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The degradation of phytate by microbial and wheat phytases is dependent on the phytate matrix and the phytase origin

机译:微生物和小麦植酸酶对植酸的降解取决于植酸基质和植酸酶的来源

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Phytases increase utilization of phytate phosphorus in feed. Since wheat is rich in endogenous phytase activity it was examined whether wheat phytases could improve phytate degradation compared to microbial phytases. Moreover, it was investigated whether enzymatic degradation of phytate is influenced by the matrix surrounding it. Phytate degradation was defined as the decrease in the sum of InsP(6) + InsP(5).RESULTS: Endogenous wheat phytase effectively degraded wheat InsP(6) + InsP(5) at pH 4 and pH 5, while this was not true for a recombinant wheat phytase or phytase extracted from wheat bran. Only microbial phytases were able to degrade InsP(6) + InsP(5) in the entire pH range from 3 to 5, which is relevant for feed applications. A microbial phytase was efficient towards InsP(6) + InsP(5) in different phytate samples, whereas the ability to degrade InsP(6) + InsP(5) in the different phytate samples ranged from 12% to 70% for the recombinant wheat phytase.CONCLUSION: Wheat phytase appeared to have an interesting potential. However, the wheat phytases studied could not improve phytate degradation compared to microbial phytases. The ability to degrade phytate in different phytate samples varied greatly for some phytases, indicating that phytase efficacy may be affected by the phytate matrix
机译:植酸酶提高了饲料中植酸磷的利用率。由于小麦具有丰富的内源植酸酶活性,因此研究了与有机植酸酶相比,植酸酶是否可以改善植酸降解。此外,研究了植酸酶的降解是否受其周围基质的影响。植酸降解定义为InsP(6)+ InsP(5)的总和降低。结果:内源性植酸酶在pH 4和pH 5时有效降解了小麦InsP(6)+ InsP(5),但事实并非如此用于重组小麦植酸酶或从麦麸中提取的植酸酶。只有微生物植酸酶才能在3至5的整个pH范围内降解InsP(6)+ InsP(5)。微生物植酸酶对不同植酸盐样品中的InsP(6)+ InsP(5)有效,而重组植株小麦中不同植酸盐样品中降解InsP(6)+ InsP(5)的能力范围为12%至70%结论:小麦植酸酶似乎具有有趣的潜力。但是,与微生物植酸酶相比,所研究的小麦植酸酶不能改善植酸酶的降解。对于某些肌醇六磷酸酶而言,不同肌醇六磷酸酶样品中降解肌醇六磷酸酶的能力差异很大,这表明肌醇六磷酸酶的功效可能受到肌醇六磷酸酶基质的影响。

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