Cargando…
Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed
Autophagy is a common physiological process in organisms, including higher plants. The ATG8 subfamily, the core member of the autophagy-related gene (ATG) family, plays a key role in plant growth and development and nutrient stress responses. However, the core ATG8 homologs and their roles in stress...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569553/ https://www.ncbi.nlm.nih.gov/pubmed/36232619 http://dx.doi.org/10.3390/ijms231911318 |
_version_ | 1784809882835222528 |
---|---|
author | Zhang, Tianyu Zhou, Ting Zhang, Yifan Chen, Junfan Song, Haili Wu, Pengjia Yue, Caipeng Huang, Jinyong Zhang, Zhenhua Hua, Yingpeng |
author_facet | Zhang, Tianyu Zhou, Ting Zhang, Yifan Chen, Junfan Song, Haili Wu, Pengjia Yue, Caipeng Huang, Jinyong Zhang, Zhenhua Hua, Yingpeng |
author_sort | Zhang, Tianyu |
collection | PubMed |
description | Autophagy is a common physiological process in organisms, including higher plants. The ATG8 subfamily, the core member of the autophagy-related gene (ATG) family, plays a key role in plant growth and development and nutrient stress responses. However, the core ATG8 homologs and their roles in stress resistance remain elusive in allotetraploid rapeseed (AACC, Brassica napus L.). In this study, we identified 29 ATG8 subgroup members, consisting of three phylogenetic clades, based on the analysis of genomic annotation and conserved motifs. Differential transcriptional responses of BnaATG8s to salt stress, nitrogen limitation, and other nutrient stresses were investigated, and we identified BnaA8.ATG8F as the core ATG8 member through gene co-expression network analysis. Decreased BnaA8.ATG8F expression repressed the salt tolerance of transgenic rapeseed plants by significantly reducing the root Na(+) retention under salt stress. Moreover, downregulation of BnaA8.ATG8F increased nitrogen (N) limitation sensitivity of transgenic rapeseed plants through decreasing N uptake, translocation, and enhancing N remobilization under nitrogen starvation. In summary, we identified the core ATG8 homologs and characterized their physiological and molecular mechanisms underlying salt stress tolerance and nitrogen limitation adaptation. Our results may provide elite genetic resources for the genetic improvement of nutrient stress tolerance in rapeseed. |
format | Online Article Text |
id | pubmed-9569553 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-95695532022-10-17 Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed Zhang, Tianyu Zhou, Ting Zhang, Yifan Chen, Junfan Song, Haili Wu, Pengjia Yue, Caipeng Huang, Jinyong Zhang, Zhenhua Hua, Yingpeng Int J Mol Sci Article Autophagy is a common physiological process in organisms, including higher plants. The ATG8 subfamily, the core member of the autophagy-related gene (ATG) family, plays a key role in plant growth and development and nutrient stress responses. However, the core ATG8 homologs and their roles in stress resistance remain elusive in allotetraploid rapeseed (AACC, Brassica napus L.). In this study, we identified 29 ATG8 subgroup members, consisting of three phylogenetic clades, based on the analysis of genomic annotation and conserved motifs. Differential transcriptional responses of BnaATG8s to salt stress, nitrogen limitation, and other nutrient stresses were investigated, and we identified BnaA8.ATG8F as the core ATG8 member through gene co-expression network analysis. Decreased BnaA8.ATG8F expression repressed the salt tolerance of transgenic rapeseed plants by significantly reducing the root Na(+) retention under salt stress. Moreover, downregulation of BnaA8.ATG8F increased nitrogen (N) limitation sensitivity of transgenic rapeseed plants through decreasing N uptake, translocation, and enhancing N remobilization under nitrogen starvation. In summary, we identified the core ATG8 homologs and characterized their physiological and molecular mechanisms underlying salt stress tolerance and nitrogen limitation adaptation. Our results may provide elite genetic resources for the genetic improvement of nutrient stress tolerance in rapeseed. MDPI 2022-09-26 /pmc/articles/PMC9569553/ /pubmed/36232619 http://dx.doi.org/10.3390/ijms231911318 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 Zhang, Tianyu Zhou, Ting Zhang, Yifan Chen, Junfan Song, Haili Wu, Pengjia Yue, Caipeng Huang, Jinyong Zhang, Zhenhua Hua, Yingpeng Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title | Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title_full | Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title_fullStr | Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title_full_unstemmed | Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title_short | Genome-Wide Identification and Functional Characterization Reveals the Pivotal Roles of BnaA8.ATG8F in Salt Stress Tolerance and Nitrogen Limitation Adaptation in Allotetraploid Rapeseed |
title_sort | genome-wide identification and functional characterization reveals the pivotal roles of bnaa8.atg8f in salt stress tolerance and nitrogen limitation adaptation in allotetraploid rapeseed |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569553/ https://www.ncbi.nlm.nih.gov/pubmed/36232619 http://dx.doi.org/10.3390/ijms231911318 |
work_keys_str_mv | AT zhangtianyu genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT zhouting genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT zhangyifan genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT chenjunfan genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT songhaili genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT wupengjia genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT yuecaipeng genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT huangjinyong genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT zhangzhenhua genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed AT huayingpeng genomewideidentificationandfunctionalcharacterizationrevealsthepivotalrolesofbnaa8atg8finsaltstresstoleranceandnitrogenlimitationadaptationinallotetraploidrapeseed |