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The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)

Studies have shown that the m(6)A reader primarily affects genes expression by participating in the regulation of mRNA localization, splicing, degradation, translation, and other metabolic processes. Previously, we discovered that the apple (Malus domestica) m(6)A reader MhYTP2 bound with and destab...

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Autores principales: Guo, Tianli, Yang, Zehua, Bao, Ru, Fu, Xiaomin, Wang, Na, Liu, Changhai, Ma, Fengwang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10282597/
https://www.ncbi.nlm.nih.gov/pubmed/37350799
http://dx.doi.org/10.1093/hr/uhad094
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author Guo, Tianli
Yang, Zehua
Bao, Ru
Fu, Xiaomin
Wang, Na
Liu, Changhai
Ma, Fengwang
author_facet Guo, Tianli
Yang, Zehua
Bao, Ru
Fu, Xiaomin
Wang, Na
Liu, Changhai
Ma, Fengwang
author_sort Guo, Tianli
collection PubMed
description Studies have shown that the m(6)A reader primarily affects genes expression by participating in the regulation of mRNA localization, splicing, degradation, translation, and other metabolic processes. Previously, we discovered that the apple (Malus domestica) m(6)A reader MhYTP2 bound with and destabilized m(6)A-modified MdMLO19 mRNA. In addition, it enhanced the translation efficiency of m(6)A-modified mRNA of MdGDH1L, encoding a glutamate dehydrogenase, which confers resistance to powdery mildew. In this study, we report the function of MhYTP2 in the regulation of resistance to low nitrogen (N). The overexpression of MhYTP2 enhances the resistance of apple to low N. We show that MhYTP2 binds with and stabilizes the mRNAs of MdALN, which participates in the allantoin catabolic process and cellular response to N starvation in apple; MdPIDL, which participates in root hair elongation; MdTTG1, which is involved in the differentiation process of trichomes; and MdATG8A, which is a core participant in the regulation of autophagy. In addition, MhYTP2 accelerates the degradation of MdRHD3 mRNA, which regulates root development. RNA immunoprecipitation-seq and electrophoretic mobility shift assays show that the mRNAs of MdALN, MdATG8A, MdPIDL, MdTTG1, and MdRHD3 are the direct targets of MhYTP2. Overexpressing or knocking down the above genes in MhYTP2 overexpressing plants dismisses the function of MhYTP2 under low N, suggesting the role of MhYTP2 is dependent on those genes. Together, these results demonstrate that MhYTP2 enhances the resistance of apple to N deficiency by affecting the stability of the bound mRNAs.
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spelling pubmed-102825972023-06-22 The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica) Guo, Tianli Yang, Zehua Bao, Ru Fu, Xiaomin Wang, Na Liu, Changhai Ma, Fengwang Hortic Res Article Studies have shown that the m(6)A reader primarily affects genes expression by participating in the regulation of mRNA localization, splicing, degradation, translation, and other metabolic processes. Previously, we discovered that the apple (Malus domestica) m(6)A reader MhYTP2 bound with and destabilized m(6)A-modified MdMLO19 mRNA. In addition, it enhanced the translation efficiency of m(6)A-modified mRNA of MdGDH1L, encoding a glutamate dehydrogenase, which confers resistance to powdery mildew. In this study, we report the function of MhYTP2 in the regulation of resistance to low nitrogen (N). The overexpression of MhYTP2 enhances the resistance of apple to low N. We show that MhYTP2 binds with and stabilizes the mRNAs of MdALN, which participates in the allantoin catabolic process and cellular response to N starvation in apple; MdPIDL, which participates in root hair elongation; MdTTG1, which is involved in the differentiation process of trichomes; and MdATG8A, which is a core participant in the regulation of autophagy. In addition, MhYTP2 accelerates the degradation of MdRHD3 mRNA, which regulates root development. RNA immunoprecipitation-seq and electrophoretic mobility shift assays show that the mRNAs of MdALN, MdATG8A, MdPIDL, MdTTG1, and MdRHD3 are the direct targets of MhYTP2. Overexpressing or knocking down the above genes in MhYTP2 overexpressing plants dismisses the function of MhYTP2 under low N, suggesting the role of MhYTP2 is dependent on those genes. Together, these results demonstrate that MhYTP2 enhances the resistance of apple to N deficiency by affecting the stability of the bound mRNAs. Oxford University Press 2023-05-04 /pmc/articles/PMC10282597/ /pubmed/37350799 http://dx.doi.org/10.1093/hr/uhad094 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Guo, Tianli
Yang, Zehua
Bao, Ru
Fu, Xiaomin
Wang, Na
Liu, Changhai
Ma, Fengwang
The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title_full The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title_fullStr The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title_full_unstemmed The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title_short The m(6)A reader MhYTP2 regulates the stability of its target mRNAs contributing to low nitrogen tolerance in apple (Malus domestica)
title_sort m(6)a reader mhytp2 regulates the stability of its target mrnas contributing to low nitrogen tolerance in apple (malus domestica)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10282597/
https://www.ncbi.nlm.nih.gov/pubmed/37350799
http://dx.doi.org/10.1093/hr/uhad094
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