Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)

Abstract Background Phytohormone abscisic acid (ABA) is involved in the regulation of a wide range of biological processes. In Arabidopsis, it has been well-known that SnRK2s are the central components of the ABA signaling pathway that control the balance between plant growth and stress response, bu...

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Main Authors: Tiandan Long, Binjie Xu, Yufeng Hu, Yayun Wang, Changqing Mao, Yongbin Wang, Junjie Zhang, Hanmei Liu, Huanhuan Huang, Yinghong Liu, Guowu Yu, Chunzhao Zhao, Yangping Li, Yubi Huang
Format: Article
Language:English
Published: BMC 2021-07-01
Series:BMC Plant Biology
Subjects:
ABA
Online Access:https://doi.org/10.1186/s12870-021-03064-9
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spelling doaj-0c991a1ef4bf4392b60f43ee8b39603b2021-07-04T11:08:45ZengBMCBMC Plant Biology1471-22292021-07-0121111710.1186/s12870-021-03064-9Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)Tiandan Long0Binjie Xu1Yufeng Hu2Yayun Wang3Changqing Mao4Yongbin Wang5Junjie Zhang6Hanmei Liu7Huanhuan Huang8Yinghong Liu9Guowu Yu10Chunzhao Zhao11Yangping Li12Yubi Huang13State Key Laboratory of Crop Gene Exploration and Utilization in Southwest ChinaTriticeae Research Institute, Sichuan Agricultural UniversityState Key Laboratory of Crop Gene Exploration and Utilization in Southwest ChinaCollege of Agronomy, Sichuan Agricultural UniversityCollege of Agronomy, Sichuan Agricultural UniversityCollege of Agronomy, Sichuan Agricultural UniversityCollege of Life Science, Sichuan Agricultural UniversityCollege of Life Science, Sichuan Agricultural UniversityCollege of Agronomy, Sichuan Agricultural UniversityMaize Research Institute, Sichuan Agricultural UniversityCollege of Agronomy, Sichuan Agricultural UniversityShanghai Center for Plant Stress Biology and CAS Center for Excellence in Molecular Plant Sciences, Chinese Academy of SciencesState Key Laboratory of Crop Gene Exploration and Utilization in Southwest ChinaState Key Laboratory of Crop Gene Exploration and Utilization in Southwest ChinaAbstract Background Phytohormone abscisic acid (ABA) is involved in the regulation of a wide range of biological processes. In Arabidopsis, it has been well-known that SnRK2s are the central components of the ABA signaling pathway that control the balance between plant growth and stress response, but the functions of ZmSnRK2 in maize are rarely reported. Therefore, the study of ZmSnRK2 is of great importance to understand the ABA signaling pathways in maize. Results In this study, 14 ZmSnRK2 genes were identified in the latest version of maize genome database. Phylogenetic analysis revealed that ZmSnRK2s are divided into three subclasses based on their diversity of C-terminal domains. The exon-intron structures, phylogenetic, synteny and collinearity analysis indicated that SnRK2s, especially the subclass III of SnRK2, are evolutionally conserved in maize, rice and Arabidopsis. Subcellular localization showed that ZmSnRK2 proteins are localized in the nucleus and cytoplasm. The RNA-Seq datasets and qRT-PCR analysis showed that ZmSnRK2 genes exhibit spatial and temporal expression patterns during the growth and development of different maize tissues, and the transcript levels of some ZmSnRK2 genes in kernel are significantly induced by ABA and sucrose treatment. In addition, we found that ZmSnRK2.10, which belongs to subclass III, is highly expressed in kernel and activated by ABA. Overexpression of ZmSnRK2.10 partially rescued the ABA-insensitive phenotype of snrk2.2/2.3 double and snrk2.2/2.3/2.6 triple mutants and led to delaying plant flowering in Arabidopsis. Conclusion The SnRK2 gene family exhibits a high evolutionary conservation and has expanded with whole-genome duplication events in plants. The ZmSnRK2s expanded in maize with whole-genome and segmental duplication, not tandem duplication. The expression pattern analysis of ZmSnRK2s in maize offers important information to study their functions. Study of the functions of ZmSnRK.10 in Arabidopsis suggests that the ABA-dependent members of SnRK2s are evolutionarily conserved in plants. Our study elucidated the structure and evolution of SnRK2 genes in plants and provided a basis for the functional study of ZmSnRK2s protein in maize.https://doi.org/10.1186/s12870-021-03064-9MaizeABASnRK2 familyEvolutionExpression patternZmSnRK2.10
