Lactobacillus acidophilus and Lactobacillus cereus-containing products do reduce soybean antinutritional factors

M. J. Madibana, C. Fouché, J. Davids, S. Mthembu, M.H. Motubatse, Z. Poni, Elizabeth Louise Thomas, O. Nyengule, R. Nemakhavhani
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Abstract

Abstract. Soybean has shown over the years to be a reliable plant protein source to excellently substitute the high cost fishmeal in aquaculture diets. However, antinutritional factors (ANFs) limit its usage in aquaculture feeds. Therefore, the current study was designed to test the efficacy of three substrates containing different microorganisms that are capable of reducing soybean ANFs in a 3-month period at a low pH of 2.8. Full fat soybean (USB) was fermented using Anaerobic waste extract from Recirculating Aquaculture System sludge trap (RASW); Biocentric® Feed probiotic powder (BIOP); Oakland® double cream yoghurt (3x 106 CFU ml¯¹) (OY), Control treatment which had no substrate that contained fermenting microorganism (SRR). Each treatment was conducted in three replicates at 2.8 pH. The untreated soybean granules recorded a numerical protein content of 48.56%. The BIOP fermented soybean recorded significantly higher protein content as compared to the other soybean meal fermented with the other substrates. There was also a significant decrease in the soybean content of the amino acid lysine upon fermentation with the four treatments. Fermentation of the soybean with the four treatments was not significantly different in relation with their soybean lipid content, crude fibre content, methionine + cysteine, dry matter content, urease activity and gross energy content (P > 0.05). There was an overall significant decrease in the ANFs when soybean was fermented with the four treatments, with four out of six analysed ANFs parameters content showing a significant decrease upon fermentation (P < 0.05). Fermentation of the soybean with RASW resulted in a significant decrease of trypsin inhibitor content as compared to the rest of the treatments. The USB recorded a numerical value of 43.80 for trypsin inhibitor, whereas RASW fermented soybean recorded least trypsin inhibitor of 3815 ± 010 mg/g. In conclusion, the current study showed that the fermentation substrates used are capable of reducing soybean ANFs, with a slight decrease in soybean protein content.
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嗜酸乳杆菌和含蜡状乳杆菌的产品确实会降低大豆的抗营养因子
摘要多年来,大豆已被证明是一种可靠的植物蛋白来源,可以很好地替代水产养殖饲料中高成本的鱼粉。然而,抗营养因子(ANFs)限制了其在水产养殖饲料中的应用。因此,本研究旨在测试三种含有不同微生物的底物在3个月的低pH值2.8下还原大豆ANFs的功效。利用循环水养殖系统污泥池厌氧废液发酵全脂大豆(USB);Biocentric®饲料益生菌粉;奥克兰®双层奶油酸奶(3x 106 CFU ml¯¹)(OY),对照处理,无底物含有发酵微生物(SRR)。每个处理在2.8 ph下进行3个重复。未经处理的大豆颗粒的数值蛋白质含量为48.56%。与其他底物发酵的豆粕相比,BIOP发酵大豆的蛋白质含量显著提高。4种处理均显著降低了大豆发酵过程中赖氨酸含量。4个处理的大豆发酵量与大豆脂肪含量、粗纤维含量、蛋氨酸+半胱氨酸、干物质含量、脲酶活性和总能含量之间无显著差异(P < 0.05)。4个处理发酵大豆时,ANFs含量总体显著降低,6个分析ANFs参数中有4个在发酵后显著降低(P < 0.05)。与其他处理相比,RASW发酵大豆导致胰蛋白酶抑制剂含量显著降低。在USB实验中,胰蛋白酶抑制剂的数值为43.80,而RASW发酵大豆中胰蛋白酶抑制剂的数值最少,为3815±010 mg/g。综上所述,本研究表明,所使用的发酵底物能够降低大豆ANFs,但大豆蛋白质含量略有下降。
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