AI Chat Paper
Note: Please note that the following content is generated by AMiner AI. SciOpen does not take any responsibility related to this content.
{{lang === 'zh_CN' ? '文章概述' : 'Summary'}}
{{lang === 'en_US' ? '中' : 'Eng'}}
Chat more with AI
PDF (17.7 MB)
Collect
Submit Manuscript AI Chat Paper
Show Outline
Outline
Show full outline
Hide outline
Outline
Show full outline
Hide outline
Research paper | Open Access

Integrated analysis of the metabolome and transcriptome reveals the effect of the polyamine biosynthesis pathway on the cold resistance regulation mechanism in Solanum habrochaites

Meiliang WangaTianyang LiubTianyu ZhangbRuihua GaoaTingting GuaYao ZhangaXiuling ChenbJiayin LiubAoxue Wanga,b( )Youwen Qiua( )
College of Life Sciences, Northeast Agricultural University, Harbin, Heilongjiang 150030, China
College of Horticulture and Landscape Architecture, Northeast Agricultural University, Harbin, Heilongjiang 150030, China

Peer review under responsibility of Chinese Society of Horticultural Science (CSHS) and Institute of Vegetables and Flowers (IVF), Chinese Academy of Agricultural Sciences (CAAS).

Show Author Information

Abstract

Constant exposure of tomato fruit to low temperatures (LT) often results in insufficient energy to sustain growth and development. Polyamines (PAs) are essential substances for cell division, development and stress responses in plants. Integrated metabolomics and transcriptome analysis showed that the PA biosynthesis pathway was significantly enriched in Solanum habrochaites (SH). ShODC1 (Ornithine decarboxylase), a key enzyme in the PA synthesis pathway, was highly sensitive to LT stress. Transient silencing of ShODC1 significantly decreased the ion permeability, the antioxidant capacity, and photosynthesis, as well as ShSPDS (Spermidine synthase) and ShSPMS (Spermine synthase) expression and putrescine (Put) accumulation, thus reducing cold tolerance in tomato. This study confirmed that the PA biosynthesis pathway affects the cold tolerance in SH and analyzed the physiological and biochemical functions of ShODC1 under LT stress, providing a new theoretical basis for improving the resistance in cultivated tomato.

References

【1】
【1】
 
 
Horticultural Plant Journal
Pages 2116-2135

{{item.num}}

Comments on this article

Go to comment

< Back to all reports

Review Status: {{reviewData.commendedNum}} Commended , {{reviewData.revisionRequiredNum}} Revision Required , {{reviewData.notCommendedNum}} Not Commended Under Peer Review

Review Comment

Close
Close
Cite this article:
Wang M, Liu T, Zhang T, et al. Integrated analysis of the metabolome and transcriptome reveals the effect of the polyamine biosynthesis pathway on the cold resistance regulation mechanism in Solanum habrochaites. Horticultural Plant Journal, 2026, 12(9): 2116-2135. https://doi.org/10.1016/j.hpj.2025.03.015

7

Views

0

Downloads

0

Crossref

0

Web of Science

0

Scopus

0

CSCD

Received: 13 October 2024
Accepted: 30 March 2025
Published: 01 September 2025
© 2025 Chinese Society for Horticultural Science.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).