Cargando…

Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress

Circular RNAs (circRNAs) serve as covalently closed single-stranded RNAs and have been proposed to influence plant development and stress resistance. Grapevine is one of the most economically valuable fruit crops cultivated worldwide and is threatened by various abiotic stresses. Herein, we reported...

Descripción completa

Detalles Bibliográficos
Autores principales: Ren, Yi, Li, Junpeng, Liu, Jingjing, Zhang, Zhen, Song, Yue, Fan, Dongying, Liu, Minying, Zhang, Lipeng, Xu, Yuanyuan, Guo, Dinghan, He, Juan, Song, Shiren, Gao, Zhen, Ma, Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304202/
https://www.ncbi.nlm.nih.gov/pubmed/37375960
http://dx.doi.org/10.3390/plants12122332
_version_ 1785065451572690944
author Ren, Yi
Li, Junpeng
Liu, Jingjing
Zhang, Zhen
Song, Yue
Fan, Dongying
Liu, Minying
Zhang, Lipeng
Xu, Yuanyuan
Guo, Dinghan
He, Juan
Song, Shiren
Gao, Zhen
Ma, Chao
author_facet Ren, Yi
Li, Junpeng
Liu, Jingjing
Zhang, Zhen
Song, Yue
Fan, Dongying
Liu, Minying
Zhang, Lipeng
Xu, Yuanyuan
Guo, Dinghan
He, Juan
Song, Shiren
Gao, Zhen
Ma, Chao
author_sort Ren, Yi
collection PubMed
description Circular RNAs (circRNAs) serve as covalently closed single-stranded RNAs and have been proposed to influence plant development and stress resistance. Grapevine is one of the most economically valuable fruit crops cultivated worldwide and is threatened by various abiotic stresses. Herein, we reported that a circRNA (Vv-circPTCD1) processed from the second exon of the pentatricopeptide repeat family gene PTCD1 was preferentially expressed in leaves and responded to salt and drought but not heat stress in grapevine. Additionally, the second exon sequence of PTCD1 was highly conserved, but the biogenesis of Vv-circPTCD1 is species-dependent in plants. It was further found that the overexpressed Vv-circPTCD1 can slightly decrease the abundance of the cognate host gene, and the neighboring genes are barely affected in the grapevine callus. Furthermore, we also successfully overexpressed the Vv-circPTCD1 and found that the Vv-circPTCD1 deteriorated the growth during heat, salt, and drought stresses in Arabidopsis. However, the biological effects on grapevine callus were not always consistent with those of Arabidopsis. Interestingly, we found that the transgenic plants of linear counterpart sequence also conferred the same phenotypes as those of circRNA during the three stress conditions, no matter what species it is. Those results imply that although the sequences are conserved, the biogenesis and functions of Vv-circPTCD1 are species-dependent. Our results indicate that the plant circRNA function investigation should be conducted in homologous species, which supports a valuable reference for further plant circRNA studies.
format Online
Article
Text
id pubmed-10304202
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103042022023-06-29 Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress Ren, Yi Li, Junpeng Liu, Jingjing Zhang, Zhen Song, Yue Fan, Dongying Liu, Minying Zhang, Lipeng Xu, Yuanyuan Guo, Dinghan He, Juan Song, Shiren Gao, Zhen Ma, Chao Plants (Basel) Article Circular RNAs (circRNAs) serve as covalently closed single-stranded RNAs and have been proposed to influence plant development and stress resistance. Grapevine is one of the most economically valuable fruit crops cultivated worldwide and is threatened by various abiotic stresses. Herein, we reported that a circRNA (Vv-circPTCD1) processed from the second exon of the pentatricopeptide repeat family gene PTCD1 was preferentially expressed in leaves and responded to salt and drought but not heat stress in grapevine. Additionally, the second exon sequence of PTCD1 was highly conserved, but the biogenesis of Vv-circPTCD1 is species-dependent in plants. It was further found that the overexpressed Vv-circPTCD1 can slightly decrease the abundance of the cognate host gene, and the neighboring genes are barely affected in the grapevine callus. Furthermore, we also successfully overexpressed the Vv-circPTCD1 and found that the Vv-circPTCD1 deteriorated the growth during heat, salt, and drought stresses in Arabidopsis. However, the biological effects on grapevine callus were not always consistent with those of Arabidopsis. Interestingly, we found that the transgenic plants of linear counterpart sequence also conferred the same phenotypes as those of circRNA during the three stress conditions, no matter what species it is. Those results imply that although the sequences are conserved, the biogenesis and functions of Vv-circPTCD1 are species-dependent. Our results indicate that the plant circRNA function investigation should be conducted in homologous species, which supports a valuable reference for further plant circRNA studies. MDPI 2023-06-15 /pmc/articles/PMC10304202/ /pubmed/37375960 http://dx.doi.org/10.3390/plants12122332 Text en © 2023 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
Ren, Yi
Li, Junpeng
Liu, Jingjing
Zhang, Zhen
Song, Yue
Fan, Dongying
Liu, Minying
Zhang, Lipeng
Xu, Yuanyuan
Guo, Dinghan
He, Juan
Song, Shiren
Gao, Zhen
Ma, Chao
Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title_full Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title_fullStr Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title_full_unstemmed Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title_short Functional Differences of Grapevine Circular RNA Vv-circPTCD1 in Arabidopsis and Grapevine Callus under Abiotic Stress
title_sort functional differences of grapevine circular rna vv-circptcd1 in arabidopsis and grapevine callus under abiotic stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304202/
https://www.ncbi.nlm.nih.gov/pubmed/37375960
http://dx.doi.org/10.3390/plants12122332
work_keys_str_mv AT renyi functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT lijunpeng functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT liujingjing functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT zhangzhen functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT songyue functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT fandongying functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT liuminying functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT zhanglipeng functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT xuyuanyuan functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT guodinghan functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT hejuan functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT songshiren functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT gaozhen functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress
AT machao functionaldifferencesofgrapevinecircularrnavvcircptcd1inarabidopsisandgrapevinecallusunderabioticstress