Hacettepe University, Faculty of Science, Biology Department, Biotechnology Section, Beytepe, Ankara, Turkey.
Int J Biol Macromol. 2024 Sep;276(Pt 2):133904. doi: 10.1016/j.ijbiomac.2024.133904. Epub 2024 Jul 31.
This study proposed Hibiscus sabdariffa as a novel substrate for BC production with Komagataeibacter species and their consortia. K. intermedius is found as the most efficient producer (5.98 g/L BC, 3.56 × 10 g h productivity rate) following K. maltaceti (4.44 g/L BC, 2.64 × 10 g h productivity rate) and K. nataicola (3.67 g/L BC, 2.18 × 10 g h productivity rate). Whereas agitation increased BC production with K. nataicola (1.22-fold, 4.49 g/L BC), K. maltaceti (1.24-fold, 5.52 g/L BC) and K. intermedius (1.27-fold, 7.63 g/L BC), irregular shaped BC was obtained. This could be a novel result as Komagataeibacter consortia increased BC production by 1.17-2.01-fold compared to monocultures resulting as 8.11 g/L BC through the co-cultivation of K. maltaceti-K. intermedius. Maximum increase was found to be 1.75-fold (1.79-fold WHC), occurring with monoculture of K. maltaceti, while 1.94-fold (1.26-fold WHC) with K. maltaceti-K. intermedius consortium when H. sabdariffa-based media compared Hestrin-Schramm media. Based on these results, this could be a novel result as H. sabdariffa-based media may replace the use of HS media in BC production by means of a bioactive content-rich plant and obtaining 3-D ultrafine porous structure with high thermal resistant (∼460-500 °C) BC with mono and co-cultivation of Komagataeibacter species to be used in industrial area.
本研究提出了一种以黄 Hibiscus sabdariffa 为新型基质,利用 Komagataeibacter 属及其共生物生产 BC 的方法。研究发现,在 K. intermedius(5.98 g/L BC,3.56×10 g h 生产率)之后,K. maltaceti(4.44 g/L BC,2.64×10 g h 生产率)和 K. nataicola(3.67 g/L BC,2.18×10 g h 生产率)是最有效的生产菌。而搅拌可提高 K. nataicola(1.22 倍,4.49 g/L BC)、K. maltaceti(1.24 倍,5.52 g/L BC)和 K. intermedius(1.27 倍,7.63 g/L BC)的 BC 产量,但得到的是不规则形状的 BC。这可能是一个新的结果,因为与单培养物相比,Komagataeibacter 共培养物使 BC 产量增加了 1.17-2.01 倍,通过共培养 K. maltaceti-K. intermedius 可获得 8.11 g/L BC。结果发现,最大的增加是 1.75 倍(1.79 倍的 WHC),发生在 K. maltaceti 的单培养物中,而当使用黄 Hibiscus sabdariffa 为基础的培养基与 Hestrin-Schramm 培养基相比时,K. maltaceti-K. intermedius 共培养物中则达到 1.94 倍(1.26 倍的 WHC)。基于这些结果,这可能是一个新的结果,因为黄 Hibiscus sabdariffa 为基础的培养基可以替代 HS 培养基,通过使用富含生物活性成分的植物,并获得 3-D 超精细多孔结构和具有高热抗性(约 460-500°C)的 BC,同时进行 Komagataeibacter 属的单培养和共培养,用于工业领域。