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转基因甘蔗中聚羟基丁酸酯的生产增强。

Enhanced polyhydroxybutyrate production in transgenic sugarcane.

机构信息

The University of Queensland, Australian Institute for Bioengineering and Nanotechnology, Brisbane, Queensland, Australia.

出版信息

Plant Biotechnol J. 2012 Jun;10(5):569-78. doi: 10.1111/j.1467-7652.2012.00686.x. Epub 2012 Feb 28.

Abstract

Polyhydroxybutyrate (PHB) is a bacterial polyester that has properties similar to some petrochemically produced plastics. Plant-based production has the potential to make this biorenewable plastic highly competitive with petrochemical-based plastics. We previously reported that transgenic sugarcane produced PHB at levels as high as 1.8% leaf dry weight without penalty to biomass accumulation, suggesting scope for improving PHB production in this species. In this study, we used different plant and viral promoters, in combination with multigene or single-gene constructs to increase PHB levels. Promoters tested included the maize and rice polyubiquitin promoters, the maize chlorophyll A/B-binding protein promoter and a Cavendish banana streak badnavirus promoter. At the seedling stage, the highest levels of polymer were produced in sugarcane plants when the Cavendish banana streak badnavirus promoter was used. However, in all cases, this promoter underwent silencing as the plants matured. The rice Ubi promoter enabled the production of PHB at levels similar to the maize Ubi promoter. The maize chlorophyll A/B-binding protein promoter enabled the production of PHB to levels as high as 4.8% of the leaf dry weight, which is approximately 2.5 times higher than previously reported levels in sugarcane. This is the first time that this promoter has been tested in sugarcane. The highest PHB-producing lines showed phenotypic differences to the wild-type parent, including reduced biomass and slight chlorosis.

摘要

聚羟基丁酸酯(PHB)是一种细菌聚酯,其性质与某些石油化工生产的塑料相似。基于植物的生产有可能使这种生物可再生塑料在与基于石油化工的塑料的竞争中具有高度竞争力。我们之前曾报道过,转基因甘蔗在不影响生物量积累的情况下,可将 PHB 产量提高到叶片干重的 1.8%。这表明在该物种中提高 PHB 产量具有潜力。在这项研究中,我们使用了不同的植物和病毒启动子,结合多基因或单基因构建体来提高 PHB 水平。测试的启动子包括玉米和水稻泛素启动子、玉米叶绿素 A/B 结合蛋白启动子和 Cavendish 香蕉条纹病毒启动子。在幼苗期,当使用 Cavendish 香蕉条纹病毒启动子时,甘蔗植物中产生的聚合物水平最高。然而,在所有情况下,随着植物的成熟,这个启动子都发生了沉默。水稻 Ubi 启动子能够使 PHB 的产量达到与玉米 Ubi 启动子相似的水平。玉米叶绿素 A/B 结合蛋白启动子能够使 PHB 的产量达到叶片干重的 4.8%,这比以前在甘蔗中报道的水平高约 2.5 倍。这是该启动子首次在甘蔗中进行测试。最高 PHB 产生的品系与野生型亲本表现出不同的表型差异,包括生物量减少和轻微的黄化。

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