Connecting Growth and Defense: The Emerging Roles of Brassinosteroids and Gibberellins in Plant Innate Immunity

Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale ‘omics’ technologies and the burgeoning field of plant computational biology, the past few years have witnessed parad...

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Veröffentlicht in:Molecular plant Jg. 7; H. 6; S. 943 - 959
Hauptverfasser: De Bruyne, Lieselotte, Höfte, Monica, De Vleesschauwer, David
Format: Journal Article
Sprache:Englisch
Veröffentlicht: England Elsevier Inc 01.06.2014
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ISSN:1674-2052, 1752-9867, 1752-9867
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Abstract Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale ‘omics’ technologies and the burgeoning field of plant computational biology, the past few years have witnessed paradigm-shifting advances in our understanding of how BRs and GA are perceived and their signals transduced. Accumulating evidence also implicates BR and GA in the coordination and integration of plant immune responses. Similarly to other growth regulators, BR and GA play ambiguous roles in molding pathological outcomes, the effects of which may depend not only on the pathogen’s lifestyle and infection strategy, but also on specialized features of each interaction. Analysis of the underpinning molecular mechanisms points to a crucial role of GA-inhibiting DELLA proteins and the BR-regulated transcription factor BZR1. Acting at the interface of developmental and defense signaling, these proteins likely serve as central hubs for pathway crosstalk and signal integration, allowing appropriate modulation of plant growth and defense in response to various stimuli. In this review, we outline the latest discoveries dealing with BR and GA modulation of plant innate immunity and highlight interactions between BR and GA signaling, plant defense, and microbial virulence.
AbstractList Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale ‘omics’ technologies and the burgeoning field of plant computational biology, the past few years have witnessed paradigm-shifting advances in our understanding of how BRs and GA are perceived and their signals transduced. Accumulating evidence also implicates BR and GA in the coordination and integration of plant immune responses. Similarly to other growth regulators, BR and GA play ambiguous roles in molding pathological outcomes, the effects of which may depend not only on the pathogen’s lifestyle and infection strategy, but also on specialized features of each interaction. Analysis of the underpinning molecular mechanisms points to a crucial role of GA-inhibiting DELLA proteins and the BR-regulated transcription factor BZR1. Acting at the interface of developmental and defense signaling, these proteins likely serve as central hubs for pathway crosstalk and signal integration, allowing appropriate modulation of plant growth and defense in response to various stimuli. In this review, we outline the latest discoveries dealing with BR and GA modulation of plant innate immunity and highlight interactions between BR and GA signaling, plant defense, and microbial virulence.
Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale 'omics' technologies and the burgeoning field of plant computational biology, the past few years have witnessed paradigm-shifting advances in our understanding of how BRs and GA are perceived and their signals transduced. Accumulating evidence also implicates BR and GA in the coordination and integration of plant immune responses. Similarly to other growth regulators, BR and GA play ambiguous roles in molding pathological outcomes, the effects of which may depend not only on the pathogen's lifestyle and infection strategy, but also on specialized features of each interaction. Analysis of the underpinning molecular mechanisms points to a crucial role of GA-inhibiting DELLA proteins and the BR-regulated transcription factor BZR1. Acting at the interface of developmental and defense signaling, these proteins likely serve as central hubs for pathway crosstalk and signal integration, allowing appropriate modulation of plant growth and defense in response to various stimuli. In this review, we outline the latest discoveries dealing with BR and GA modulation of plant innate immunity and highlight interactions between BR and GA signaling, plant defense, and microbial virulence.Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life cycle. Fueled by large-scale 'omics' technologies and the burgeoning field of plant computational biology, the past few years have witnessed paradigm-shifting advances in our understanding of how BRs and GA are perceived and their signals transduced. Accumulating evidence also implicates BR and GA in the coordination and integration of plant immune responses. Similarly to other growth regulators, BR and GA play ambiguous roles in molding pathological outcomes, the effects of which may depend not only on the pathogen's lifestyle and infection strategy, but also on specialized features of each interaction. Analysis of the underpinning molecular mechanisms points to a crucial role of GA-inhibiting DELLA proteins and the BR-regulated transcription factor BZR1. Acting at the interface of developmental and defense signaling, these proteins likely serve as central hubs for pathway crosstalk and signal integration, allowing appropriate modulation of plant growth and defense in response to various stimuli. In this review, we outline the latest discoveries dealing with BR and GA modulation of plant innate immunity and highlight interactions between BR and GA signaling, plant defense, and microbial virulence.
