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Environment Control to Improve Recombinant Protein Yields in Plants Based on Agrobacterium-Mediated Transient Gene Expression

机译:基于农杆菌介导的瞬时基因表达的环境控制以提高植物重组蛋白的产量

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摘要

Agrobacterium-mediated transient expression systems enable plants to produce a wide range of recombinant proteins on a rapid timescale. To achieve economically feasible upstream production and downstream processing, two yield parameters should be considered: (1) recombinant protein content per unit biomass and (2) recombinant protein productivity per unit area–time at the end of the upstream production. Because environmental factors in the upstream production have impacts on these parameters, environment control is important to maximize the recombinant protein yield. In this review, we summarize the effects of pre- and postinoculation environmental factors in the upstream production on the yield parameters and discuss the basic concept of environment control for plant-based transient expression systems. Preinoculation environmental factors associated with planting density, light quality, and nutrient supply affect plant characteristics, such as biomass and morphology, which in turn affect recombinant protein content and productivity. Accordingly, environment control for such plant characteristics has significant implications to achieve a high yield. On the other hand, postinoculation environmental factors, such as temperature, light intensity, and humidity, have been shown to affect recombinant protein content. Considering that recombinant protein production in Agrobacterium-mediated transient expression systems is a result of a series of complex biological events starting from T-DNA transfer from Agrobacterium tumefaciens to protein biosynthesis and accumulation in leaf tissue, we propose that dynamic environment control during the postinoculation process, i.e., changing environmental conditions at an appropriate timing for each event, may be a promising approach to obtain a high yield. Detailed descriptions of plant growth conditions and careful examination of environmental effects will significantly contribute to our knowledge to stably obtain high recombinant protein content and productivity, thus enhancing the utility of plant-based transient expression systems as recombinant protein factories.
机译:农杆菌介导的瞬时表达系统使植物能够在快速的时间尺度上产生多种重组蛋白。为了实现经济可行的上游生产和下游加工,应考虑两个产量参数:(1)每单位生物量的重组蛋白含量,以及(2)上游生产结束时每单位面积-时间的重组蛋白生产率。由于上游生产中的环境因素会影响这些参数,因此环境控制对于最大化重组蛋白的产量非常重要。在这篇综述中,我们总结了上游生产中接种前和接种后环境因素对产量参数的影响,并讨论了基于植物的瞬时表达系统环境控制的基本概念。与种植密度,光照质量和养分供应有关的接种前环境因素影响植物的特性,例如生物量和形态,进而影响重组蛋白的含量和生产力。因此,针对这种植物特性的环境控制对于实现高产量具有重要意义。另一方面,已经证明接种后的环境因素,例如温度,光强度和湿度会影响重组蛋白的含量。考虑到农杆菌介导的瞬时表达系统中重组蛋白的产生是一系列复杂生物事件的结果,这些事件从根癌农杆菌的T-DNA转移到叶片组织中的蛋白质生物合成和积累开始,我们建议在接种后的过程中控制动态环境即在每个事件的适当时机改变环境条件可能是获得高产的有前途的方法。对植物生长条件的详细描述和对环境影响的仔细检查将大大有助于我们的知识,以稳定地获得高重组蛋白含量和生产率,从而增强基于植物的瞬时表达系统作为重组蛋白工厂的实用性。

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