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Optimization of transplastomic production of hemicellulases in tobacco: effects of expression cassette configuration and tobacco cultivar used as production platform on recombinant protein yields

机译:烟草中半纤维素酶的质体转化生产的优化:表达盒结构和烟草品种作为生产平台对重组蛋白产量的影响

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摘要

BackgroundChloroplast transformation in tobacco has been used extensively to produce recombinant proteins and enzymes. Chloroplast expression cassettes can be designed with different configurations of the cis-acting elements that govern foreign gene expression. With the aim to optimize production of recombinant hemicellulases in transplastomic tobacco, we developed a set of cassettes that incorporate elements known to facilitate protein expression in chloroplasts and examined expression and accumulation of a bacterial xylanase XynA. Biomass production is another important factor in achieving sustainable and high-volume production of cellulolytic enzymes. Therefore, we compared productivity of two tobacco cultivars – a low-alkaloid and a high-biomass - as transplastomic expression platforms.
机译:背景技术烟草中的叶绿体转化已被广泛用于生产重组蛋白和酶。叶绿体表达盒可以设计有控制外源基因表达的顺式作用元件的不同构型。为了优化在转质体烟草中重组半纤维素酶的生产,我们开发了一组盒,这些盒结合了已知有助于叶绿体中蛋白质表达的元件,并检查了细菌木聚糖酶XynA的表达和积累。生物量生产是实现纤维素分解酶可持续和大量生产的另一个重要因素。因此,我们比较了两种烟草品种(低生物碱和高生物量)作为转质体表达平台的生产力。

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