首页> 外文OA文献 >Altered Growth and Wood Characteristics in Transgenic Hybrid Aspen Expressing Agrobacterium tumefaciens T-DNA Indoleacetic Acid-Biosynthetic Genes.
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Altered Growth and Wood Characteristics in Transgenic Hybrid Aspen Expressing Agrobacterium tumefaciens T-DNA Indoleacetic Acid-Biosynthetic Genes.

机译:表达根癌农杆菌T-DNA吲哚乙酸-生物合成基因的转基因杂种白杨中生长和木材特性的变化。

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摘要

A key regulator of cambial growth is the plant hormone indoleacetic acid (IAA). Here we report on altered wood characteristics and growth patterns in transgenic hybrid aspen (Populus tremula L. x Populus tremuloides Michx.) expressing Agrobacterium tumefaciens T-DNA IAA-biosynthetic iaaM and iaaH genes. Eighteen lines simultaneously expressing both genes were regenerated. Of these, four lines, verified to be transgenic by northern blot analysis, were selected and raised under controlled growth conditions. All four lines were affected in their growth patterns, including alterations in height and stem diameter growth, internode elongation, leaf enlargement, and degree of apical dominance. Two transgenic lines, showing the most distinct phenotypic deviation from the wild type, were characterized in more detail for free and conjugated IAA levels and for wood characteristics. Both lines showed an altered IAA balance, particularly in mature leaves and roots where IAA levels were elevated. They also exhibited changes in wood anatomy, most notably a reduction in vessel size, an increase in vessel density, and changes in ray development. Thus, the recent development of techniques for gene transfer to forest trees enabled us to investigate the influence of an altered IAA balance on xylem development in an intact experimental system. In addition, the results demonstrate the possibility of manipulating wood properties in a forest tree through controlled changes of IAA concentration and distribution.
机译:冈比亚生长的关键调节因子是植物激素吲哚乙酸(IAA)。在这里,我们报道了表达根癌农杆菌T-DNA IAA-生物合成iaaM和iaaH基因的转基因杂交白杨(Populus tremula L. x Populus tremuloides Michx。)木材特征和生长模式的变化。再生同时表达两个基因的十八个品系。其中,选择四个通过Northern印迹分析证实为转基因的品系,并在受控的生长条件下进行育种。所有这四个品系的生长方式均受到影响,包括高度和茎直径生长的变化,节间伸长,叶片扩大和顶端优势程度。两种转基因品系表现出与野生型最明显的表型差异,它们针对游离和共轭IAA水平以及木材特性进行了更详细的表征。两条线都显示出IAA平衡发生了变化,尤其是在IAA水平升高的成熟叶和根中。它们还表现出木材解剖学的变化,最显着的是血管尺寸的减小,血管密度的增加以及射线显影的变化。因此,基因转移到林木的技术的最新发展使我们能够在完整的实验系统中研究改变的IAA平衡对木质部发育的影响。此外,结果证明了通过控制IAA浓度和分布变化来控制林木中木材特性的可能性。

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