Author De Bruyne, Lieselotte
De Vleesschauwer, David
Höfte, Monica
Author_xml – sequence: 1
  givenname: Lieselotte
  surname: De Bruyne
  fullname: De Bruyne, Lieselotte
– sequence: 2
  givenname: Monica
  surname: Höfte
  fullname: Höfte, Monica
– sequence: 3
  givenname: David
  surname: De Vleesschauwer
  fullname: De Vleesschauwer, David
  email: david.devleesschauwer@ugent.be
BackLink https://www.ncbi.nlm.nih.gov/pubmed/24777987$$D View this record in MEDLINE/PubMed
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ID FETCH-LOGICAL-c463t-52413ae2e1097ebeb42883bba59dea9119fe1bf5a90675885c07d2749a79c2093
ISICitedReferencesCount 209
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ISSN 1674-2052
1752-9867
IngestDate Thu Oct 02 05:43:31 EDT 2025
Sun Nov 09 12:19:09 EST 2025
Wed Feb 19 02:41:55 EST 2025
Sat Nov 29 02:58:11 EST 2025
Tue Nov 18 21:24:03 EST 2025
Fri Feb 23 02:27:16 EST 2024
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 6
Keywords plant growth
pathogen
disease resistance
hormones
defense
Language English
License http://www.elsevier.com/open-access/userlicense/1.0
https://www.elsevier.com/tdm/userlicense/1.0
https://www.elsevier.com/open-access/userlicense/1.0
The Author 2014. Published by the Molecular Plant Shanghai Editorial Office in association with Oxford University Press on behalf of CSPB and IPPE, SIBS, CAS.
LinkModel OpenURL
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content type line 23
OpenAccessLink https://dx.doi.org/10.1093/mp/ssu050
PMID 24777987
PQID 1544742284
PQPubID 23479
PageCount 17
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crossref_primary_10_1093_mp_ssu050
crossref_citationtrail_10_1093_mp_ssu050
elsevier_sciencedirect_doi_10_1093_mp_ssu050
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PublicationDate 2014-06-01
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  year: 2014
  text: 2014-06-01
  day: 01
PublicationDecade 2010
PublicationPlace England
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PublicationTitle Molecular plant
PublicationTitleAlternate Mol Plant
PublicationYear 2014
Publisher Elsevier Inc
Publisher_xml – name: Elsevier Inc
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Song (10.1093/mp/ssu050_cebib109) 2011; 23
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Nahar (10.1093/mp/ssu050_cebib80) 2013; 26
Sarnowska (10.1093/mp/ssu050_cebib98) 2013; 163
Saville (10.1093/mp/ssu050_cebib100) 2012; 63
Spielmeyer (10.1093/mp/ssu050_cebib110) 2002; 99
Li (10.1093/mp/ssu050_cebib72) 2013
Wang (10.1093/mp/ssu050_cebib138) 2011; 470
Kazan (10.1093/mp/ssu050_cebib62) 2012; 17
Shirasu (10.1093/mp/ssu050_cebib107) 1997; 9
Lozano-Durán (10.1093/mp/ssu050_cebib75) 2013; 2
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Snippet Brassinosteroids (BRs) and gibberellins (GAs) are two groups of phytohormones that regulate many common developmental processes throughout the plant life...
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SubjectTerms bioinformatics
brassinosteroids
Brassinosteroids - metabolism
defense
disease resistance
Gene Expression Regulation, Plant - physiology
gibberellins
Gibberellins - metabolism
hormones
immune response
Immunity, Innate - physiology
innate immunity
lifestyle
pathogen
pathogens
plant growth
Plant Growth Regulators - metabolism
plant hormones
transcription (genetics)
transcription factors
virulence
Title Connecting Growth and Defense: The Emerging Roles of Brassinosteroids and Gibberellins in Plant Innate Immunity
URI https://dx.doi.org/10.1093/mp/ssu050
https://www.ncbi.nlm.nih.gov/pubmed/24777987
https://www.proquest.com/docview/1544742284
https://www.proquest.com/docview/2000344178
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