Cargando…
Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress
The breeding of salt-tolerant rootstock relies heavily on the availability of salt-tolerant Malus germplasm resources. The first step in developing salt-tolerant resources is to learn their molecular and metabolic underpinnings. Hydroponic seedlings of both ZM-4 (salt-tolerant resource) and M9T337 (...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9960305/ https://www.ncbi.nlm.nih.gov/pubmed/36835052 http://dx.doi.org/10.3390/ijms24043638 |
_version_ | 1784895481733709824 |
---|---|
author | Wang, Dajiang Wang, Kun Sun, Simiao Yan, Peng Lu, Xiang Liu, Zhao Li, Qingshan Li, Lianwen Gao, Yuan Liu, Jihong |
author_facet | Wang, Dajiang Wang, Kun Sun, Simiao Yan, Peng Lu, Xiang Liu, Zhao Li, Qingshan Li, Lianwen Gao, Yuan Liu, Jihong |
author_sort | Wang, Dajiang |
collection | PubMed |
description | The breeding of salt-tolerant rootstock relies heavily on the availability of salt-tolerant Malus germplasm resources. The first step in developing salt-tolerant resources is to learn their molecular and metabolic underpinnings. Hydroponic seedlings of both ZM-4 (salt-tolerant resource) and M9T337 (salt-sensitive rootstock) were treated with a solution of 75 mM salinity. ZM-4’s fresh weight increased, then decreased, and then increased again after being treated with NaCl, whereas M9T337′s fresh weight continued to decrease. The results of transcriptome and metabolome after 0 h (CK) and 24 h of NaCl treatment showed that the leaves of ZM-4 had a higher content of flavonoids (phloretinm, naringenin-7-O-glucoside, kaempferol-3-O-galactoside, epiafzelechin, etc.) and the genes (CHI, CYP, FLS, LAR, and ANR) related to the flavonoid synthesis pathway showed up-regulation, suggesting a high antioxidant capacity. In addition to the high polyphenol content (L-phenylalanine, 5-O-p-coumaroyl quinic acid) and the high related gene expression (4CLL9 and SAT), the roots of ZM-4 exhibited a high osmotic adjustment ability. Under normal growing conditions, the roots of ZM-4 contained a higher content of some amino acids (L-proline, tran-4-hydroxy-L-prolin, L-glutamine, etc.) and sugars (D−fructose 6−phosphate, D−glucose 6−phosphate, etc.), and the genes (GLT1, BAM7, INV1, etc.) related to these two pathways were highly expressed. Furthermore, some amino acids (S-(methyl) glutathione, N-methyl-trans-4-hydroxy-L-proline, etc.) and sugars (D-sucrose, maltotriose, etc.) increased and genes (ALD1, BCAT1, AMY1.1, etc.) related to the pathways showed up-regulation under salt stress. This research provided theoretical support for the application of breeding salt-tolerant rootstocks by elucidating the molecular and metabolic mechanisms of salt tolerance during the early stages of salt treatment for ZM-4. |
format | Online Article Text |
id | pubmed-9960305 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-99603052023-02-26 Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress Wang, Dajiang Wang, Kun Sun, Simiao Yan, Peng Lu, Xiang Liu, Zhao Li, Qingshan Li, Lianwen Gao, Yuan Liu, Jihong Int J Mol Sci Article The breeding of salt-tolerant rootstock relies heavily on the availability of salt-tolerant Malus germplasm resources. The first step in developing salt-tolerant resources is to learn their molecular and metabolic underpinnings. Hydroponic seedlings of both ZM-4 (salt-tolerant resource) and M9T337 (salt-sensitive rootstock) were treated with a solution of 75 mM salinity. ZM-4’s fresh weight increased, then decreased, and then increased again after being treated with NaCl, whereas M9T337′s fresh weight continued to decrease. The results of transcriptome and metabolome after 0 h (CK) and 24 h of NaCl treatment showed that the leaves of ZM-4 had a higher content of flavonoids (phloretinm, naringenin-7-O-glucoside, kaempferol-3-O-galactoside, epiafzelechin, etc.) and the genes (CHI, CYP, FLS, LAR, and ANR) related to the flavonoid synthesis pathway showed up-regulation, suggesting a high antioxidant capacity. In addition to the high polyphenol content (L-phenylalanine, 5-O-p-coumaroyl quinic acid) and the high related gene expression (4CLL9 and SAT), the roots of ZM-4 exhibited a high osmotic adjustment ability. Under normal growing conditions, the roots of ZM-4 contained a higher content of some amino acids (L-proline, tran-4-hydroxy-L-prolin, L-glutamine, etc.) and sugars (D−fructose 6−phosphate, D−glucose 6−phosphate, etc.), and the genes (GLT1, BAM7, INV1, etc.) related to these two pathways were highly expressed. Furthermore, some amino acids (S-(methyl) glutathione, N-methyl-trans-4-hydroxy-L-proline, etc.) and sugars (D-sucrose, maltotriose, etc.) increased and genes (ALD1, BCAT1, AMY1.1, etc.) related to the pathways showed up-regulation under salt stress. This research provided theoretical support for the application of breeding salt-tolerant rootstocks by elucidating the molecular and metabolic mechanisms of salt tolerance during the early stages of salt treatment for ZM-4. MDPI 2023-02-11 /pmc/articles/PMC9960305/ /pubmed/36835052 http://dx.doi.org/10.3390/ijms24043638 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 Wang, Dajiang Wang, Kun Sun, Simiao Yan, Peng Lu, Xiang Liu, Zhao Li, Qingshan Li, Lianwen Gao, Yuan Liu, Jihong Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title | Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title_full | Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title_fullStr | Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title_full_unstemmed | Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title_short | Transcriptome and Metabolome Analysis Reveals Salt-Tolerance Pathways in the Leaves and Roots of ZM-4 (Malus zumi) in the Early Stages of Salt Stress |
title_sort | transcriptome and metabolome analysis reveals salt-tolerance pathways in the leaves and roots of zm-4 (malus zumi) in the early stages of salt stress |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9960305/ https://www.ncbi.nlm.nih.gov/pubmed/36835052 http://dx.doi.org/10.3390/ijms24043638 |
work_keys_str_mv | AT wangdajiang transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT wangkun transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT sunsimiao transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT yanpeng transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT luxiang transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT liuzhao transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT liqingshan transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT lilianwen transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT gaoyuan transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress AT liujihong transcriptomeandmetabolomeanalysisrevealssalttolerancepathwaysintheleavesandrootsofzm4maluszumiintheearlystagesofsaltstress |