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首页> 外文期刊>Plant Biotechnology Journal >Enhanced expression of glutamine synthetase ( GS1a ) confers altered fibre and wood chemistry in field grown hybrid poplar ( Populus tremula X alba ) (717?¢????1B4)
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Enhanced expression of glutamine synthetase ( GS1a ) confers altered fibre and wood chemistry in field grown hybrid poplar ( Populus tremula X alba ) (717?¢????1B4)

机译:谷氨酰胺合成酶(GS1a)的增强表达赋予了田间杂交杨(Populus tremula X alba)(717717 ??? 1B4)改变的纤维和木材化学成分

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Hybrid poplar ( Populus tremula X P.????alba ) genetically engineered to express the pine cytosolic glutamine synthetase gene ( GS1a ) has been previously shown to display desirable field performance characteristics, including enhancements in growth and nitrogen use efficiency. Analysis of wood samples from a 3?¢????year?¢????old field trial of three independently transformed GS1a transgenic hybrid poplar lines revealed that, when compared with wild?¢????type controls, ectopic expression of GS1a resulted in alterations in wood properties and wood chemistry. Included were significant enhancements in wood fibre length, wood density, microfibre angle, per cent syringyl lignin and elevated concentrations of wood sugars, specifically glucose, galactose, mannose and xylose. Total extractive content and acid?¢????insoluble lignin were significantly reduced in wood of GS1a transgenics when compared with wild?¢????type trees. Together, these cell wall characteristics resulted in improved wood pulping attributes, including improved lignin solubilization with no concurrent decrease in yield. Trees with increased GS1a expression have improved characteristics for pulp and paper production and hold potential as a feedstock for biofuels production.
机译:经过遗传工程改造以表达松树细胞质谷氨酰胺合成酶基因(GS1a)的杂交杨树(Populus tremula X P.alba)先前已显示出理想的田间性能特征,包括生长和氮素利用效率的提高。对三个独立转化的GS1a转基因杂种杨树品系进行3年的旧田间试验的木材样品的分析显示,与野生型对照相比,异位表达GS1a的使用导致木材性质和木材化学性质的改变。其中包括木材纤维长度,木材密度,微纤维角,丁香基木质素百分比的显着提高以及木糖,特别是葡萄糖,半乳糖,甘露糖和木糖的浓度升高。与野生型树相比,GS1a转基因木材中的总提取物含量和酸-不溶性木质素显着降低。这些细胞壁特性共同导致改善的木浆特性,包括改善的木质素增溶作用,而产量却未同时下降。 GS1a表达增加的树木具有改善的纸浆和纸张生产特性,并具有作为生物燃料生产原料的潜力。

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