Cargando…

Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride

Trichoderma atroviride responds to various environmental stressors through the mitogen-activated protein kinase (MAPK) Tmk3 and MAPK-kinase Pbs2 signaling pathways. In fungi, orthologues to Tmk3 are regulated by a histidine kinase (HK) sensor. However, the role of T. atroviride HKs remains unknown....

Descripción completa

Detalles Bibliográficos
Autores principales: Calcáneo-Hernández, Gabriela, Landeros-Jaime, Fidel, Cervantes-Chávez, José Antonio, Mendoza-Mendoza, Artemio, Esquivel-Naranjo, Edgardo Ulises
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532544/
https://www.ncbi.nlm.nih.gov/pubmed/37755046
http://dx.doi.org/10.3390/jof9090939
_version_ 1785111985630740480
author Calcáneo-Hernández, Gabriela
Landeros-Jaime, Fidel
Cervantes-Chávez, José Antonio
Mendoza-Mendoza, Artemio
Esquivel-Naranjo, Edgardo Ulises
author_facet Calcáneo-Hernández, Gabriela
Landeros-Jaime, Fidel
Cervantes-Chávez, José Antonio
Mendoza-Mendoza, Artemio
Esquivel-Naranjo, Edgardo Ulises
author_sort Calcáneo-Hernández, Gabriela
collection PubMed
description Trichoderma atroviride responds to various environmental stressors through the mitogen-activated protein kinase (MAPK) Tmk3 and MAPK-kinase Pbs2 signaling pathways. In fungi, orthologues to Tmk3 are regulated by a histidine kinase (HK) sensor. However, the role of T. atroviride HKs remains unknown. In this regard, the function of the T. atroviride HK Nik1 was analyzed in response to stressors regulated by Tmk3. The growth of the Δnik1 mutant strains was compromised under hyperosmotic stress; mycelia were less resistant to lysing enzymes than the WT strain, while conidia of Δnik1 were more sensitive to Congo red; however, ∆pbs2 and ∆tmk3 strains showed a more drastic defect in cell wall stability. Light-regulated blu1 and grg2 gene expression was induced upon an osmotic shock through Pbs2-Tmk3 but was independent of Nik1. The encoding chitin synthases chs1 and chs2 genes were downregulated after an osmotic shock in the WT, but chs1 and chs3 expression were enhanced in ∆nik1, ∆pbs2, and ∆tmk3. The vegetative growth and conidiation by light decreased in ∆nik1, although Nik1 was unrequired to activate the light-responsive genes by Tmk3. Altogether, Nik1 regulates responses related to the Pbs2-Tmk3 pathway and suggests the participation of additional HKs to respond to stress.
format Online
Article
Text
id pubmed-10532544
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105325442023-09-28 Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride Calcáneo-Hernández, Gabriela Landeros-Jaime, Fidel Cervantes-Chávez, José Antonio Mendoza-Mendoza, Artemio Esquivel-Naranjo, Edgardo Ulises J Fungi (Basel) Article Trichoderma atroviride responds to various environmental stressors through the mitogen-activated protein kinase (MAPK) Tmk3 and MAPK-kinase Pbs2 signaling pathways. In fungi, orthologues to Tmk3 are regulated by a histidine kinase (HK) sensor. However, the role of T. atroviride HKs remains unknown. In this regard, the function of the T. atroviride HK Nik1 was analyzed in response to stressors regulated by Tmk3. The growth of the Δnik1 mutant strains was compromised under hyperosmotic stress; mycelia were less resistant to lysing enzymes than the WT strain, while conidia of Δnik1 were more sensitive to Congo red; however, ∆pbs2 and ∆tmk3 strains showed a more drastic defect in cell wall stability. Light-regulated blu1 and grg2 gene expression was induced upon an osmotic shock through Pbs2-Tmk3 but was independent of Nik1. The encoding chitin synthases chs1 and chs2 genes were downregulated after an osmotic shock in the WT, but chs1 and chs3 expression were enhanced in ∆nik1, ∆pbs2, and ∆tmk3. The vegetative growth and conidiation by light decreased in ∆nik1, although Nik1 was unrequired to activate the light-responsive genes by Tmk3. Altogether, Nik1 regulates responses related to the Pbs2-Tmk3 pathway and suggests the participation of additional HKs to respond to stress. MDPI 2023-09-16 /pmc/articles/PMC10532544/ /pubmed/37755046 http://dx.doi.org/10.3390/jof9090939 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
Calcáneo-Hernández, Gabriela
Landeros-Jaime, Fidel
Cervantes-Chávez, José Antonio
Mendoza-Mendoza, Artemio
Esquivel-Naranjo, Edgardo Ulises
Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title_full Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title_fullStr Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title_full_unstemmed Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title_short Osmotic Stress Responses, Cell Wall Integrity, and Conidiation Are Regulated by a Histidine Kinase Sensor in Trichoderma atroviride
title_sort osmotic stress responses, cell wall integrity, and conidiation are regulated by a histidine kinase sensor in trichoderma atroviride
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10532544/
https://www.ncbi.nlm.nih.gov/pubmed/37755046
http://dx.doi.org/10.3390/jof9090939
work_keys_str_mv AT calcaneohernandezgabriela osmoticstressresponsescellwallintegrityandconidiationareregulatedbyahistidinekinasesensorintrichodermaatroviride
AT landerosjaimefidel osmoticstressresponsescellwallintegrityandconidiationareregulatedbyahistidinekinasesensorintrichodermaatroviride
AT cervanteschavezjoseantonio osmoticstressresponsescellwallintegrityandconidiationareregulatedbyahistidinekinasesensorintrichodermaatroviride
AT mendozamendozaartemio osmoticstressresponsescellwallintegrityandconidiationareregulatedbyahistidinekinasesensorintrichodermaatroviride
AT esquivelnaranjoedgardoulises osmoticstressresponsescellwallintegrityandconidiationareregulatedbyahistidinekinasesensorintrichodermaatroviride