Endophytic Bacteria Enterobacter cloacae PN7 Promotes Biosynthesis and Accumulation of Saponins in Panax notoginseng.

IF 2.3 3区 生物学 Q3 MICROBIOLOGY Current Microbiology Pub Date : 2024-12-17 DOI:10.1007/s00284-024-04017-9
Xianjing Lin, Mulan Wang, Feiyan Xie, Yuxi Cheng, Li Yang, Jian Gao, Weiqi Li, Xudong Zhang, Ting Tang
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Abstract

Panax notoginseng is an important Chinese medicinal plant. Saponins are the major bioactive secondary metabolites with a wide range of medicinal and commercial value in P. notoginseng, so it is crucial to develop environmentally friendly methods to increase their production. The symbiotic relationship between endophytic bacteria and host plants offers a sustainable approach to enhance secondary metabolite biosynthesis. In this study, it was reported that the co-cultivation of an endophytic bacterium Enterobacter cloacae PN7, isolated from P. notoginseng and its host plant could greatly promote saponin accumulation in the root of seedlings. After six days of PN7 treatment, the total saponin concentration reached 21.64 mg/g, representing a 2.01-fold increase over the control. Transcriptome sequencing revealed that PN7 induction upregulated key genes in the saponin biosynthetic pathway (including DXS, HMGR, PMK, DS, CYP450, and GTs), modulated 253 plant hormone signaling genes (such as those related to JA, ETH, and ABA), and affected 284 transcription factor genes and 47 ABC transporter genes. Co-expression network analysis identified DEGs related to plant hormone signaling, transcription factors, and ABC transporters in saponin biosynthesis and distribution. The results suggested that JA signaling, mediated by transcription factors, such as bHLH and MYBs, and its interaction with ETH, played crucial roles in saponin biosynthesis. Additionally, potential ABC transporter candidates involved in saponin transport were identified. This study highlights the role of endophytic bacteria in enhancing saponin production in P. notoginseng and opens avenues for further research on microbial-plant interactions in secondary metabolite production.

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内生细菌阴沟肠杆菌PN7促进三七皂苷的生物合成和积累。
三七是我国重要的药用植物。皂苷是三七中主要的次生代谢产物,具有广泛的药用和商业价值,因此开发环境友好的方法来提高其产量至关重要。内生细菌与寄主植物之间的共生关系为促进次生代谢物的生物合成提供了一条可持续的途径。本研究报道了从三七及其寄主植物中分离的内生细菌阴沟肠杆菌PN7共同培养可显著促进三七幼苗根系中皂苷的积累。PN7处理6 d后,总皂苷浓度达到21.64 mg/g,比对照提高2.01倍。转录组测序结果显示,PN7诱导上调了皂苷生物合成途径关键基因(包括DXS、HMGR、PMK、DS、CYP450和GTs),调节了253个植物激素信号基因(如JA、ETH和ABA相关基因),影响了284个转录因子基因和47个ABC转运基因。共表达网络分析确定了与植物激素信号、转录因子和ABC转运蛋白相关的deg在皂苷的生物合成和分布中。结果表明,由bHLH和MYBs等转录因子介导的JA信号通路及其与ETH的相互作用在皂苷生物合成过程中发挥了重要作用。此外,还确定了参与皂苷运输的潜在ABC转运蛋白候选体。该研究强调了内生细菌在三七中促进皂苷生产的作用,为进一步研究微生物-植物在次生代谢物生产中的相互作用开辟了道路。
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来源期刊
Current Microbiology
Current Microbiology 生物-微生物学
CiteScore
4.80
自引率
3.80%
发文量
380
审稿时长
2.5 months
期刊介绍: Current Microbiology is a well-established journal that publishes articles in all aspects of microbial cells and the interactions between the microorganisms, their hosts and the environment. Current Microbiology publishes original research articles, short communications, reviews and letters to the editor, spanning the following areas: physiology, biochemistry, genetics, genomics, biotechnology, ecology, evolution, morphology, taxonomy, diagnostic methods, medical and clinical microbiology and immunology as applied to microorganisms.
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