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http://nopr.niscpr.res.in/handle/123456789/68175| metadata.dc.identifier.doi: | https://doi.org/10.56042/ijnpr.v17i2.21319 |
| Title: | Bioconversion of D-limonene into value-added monoterpenes using Paenibacillus popilliae 1C and Streptomyces rochei AB1: Exploring bacterial biotransformation pathways and metabolite diversity |
| Authors: | Beichi, Madjeda Saidani, Fatiha Riad, Nacera Elzahra Ferradji, Fatima Elzahra Mesbaiah, Fatima Reda Zahi, Mohamed Eddouaouda, Kamel Badis, Abdelmalek El Hattab, Mohamed |
| Keywords: | D-limonene;Monoterpenes;Paenibacillus popilliae 1C;Streptomyces rochei AB1;Bioconversion |
| Issue Date: | Jul-2026 |
| Publisher: | NIScPR-CSIR, India |
| IPC Code: | Int. cl. (2021.01)−A61K 36/00, C12P |
| Abstract: | The present study focuses on the bioconversion of D-limonene using two bacterial strains, Streptomyces rochei AB1 and Paenibacillus popilliae 1C, isolated and identified by our research team. Rich mediums (International Streptomyces Project 9 medium for strain AB1 and Luria–Bertani medium for strain 1C) were used for biotransformation experiments. Furthermore, biodegradation tests were conducted with D-limonene as the only carbon and energy source in a modified minimum medium. The minimum inhibitory concentration (MIC) of D-limonene was 10±0.09 mg/mL. The strains achieved a bioconversion yield of nearly 70% following 7-day of incubation period. Analysis by GC-MS revealed the formation of various hydrocarbons and oxygenated monoterpenes, including alcohols, ketones and terpene hydrocarbons. Some metabolites, such as cis-verbenol, isovaleric acid and 2-methylbutanoic acid, were identified in biotransformation assays using Paenibacillus popilliae 1C. To our knowledge, this genus has never before been known to produce these metabolites during the biotransformation of D-limonene. Carveol, carvone, limonene-1,2-diol, linalool, and α-terpinolene were among the other metabolites found. Similar biodegradation products were obtained with Streptomyces rochei AB1, suggesting the occurrence of common metabolic pathways involved in D-limonene bioconversion. These findings highlight the biotechnological potential of the studied strains for the production of value-added monoterpenes. |
| Page(s): | 246-255 |
| ISSN: | 0976-0512 (Online):0976-0504 (Print) |
| Appears in Collections: | IJNPR Vol.17(2) [June 2026] |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| IJNPR 17(2) 246-255.pdf | 1.19 MB | Adobe PDF | View/Open |
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