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The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores

Rhizopus delemar and associated species attack a wide range of fruit and vegetables after harvest. Host nutrients and acidic pH are required for optimal germination of R. delemar, and we studied how this process is triggered. Glucose induced spore swelling in an acidic environment, expressed by an u...

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Autores principales: Turgeman, Tidhar, Shatil-Cohen, Arava, Moshelion, Menachem, Teper-Bamnolker, Paula, Skory, Christopher D., Lichter, Amnon, Eshel, Dani
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4784744/
https://www.ncbi.nlm.nih.gov/pubmed/26959825
http://dx.doi.org/10.1371/journal.pone.0150543
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author Turgeman, Tidhar
Shatil-Cohen, Arava
Moshelion, Menachem
Teper-Bamnolker, Paula
Skory, Christopher D.
Lichter, Amnon
Eshel, Dani
author_facet Turgeman, Tidhar
Shatil-Cohen, Arava
Moshelion, Menachem
Teper-Bamnolker, Paula
Skory, Christopher D.
Lichter, Amnon
Eshel, Dani
author_sort Turgeman, Tidhar
collection PubMed
description Rhizopus delemar and associated species attack a wide range of fruit and vegetables after harvest. Host nutrients and acidic pH are required for optimal germination of R. delemar, and we studied how this process is triggered. Glucose induced spore swelling in an acidic environment, expressed by an up to 3-fold increase in spore diameter, whereas spore diameter was smaller in a neutral environment. When suspended in an acidic environment, the spores started to float, indicating a change in their density. Treatment of the spores with HgCl(2), an aquaporin blocker, prevented floating and inhibited spore swelling and germ-tube emergence, indicating the importance of water uptake at the early stages of germination. Two putative candidate aquaporin-encoding genes—RdAQP1 and RdAQP2—were identified in the R. delemar genome. Both presented the conserved NPA motif and six-transmembrane domain topology. Expressing RdAQP1 and RdAQP2 in Arabidopsis protoplasts increased the cells' osmotic water permeability coefficient (P(f)) compared to controls, indicating their role as water channels. A decrease in R. delemar aquaporin activity with increasing external pH suggested pH regulation of these proteins. Substitution of two histidine (His) residues, positioned on two loops facing the outer side of the cell, with alanine eliminated the pH sensing resulting in similar P(f) values under acidic and basic conditions. Since hydration is critical for spore switching from the resting to activate state, we suggest that pH regulation of the aquaporins can regulate the initial phase of R. delemar spore germination, followed by germ-tube elongation and host-tissue infection.
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spelling pubmed-47847442016-03-23 The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores Turgeman, Tidhar Shatil-Cohen, Arava Moshelion, Menachem Teper-Bamnolker, Paula Skory, Christopher D. Lichter, Amnon Eshel, Dani PLoS One Research Article Rhizopus delemar and associated species attack a wide range of fruit and vegetables after harvest. Host nutrients and acidic pH are required for optimal germination of R. delemar, and we studied how this process is triggered. Glucose induced spore swelling in an acidic environment, expressed by an up to 3-fold increase in spore diameter, whereas spore diameter was smaller in a neutral environment. When suspended in an acidic environment, the spores started to float, indicating a change in their density. Treatment of the spores with HgCl(2), an aquaporin blocker, prevented floating and inhibited spore swelling and germ-tube emergence, indicating the importance of water uptake at the early stages of germination. Two putative candidate aquaporin-encoding genes—RdAQP1 and RdAQP2—were identified in the R. delemar genome. Both presented the conserved NPA motif and six-transmembrane domain topology. Expressing RdAQP1 and RdAQP2 in Arabidopsis protoplasts increased the cells' osmotic water permeability coefficient (P(f)) compared to controls, indicating their role as water channels. A decrease in R. delemar aquaporin activity with increasing external pH suggested pH regulation of these proteins. Substitution of two histidine (His) residues, positioned on two loops facing the outer side of the cell, with alanine eliminated the pH sensing resulting in similar P(f) values under acidic and basic conditions. Since hydration is critical for spore switching from the resting to activate state, we suggest that pH regulation of the aquaporins can regulate the initial phase of R. delemar spore germination, followed by germ-tube elongation and host-tissue infection. Public Library of Science 2016-03-09 /pmc/articles/PMC4784744/ /pubmed/26959825 http://dx.doi.org/10.1371/journal.pone.0150543 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Turgeman, Tidhar
Shatil-Cohen, Arava
Moshelion, Menachem
Teper-Bamnolker, Paula
Skory, Christopher D.
Lichter, Amnon
Eshel, Dani
The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title_full The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title_fullStr The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title_full_unstemmed The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title_short The Role of Aquaporins in pH-Dependent Germination of Rhizopus delemar Spores
title_sort role of aquaporins in ph-dependent germination of rhizopus delemar spores
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4784744/
https://www.ncbi.nlm.nih.gov/pubmed/26959825
http://dx.doi.org/10.1371/journal.pone.0150543
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