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酵母提取物诱导悬浮细胞中的代谢和转录应激记忆。

Metabolic and Transcriptional Stress Memory in Suspension Cells Induced by Yeast Extract.

机构信息

State Key Laboratory Breeding Base of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijng 100700, China.

School of Traditional Chinese Medicine, Guangdong Pharmaceutical University, Guangzhou 510006, China.

出版信息

Cells. 2022 Nov 24;11(23):3757. doi: 10.3390/cells11233757.

Abstract

Plant stress memory can provide the benefits of enhanced protection against additional stress exposure. Here, we aimed to explore the responses of recurrent and non-recurrent yeast extract (YE) stresses in suspension cells (SPSCs) at metabolomics and transcriptional levels. Biochemical analyses showed that the cell wall integrity and antioxidation capacity of SPSCs in the pretreated group were evidently improved. Metabolic analysis showed that there were 39 significantly altered metabolites in the pretreated group compared to the non-pretreated group. Based on the transcriptome analysis, 219 differentially expressed genes were obtained, which were highly enriched in plant-pathogen interaction, circadian rhythm-plant, oxidative phosphorylation, and phenylpropanoid biosynthesis. Furthermore, the correlation analysis of the transcriptome and metabolome data revealed that phenylpropanoid biosynthesis involved in the production of biphenyl phytoalexins may play a critical role in the memory response of SPSC to YE, and the key memory genes were also identified, including , , and . Collectively, the above results demonstrated that the memory responses of SPSC to YE were significant in almost all levels, which would be helpful for better understanding the adaptation mechanisms of medicinal plants in response to biotic stress, and laid a biotechnological foundation to accumulate favorable antimicrobial drug candidates from plant suspension cells.

摘要

植物应激记忆可以提供增强对额外应激暴露的保护的好处。在这里,我们旨在从代谢组学和转录组学水平上探索悬浮细胞(SPSCs)中反复和非反复酵母提取物(YE)应激的反应。生化分析表明,预处理组 SPSCs 的细胞壁完整性和抗氧化能力明显提高。代谢分析显示,预处理组与未预处理组相比,有 39 种代谢物显著改变。基于转录组分析,获得了 219 个差异表达基因,这些基因在植物-病原体相互作用、昼夜节律-植物、氧化磷酸化和苯丙烷生物合成中高度富集。此外,转录组和代谢组数据的相关性分析表明,涉及二苯基植物抗毒素生物合成的苯丙烷生物合成可能在 SPSC 对 YE 的记忆反应中起关键作用,并且还鉴定了关键的记忆基因,包括、和。总之,上述结果表明,SPSC 对 YE 的记忆反应在几乎所有层面上都是显著的,这将有助于更好地理解药用植物对生物胁迫的适应机制,并为从植物悬浮细胞中积累有利的抗微生物药物候选物奠定生物技术基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed69/9739749/faa57019b7a8/cells-11-03757-g001.jpg

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