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整合代谢组学和转录组学分析以揭示盐胁迫下烟草()的半乳糖代谢

Integration of metabolic and transcriptomic analyses for revealing the galactose metabolism of tobacco () under salt stress.

作者信息

Bai Ge, Zhang Hui, Li Yong, Yang Da-Hai, Fei Mingliang, Pang Tao, Fu Yaning, Yang Ai-Guo, Wang Zhen-Yu, Gu Jinbao, Xie He

机构信息

Key Laboratory of Tobacco Biotechnological Breeding, National Tobacco Genetic Engineering Research Center, Tobacco Breeding and Biotechnology Research Center, Yunnan Academy of Tobacco Agricultural Science, Kunming, Yunnan, China.

Application Department 1, Beijing Life Science Academy, Beijing, China.

出版信息

Front Plant Sci. 2025 Jun 17;16:1614515. doi: 10.3389/fpls.2025.1614515. eCollection 2025.

Abstract

BACKGROUND

Soil salinization poses a global threat to agriculture, necessitating strategies to enhance plant salt stress tolerance. Understanding the metabolic and transcriptomic responses of tobacco plants to salt stress is crucial for developing such strategies.

RESULTS

This study identified 238 up-regulated and 122 down-regulated metabolites in tobacco plants under long-term salt stress. Initial stress stages activated galactose and sucrose metabolic pathways. Chlorophyll synthesis was impacted by decreased 5-aminolevulinic acid production, while proline accumulation helped mitigate cell damage. Metabolite-metabolite correlation analysis revealed significant correlations among metabolites, and enrichment analysis highlighted benzamides, amino acids, fatty acids, and monosaccharides. Transcriptome analysis identified 8,386 differentially expressed genes, with enriched pathways in hormone signaling, photosynthesis, and amino acid metabolism. Integrated analysis confirmed the involvement of sucrose pathway in the salt response, validated by qRT-PCR.

CONCLUSIONS

This study provides a comprehensive understanding of the regulatory networks in tobacco during salt stress. The findings lay the groundwork for future research on plant stress responses and the development of salt-tolerant tobacco cultivars.

摘要

背景

土壤盐渍化对农业构成全球威胁,因此需要采取策略提高植物的耐盐胁迫能力。了解烟草植株对盐胁迫的代谢和转录组反应对于制定此类策略至关重要。

结果

本研究确定了长期盐胁迫下烟草植株中238种上调代谢物和122种下调代谢物。初始胁迫阶段激活了半乳糖和蔗糖代谢途径。叶绿素合成受到5-氨基乙酰丙酸产量下降的影响,而脯氨酸积累有助于减轻细胞损伤。代谢物-代谢物相关性分析揭示了代谢物之间的显著相关性,富集分析突出了苯甲酰胺、氨基酸、脂肪酸和单糖。转录组分析确定了8386个差异表达基因,激素信号传导、光合作用和氨基酸代谢途径富集。综合分析证实了蔗糖途径参与盐反应,并通过qRT-PCR验证。

结论

本研究全面了解了盐胁迫期间烟草的调控网络。这些发现为未来植物应激反应研究和耐盐烟草品种的开发奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc32/12209197/64288528db4c/fpls-16-1614515-g001.jpg

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