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杂交杨树中UDP-葡萄糖焦磷酸化酶的过表达影响碳分配。

Over-expression of UDP-glucose pyrophosphorylase in hybrid poplar affects carbon allocation.

作者信息

Coleman Heather D, Canam Thomas, Kang Kyu-Young, Ellis David D, Mansfield Shawn D

机构信息

Department of Wood Science, University of British Columbia, Vancouver, BC, V6T 1Z4 Canada.

出版信息

J Exp Bot. 2007;58(15-16):4257-68. doi: 10.1093/jxb/erm287.

Abstract

The effects of the over-expression of the Acetobacter xylinum UDP-glucose pyrophosphorylase (UGPase) under the control of the tandem repeat Cauliflower Mosaic Virus promoter (2x35S) on plant metabolism and growth were investigated in hybrid poplar (Populus albaxgrandidentata). Transcript levels, enzyme activity, growth parameters, leaf morphology, structural and soluble carbohydrates, and soluble metabolite levels were quantified in both transgenic and wild-type trees. Transgenic 2x35S::UGPase poplar showed impaired growth rates, displaying reduced height growth and stem diameter. Morphologically, 2x35S::UGPase trees had elongated axial shoots, and leaves that were substantially smaller in size when compared with wild-type trees at equivalent developmental stages. Biochemical analysis revealed significant increases in soluble sugar, starch, and cellulose contents, and concurrent decreases in lignin content. Lignin monomer composition was altered in favour of syringyl moieties. Detailed soluble metabolite analysis revealed that 2x35S::UGPase trees had as much as a 270-fold increase in the salicylic acid 2-O-beta-D-glucoside (SAG), a compound typically associated with the stress response. These data suggest that while it is possible to alter the allocation of carbon in favour of cellulose biosynthesis, whole plant changes result in unexpected decreases in growth and an increase in defence metabolites.

摘要

在杂交杨树(银白杨×大齿杨)中,研究了在串联重复花椰菜花叶病毒启动子(2x35S)控制下,木醋杆菌UDP-葡萄糖焦磷酸化酶(UGPase)过表达对植物代谢和生长的影响。对转基因树和野生型树的转录水平、酶活性、生长参数、叶片形态、结构和可溶性碳水化合物以及可溶性代谢物水平进行了定量分析。转基因2x35S::UGPase杨树的生长速率受损,高度生长和茎直径减小。在形态上,2x35S::UGPase树的轴向嫩枝伸长,与处于相同发育阶段的野生型树相比,叶片尺寸明显更小。生化分析表明,可溶性糖、淀粉和纤维素含量显著增加,木质素含量同时降低。木质素单体组成发生改变,有利于紫丁香基部分。详细的可溶性代谢物分析表明,2x35S::UGPase树中水杨酸2-O-β-D-葡萄糖苷(SAG)的含量增加了270倍,该化合物通常与应激反应相关。这些数据表明,虽然有可能改变碳的分配以利于纤维素生物合成,但整个植物的变化会导致生长意外下降和防御代谢物增加。

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