Cargando…

Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango

CONSTANS (CO) is an important regulator of photoperiodic flowering and functions at a key position in the flowering regulatory network. Here, two CO homologs, MiCOL16A and MiCOL16B, were isolated from “SiJiMi” mango to elucidate the mechanisms controlling mango flowering. The MiCOL16A and MiCOL16B g...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Yuan, Luo, Cong, Guo, Yihang, Liang, Rongzhen, Yu, Haixia, Chen, Shuquan, Mo, Xiao, Yang, Xiaozhou, He, Xinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951110/
https://www.ncbi.nlm.nih.gov/pubmed/35328495
http://dx.doi.org/10.3390/ijms23063075
_version_ 1784675305006301184
author Liu, Yuan
Luo, Cong
Guo, Yihang
Liang, Rongzhen
Yu, Haixia
Chen, Shuquan
Mo, Xiao
Yang, Xiaozhou
He, Xinhua
author_facet Liu, Yuan
Luo, Cong
Guo, Yihang
Liang, Rongzhen
Yu, Haixia
Chen, Shuquan
Mo, Xiao
Yang, Xiaozhou
He, Xinhua
author_sort Liu, Yuan
collection PubMed
description CONSTANS (CO) is an important regulator of photoperiodic flowering and functions at a key position in the flowering regulatory network. Here, two CO homologs, MiCOL16A and MiCOL16B, were isolated from “SiJiMi” mango to elucidate the mechanisms controlling mango flowering. The MiCOL16A and MiCOL16B genes were highly expressed in the leaves and expressed at low levels in the buds and flowers. The expression levels of MiCOL16A and MiCOL16B increased during the flowering induction period but decreased during the flower organ development and flowering periods. The MiCOL16A gene was expressed in accordance with the circadian rhythm, and MiCOL16B expression was affected by diurnal variation, albeit not regularly. Both the MiCOL16A and MiCOL16B proteins were localized in the nucleus of cells and exerted transcriptional activity through their MR domains in yeast. Overexpression of both the MiCOL16A and MiCOL16B genes significantly repressed flowering in Arabidopsis under short-day (SD) and long-day (LD) conditions because they repressed the expression of AtFT and AtSOC1. This research also revealed that overexpression of MiCOL16A and MiCOL16B improved the salt and drought tolerance of Arabidopsis, conferring longer roots and higher survival rates to overexpression lines under drought and salt stress. Together, our results demonstrated that MiCOL16A and MiCOL16B not only regulate flowering but also play a role in the abiotic stress response in mango.
format Online
Article
Text
id pubmed-8951110
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89511102022-03-26 Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango Liu, Yuan Luo, Cong Guo, Yihang Liang, Rongzhen Yu, Haixia Chen, Shuquan Mo, Xiao Yang, Xiaozhou He, Xinhua Int J Mol Sci Article CONSTANS (CO) is an important regulator of photoperiodic flowering and functions at a key position in the flowering regulatory network. Here, two CO homologs, MiCOL16A and MiCOL16B, were isolated from “SiJiMi” mango to elucidate the mechanisms controlling mango flowering. The MiCOL16A and MiCOL16B genes were highly expressed in the leaves and expressed at low levels in the buds and flowers. The expression levels of MiCOL16A and MiCOL16B increased during the flowering induction period but decreased during the flower organ development and flowering periods. The MiCOL16A gene was expressed in accordance with the circadian rhythm, and MiCOL16B expression was affected by diurnal variation, albeit not regularly. Both the MiCOL16A and MiCOL16B proteins were localized in the nucleus of cells and exerted transcriptional activity through their MR domains in yeast. Overexpression of both the MiCOL16A and MiCOL16B genes significantly repressed flowering in Arabidopsis under short-day (SD) and long-day (LD) conditions because they repressed the expression of AtFT and AtSOC1. This research also revealed that overexpression of MiCOL16A and MiCOL16B improved the salt and drought tolerance of Arabidopsis, conferring longer roots and higher survival rates to overexpression lines under drought and salt stress. Together, our results demonstrated that MiCOL16A and MiCOL16B not only regulate flowering but also play a role in the abiotic stress response in mango. MDPI 2022-03-12 /pmc/articles/PMC8951110/ /pubmed/35328495 http://dx.doi.org/10.3390/ijms23063075 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
Liu, Yuan
Luo, Cong
Guo, Yihang
Liang, Rongzhen
Yu, Haixia
Chen, Shuquan
Mo, Xiao
Yang, Xiaozhou
He, Xinhua
Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title_full Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title_fullStr Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title_full_unstemmed Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title_short Isolation and Functional Characterization of Two CONSTANS-like 16 (MiCOL16) Genes from Mango
title_sort isolation and functional characterization of two constans-like 16 (micol16) genes from mango
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8951110/
https://www.ncbi.nlm.nih.gov/pubmed/35328495
http://dx.doi.org/10.3390/ijms23063075
work_keys_str_mv AT liuyuan isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT luocong isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT guoyihang isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT liangrongzhen isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT yuhaixia isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT chenshuquan isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT moxiao isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT yangxiaozhou isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango
AT hexinhua isolationandfunctionalcharacterizationoftwoconstanslike16micol16genesfrommango