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Transgenic microalgae expressing Escherichia coli AppA phytase as feed additive to reduce phytate excretion in the manure of young broiler chicks

机译:表达大肠杆菌AppA植酸酶作为饲料添加剂的转基因微藻,可减少雏鸡粪便中植酸的排泄

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Microbial phytases are widely used as feed additive to increase phytate phosphorus utilization and to reduce fecal phytates and inorganic phosphate (iP) outputs. To facilitate the process of application, we engineered an Escherichia coli appA phytase gene into the chloroplast genome of the model microalga, Chlamydomonas reinhardtii, and isolated homoplasmic plastid transformants. The catalytic activity of the recombinant E. coli AppA can be directly detected in the whole-cell lysate, termed Chlasate, prepared by freeze-drying the transgenic cell paste with liquid nitrogen. The E. coli AppA in the Chlasate has a pH and temperature optima of 4.5 and 60°C, respectively, which are similar to those described in the literature. The phytase-expressed Chlasate contains 10 phytase units per gram dry matter at pH 4.5 and 37°C. Using this transgenic Chlasate at 500 U/kg of diet for young broiler chicks, the fecal phytate excretion was reduced, and the iP was increased by 43% and 41%, respectively, as compared to those of the chicks fed with only the basal diet. The effectiveness of the Chlasate to break down the dietary phytates is compatible with the commercial Natuphos fungal phytase. Our data provide the first evidence of functional expression of microbial phytase in microalgae and demonstrate the proof of concept of using transgenic microalgae as a food additive to deliver dietary enzymes with no need of protein purification.
机译:微生物肌醇六磷酸酶广泛用作饲料添加剂,以增加肌醇六磷酸的利用率,并减少粪便肌醇六磷酸和无机磷酸盐(iP)的产量。为了促进应用过程,我们将大肠杆菌appA植酸酶基因工程改造为模型微藻,莱茵衣藻和分离的同质质体转化体的叶绿体基因组。重组大肠杆菌AppA的催化活性可以直接在全细胞裂解液(称为Chlasate)中检测到,该裂解液是通过用液氮冷冻干燥转基因细胞糊制备的。 Chlasate中的E. coli AppA的最适pH和最适温度分别为4.5和60°C,与文献中所述相似。表达植酸酶的草酸盐在pH 4.5和37°C下每克干物质含10个植酸酶单位。与仅饲喂基础饲料的雏鸡相比,使用这种以500 U / kg饲料的转基因Chlasate饲料处理的雏鸡,粪便中的植酸排泄减少了,iP分别增加了43%和41%。 。 Chlasate分解膳食肌醇六磷酸的功效与商品Natuphos真菌肌醇六磷酸酶兼容。我们的数据为微生物植酸酶在微藻中的功能性表达提供了首个证据,并证明了使用转基因微藻作为食品添加剂来输送膳食酶而无需蛋白质纯化的概念证明。

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