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GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells

INTRODUCTION: GoSAMTs play a role in the methylation of polysaccharides synthesized by the Golgi. Pectin homogalacturonan (HG) methyl-esterification is essential for the proper function of this polysaccharide in cell walls. In order to better understand the role of GoSAMTs in HG biosynthesis, we ana...

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Autores principales: Parra-Rojas, Juan Pablo, Sepúlveda-Orellana, Pablo, Sanhueza, Dayan, Salinas-Grenet, Hernán, Temple, Henry, Dupree, Paul, Saez-Aguayo, Susana, Orellana, Ariel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9946043/
https://www.ncbi.nlm.nih.gov/pubmed/36844056
http://dx.doi.org/10.3389/fpls.2023.1099573
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author Parra-Rojas, Juan Pablo
Sepúlveda-Orellana, Pablo
Sanhueza, Dayan
Salinas-Grenet, Hernán
Temple, Henry
Dupree, Paul
Saez-Aguayo, Susana
Orellana, Ariel
author_facet Parra-Rojas, Juan Pablo
Sepúlveda-Orellana, Pablo
Sanhueza, Dayan
Salinas-Grenet, Hernán
Temple, Henry
Dupree, Paul
Saez-Aguayo, Susana
Orellana, Ariel
author_sort Parra-Rojas, Juan Pablo
collection PubMed
description INTRODUCTION: GoSAMTs play a role in the methylation of polysaccharides synthesized by the Golgi. Pectin homogalacturonan (HG) methyl-esterification is essential for the proper function of this polysaccharide in cell walls. In order to better understand the role of GoSAMTs in HG biosynthesis, we analyzed mucilage methyl-esterification in gosamt mutants. METHODS: To determine the function of GoSAMT1 and GoSAMT2 in HG methyl-esterification we utilized epidermal cells of seed coats, as these structures produce mucilage, which is a pectic matrix. We evaluated differences in seed surface morphology and quantified mucilage release. We measured methanol release, and used antibodies and confocal microscopy to analyze HG methyl-esterification in mucilage. RESULTS: We observed morphological differences on the seed surface and delayed, uneven mucilage release in gosamt1-1gosamt2-1 double mutants. We also found changes in the distal wall length indicating abnormal cell wall breakage in this double mutant. Using methanol release and immunolabeling, we confirmed that GoSAMT1 and GoSAMT2 are involved in HG methyl-esterification in mucilage. However, we did not find evidence of decreasing HG in the gosamt mutants. Confocal microscopy analyses detected different patterns in the adherent mucilage and a greater number of low-methyl-esterified domains near the seed coat surface, which correlates with a greater number of “egg-box” structures in this region. We also detected a shift in the partitioning between the Rhamnogalacturonan-I soluble and adherent layers of the double mutant, which correlated with increased amounts of arabinose and arabinogalactan-protein in the adherent mucilage. DISCUSSION: The results show that the HG synthesized in gosamt mutant plants is less methyl esterified, resulting in more egg-box structures, which stiffen the cell walls in epidermal cells and change the rheological properties of the seed surface. The increased amounts of arabinose and arabinogalactan-protein in adherent mucilage, also suggests that compensation mechanisms were triggered in the gosamt mutants.
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spelling pubmed-99460432023-02-23 GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells Parra-Rojas, Juan Pablo Sepúlveda-Orellana, Pablo Sanhueza, Dayan Salinas-Grenet, Hernán Temple, Henry Dupree, Paul Saez-Aguayo, Susana Orellana, Ariel Front Plant Sci Plant Science INTRODUCTION: GoSAMTs play a role in the methylation of polysaccharides synthesized by the Golgi. Pectin homogalacturonan (HG) methyl-esterification is essential for the proper function of this polysaccharide in cell walls. In order to better understand the role of GoSAMTs in HG biosynthesis, we analyzed mucilage methyl-esterification in gosamt mutants. METHODS: To determine the function of GoSAMT1 and GoSAMT2 in HG methyl-esterification we utilized epidermal cells of seed coats, as these structures produce mucilage, which is a pectic matrix. We evaluated differences in seed surface morphology and quantified mucilage release. We measured methanol release, and used antibodies and confocal microscopy to analyze HG methyl-esterification in mucilage. RESULTS: We observed morphological differences on the seed surface and delayed, uneven mucilage release in gosamt1-1gosamt2-1 double mutants. We also found changes in the distal wall length indicating abnormal cell wall breakage in this double mutant. Using methanol release and immunolabeling, we confirmed that GoSAMT1 and GoSAMT2 are involved in HG methyl-esterification in mucilage. However, we did not find evidence of decreasing HG in the gosamt mutants. Confocal microscopy analyses detected different patterns in the adherent mucilage and a greater number of low-methyl-esterified domains near the seed coat surface, which correlates with a greater number of “egg-box” structures in this region. We also detected a shift in the partitioning between the Rhamnogalacturonan-I soluble and adherent layers of the double mutant, which correlated with increased amounts of arabinose and arabinogalactan-protein in the adherent mucilage. DISCUSSION: The results show that the HG synthesized in gosamt mutant plants is less methyl esterified, resulting in more egg-box structures, which stiffen the cell walls in epidermal cells and change the rheological properties of the seed surface. The increased amounts of arabinose and arabinogalactan-protein in adherent mucilage, also suggests that compensation mechanisms were triggered in the gosamt mutants. Frontiers Media S.A. 2023-02-08 /pmc/articles/PMC9946043/ /pubmed/36844056 http://dx.doi.org/10.3389/fpls.2023.1099573 Text en Copyright © 2023 Parra-Rojas, Sepúlveda-Orellana, Sanhueza, Salinas-Grenet, Temple, Dupree, Saez-Aguayo and Orellana 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 Plant Science
Parra-Rojas, Juan Pablo
Sepúlveda-Orellana, Pablo
Sanhueza, Dayan
Salinas-Grenet, Hernán
Temple, Henry
Dupree, Paul
Saez-Aguayo, Susana
Orellana, Ariel
GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title_full GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title_fullStr GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title_full_unstemmed GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title_short GoSAMTs are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
title_sort gosamts are required for pectin methyl-esterification and mucilage release in seed coat epidermal cells
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9946043/
https://www.ncbi.nlm.nih.gov/pubmed/36844056
http://dx.doi.org/10.3389/fpls.2023.1099573
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