首页> 外文期刊>Plant Biotechnology Journal >Developing xylem?¢????preferential expression of PdGA20ox1 , a gibberellin 20?¢????oxidase 1 from Pinus densiflora , improves woody biomass production in a hybrid poplar
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Developing xylem?¢????preferential expression of PdGA20ox1 , a gibberellin 20?¢????oxidase 1 from Pinus densiflora , improves woody biomass production in a hybrid poplar

机译:形成木质部的PdGA20ox1,赤松20的赤霉素20氧化酶1的优先表达,可提高杂种杨的木质生物量生产

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Woody biomass has gained popularity as an environmentally friendly, renewable and sustainable resource for liquid fuel production. Here, we demonstrate biotechnological improvement of the quantity and quality of woody biomass by employing developing xylem (DX)?¢????preferential production of gibberellin (GA), a phytohormone that positively regulates stem growth. First, for the proof of concept experiment, we produced transgenic Arabidopsis plants expressing GA20?¢????oxidase, a key enzyme in the production of bioactive GAs, from Pinus densiflora ( PdGA20ox1 ) under the control of either a constitutive 35S promoter, designated 35S::PdGA20ox1, or a DX?¢????specific promoter (originated from poplar), designated DX15::PdGA20ox1. As we hypothesized, both transgenic Arabidopsis plants ( 35S::PdGA20ox1 and DX15::PdGA20ox1 ) exhibited an accelerated stem growth that resulted in a large increase of biomass, up to 300% compared to wild?¢????type control plants, together with increased secondary wall thickening and elongation of fibre cells. Next, we applied our concept to the production of transgenic poplar trees. Both transgenic poplar trees ( 35S::PdGA20ox1 and DX15::PdGA20ox1 ) showed dramatic increases in biomass, up to 300%, with accelerated stem growth and xylem differentiation. Cell wall monosaccharide composition analysis revealed that in both Arabidopsis and poplar, glucose and xylose contents were significantly increased. However, undesirable phenotypes of 35S::PdGA20ox1 poplar, including poor root growth and leaf development, were found. Interestingly, DX15::PdGA20ox1 poplar resulted in a reduction of undesirable phenotypes. Our results indicate that the controlled production of GAs through a tissue?¢????specific promoter can be utilized as an efficient biotechnological tool for producing enhanced plant biomass, minimizing unwanted effects.
机译:木质生物质作为一种环境友好,可再生和可持续的液体燃料生产资源而受到欢迎。在这里,我们通过发展木质部(DX)-优先生产赤霉素(GA)(一种正调节茎生长的植物激素)证明了木质生物质的数量和质量的生物技术改进。首先,为进行概念验证实验,我们在35S组成型启动子的控制下,从松果(PdGA20ox1)生产了表达GA20-氧化酶(这是生产生物活性GA的关键酶)的转基因拟南芥植物,命名为35S :: PdGA20ox1或DX3α特异性启动子(起源于杨树),命名为DX15 :: PdGA20ox1。正如我们所假设的,两种转基因拟南芥植物(35S :: PdGA20ox1和DX15 :: PdGA20ox1)均显示出茎干加速生长,导致生物量大幅增加,与野生型对照植物相比,高达300%,以及增加的次生壁增厚和纤维细胞伸长。接下来,我们将我们的概念应用于转基因杨树的生产。两种转基因杨树(35S :: PdGA20ox1和DX15 :: PdGA20ox1)的生物量均显着增加,最高可达300%,且茎生长和木质部分化加快。细胞壁单糖组成分析表明,在拟南芥和杨树中,葡萄糖和木糖含量均显着增加。但是,发现了35S :: PdGA20ox1杨树的不良表型,包括不良的根系生长和叶片发育。有趣的是,DX15 :: PdGA20ox1杨树导致不良表型的减少。我们的结果表明,通过组织的特异性启动子控制GA的产生可以用作产生增强的植物生物量的有效的生物技术工具,从而使不希望的影响最小化。

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