection PubMed
description Steady-state SUMOylome of a plant is adjusted locally during developmental transitions and more globally during stress exposures. We recently reported that basal immunity in Arabidopsis thaliana against Pseudomonas syringae pv tomato strain DC3000 (PstDC3000) is associated with strong enhancements in the net SUMOylome. Transcriptional upregulations of SUMO conjugases, suppression of protease, and increased SUMO translations accounted for this enhanced SUMOylation. Antagonistic roles of SUMO1/2 and SUMO3 isoforms further fine-tuned the SUMOylome adjustments, thus impacting defense amplitudes and immune outcomes. Loss of function of SUPPRESSOR OF rps4-RLD1 (SRFR1), a previously reported negative regulator of basal defenses, also caused constitutive increments in global SUMO-conjugates through similar modes. These suggest that SRFR1 plays a pivotal role in maintenance of SUMOylation homeostasis and its dynamic changes during immune elicitations. Here, we demonstrate that SRFR1 degradation kinetically precedes and likely provides the salicylic acid (SA) elevations necessary for the SUMOylome increments in basal defenses. We show that SRFR1 not only is a SUMOylation substrate but also interacts in planta with both SUMO1 and SUMO3. In sum1 or sum3 mutants, SRFR1 stabilities are reduced albeit by different modes. Whereas a srfr1 sum1 combination is lethal, the srfr1 sum3 plants retain developmental defects and enhanced immunity of the srfr1 parent. Together with increasing evidence of SUMOs self-regulating biochemical efficiencies of SUMOylation-machinery, we present their impositions on SRFR1 expression that in turn counter-modulates the SUMOylome. Overall, our investigations reveal multifaceted dynamics of regulated SUMOylome changes via SRFR1 in defense-developmental balance.
format Online
Article
Text
id pubmed-8514785
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-85147852021-10-15 Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1 Kasera, Mritunjay Ingole, Kishor D. Rampuria, Sakshi Walia, Yashika Gassmann, Walter Bhattacharjee, Saikat Front Cell Dev Biol Cell and Developmental Biology Steady-state SUMOylome of a plant is adjusted locally during developmental transitions and more globally during stress exposures. We recently reported that basal immunity in Arabidopsis thaliana against Pseudomonas syringae pv tomato strain DC3000 (PstDC3000) is associated with strong enhancements in the net SUMOylome. Transcriptional upregulations of SUMO conjugases, suppression of protease, and increased SUMO translations accounted for this enhanced SUMOylation. Antagonistic roles of SUMO1/2 and SUMO3 isoforms further fine-tuned the SUMOylome adjustments, thus impacting defense amplitudes and immune outcomes. Loss of function of SUPPRESSOR OF rps4-RLD1 (SRFR1), a previously reported negative regulator of basal defenses, also caused constitutive increments in global SUMO-conjugates through similar modes. These suggest that SRFR1 plays a pivotal role in maintenance of SUMOylation homeostasis and its dynamic changes during immune elicitations. Here, we demonstrate that SRFR1 degradation kinetically precedes and likely provides the salicylic acid (SA) elevations necessary for the SUMOylome increments in basal defenses. We show that SRFR1 not only is a SUMOylation substrate but also interacts in planta with both SUMO1 and SUMO3. In sum1 or sum3 mutants, SRFR1 stabilities are reduced albeit by different modes. Whereas a srfr1 sum1 combination is lethal, the srfr1 sum3 plants retain developmental defects and enhanced immunity of the srfr1 parent. Together with increasing evidence of SUMOs self-regulating biochemical efficiencies of SUMOylation-machinery, we present their impositions on SRFR1 expression that in turn counter-modulates the SUMOylome. Overall, our investigations reveal multifaceted dynamics of regulated SUMOylome changes via SRFR1 in defense-developmental balance. Frontiers Media S.A. 2021-09-30 /pmc/articles/PMC8514785/ /pubmed/34660568 http://dx.doi.org/10.3389/fcell.2021.680760 Text en Copyright © 2021 Kasera, Ingole, Rampuria, Walia, Gassmann and Bhattacharjee. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Kasera, Mritunjay
Ingole, Kishor D.
Rampuria, Sakshi
Walia, Yashika
Gassmann, Walter
Bhattacharjee, Saikat
Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title_full Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title_fullStr Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title_full_unstemmed Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title_short Global SUMOylome Adjustments in Basal Defenses of Arabidopsis thaliana Involve Complex Interplay Between SMALL-UBIQUITIN LIKE MODIFIERs and the Negative Immune Regulator SUPPRESSOR OF rps4-RLD1
title_sort global sumoylome adjustments in basal defenses of arabidopsis thaliana involve complex interplay between small-ubiquitin like modifiers and the negative immune regulator suppressor of rps4-rld1
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8514785/
https://www.ncbi.nlm.nih.gov/pubmed/34660568
http://dx.doi.org/10.3389/fcell.2021.680760
work_keys_str_mv AT kaseramritunjay globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1
AT ingolekishord globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1
AT rampuriasakshi globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1
AT waliayashika globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1
AT gassmannwalter globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1
AT bhattacharjeesaikat globalsumoylomeadjustmentsinbasaldefensesofarabidopsisthalianainvolvecomplexinterplaybetweensmallubiquitinlikemodifiersandthenegativeimmuneregulatorsuppressorofrps4rld1