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Molecular biochemical characterization of rubber biosynthetic machinery in Hevea and Dandelion, and evaluation of Rabbitbrush as a potential domestic rubber crop.

机译:橡胶树和蒲公英中橡胶生物合成机械的分子生化特性,以及对作为潜在的家用橡胶作物的Rabbitbrush的评估。

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摘要

Natural rubber is an irreplaceable material that is used in manufacturing over 40,000 products including tires and numerous medical devices. Hevea brasiliensis is the sole producer of world natural rubber and more than 90% of the Hevea plantations are located in less than five South Asian countries. In 2011, the US spent 4.4 billion dollars to import natural rubber. When considering the unpredictability and high cost of NR imports, the limited growing conditions of Hevea plants, the increasing allergic reactions caused by Hevea rubber, and the irreplaceability by synthetics, it is clear that domestic sources of natural rubber are needed. Furthermore, the rubber transferase that is responsible for producing rubber is currently unknown, and understanding rubber biosynthetic pathway will help to improve domestic rubber crops. In this study several experiments were done to identify the rubber transferase. The rubber transferase is responsible for the polymerization of isopentenyl pyrophosphate (IPP) monomers into high molecular weight cis-1,4-polyisoprene polymer with the help of farnesyl pyrophosphate (FPP) primer. In all rubber producing plants rubber is made in cytosolic compartments know as rubber particles. The analyses of H. brasiliensis rubber particle proteins with liquid chromatography mass spectrometry (LC/MS) and western blot analysis using cis-prenyltransferase (CPT) antibodies confirmed the CPT localization in washed rubber particles (WRPs). Direct evidence of CPT involvement in rubber polymerization was established by in vitro cross-linking studies done with two different FPP analogues. The in vivo role of CPT was identified by CPT under-expressing transgenic Taraxacum kok-saghyz (Russian Dandelion) plants.;Additionally, this research was focused in identifying a domestic rubber crop. Ericameria nauseosa (Rabbitbrush) is one of the very few domestic rubber producers. Wild Rabbitbrush populations were analyzed for their rubber amount and molecular weight. Patterns of rubber accumulation and molecular weight in shoots with different diameter tissue were established over time. Rabbitbrush collected from Austin, NV had high quality rubber in high yield. The extracted rubber had several physical properties that were analogous to existing commercial natural rubber producers. The resins and the biomass of Rabbitbrush were also analyzed. Both resin and leftover biomass residue had promising characteristics. Overall, Rabbitbrush collected from Austin, NV has the potential of becoming a domestic natural rubber, resin, and biomass crop.
机译:天然橡胶是不可替代的材料,可用于制造40,000多种产品,包括轮胎和众多医疗设备。巴西橡胶树是世界天然橡胶的唯一生产商,超过90%的橡胶树种植园位于不到五个南亚国家。 2011年,美国花费了44亿美元进口天然橡胶。考虑到天然橡胶进口的不可预测性和高成本,橡胶树工厂的生长条件有限,橡胶树皮引起的过敏反应增加以及合成橡胶的不可替代性,显然需要天然橡胶的国内来源。此外,目前尚不清楚负责生产橡胶的橡胶转移酶,了解橡胶的生物合成途径将有助于改善国内橡胶作物。在这项研究中,进行了一些实验来鉴定橡胶转移酶。橡胶转移酶借助焦磷酸法呢酯(FPP)底漆,使异戊烯基焦磷酸酯(IPP)单体聚合成高分子量的顺式1,4-聚异戊二烯聚合物。在所有橡胶生产厂中,橡胶都是在胞质隔室中制成的,被称​​为橡胶颗粒。使用液相色谱质谱(LC / MS)和使用顺式异戊二烯基转移酶(CPT)抗体的Western印迹分析对巴西橡胶杆菌橡胶颗粒蛋白质进行的分析证实了CPT在洗涤过的橡胶颗粒(WRP)中的定位。通过使用两种不同的FPP类似物进行的体外交联研究,建立了CPT参与橡胶聚合的直接证据。 CPT的体内作用是通过CPT的低表达转基因蒲公英(Taraxacum kok-sa​​ghyz)植物来确定的。此外,这项研究的重点是鉴定一种家用橡胶作物。 Ericameria nauseosa(兔子刷)是国内极少数的橡胶生产商之一。分析野兔刷种群的橡胶量和分子量。随着时间的推移,建立了具有不同直径组织的芽中橡胶积累和分子量的模式。从内华达州奥斯汀收集的Rabbitbrush具有高产量的优质橡胶。提取的橡胶具有类似于现有商业天然橡胶生产商的几种物理性质。还分析了Rabbitbrush的树脂和生物量。树脂和剩余的生物质残留物均具有良好的特性。总体而言,从内华达州奥斯汀市收集的Rabbitbrush具有成为国内天然橡胶,树脂和生物质作物的潜力。

著录项

  • 作者

    Hathwaik, Upul Indrajith.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Biology Molecular.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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