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首页> 外文期刊>Plant Biotechnology >Increasing fiber length and growth in transgenic tobacco plants overexpressing a gene encoding the Eucalyptus camaldulensis HD-Zip class II transcription factor
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Increasing fiber length and growth in transgenic tobacco plants overexpressing a gene encoding the Eucalyptus camaldulensis HD-Zip class II transcription factor

机译:转基因烟草植物中纤维长度的增加和生长的过表达,过度表达编码桉树HD-Zip II类转录因子的基因

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摘要

Since the woody plants are important bio-materials for paper, chemical and energy production, strategies for improvement of their properties are of considerable interest. We examined the expression of Eucalyptus camaldulensis transcription factor (TF) genes in xylem tissues using an oligo-microarray gene analysis technique. As a result, we isolated 21 TF genes related to xylem development. Following a functional investigation of 7 TFs in vitro, we selected the xylem TF gene EcHB1, which encodes a HD-Zip class II, for investigation as a transgene. EcHB1 expression was driven by the CaMV35S promoter in transgenic tobacco plants, which showed greater fiber length (<20%) and plant height (<50%) than wild-type plants. In addition, leaf, root and stem growth were significantly enhanced in the transgenic lines, which also had a lower acid-soluble lignin and hemicellulose content than wild- type. Our results indicate that metabolic flexibility might be involved in these improvements to xylem cell wall biosynthesis and that in addition to providing a growth advantage, such modifications may confer long-term structural integrity to the woody perennials.
机译:由于木本植物是造纸,化学和能源生产的重要生物材料,因此提高其性能的策略引起了人们的极大兴趣。我们使用寡微阵列基因分析技术检查了木质部组织中的桉树camaldulensis转录因子(TF)基因的表达。结果,我们分离了21个与木质部发育相关的TF基因。在对7个TFs进行功能性研究后,我们选择了木质部TF基因EcHB1(其编码HD-Zip II类)作为转基因进行研究。在转基因烟草植物中,CaMV35S启动子驱动EcHB1表达,与野生型植物相比,该植物显示出更大的纤维长度(<20%)和植物高度(<50%)。此外,转基因品系中叶,根和茎的生长显着增强,酸溶性木质素和半纤维素的含量也低于野生型。我们的结果表明,代谢灵活性可能参与木质部细胞壁生物合成的这些改进,并且除提供生长优势外,此类修饰还可能赋予木质多年生植物长期的结构完整性。

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