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Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission

In mango (Mangifera indica L.), fruitlet abscission limits productivity. The INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) peptide acts as a key component controlling abscission events in Arabidopsis. IDA-like peptides may assume similar roles in fruit trees. In this study, we isolated two mango IDA-l...

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Autores principales: Rai, Avinash Chandra, Halon, Eyal, Zemach, Hanita, Zviran, Tali, Sisai, Isaac, Philosoph-Hadas, Sonia, Meir, Shimon, Cohen, Yuval, Irihimovitch, Vered
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8003476/
https://www.ncbi.nlm.nih.gov/pubmed/33808710
http://dx.doi.org/10.3390/genes12030439
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author Rai, Avinash Chandra
Halon, Eyal
Zemach, Hanita
Zviran, Tali
Sisai, Isaac
Philosoph-Hadas, Sonia
Meir, Shimon
Cohen, Yuval
Irihimovitch, Vered
author_facet Rai, Avinash Chandra
Halon, Eyal
Zemach, Hanita
Zviran, Tali
Sisai, Isaac
Philosoph-Hadas, Sonia
Meir, Shimon
Cohen, Yuval
Irihimovitch, Vered
author_sort Rai, Avinash Chandra
collection PubMed
description In mango (Mangifera indica L.), fruitlet abscission limits productivity. The INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) peptide acts as a key component controlling abscission events in Arabidopsis. IDA-like peptides may assume similar roles in fruit trees. In this study, we isolated two mango IDA-like encoding-genes, MiIDA1 and MiIDA2. We used mango fruitlet-bearing explants and fruitlet-bearing trees, in which fruitlets abscission was induced using ethephon. We monitored the expression profiles of the two MiIDA-like genes in control and treated fruitlet abscission zones (AZs). In both systems, qRT-PCR showed that, within 24 h, both MiIDA-like genes were induced by ethephon, and that changes in their expression profiles were associated with upregulation of different ethylene signaling-related and cell-wall modifying genes. Furthermore, ectopic expression of both genes in Arabidopsis promoted floral-organ abscission, and was accompanied by an early increase in the cytosolic pH of floral AZ cells—a phenomenon known to be linked with abscission, and by activation of cell separation in vestigial AZs. Finally, overexpression of both genes in an Atida mutant restored its abscission ability. Our results suggest roles for MiIDA1 and MiIDA2 in affecting mango fruitlet abscission. Based on our results, we propose new possible modes of action for IDA-like proteins in regulating organ abscission.
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spelling pubmed-80034762021-03-28 Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission Rai, Avinash Chandra Halon, Eyal Zemach, Hanita Zviran, Tali Sisai, Isaac Philosoph-Hadas, Sonia Meir, Shimon Cohen, Yuval Irihimovitch, Vered Genes (Basel) Article In mango (Mangifera indica L.), fruitlet abscission limits productivity. The INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) peptide acts as a key component controlling abscission events in Arabidopsis. IDA-like peptides may assume similar roles in fruit trees. In this study, we isolated two mango IDA-like encoding-genes, MiIDA1 and MiIDA2. We used mango fruitlet-bearing explants and fruitlet-bearing trees, in which fruitlets abscission was induced using ethephon. We monitored the expression profiles of the two MiIDA-like genes in control and treated fruitlet abscission zones (AZs). In both systems, qRT-PCR showed that, within 24 h, both MiIDA-like genes were induced by ethephon, and that changes in their expression profiles were associated with upregulation of different ethylene signaling-related and cell-wall modifying genes. Furthermore, ectopic expression of both genes in Arabidopsis promoted floral-organ abscission, and was accompanied by an early increase in the cytosolic pH of floral AZ cells—a phenomenon known to be linked with abscission, and by activation of cell separation in vestigial AZs. Finally, overexpression of both genes in an Atida mutant restored its abscission ability. Our results suggest roles for MiIDA1 and MiIDA2 in affecting mango fruitlet abscission. Based on our results, we propose new possible modes of action for IDA-like proteins in regulating organ abscission. MDPI 2021-03-19 /pmc/articles/PMC8003476/ /pubmed/33808710 http://dx.doi.org/10.3390/genes12030439 Text en © 2021 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Rai, Avinash Chandra
Halon, Eyal
Zemach, Hanita
Zviran, Tali
Sisai, Isaac
Philosoph-Hadas, Sonia
Meir, Shimon
Cohen, Yuval
Irihimovitch, Vered
Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title_full Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title_fullStr Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title_full_unstemmed Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title_short Characterization of Two Ethephon-Induced IDA-Like Genes from Mango, and Elucidation of Their Involvement in Regulating Organ Abscission
title_sort characterization of two ethephon-induced ida-like genes from mango, and elucidation of their involvement in regulating organ abscission
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8003476/
https://www.ncbi.nlm.nih.gov/pubmed/33808710
http://dx.doi.org/10.3390/genes12030439
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