Sharma Ritu, Mittal Arpana, Gupta Varun, Aggarwal Neeraj K
Department of Microbiology, Kurukshetra University, Kurukshetra, 136119, Haryana, India.
Gobind Ballabh Pant University of Agriculture and Technology, Pant Nagar, Uttarakhand, India.
Braz J Microbiol. 2024 Dec;55(4):3097-3115. doi: 10.1007/s42770-024-01492-x. Epub 2024 Aug 20.
Phytase, recognized for its ability to enhance the nutritional value of phytate-rich foods, has has gained significant prominence. The production of this enzyme has been significantly boosted while preserving economic efficiency by utilizing natural substrates and optimizing essential factors. This study focuses on optimizing phytase production through solid-state fermentation and evaluating its effectiveness in enhancing nutrient utilization in chicken diets.
The objective is to optimize phytase production via solid-state fermentation, characterize purified phytase properties, and assess its impact on nutrient utilization in chicken diets. Through these objectives, we aim to deepen understanding of phytase's role in poultry nutrition and contribute to more efficient feed formulations for improved agricultural outcomes.
We utilized solid-state fermentation with Pichia kudriavzevii FSMP-Y17 yeast on orange peel substrate, optimizing variables like temperature, pH, incubation time, and supplementing with glucose and ammonium sulfate. Following fermentation, we purified the phytase enzyme using standard techniques, characterizing its properties, including molecular weight, optimal temperature and pH, substrate affinity, and kinetic parameters.
The optimized conditions yielded a remarkable phytase yield of 7.0 U/gds. Following purification, the enzyme exhibited a molecular weight of 64 kDa and displayed optimal activity at 55 °C and pH 5.5, with kinetic parameters (Km = 3.39 × 10 M and a V of 7.092 mM/min) indicating efficient substrate affinity.
The addition of purified phytase to chicken diets resulted in significant improvements in nutrient utilization and overall performance, including increased feed intake, improved feed conversion ratio, enhanced bird growth, better phosphorus retention, and improved egg production and quality. By addressing challenges associated with phytate-rich diets, such as reduced nutrient availability and environmental pollution, phytase utilization promotes animal welfare and sustainability in poultry production.
植酸酶因其能够提高富含植酸的食物的营养价值而备受关注。通过利用天然底物和优化关键因素,在保持经济效率的同时,这种酶的产量得到了显著提高。本研究聚焦于通过固态发酵优化植酸酶的生产,并评估其在提高鸡日粮营养利用率方面的效果。
目的是通过固态发酵优化植酸酶的生产,表征纯化后的植酸酶特性,并评估其对鸡日粮营养利用率的影响。通过这些目标,我们旨在加深对植酸酶在禽类营养中作用的理解,并为提高农业产出的更高效饲料配方做出贡献。
我们利用库德里阿兹威毕赤酵母FSMP-Y17在橙皮底物上进行固态发酵,优化温度、pH值、培养时间等变量,并添加葡萄糖和硫酸铵。发酵后,我们使用标准技术纯化植酸酶,表征其特性,包括分子量、最适温度和pH值、底物亲和力和动力学参数。
优化后的条件产生了7.0 U/gds的显著植酸酶产量。纯化后,该酶的分子量为64 kDa,在55°C和pH 5.5时表现出最佳活性,动力学参数(Km = 3.39×10 M和V为7.092 mM/min)表明其具有高效的底物亲和力。
在鸡日粮中添加纯化的植酸酶可显著提高营养利用率和整体性能,包括增加采食量、改善饲料转化率、促进鸡生长、提高磷保留率以及改善产蛋量和蛋品质。通过应对与富含植酸的日粮相关的挑战,如营养利用率降低和环境污染,植酸酶的利用促进了家禽生产中的动物福利和可持续性。