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Fructan Accumulation and Sucrose Metabolism in Transgenic Maize Endosperm Expressing a Bacillus amyloliquefaciens SacB Gene.

机译:表达解淀粉芽孢杆菌SacB基因的转基因玉米胚乳中的果聚糖积累和蔗糖代谢。

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摘要

Over 40,000 species of plants accumulate fructan, [beta]-2-1- and [beta]-2-6-linked polymers of fructose as a storage reserve. Due to their high fructose content, several commercial applications for fructans have been proposed. However, plants that accumulate these polymers are not agronomically suited for large-scale cultivation or processing. This study describes the transformation of a Bacillus amyloliquefaciens SacB gene into maize (Zea mays L.) callus by particle bombardment. Tissue-specific expression and targeting of the SacB protein to endosperm vacuoles resulted in stable accumulation of high-molecular-weight fructan in mature seeds. Accumulation of fructan in the vacuole had no detectable effect on kernel development or germination. Fructan levels were found to be approximately 9-fold higher in sh2 mutants compared to wild-type maize kernels. In contrast to vacuole-targeted expression, starch synthesis and endosperm development in mature seeds containing a cytosolically expressed SacB gene were severely affected. The data demonstrate that hexose resulting from cytosolic SacB activity was not utilized for starch synthesis. Transgenic seeds containing a chimeric SacB gene provide further evidence that the dominant pathway for starch synthesis in maize endosperm is through uridine diphosphoglucose catalyzed by the enzyme sucrose synthase.
机译:超过40,000种植物积累果糖,果糖的β-2-1-和β-2-6-连接的聚合物作为储存储备。由于果糖含量高,已经提出了果聚糖的几种商业应用。但是,积聚这些聚合物的植物在农业上不适合大规模种植或加工。该研究描述了通过粒子轰击将解淀粉芽孢杆菌SacB基因转化为玉米(Zea mays L.)愈伤组织。组织特异性表达和SacB蛋白靶向胚乳液泡导致高分子量果聚糖在成熟种子中稳定积累。果胶中的果聚糖积累对籽粒发育或发芽没有可检测的影响。与野生型玉米籽粒相比,sh2突变体中果聚糖的含量大约高9倍。与液泡靶向表达相反,含有细胞质表达的SacB基因的成熟种子中的淀粉合成和胚乳发育受到严重影响。数据表明,由胞质SacB活性产生的己糖未用于淀粉合成。含有嵌合SacB基因的转基因种子提供了进一步的证据,表明玉米胚乳中淀粉合成的主要途径是通过蔗糖合酶催化的尿苷二磷酸葡萄糖。

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