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Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth

Low-molecular-weight, aspartic-acid-rich proteins (ASP-RICH) have been assumed to be involved in the self-incompatibility process of clementine. The role of ASP-RICH is not known, but hypothetically they could sequester calcium ions (Ca(2+)) and affect Ca(2+)-dependent mechanisms. In this article, w...

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Autores principales: Parrotta, Luigi, Mareri, Lavinia, Aloisi, Iris, Faleri, Claudia, Distefano, Gaetano, Gentile, Alessandra, Lo Piero, Angela Roberta, Kriechbaumer, Verena, Caruso, Marco, Cai, Giampiero, Del Duca, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316813/
https://www.ncbi.nlm.nih.gov/pubmed/35887233
http://dx.doi.org/10.3390/ijms23147880
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author Parrotta, Luigi
Mareri, Lavinia
Aloisi, Iris
Faleri, Claudia
Distefano, Gaetano
Gentile, Alessandra
Lo Piero, Angela Roberta
Kriechbaumer, Verena
Caruso, Marco
Cai, Giampiero
Del Duca, Stefano
author_facet Parrotta, Luigi
Mareri, Lavinia
Aloisi, Iris
Faleri, Claudia
Distefano, Gaetano
Gentile, Alessandra
Lo Piero, Angela Roberta
Kriechbaumer, Verena
Caruso, Marco
Cai, Giampiero
Del Duca, Stefano
author_sort Parrotta, Luigi
collection PubMed
description Low-molecular-weight, aspartic-acid-rich proteins (ASP-RICH) have been assumed to be involved in the self-incompatibility process of clementine. The role of ASP-RICH is not known, but hypothetically they could sequester calcium ions (Ca(2+)) and affect Ca(2+)-dependent mechanisms. In this article, we analyzed the effects induced by clementine ASP-RICH proteins (CcASP-RICH) when expressed in the tobacco heterologous system, focusing on the male gametophyte. The aim was to gain insight into the mechanism of action of ASP-RICH in a well-known cellular system, i.e., the pollen tube. Pollen tubes of tobacco transgenic lines expressing CcASP-RICH were analyzed for Ca(2+) distribution, ROS, proton gradient, as well as cytoskeleton and cell wall. CcASP-RICH modulated Ca(2+) content and consequently affected cytoskeleton organization and the deposition of cell wall components. In turn, this affected the growth pattern of pollen tubes. Although the expression of CcASP-RICH did not exert a remarkable effect on the growth rate of pollen tubes, effects at the level of growth pattern suggest that the expression of ASP-RICH may exert a regulatory action on the mechanism of plant cell growth.
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spelling pubmed-93168132022-07-27 Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth Parrotta, Luigi Mareri, Lavinia Aloisi, Iris Faleri, Claudia Distefano, Gaetano Gentile, Alessandra Lo Piero, Angela Roberta Kriechbaumer, Verena Caruso, Marco Cai, Giampiero Del Duca, Stefano Int J Mol Sci Article Low-molecular-weight, aspartic-acid-rich proteins (ASP-RICH) have been assumed to be involved in the self-incompatibility process of clementine. The role of ASP-RICH is not known, but hypothetically they could sequester calcium ions (Ca(2+)) and affect Ca(2+)-dependent mechanisms. In this article, we analyzed the effects induced by clementine ASP-RICH proteins (CcASP-RICH) when expressed in the tobacco heterologous system, focusing on the male gametophyte. The aim was to gain insight into the mechanism of action of ASP-RICH in a well-known cellular system, i.e., the pollen tube. Pollen tubes of tobacco transgenic lines expressing CcASP-RICH were analyzed for Ca(2+) distribution, ROS, proton gradient, as well as cytoskeleton and cell wall. CcASP-RICH modulated Ca(2+) content and consequently affected cytoskeleton organization and the deposition of cell wall components. In turn, this affected the growth pattern of pollen tubes. Although the expression of CcASP-RICH did not exert a remarkable effect on the growth rate of pollen tubes, effects at the level of growth pattern suggest that the expression of ASP-RICH may exert a regulatory action on the mechanism of plant cell growth. MDPI 2022-07-17 /pmc/articles/PMC9316813/ /pubmed/35887233 http://dx.doi.org/10.3390/ijms23147880 Text en © 2022 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
Parrotta, Luigi
Mareri, Lavinia
Aloisi, Iris
Faleri, Claudia
Distefano, Gaetano
Gentile, Alessandra
Lo Piero, Angela Roberta
Kriechbaumer, Verena
Caruso, Marco
Cai, Giampiero
Del Duca, Stefano
Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title_full Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title_fullStr Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title_full_unstemmed Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title_short Expression of Clementine Asp-Rich Proteins (CcASP-RICH) in Tobacco Plants Interferes with the Mechanism of Pollen Tube Growth
title_sort expression of clementine asp-rich proteins (ccasp-rich) in tobacco plants interferes with the mechanism of pollen tube growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316813/
https://www.ncbi.nlm.nih.gov/pubmed/35887233
http://dx.doi.org/10.3390/ijms23147880
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