Liu Chuanbin, Liu Yan, Chen Shulin
Department of Biological Systems Engineering, Washington State University, Pullman, WA 99164-6120, USA.
Appl Biochem Biotechnol. 2005 Spring;121-124:475-83. doi: 10.1385/abab:122:1-3:0475.
The feasibility of using cull potatoes as substrate for the simultaneous production of nisin, a natural food preservative, and lactic acid, a raw material for biopolymer production, was studied. Cull potatoes are potato tubers unacceptable for food processing because of size or damage caused by bruising or disease. Although cull potatoes are enriched in various nutrients including starch, minerals, and proteins, they alone still cannot provide enough essential nutrients for the growth and metabolism of Lactococcus lactis subsp. lactis (ATCC 11454). Stimulation of bacterial growth, nisin biosynthesis, as well as lactic acid production was observed when additional nutrients such as yeast extract, peptone from meat, peptone from soy (PS), corn steep solid (CSS), and distillers' dried grains with solubles were provided. Considering the cost and availability, PS and CSS were selected as nutrient supplements for nisin and lactic acid coproduction. The conditions for nisin biosynthesis and lactic acid coproduction by L. lactis subsp. lactis in a cull potato-based medium were subsequently optimized using a statistically based experimental design.
研究了将废弃马铃薯用作底物同时生产天然食品防腐剂乳酸链球菌素和生物聚合物生产原料乳酸的可行性。废弃马铃薯是因大小或擦伤或疾病造成的损伤而不适用于食品加工的马铃薯块茎。尽管废弃马铃薯富含包括淀粉、矿物质和蛋白质在内的各种营养物质,但仅靠它们仍无法为乳酸乳球菌亚种乳酸乳球菌(ATCC 11454)的生长和代谢提供足够的必需营养物质。当提供酵母提取物、肉蛋白胨、大豆蛋白胨(PS)、玉米浆固体(CSS)和含可溶物的酒糟等额外营养物质时,观察到细菌生长、乳酸链球菌素生物合成以及乳酸产量的增加。考虑到成本和可得性,选择PS和CSS作为乳酸链球菌素和乳酸联产的营养补充剂。随后使用基于统计学的实验设计优化了乳酸乳球菌亚种乳酸乳球菌在以废弃马铃薯为基础的培养基中生物合成乳酸链球菌素和联产乳酸的条件。