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Engineering and optimization of phosphate-responsive phytase expression in Pichia pastoris yeast for phytate hydrolysis

机译:Pichia牧草酵母磷酸盐浓度植酸酶表达的工程与优化植物水解

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摘要

Phytate is the major storage form of phosphorus in plants. It is present in cereals and raw materials of vegetable origin used in animal and human diets. However, non-ruminant animals have little phytase activity in their guts and, therefore, cannot digest phytate. As a result, almost all dietary phytate is discharged into the environment, causing phosphorus pollution. Phytate is also considered as an "antinutrient" for its ability to form insoluble and stable complexes with metal ions, thus reducing dietary absorption of essential minerals. It is a dire need to develop sustainable approaches for environmentally-friendly utilization for this valuable and abundant natural resource. To this end, we engineered Pichia pastoris to express and secrete phytase in a "made-to-order" fashion in response to external level of inorganic phosphate (Pi). Responsiveness to external Pi level was achieved by generating a Pi-responsive promoter library using directed evolution. The resultant yeast strains were proven to liberate Pi from wheat-based meal in a simulated in vitro digestion model. These yeast-based whole cell bio-catalysts may serve as platform hosts with potential applications in food processing industry and animal waste treatment.
机译:植物是植物中磷的主要储存形式。它存在于动物和人类饮食中使用的蔬菜来源的谷物和原料。然而,非反刍动物的动物在其肠道中具有很少的植酸酶活性,因此不能消化植物。结果,几乎所有膳食植物都被排出到环境中,导致磷污染。植物也被认为是“抗露抑制”,其能够形成与金属离子的不溶性和稳定的配合物,从而减少精矿物的膳食吸收。这是一种急迫,需要为这种有价值和丰富的自然资源开发环保型利用的可持续利用方法。为此,我们在响应于无机磷酸盐(PI)的外部水平,我们设计了Pichia Pastoris以表达和分泌植物酶的“制作”时尚。通过使用定向演进产生PI-encightive启动子文库来实现对外部PI水平的响应性。已被证明将得到的酵母菌株从模拟体外消化模型中从小麦膳食中释放出PI。这些基于酵母的全细胞生物催化剂可用作具有食品加工行业和动物废物处理中的潜在应用的平台主体。

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