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Nonfeed Application of Rendered Animal Proteins for Microbial Production of Eicosapentaenoic Acid by the Fungus Pythium irregulare

机译:提炼动物蛋白的非饲料应用,用于通过真菌不规则腐霉产生微生物产生二十碳五烯酸

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Rendered animal proteins are well suited for animal nutrition applications, but the market is maturing, and there is a need to develop new uses for these products. The objective of this study is to explore the possibility of using animal proteins as a nutrient source for microbial production of omega-3 polyunsaturated fatty acids by the microalga Schizochytrium limacinum and the fungus Pythium irregulare. To be absorbed by the microorganisms, the proteins needed to be hydrolyzed into small peptides and free amino acids. The utility of the protein hydrolysates for microorganisms depended on the hydrolysis method used and the type of microorganism. The enzymatic hydrolysates supported better cell growth performance than the alkali hydrolysates did. P. irregulare displayed better overall growth performance on the experimental hydrolysates compared to S. limacinum. When P. irregulare was grown in medium containing 10 g/L enzymatic hydrolysate derived from meat and bone meal or feather meal, the performance of cell growth, lipid synthesis, and omega-3 fatty acid production was comparable to the that of culture using commercial yeast extract. The fungal biomass derived from the animal proteins had 26-29% lipid, 32-34% protein, 34-39% carbohydrate, and <2% ash content. The results show that it is possible to develop a nonfeed application for rendered animal protein by hydrolysis of the protein and feeding to industrial microorganisms which can produce omega-3 fatty acids for making omega-3-fortified foods or feeds.
机译:提炼的动物蛋白非常适合动物营养应用,但市场日趋成熟,需要开发这些产品的新用途。这项研究的目的是探索利用动物蛋白作为营养来源,通过微藻类Schizochytrium limacinum和真菌不规则腐霉菌来产生Omega-3多不饱和脂肪酸的微生物。为了被微生物吸收,需要将蛋白质水解为小肽和游离氨基酸。蛋白质水解产物对微生物的用途取决于所用的水解方法和微生物的类型。酶水解物比碱水解物支持更好的细胞生长性能。与S. limacinum相比,不规则假单胞菌在实验水解产物上显示出更好的总体生长性能。在含有10 g / L来源于肉和骨粉或羽毛粉的酶促水解产物的培养基中培养不规则疟原虫时,其细胞生长,脂质合成和omega-3脂肪酸生产的性能可与市售培养物媲美。酵母抽提物。来源于动物蛋白质的真菌生物质具有26-29%的脂质,32-34%的蛋白质,34-39%的碳水化合物和<2%的灰分含量。结果表明,可以通过水解蛋白并将其喂入可产生omega-3脂肪酸以制备omega-3强化食品或饲料的工业微生物来开发提炼动物蛋白的非饲料应用。

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