collection DOAJ
language English
format Article
sources DOAJ
author Tiandan Long
Binjie Xu
Yufeng Hu
Yayun Wang
Changqing Mao
Yongbin Wang
Junjie Zhang
Hanmei Liu
Huanhuan Huang
Yinghong Liu
Guowu Yu
Chunzhao Zhao
Yangping Li
Yubi Huang
spellingShingle Tiandan Long
Binjie Xu
Yufeng Hu
Yayun Wang
Changqing Mao
Yongbin Wang
Junjie Zhang
Hanmei Liu
Huanhuan Huang
Yinghong Liu
Guowu Yu
Chunzhao Zhao
Yangping Li
Yubi Huang
Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
BMC Plant Biology
Maize
ABA
SnRK2 family
Evolution
Expression pattern
ZmSnRK2.10
author_facet Tiandan Long
Binjie Xu
Yufeng Hu
Yayun Wang
Changqing Mao
Yongbin Wang
Junjie Zhang
Hanmei Liu
Huanhuan Huang
Yinghong Liu
Guowu Yu
Chunzhao Zhao
Yangping Li
Yubi Huang
author_sort Tiandan Long
title Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
title_short Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
title_full Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
title_fullStr Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
title_full_unstemmed Genome-wide identification of ZmSnRK2 genes and functional analysis of ZmSnRK2.10 in ABA signaling pathway in maize (Zea mays L)
title_sort genome-wide identification of zmsnrk2 genes and functional analysis of zmsnrk2.10 in aba signaling pathway in maize (zea mays l)
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2021-07-01
description Abstract Background Phytohormone abscisic acid (ABA) is involved in the regulation of a wide range of biological processes. In Arabidopsis, it has been well-known that SnRK2s are the central components of the ABA signaling pathway that control the balance between plant growth and stress response, but the functions of ZmSnRK2 in maize are rarely reported. Therefore, the study of ZmSnRK2 is of great importance to understand the ABA signaling pathways in maize. Results In this study, 14 ZmSnRK2 genes were identified in the latest version of maize genome database. Phylogenetic analysis revealed that ZmSnRK2s are divided into three subclasses based on their diversity of C-terminal domains. The exon-intron structures, phylogenetic, synteny and collinearity analysis indicated that SnRK2s, especially the subclass III of SnRK2, are evolutionally conserved in maize, rice and Arabidopsis. Subcellular localization showed that ZmSnRK2 proteins are localized in the nucleus and cytoplasm. The RNA-Seq datasets and qRT-PCR analysis showed that ZmSnRK2 genes exhibit spatial and temporal expression patterns during the growth and development of different maize tissues, and the transcript levels of some ZmSnRK2 genes in kernel are significantly induced by ABA and sucrose treatment. In addition, we found that ZmSnRK2.10, which belongs to subclass III, is highly expressed in kernel and activated by ABA. Overexpression of ZmSnRK2.10 partially rescued the ABA-insensitive phenotype of snrk2.2/2.3 double and snrk2.2/2.3/2.6 triple mutants and led to delaying plant flowering in Arabidopsis. Conclusion The SnRK2 gene family exhibits a high evolutionary conservation and has expanded with whole-genome duplication events in plants. The ZmSnRK2s expanded in maize with whole-genome and segmental duplication, not tandem duplication. The expression pattern analysis of ZmSnRK2s in maize offers important information to study their functions. Study of the functions of ZmSnRK.10 in Arabidopsis suggests that the ABA-dependent members of SnRK2s are evolutionarily conserved in plants. Our study elucidated the structure and evolution of SnRK2 genes in plants and provided a basis for the functional study of ZmSnRK2s protein in maize.
topic Maize
ABA
SnRK2 family
Evolution
Expression pattern
ZmSnRK2.10
url https://doi.org/10.1186/s12870-021-03064-9
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