Department of Applied Biology and Chemical Technology, State Key Laboratory of Chinese Medicine and Molecular Pharmacology in Shenzhen, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
J Ind Microbiol Biotechnol. 2012 Apr;39(4):623-8. doi: 10.1007/s10295-011-1066-9. Epub 2011 Dec 6.
This study investigated the effects of surfactant additives and medium pH on mycelial morphology and exopolysaccharide (EPS) production in liquid culture of a valuable medicinal fungus Cordyceps sinensis Cs-HK1. In the medium containing 20 g l⁻¹ glucose and 6 g l⁻¹ peptone as the sole nitrogen source, the Cs-HK1 fungal mycelia formed smooth and spherical pellets about 1.8-mm mean diameter. The mycelial pellets became less uniform at pH (4.0-5.0) lower than the optimum (pH 6.0) or turned to filamentous form at higher pH (8-9). Surfactants added to the medium inhibited pellet formation, resulting in smaller and looser pellets. Tween 80 exhibited a remarkable promoting effect on EPS production, increasing the EPS yield more than twofold at 1.5% (w/v), which was most probably attributed to the stimulation of EPS biosynthesis and release from the fungal cells by Tween 80.
本研究考察了表面活性剂添加剂和培养基 pH 值对珍贵药用真菌蛹虫草 Cs-HK1 液体培养中菌丝形态和胞外多糖(EPS)生产的影响。在含有 20 g l⁻¹葡萄糖和 6 g l⁻¹蛋白胨作为唯一氮源的培养基中,Cs-HK1 真菌菌丝形成约 1.8-mm 平均直径的光滑且球形的菌球。低于最适 pH 值(6.0)或高于较高 pH 值(8-9)时,菌球变得不太均匀或变成丝状。添加到培养基中的表面活性剂抑制了菌球的形成,导致菌球更小且更松散。吐温 80 对 EPS 生产表现出显著的促进作用,在 1.5%(w/v)时使 EPS 产量增加了两倍以上,这很可能归因于吐温 80 刺激 EPS 生物合成和从真菌细胞中释放。