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Protein accumulation and rumen stability of wheat gamma-gliadin fusion proteins in tobacco and alfalfa

机译:烟草和苜蓿小麦γ-胶质素融合蛋白的蛋白质积累和瘤胃稳定性

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The nutritional value of various crops can be improved by engineering plants to produce high levels of proteins. For example, because methionine deficiency limits the protein quality of Medicago Sativa (alfalfa) forage, producing alfalfa plants that accumulate high levels of a methionine-rich protein could increase the nutritional value of that crop. We used three strategies in designing methionine-rich recombinant proteins that could accumulate to high levels in plants and thereby serve as candidates for improving the protein quality of alfalfa forage. In tobacco, two fusion proteins, -gliadin--zein and --zein, as well as -zein co-expressed with -zein, all formed protein bodies. However, the -gliadin--zein fusion protein accumulated to the highest level, representing up to 1.5% of total soluble protein (TSP) in one transformant. In alfalfa, -gliadin--zein accumulated to 0.2% of TSP, and in an in vitro rumen digestion assay, -gliadin--zein was more resistant to microbial degradation than Rubisco. Additionally, although it did not form protein bodies, a -gliadin-GFP fusion protein accumulated to much higher levels, 7% of TSP, than a recombinant protein comprised of an ER localization signal fused to GFP in tobacco. Based on our results, we conclude that -gliadin--zein is a potential candidate protein to use for enhancing methionine levels in plants and for improving rumen stability of forage protein. -gliadin fusion proteins may provide a general platform for increasing the accumulation of recombinant proteins in transgenic plants.
机译:通过工程植物可以改善各种作物的营养价值以产生高水平的蛋白质。例如,因为甲硫氨酸缺乏限制了Medicago Sativa(Alfalfa)饲料的蛋白质质量,产生积累高水平富含蛋氨酸的蛋白质的苜蓿植物可以增加该作物的营养价值。我们在设计富含甲硫氨酸的重组蛋白方面的三种策略,该蛋白质可以积聚到植物中的高水平,从而作为提高苜蓿饲料蛋白质的候选物。在烟草,两种融合蛋白,-Gliadin - 玉米蛋白和 - 加入素,以及与-ZEIN,所有形成的蛋白质有关。然而,粘性蛋白 - 玉米蛋白融合蛋白积聚在最高水平,其在一种转化体中的可溶性蛋白质(TSP)的最高可达1.5%。在苜蓿中,-Gliadin - 玉米醇蛋白累积在TSP的0.2%,并且在体外瘤胃消化测定中,-Gliadin - 玉米醇蛋白比Rubisco更耐微生物降解。此外,虽然它没有形成蛋白质,但含有高于更高水平的-Gliadin-GFP融合蛋白,其占TSP的7%,而不是由烟草中GFP融合的ER定位信号的重组蛋白。基于我们的结果,我们得出结论,-GLIADIN - ZEIN是一种用于增强植物中的甲硫氨酸水平的潜在候选蛋白质和改善饲料蛋白的瘤胃稳定性。 -GliAdin融合蛋白可以提供一种用于增加转基因植物中重组蛋白的积累的一般平台。

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