Cargando…

Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots

The main role of RALF small signaling peptides was reported to be the alkalization control of the apoplast for improvement of nutrient absorption; however, the exact function of individual RALF peptides such as RALF34 remains unknown. The Arabidopsis RALF34 (AtRALF34) peptide was proposed to be part...

Descripción completa

Detalles Bibliográficos
Autores principales: Shumilina, Julia, Kiryushkin, Alexey S., Frolova, Nadezhda, Mashkina, Valeria, Ilina, Elena L., Puchkova, Vera A., Danko, Katerina, Silinskaya, Svetlana, Serebryakov, Evgeny B., Soboleva, Alena, Bilova, Tatiana, Orlova, Anastasia, Guseva, Elizaveta D., Repkin, Egor, Pawlowski, Katharina, Frolov, Andrej, Demchenko, Kirill N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140933/
https://www.ncbi.nlm.nih.gov/pubmed/37108821
http://dx.doi.org/10.3390/ijms24087654
_version_ 1785033271447388160
author Shumilina, Julia
Kiryushkin, Alexey S.
Frolova, Nadezhda
Mashkina, Valeria
Ilina, Elena L.
Puchkova, Vera A.
Danko, Katerina
Silinskaya, Svetlana
Serebryakov, Evgeny B.
Soboleva, Alena
Bilova, Tatiana
Orlova, Anastasia
Guseva, Elizaveta D.
Repkin, Egor
Pawlowski, Katharina
Frolov, Andrej
Demchenko, Kirill N.
author_facet Shumilina, Julia
Kiryushkin, Alexey S.
Frolova, Nadezhda
Mashkina, Valeria
Ilina, Elena L.
Puchkova, Vera A.
Danko, Katerina
Silinskaya, Svetlana
Serebryakov, Evgeny B.
Soboleva, Alena
Bilova, Tatiana
Orlova, Anastasia
Guseva, Elizaveta D.
Repkin, Egor
Pawlowski, Katharina
Frolov, Andrej
Demchenko, Kirill N.
author_sort Shumilina, Julia
collection PubMed
description The main role of RALF small signaling peptides was reported to be the alkalization control of the apoplast for improvement of nutrient absorption; however, the exact function of individual RALF peptides such as RALF34 remains unknown. The Arabidopsis RALF34 (AtRALF34) peptide was proposed to be part of the gene regulatory network of lateral root initiation. Cucumber is an excellent model for studying a special form of lateral root initiation taking place in the meristem of the parental root. We attempted to elucidate the role of the regulatory pathway in which RALF34 is a participant using cucumber transgenic hairy roots overexpressing CsRALF34 for comprehensive, integrated metabolomics and proteomics studies, focusing on the analysis of stress response markers. CsRALF34 overexpression resulted in the inhibition of root growth and regulation of cell proliferation, specifically in blocking the G2/M transition in cucumber roots. Based on these results, we propose that CsRALF34 is not part of the gene regulatory networks involved in the early steps of lateral root initiation. Instead, we suggest that CsRALF34 modulates ROS homeostasis and triggers the controlled production of hydroxyl radicals in root cells, possibly associated with intracellular signal transduction. Altogether, our results support the role of RALF peptides as ROS regulators.
format Online
Article
Text
id pubmed-10140933
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101409332023-04-29 Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots Shumilina, Julia Kiryushkin, Alexey S. Frolova, Nadezhda Mashkina, Valeria Ilina, Elena L. Puchkova, Vera A. Danko, Katerina Silinskaya, Svetlana Serebryakov, Evgeny B. Soboleva, Alena Bilova, Tatiana Orlova, Anastasia Guseva, Elizaveta D. Repkin, Egor Pawlowski, Katharina Frolov, Andrej Demchenko, Kirill N. Int J Mol Sci Article The main role of RALF small signaling peptides was reported to be the alkalization control of the apoplast for improvement of nutrient absorption; however, the exact function of individual RALF peptides such as RALF34 remains unknown. The Arabidopsis RALF34 (AtRALF34) peptide was proposed to be part of the gene regulatory network of lateral root initiation. Cucumber is an excellent model for studying a special form of lateral root initiation taking place in the meristem of the parental root. We attempted to elucidate the role of the regulatory pathway in which RALF34 is a participant using cucumber transgenic hairy roots overexpressing CsRALF34 for comprehensive, integrated metabolomics and proteomics studies, focusing on the analysis of stress response markers. CsRALF34 overexpression resulted in the inhibition of root growth and regulation of cell proliferation, specifically in blocking the G2/M transition in cucumber roots. Based on these results, we propose that CsRALF34 is not part of the gene regulatory networks involved in the early steps of lateral root initiation. Instead, we suggest that CsRALF34 modulates ROS homeostasis and triggers the controlled production of hydroxyl radicals in root cells, possibly associated with intracellular signal transduction. Altogether, our results support the role of RALF peptides as ROS regulators. MDPI 2023-04-21 /pmc/articles/PMC10140933/ /pubmed/37108821 http://dx.doi.org/10.3390/ijms24087654 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shumilina, Julia
Kiryushkin, Alexey S.
Frolova, Nadezhda
Mashkina, Valeria
Ilina, Elena L.
Puchkova, Vera A.
Danko, Katerina
Silinskaya, Svetlana
Serebryakov, Evgeny B.
Soboleva, Alena
Bilova, Tatiana
Orlova, Anastasia
Guseva, Elizaveta D.
Repkin, Egor
Pawlowski, Katharina
Frolov, Andrej
Demchenko, Kirill N.
Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title_full Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title_fullStr Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title_full_unstemmed Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title_short Integrative Proteomics and Metabolomics Analysis Reveals the Role of Small Signaling Peptide Rapid Alkalinization Factor 34 (RALF34) in Cucumber Roots
title_sort integrative proteomics and metabolomics analysis reveals the role of small signaling peptide rapid alkalinization factor 34 (ralf34) in cucumber roots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140933/
https://www.ncbi.nlm.nih.gov/pubmed/37108821
http://dx.doi.org/10.3390/ijms24087654
work_keys_str_mv AT shumilinajulia integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT kiryushkinalexeys integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT frolovanadezhda integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT mashkinavaleria integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT ilinaelenal integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT puchkovaveraa integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT dankokaterina integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT silinskayasvetlana integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT serebryakovevgenyb integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT sobolevaalena integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT bilovatatiana integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT orlovaanastasia integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT gusevaelizavetad integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT repkinegor integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT pawlowskikatharina integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT frolovandrej integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots
AT demchenkokirilln integrativeproteomicsandmetabolomicsanalysisrevealstheroleofsmallsignalingpeptiderapidalkalinizationfactor34ralf34incucumberroots