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首页> 外文期刊>Turkish Journal of Botany >Improvement of biomass production in transgenic Melia azedarach L. plants by the expression of a GA20-oxidase gene
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Improvement of biomass production in transgenic Melia azedarach L. plants by the expression of a GA20-oxidase gene

机译:GA20-氧化酶基因的表达改善转基因苦ia种子植物的生物量生产

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摘要

Melia azedarach L. is a multipurpose timber tree that is important in forestry plantations. Genetic modification to improve the growth rate and wood quality is important to produce new cultivars of M. azedarach . In this study, the effects of AtGA20ox gene expression on plant growth, wood formation, and biomass production in transgenic M. azedarach plants were investigated . AtGA20ox was inserted into the binary vector pBI101 under the control of the xylem specific promoter CAD4 and transferred to M. azedarach via Agrobacterium -mediated method. The integration and expression of the transgenes were confirmed using PCR, RT-PCR, and Southern blotting. The specificity of CAD4 in the xylem was indicated by the higher expression of the AtGA20ox gene in the stem tissues compared to the leaves. The larger stem diameter resulted from higher xylem cell numbers and a wider xylem zone in all the transgenic plants. In addition, the transgenic plants also grew more quickly. Consequently, transgenic M. azedarach increased its biomass production 2- to 4-fold compared to the wild-type plants at 90 days under greenhouse conditions. Our results suggest that the expression of ectopic AtGA20ox under the control of a xylem-specific promoter is an appropriate method to improve plant growth, biomass production, and wood formation in M. azedarach and other forestry plants.
机译:Melia azedarach L.是一种多用途木材树,在林业种植园中很重要。基因改造对提高生长速度和木材质量至关重要,这对于生产新的棉铃虫品种至关重要。在这项研究中,研究了AtGA20ox基因表达对转基因M. azedarach植物的生长,木材形成和生物量生产的影响。在木质部特异性启动子CAD4的控制下,将AtGA20ox插入二元载体pBI101中,并通过农杆菌介导的方法转移至a树分支杆菌。使用PCR,RT-PCR和Southern印迹证实了转基因的整合和表达。与叶片相比,干组织中AtGA20ox基因的表达更高,表明木质部中CAD4的特异性。在所有转基因植物中,茎直径更大是由于木质部细胞数量更高和木质部区域更宽。另外,转基因植物也生长更快。因此,与野生型植物在温室条件下的90天相比,转基因的M. azedarach生物量产量增加了2到4倍。我们的结果表明,在木质部特异性启动子的控制下,异位AtGA20ox的表达是一种可改善植物的生长,生物量生产以及木ze和其他林业植物木材形成的合适方法。

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