培养基成分对潜在淀粉利用细菌产生的淀粉酶和 d-乳酸的影响

Ekkasit Kanklang, C. Songsiriritthigul, J. Yongsawatdigul, S. Rodtong
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摘要

各行各业对淀粉酶和乳酸的大量需求使得利用廉价底物生产酶和酸变得非常有吸引力。本研究探讨了主要培养基成分对潜在淀粉利用型和光学纯 D-乳酸生产型乳酸杆菌 SUTWR 73 产淀粉酶和 D-乳酸的影响,为乳酸菌的有效应用提供数据。在一定浓度的木薯淀粉中添加有机氮胰蛋白胨作为碳源,对其淀粉酶和 D-乳酸的产生有很大影响。而其他培养基成分:酵母提取物和廉价氮源(大豆蛋白、脱脂米糠和废酿酒酵母)与胰蛋白胨相比,总氮含量相同,但对这两种代谢物的产生均无影响。含有木薯淀粉(4.0%,w/v)和胰蛋白胨(4.5%,w/v)的培养基可令人满意地用于生产这两种产品。生产培养基的初始 pH 值是影响代谢物产量的另一个因素。适合生产淀粉酶和 D-乳酸的初始 pH 值分别为 8.0 和 7.0-10.0。在早期对数生长阶段检测到淀粉酶活性,而在晚期对数生长阶段产生 D-乳酸。从这项研究中了解淀粉酶和 D-乳酸产量之间的关系,对于设计一种经济的操作系统,直接从廉价的木薯淀粉中生产 D-乳酸,而无需在预处理中添加任何商业淀粉酶作为底物,从而降低生产过程的成本非常重要。
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EFFECTS OF MEDIA COMPOSITIONS ON AMYLASE AND D-LACTIC ACID PRODUCED BY A POTENTIAL STARCH-UTILIZING BACTERIUM
The high demand for amylase and lactic acid in various industries made enzyme and acid production from cheap substrates very attractive. This study investigated the effect of major medium constituents on amylase and D-lactic acid production by the potential starch-utilizing and optical pure D-lactic acid-producing Lactobacillus sp. SUTWR 73, to provide data for the efficient application of the lactic acid bacterium. Its amylase and D-lactic acid production was considerably affected by the addition of organic nitrogen tryptone to certain cassava starch concentrations as a carbon-source. While the other medium compositions: yeast extract and cheap nitrogen sources (soy protein, defatted rice bran, and spent brewery yeast) compared to tryptone as equal total nitrogen contents, did not have any effect on either metabolite production. The medium containing cassava starch (4.0%, w/v) and tryptone (4.5%, w/v) can be satisfactorily used for both products. The initial pH of the production medium was another factor affecting metabolite production. A suitable initial pH was 8.0 and 7.0-10.0 for amylase and D-lactic acid production, respectively. Amylase activity was detected at the early log growth phase while the D-lactic acid was produced at the late log phase. Understanding the relationship between amylase and D-lactic acid production from this study is important for designing an economical operating system for the direct production of D-lactic acid from cheap cassava starch without adding any commercial amylase as a substrate in pretreatment resulting in reduction costs of the production process.
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