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Production of leafy biomass using temporary immersion bioreactors: an alternative platform to express proteins in transplastomic plants with drastic phenotypes

机译:使用临时浸入式生物反应器生产叶状生物质:在具有剧烈表型的转质体植物中表达蛋白质的替代平台

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摘要

Chloroplast transformation technology is a promising approach for the production of foreign proteins in plants with expression levels of up to 70 % of total soluble protein (TSP) achieved in tobacco. However, expression of foreign protein in the chloroplast can lead to drastic or even lethal effects in transplastomic plants grown in soil, thereby potentially limiting the applicability of this technology. For instance, previous attempts to express the outer surface protein A (OspA) from Borrelia burgdorferi in tobacco chloroplasts led to plant death when expressed at 10 % TSP. We show here that this earlier transplastomic line, as well as a new plant line, OspA:YFP, expressing OspA fused to the yellow fluorescent protein, can be propagated in temporary immersion bioreactors (TIBs) using AlkaBurst™ technology to produce leafy biomass that expressed OspA at levels of up to 7.6 % TSP, to give a maximum yield of OspA of about 108 mg/L. Our results show that TIBs provide an alternative method for the production of transplastomic biomass expressing proteins toxic for plants and is a particularly useful approach when ‘absolute’ containment is required.
机译:叶绿体转化技术是一种在植物中生产外源蛋白质的有前途的方法,其表达水平高达烟草中总可溶性蛋白质(TSP)的70%。但是,异质蛋白在叶绿体中的表达可能会在土壤中生长的转质体植物中产生剧烈甚至致命的作用,从而潜在地限制了该技术的适用性。例如,以前尝试在烟草叶绿体中表达伯氏疏螺旋体的外表面蛋白A(OspA)导致当以10%TSP表达时植物死亡。我们在这里显示,此早期的质体转化系以及表达与黄色荧光蛋白融合的OspA的新植物系OspA:YFP可以使用AlkaBurst™技术在临时浸入式生物反应器(TIB)中繁殖,以产生表达OspA的最高TSP含量为7.6%,最大OspA产量约为108 mg / L。我们的结果表明,TIB为生产表达对植物有毒的蛋白质的质体转化生物质提供了另一种方法,并且在需要“绝对”封闭时特别有用。

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