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首页> 外文期刊>Plant physiology >Constitutive expression of the beta-ketothiolase gene in transgenic plants. A major obstacle for obtaining polyhydroxybutyrate-producing plants
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Constitutive expression of the beta-ketothiolase gene in transgenic plants. A major obstacle for obtaining polyhydroxybutyrate-producing plants

机译:β-酮硫醇酶基因在转基因植物中的组成型表达。获得多羟基丁酸酯生产植物的主要障碍

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摘要

Polyhydroxybutyrate (PHB) is a member of a class of thermoelastic polymers called polyhydroxyalkanoates that serve many bacteria as intracellular storage molecules for carbon and energy. Transgenic plants provide a potential means of producing this polymer cost-effectively. To date, however, few reports of the successful production of this polymer have been published, with the exception of work with transgenic Arabidopsis. Using a variety of chimeric constructs, we have determined that the constitutive, chloroplast-localized expression of one of the genes involved in PHB production-the beta-ketothiolase (phbA) gene-is detrimental to the efficient production of transgenic PHB. The alternate use of either inducible or somatically activated promoters allowed the construction of transgenic PHB-producing potato (Solanum tuberosum) and tobacco (Nicotiana tabacum) plants, although the amount of PHB formed was still rather low. Taking advantage of an inducible promoter, the maximal amount of PHB produced in transgenic potato was 0.09 mg g(-1) dry weight. In transgenic tobacco using a somatically activated promoter, up to 3.2 mg g(-1) dry weight was accumulated. In Arabidopsis, the formation of high levels of PHB had previously been shown to be accompanied by severe negative effects on growth and development of the plant. Phasins are proteins known from PHB-producing bacteria speculated to serve as protectants against the highly hydrophobic surface of the PHB granules in the bacterial intracellular milieu. Co-expression of the phasin gene in parallel with the PHB synthesis genes, however, did not lead to reduced symptom development.
机译:聚羟基丁酸酯(PHB)是一类称为聚羟基链烷酸酯的热弹性聚合物的成员,该聚合物可将许多细菌用作细胞内碳和能量的存储分子。转基因植物提供了潜在地成本有效地生产这种聚合物的手段。然而,迄今为止,除了与转基因拟南芥一起工作外,很少有报道成功生产这种聚合物。使用多种嵌合构建体,我们已经确定参与PHB生产的一种基因-β-酮硫醇酶(phbA)基因的组成型,叶绿体定位表达不利于有效生产转基因PHB。诱导或体细胞激活启动子的交替使用允许构建转基因的生产PHB的马铃薯(Solanum tuberosum)和烟草(Nicotiana tabacum)植物,尽管形成的PHB数量仍然很低。利用可诱导的启动子,在转基因马铃薯中产生的最大PHB量为干重0.09 mg g(-1)。在使用体细胞激活启动子的转基因烟草中,积累了高达3.2 mg g(-1)的干重。在拟南芥中,高水平PHB的形成先前已被证明会对植物的生长和发育产生严重的负面影响。钙蛋白是从产生PHB的细菌中已知的蛋白,被认为可作为细菌细胞内环境中PHB颗粒的高度疏水性表面的保护剂。但是,与PHB合成基因同时表达的phasin基因并不能减少症状的发展。

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