Wang San-Lang, Wu Pei-Chen, Liang Tzu-Wen
Graduate Institute of Life Sciences, Tamkang University, Tamsui 251, Taiwan.
Carbohydr Res. 2009 May 26;344(8):979-84. doi: 10.1016/j.carres.2009.03.011. Epub 2009 Mar 17.
We have developed a culture system for efficient production of chitosanase by Bacillus sp. TKU004. TKU004 was cultivated by using squid pen powder as the sole carbon/nitrogen source. The effects of autoclave treatments of the medium on the production of chitosanase were investigated. Autoclave treatment of squid pen powder for 45 min remarkably promoted enzyme productivity. When the culture medium containing an initial squid pen powder concentration of 3% was autoclaved for 45 min, the chitosanase activity was optimal and reached 0.14-0.16 U/mL. In addition, extracellular surfactant-stable chitosanase was purified from the TKU004 culture supernatant. The antioxidant activity of TKU004 culture supernatant was determined through the scavenging ability of DPPH, with 70% per mL. With this method, we have shown that marine wastes can be utilized efficiently through prolonged autoclave treatments to generate a high value-added product, and have revealed its hidden potential in the production of functional foods.
我们开发了一种用于芽孢杆菌属 TKU004 高效生产壳聚糖酶的培养系统。使用鱿鱼笔粉作为唯一碳源/氮源培养 TKU004。研究了培养基的高压灭菌处理对壳聚糖酶生产的影响。鱿鱼笔粉高压灭菌 45 分钟显著提高了酶的生产率。当含有初始浓度为 3%鱿鱼笔粉的培养基高压灭菌 45 分钟时,壳聚糖酶活性最佳,达到 0.14 - 0.16 U/mL。此外,从 TKU004 培养上清液中纯化出细胞外表面活性剂稳定的壳聚糖酶。通过 DPPH 清除能力测定 TKU004 培养上清液的抗氧化活性,每毫升为 70%。通过这种方法,我们表明海洋废弃物可以通过长时间的高压灭菌处理得到有效利用,以产生高附加值产品,并揭示了其在功能性食品生产中的潜在价值。