Cargando…

Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila

Ulmus pumila L. is an excellent afforestation and biofuel tree that produces high-quality wood, rich in starch. In addition, U. pumila is highly adaptable to adverse environmental conditions, which is conducive to its utilization for vegetating saline soils. However, little is known about the physio...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Panfei, Liu, Peng, Zhang, Quanfeng, Bu, Chenhao, Lu, Chunhao, Srivastava, Sudhakar, Zhang, Deqiang, Song, Yuepeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8122946/
https://www.ncbi.nlm.nih.gov/pubmed/33922506
http://dx.doi.org/10.3390/ijms22094410
_version_ 1783692762634256384
author Chen, Panfei
Liu, Peng
Zhang, Quanfeng
Bu, Chenhao
Lu, Chunhao
Srivastava, Sudhakar
Zhang, Deqiang
Song, Yuepeng
author_facet Chen, Panfei
Liu, Peng
Zhang, Quanfeng
Bu, Chenhao
Lu, Chunhao
Srivastava, Sudhakar
Zhang, Deqiang
Song, Yuepeng
author_sort Chen, Panfei
collection PubMed
description Ulmus pumila L. is an excellent afforestation and biofuel tree that produces high-quality wood, rich in starch. In addition, U. pumila is highly adaptable to adverse environmental conditions, which is conducive to its utilization for vegetating saline soils. However, little is known about the physiological responses and transcriptional regulatory network of U. pumila under salt stress. In this study, we exposed five main cultivars in saline–alkali land (Upu2, 5, 8, 11, and 12) to NaCl stress. Of the five cultivars assessed, Upu11 exhibited the highest salt resistance. Growth and biomass accumulation in Upu11 were promoted under low salt concentrations (<150 mM). However, after 3 months of continuous treatment with 150 mM NaCl, growth was inhibited, and photosynthesis declined. A transcriptome analysis conducted after 3 months of treatment detected 7009 differentially expressed unigenes (DEGs). The gene annotation indicated that these DEGs were mainly related to photosynthesis and carbon metabolism. Furthermore, PHOTOSYNTHETIC ELECTRON TRANSFERH (UpPETH), an important electron transporter in the photosynthetic electron transport chain, and UpWAXY, a key gene controlling amylose synthesis in the starch synthesis pathway, were identified as hub genes in the gene coexpression network. We identified 25 and 62 unigenes that may interact with PETH and WAXY, respectively. Overexpression of UpPETH and UpWAXY significantly increased the survival rates, net photosynthetic rates, biomass, and starch content of transgenic Arabidopsis plants under salt stress. Our findings clarify the physiological and transcriptional regulators that promote or inhibit growth under environmental stress. The identification of salt-responsive hub genes directly responsible for photosynthesis and starch synthesis or metabolism will provide targets for future genetic improvements.
format Online
Article
Text
id pubmed-8122946
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81229462021-05-16 Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila Chen, Panfei Liu, Peng Zhang, Quanfeng Bu, Chenhao Lu, Chunhao Srivastava, Sudhakar Zhang, Deqiang Song, Yuepeng Int J Mol Sci Article Ulmus pumila L. is an excellent afforestation and biofuel tree that produces high-quality wood, rich in starch. In addition, U. pumila is highly adaptable to adverse environmental conditions, which is conducive to its utilization for vegetating saline soils. However, little is known about the physiological responses and transcriptional regulatory network of U. pumila under salt stress. In this study, we exposed five main cultivars in saline–alkali land (Upu2, 5, 8, 11, and 12) to NaCl stress. Of the five cultivars assessed, Upu11 exhibited the highest salt resistance. Growth and biomass accumulation in Upu11 were promoted under low salt concentrations (<150 mM). However, after 3 months of continuous treatment with 150 mM NaCl, growth was inhibited, and photosynthesis declined. A transcriptome analysis conducted after 3 months of treatment detected 7009 differentially expressed unigenes (DEGs). The gene annotation indicated that these DEGs were mainly related to photosynthesis and carbon metabolism. Furthermore, PHOTOSYNTHETIC ELECTRON TRANSFERH (UpPETH), an important electron transporter in the photosynthetic electron transport chain, and UpWAXY, a key gene controlling amylose synthesis in the starch synthesis pathway, were identified as hub genes in the gene coexpression network. We identified 25 and 62 unigenes that may interact with PETH and WAXY, respectively. Overexpression of UpPETH and UpWAXY significantly increased the survival rates, net photosynthetic rates, biomass, and starch content of transgenic Arabidopsis plants under salt stress. Our findings clarify the physiological and transcriptional regulators that promote or inhibit growth under environmental stress. The identification of salt-responsive hub genes directly responsible for photosynthesis and starch synthesis or metabolism will provide targets for future genetic improvements. MDPI 2021-04-23 /pmc/articles/PMC8122946/ /pubmed/33922506 http://dx.doi.org/10.3390/ijms22094410 Text en © 2021 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
Chen, Panfei
Liu, Peng
Zhang, Quanfeng
Bu, Chenhao
Lu, Chunhao
Srivastava, Sudhakar
Zhang, Deqiang
Song, Yuepeng
Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title_full Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title_fullStr Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title_full_unstemmed Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title_short Gene Coexpression Network Analysis Indicates that Hub Genes Related to Photosynthesis and Starch Synthesis Modulate Salt Stress Tolerance in Ulmus pumila
title_sort gene coexpression network analysis indicates that hub genes related to photosynthesis and starch synthesis modulate salt stress tolerance in ulmus pumila
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8122946/
https://www.ncbi.nlm.nih.gov/pubmed/33922506
http://dx.doi.org/10.3390/ijms22094410
work_keys_str_mv AT chenpanfei genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT liupeng genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT zhangquanfeng genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT buchenhao genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT luchunhao genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT srivastavasudhakar genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT zhangdeqiang genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila
AT songyuepeng genecoexpressionnetworkanalysisindicatesthathubgenesrelatedtophotosynthesisandstarchsynthesismodulatesaltstresstoleranceinulmuspumila