4.5 Article

Efficient production of ε-poly-L-lysine from cassava bagasse hydrolysate used as carbon source by Streptomyces albulus US3-18

期刊

BIOPROCESS AND BIOSYSTEMS ENGINEERING
卷 45, 期 8, 页码 1407-1419

出版社

SPRINGER
DOI: 10.1007/s00449-022-02755-3

关键词

epsilon-Poly-L-lysine; Cassava bagasse hydrolysate; Fermentation; Streptomyces albulus US3-18

资金

  1. National Natural Science Foundation of China [21676173]
  2. Agricultural Infrastructure Project of Suzhou Science and Technology Development Plan [SNG2017053]
  3. Research Fund Project of Suzhou University of Science and Technology [XKZ201411]
  4. Natural Science Foundation of Jiangsu Province [BK20210864]

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This study investigated the production of epsilon-poly-L-lysine (epsilon-PL) from cassava bagasse hydrolysate by Streptomyces albulus US3-18 and found that the strain exhibited high productivity and tolerance to volatile byproducts. The study provides a reference for efficient production of epsilon-PL from low-cost agricultural residues.
The production of epsilon-poly-L-lysine (epsilon-PL) from cassava bagasse hydrolysate (CBH) by Streptomyces albulus US3-18 was investigated in this study. With 30 g/L glucose from CBH, 1.30 g/L epsilon-PL and 10.68 g/L biomass were obtained in shake flask fermentation. Interestingly, the two values were increased by 14.0% and 21.5%, respectively, compared to the control (1.14 g/L and 8.79 g/L). Simultaneously, the activities of four key enzymes of epsilon-PL synthesis during CBH fermentation were enhanced to varying degrees. In batch fermentation of 5-L bioreactor, 3.39 g/L epsilon-PL and 10.17 g/L DCW were harvested with 40 g/L glucose from CBH. The combination of fed-batch fermentation with two-stage pH strategy significantly increased epsilon-PL titer and biomass to 37.41 g/L and 41.0 g/L, respectively. Moreover, eleven volatile components were detected in CBH by GC-MS, and 6-pentyl-alpha-pyrone (6PP) was first identified as the most abundant volatile ingredient. The results in CBH fermentation demonstrated that S. albulus US3-18 exhibited high tolerance to these volatile byproducts. Using ICP-MS, the calcium concentration in CBH was determined as 195.0 mg/(kg hydrolyzate), and cobalt, copper, lead, chromium, mercury and arsenic were not detected. By adding 0.05 g/L CaCl2 to M3G medium, epsilon-PL yield was improved by 28.0%, indicating calcium was one of the factors for the enhanced epsilon-PL production. The study provides a reference for the efficient production of epsilon-PL from low-cost agricultural residues. [GRAPHICS] .

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