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Regulation of Natural Rubber Biosynthesis by Proteins Associated with Rubber Particles

机译:用橡胶颗粒相关的蛋白质调节天然橡胶生物合成

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Natural rubber, cis-1,4-polyisoprene, is an essential raw material used in thousands of products, many of which are absolutely necessary for medical purposes. Natural rubber is obtained from latex, an aqueous emulsion present in the laticiferous vessels of the natural rubber-producing plants. Hevea brasiliensis (the Brazilian rubber tree) currently is the only commercially important source of natural rubber. H. brasiliensis crops have very little genetic variability, leaving rubber plantations at risk of serious pathogenic attacks. In addition, repeated exposure to residual proteins in latex products derived from H. brasiliensis have led to serious and widespread allergic (type I) hypersensitivity. Therefore, identification of alternative sources of natural rubber is a very important biotechnological task. Potentially, Russian dandelion (Taraxacum kok-saghyz) may be such an alternative because significant amounts of natural rubber are produced in its root system. However, H. brasiliensis is a more efficient producer of natural rubber than T. kok-saghyz. Thus, improvement of rubber biosynthesis in plants is a first-priority problem of modern biotechnology. In this review, we describe proteins that may increase the concentration of natural rubber in laticiferous vessels of T. kok-saghyz and its close relative Taraxacum brevicorniculatum, when overexpressed in the plants. These proteins, cis-prenyltransferases, rubber transferase activator, and small rubber particle proteins, are directly involved in synthesis of the polyisoprene chain. We also analyze the effects of their expression levels on the production of natural rubber in vivo.
机译:天然橡胶,CIS-1,4-聚异戊二烯,是成千上万产品的必要原料,其中许多是医疗目的的绝对必要的。自然橡胶是从乳胶中获得的,含水乳液存在于天然橡胶生产植物的含型血管中。 HEVEA Brasiliensis(巴西橡胶树)目前是天然橡胶唯一的商业上重要来源。 H.Brasiliensis作物具有很少的遗传变异性,留下橡胶种植园,可能存在严重的致病性发作。此外,重复接触来自H.Bariliensis的乳胶产品中的残留蛋白质导致严重和广泛的过敏(I型)超敏反应。因此,识别天然橡胶的替代来源是一个非常重要的生物技术任务。潜在地,俄罗斯蒲公英(Taraxacum Kok-sa​​ghyz)可能是一种替代方案,因为在其根系中产生了大量的天然橡胶。然而,H.Brasiliensis是一种比T.Kok-Saghyz更有效的天然橡胶制片人。因此,植物中橡胶生物合成的改善是现代生物技术的第一优先问题。在该综述中,我们描述了在植物中过度表达时,我们可以描述可能增加T.Kok-Sajhyz的含含量血管血管血管血管血管浓度的蛋白质。这些蛋白质,CIS-戊烷转移酶,橡胶转移酶活激酶和小橡胶粒子蛋白直接参与聚异戊二烯链的合成。我们还分析了表达水平对体内天然橡胶的影响。

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