PHAs production by facultative anaerobic bacteria Bacillus cereus FM5 through submerged and solid-state fermentation under anoxic condition

被引:0
|
作者
Swati Samal
Swayamsidha Pati
Swati Mohapatra
Sudipta Maity
Ksheerabdhi Tanaya
Deepika Devadarshini
Deviprasad Samantaray
机构
[1] CBSH,Department of Microbiology
[2] Gujurat State Fertilizer and Chemical University,School of Science
[3] GIET University,BIRAC E
来源
Antonie van Leeuwenhoek | 2023年 / 116卷
关键词
Bio-polyester; PHAs; Anaerobes; Fermentation; sp;
D O I
暂无
中图分类号
学科分类号
摘要
PHAs (polyhydroxyalkanoates) are the bio-polyester synthesized by different aerobic and anaerobic bacteria as energy storage granule. However, its synthesis by anaerobes or facultative anaerobes is an imperative part of their physiology via assimilating broad range of substrates than aerobes. Thus, three Gram positive facultative anaerobic PHAs producers viz., Enterococcus sp. FM3, Actinomyces sp. CM4 and Bacillus sp. FM5 were selected. Among them, Bacillus sp. FM5 showed higher cell biomass production in MSM (mineral salt medium) comprised of glucose & peptone as carbon & nitrogen source at pH 9, temperature 37 °C, inoculum 10% and incubation period 72 h. Under optimized condition, Bacillus sp. FM5 produced 0.89 and 1.5 g l−1 of PHAs through submerged and solid-state fermentation in anoxic condition. In-silico analysis confirmed the facultative anaerobic PHAs producing bacteria as Bacillus cereus FM5. IR spectra of PHAs illustrated a strong absorption peak at 1718.50 cm−1 representing carbonyl ester (C=O) functional group of PHB (polyhydroxybutyrate), belonging to the family PHAs. It is the first report demonstrating PHAs production by Bacillus cereus FM5 in anoxic condition through different bioprocess technology, which may pave the way in the arena of further biopolymer research.
引用
收藏
页码:521 / 529
页数:8
相关论文
共 50 条
  • [31] Enhancement of cellulolytic enzymes and xylanase production via classical mutational techniques under solid-state fermentation condition
    Yi, Tai Wan
    Keong, Lee Chee
    Ibrahim, Darah
    MALAYSIAN JOURNAL OF MICROBIOLOGY, 2016, 12 (01) : 91 - 101
  • [32] Optimized Production of Medically Significant Enzyme L-Asparaginase Under Submerged and Solid-State Fermentation From Agricultural Wastes
    Vimal, Archana
    Kumar, Awanish
    CURRENT MICROBIOLOGY, 2022, 79 (12)
  • [33] Optimized Production of Medically Significant Enzyme L-Asparaginase Under Submerged and Solid-State Fermentation From Agricultural Wastes
    Archana Vimal
    Awanish Kumar
    Current Microbiology, 2022, 79
  • [34] Improved polygalacturonase production from Bacillus sp MG-cp-2 under submerged (SmF) and solid state (SSF) fermentation
    Kapoor, M
    Kuhad, RC
    LETTERS IN APPLIED MICROBIOLOGY, 2002, 34 (05) : 317 - 322
  • [35] Peptide production through enhanced solid-state fermentation of soybean meal with Bacillus subtilis SBM_1: Fermentation process and product characteristics
    Liu, Dandan
    Guo, Yiting
    Zhu, Junsong
    Yolandani
    Wang, Yucheng
    Ma, Haile
    INDUSTRIAL CROPS AND PRODUCTS, 2024, 219
  • [36] It Is the Mix that Matters: Substrate-Specific Enzyme Production from Filamentous Fungi and Bacteria Through Solid-State Fermentation
    Steudler, Susanne
    Werner, Anett
    Walther, Thomas
    SOLID STATE FERMENTATION: RESEARCH AND INDUSTRIAL APPLICATIONS, 2019, 169 : 51 - 81
  • [37] Enzymatic hydrolysis of the organic fraction of municipal solid waste: Optimization and valorization of the solid fraction for Bacillus thuringiensis biopesticide production through solid-state fermentation
    Molina-Penate, Esther
    Sanchez, Antoni
    Artola, Adriana
    WASTE MANAGEMENT, 2022, 137 : 304 - 311
  • [38] Cellulase production under solid-state fermentation by Aspergillus sp. IN5: Parameter optimization and application
    Boondaeng, Antika
    Keabpimai, Jureeporn
    Trakunjae, Chanaporn
    Vaithanomsat, Pilanee
    Srichola, Preeyanuch
    Niyomvong, Nanthavut
    HELIYON, 2024, 10 (05)
  • [39] Enhanced production of L-lysine by Bacillus megaterium AECR 751 mutant in copra meal through solid-state fermentation
    Dumandan, Nico G.
    Arreola, Sheryl Lozel B.
    Bioresource Technology Reports, 2022, 20
  • [40] Enhanced production of L-lysine by Bacillus megaterium AECR 751 mutant in copra meal through solid-state fermentation
    Dumandan, Nico G.
    Arreola, Sheryl Lozel B.
    BIORESOURCE TECHNOLOGY REPORTS, 2022, 20