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Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins

CYP21-4 is a novel Golgi-localized cyclophilin protein involved in oxidative stress tolerance. Here, we generated transgenic plants overexpressing AtCYP21-4 and OsCYP21-4 in potato and rice, respectively. The stems and roots of AtCYP21-4–overexpressing potato plants were longer than those of wild-ty...

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Autores principales: Park, Hyun Ji, Lee, Areum, Lee, Sang Sook, An, Dong-Ju, Moon, Ki-Beom, Ahn, Jun Cheul, Kim, Hyun-Soon, Cho, Hye Sun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5517489/
https://www.ncbi.nlm.nih.gov/pubmed/28775727
http://dx.doi.org/10.3389/fpls.2017.01250
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author Park, Hyun Ji
Lee, Areum
Lee, Sang Sook
An, Dong-Ju
Moon, Ki-Beom
Ahn, Jun Cheul
Kim, Hyun-Soon
Cho, Hye Sun
author_facet Park, Hyun Ji
Lee, Areum
Lee, Sang Sook
An, Dong-Ju
Moon, Ki-Beom
Ahn, Jun Cheul
Kim, Hyun-Soon
Cho, Hye Sun
author_sort Park, Hyun Ji
collection PubMed
description CYP21-4 is a novel Golgi-localized cyclophilin protein involved in oxidative stress tolerance. Here, we generated transgenic plants overexpressing AtCYP21-4 and OsCYP21-4 in potato and rice, respectively. The stems and roots of AtCYP21-4–overexpressing potato plants were longer than those of wild-type (WT) plants, which resulted in heavier tubers. In vitro tuberization in the transgenic potato also resulted in significantly greater tuber number and weight, as well as a shorter time to microtuber formation. Similarly, OsCYP21-4–overexpressing transgenic rice plants had higher biomass and productivity with longer early-stage internodes than the WT and higher seed weight. Immunoblot analysis with CYP21-4 antibody showed that these productivity-enhancing phenotypes were associated with high CYP21-4s protein expression. Anatomically, transgenic potato stems exhibited higher lignin content in xylem cells and thicker leaves. In addition, relative content of mannosidic glycoproteins per unit of total protein was above 20% in transgenic potato tubers and rice grains. Based on these findings, we propose that CYP21-4s are involved in the growth and development of plant vegetative and storage tissues via their effects on glycoprotein abundance or glycan processing in the Golgi apparatus. Thus, increasing CYP21-4s expression in crops could represent an alternative way to increase crop productivity and yield.
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spelling pubmed-55174892017-08-03 Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins Park, Hyun Ji Lee, Areum Lee, Sang Sook An, Dong-Ju Moon, Ki-Beom Ahn, Jun Cheul Kim, Hyun-Soon Cho, Hye Sun Front Plant Sci Plant Science CYP21-4 is a novel Golgi-localized cyclophilin protein involved in oxidative stress tolerance. Here, we generated transgenic plants overexpressing AtCYP21-4 and OsCYP21-4 in potato and rice, respectively. The stems and roots of AtCYP21-4–overexpressing potato plants were longer than those of wild-type (WT) plants, which resulted in heavier tubers. In vitro tuberization in the transgenic potato also resulted in significantly greater tuber number and weight, as well as a shorter time to microtuber formation. Similarly, OsCYP21-4–overexpressing transgenic rice plants had higher biomass and productivity with longer early-stage internodes than the WT and higher seed weight. Immunoblot analysis with CYP21-4 antibody showed that these productivity-enhancing phenotypes were associated with high CYP21-4s protein expression. Anatomically, transgenic potato stems exhibited higher lignin content in xylem cells and thicker leaves. In addition, relative content of mannosidic glycoproteins per unit of total protein was above 20% in transgenic potato tubers and rice grains. Based on these findings, we propose that CYP21-4s are involved in the growth and development of plant vegetative and storage tissues via their effects on glycoprotein abundance or glycan processing in the Golgi apparatus. Thus, increasing CYP21-4s expression in crops could represent an alternative way to increase crop productivity and yield. Frontiers Media S.A. 2017-07-20 /pmc/articles/PMC5517489/ /pubmed/28775727 http://dx.doi.org/10.3389/fpls.2017.01250 Text en Copyright © 2017 Park, Lee, Lee, An, Moon, Ahn, Kim and Cho. http://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) or licensor 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
Park, Hyun Ji
Lee, Areum
Lee, Sang Sook
An, Dong-Ju
Moon, Ki-Beom
Ahn, Jun Cheul
Kim, Hyun-Soon
Cho, Hye Sun
Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title_full Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title_fullStr Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title_full_unstemmed Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title_short Overexpression of Golgi Protein CYP21-4s Improves Crop Productivity in Potato and Rice by Increasing the Abundance of Mannosidic Glycoproteins
title_sort overexpression of golgi protein cyp21-4s improves crop productivity in potato and rice by increasing the abundance of mannosidic glycoproteins
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5517489/
https://www.ncbi.nlm.nih.gov/pubmed/28775727
http://dx.doi.org/10.3389/fpls.2017.01250
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