College of Biological Science & Biotechnology, Beijing Forestry University, Beijing, China.
J Food Sci. 2013 Apr;78(4):M575-81. doi: 10.1111/1750-3841.12075. Epub 2013 Mar 12.
How soybean protein hydrolysates (SPHs) to favor the growth of S. thermophilus ST were investigated. Hydrolyzed soybean protein was fractionated to 4 fragments, that is, SPH-I, SPH-II, SPH-III, and SPH-IV according to their molecular weight sizes. SPHs can improve the growth of strain ST, in which SPH-IV, with the molecular weight of less than 5 kD, significantly promoted the growth of strain ST. The cell counts of strain ST grew quickly from 7.71 to 9.78 (log CFU/mL) when the concentrations of SPH-IV ranging from 0% to 1%. Moreover, 2 chemically defined media (CDMs) were used to test their roles in maintaining the viability of strain ST. CDMs only maintained the survival of strain ST, but SPH-IV had the promotional effects on proliferation of the bacteria. SPH-IV was further characterized to be oligopeptides that contain 2 to 8 amino acids and free amino acids by high-performance liquid chromatography-mass spectrometry (HPLC-MS) analysis. The amino acid compositions showed that SPH-IV contained more essential amino acids, which were necessary for the growth of S. thermophilus ST. Clearly, SPH-IV could be used as an exogenous nitrogen supplement to enhance the proliferation of S. thermophilus ST and other lactic acid bacteria, and the data from small scale-up fermentation also supported this point.
研究了大豆蛋白水解物(SPH)如何有利于嗜热链球菌 ST 的生长。根据分子量大小,水解大豆蛋白被分成 4 个片段,即 SPH-I、SPH-II、SPH-III 和 SPH-IV。SPH 可以促进 ST 菌株的生长,其中分子量小于 5kD 的 SPH-IV 显著促进了 ST 菌株的生长。当 SPH-IV 的浓度从 0%增加到 1%时,ST 菌株的细胞数从 7.71 迅速增加到 9.78(log CFU/mL)。此外,使用了两种化学定义培养基(CDM)来测试它们在维持 ST 菌株活力方面的作用。CDM 只能维持 ST 菌株的存活,但 SPH-IV 对细菌的增殖具有促进作用。通过高效液相色谱-质谱(HPLC-MS)分析,进一步对 SPH-IV 进行了鉴定,结果表明其为含有 2 至 8 个氨基酸的寡肽和游离氨基酸。氨基酸组成表明,SPH-IV 含有更多的必需氨基酸,这些氨基酸是嗜热链球菌 ST 生长所必需的。显然,SPH-IV 可以用作外源氮源补充剂,以增强嗜热链球菌 ST 和其他乳酸菌的增殖,从小规模发酵试验获得的数据也支持了这一点。