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Overexpression of vesicle-associated membrane protein PttVAP27-17 as a tool to improve biomass production and the overall saccharification yields in Populus trees

机译:囊泡相关膜蛋白Pttvap27-17作为改善生物质生产的工具和杨树树的整体糖化产率的工具

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摘要

Abstract Background Bioconversion of wood into bioproducts and biofuels is hindered by the recalcitrance of woody raw material to bioprocesses such as enzymatic saccharification. Targeted modification of the chemical composition of the feedstock can improve saccharification but this gain is often abrogated by concomitant reduction in tree growth. Results In this study, we report on transgenic hybrid aspen (Populus tremula × tremuloides) lines that showed potential to increase biomass production both in the greenhouse and after 5 years of growth in the field. The transgenic lines carried an overexpression construct for Populus tremula × tremuloides vesicle-associated membrane protein (VAMP)-associated protein PttVAP27-17 that was selected from a gene-mining program for novel regulators of wood formation. Analytical-scale enzymatic saccharification without any pretreatment revealed for all greenhouse-grown transgenic lines, compared to the wild type, a 20–44% increase in the glucose yield per dry weight after enzymatic saccharification, even though it was statistically significant only for one line. The glucose yield after enzymatic saccharification with a prior hydrothermal pretreatment step with sulfuric acid was not increased in the greenhouse-grown transgenic trees on a dry-weight basis, but increased by 26–50% when calculated on a whole biomass basis in comparison to the wild-type control. Tendencies to increased glucose yields by up to 24% were present on a whole tree biomass basis after acidic pretreatment and enzymatic saccharification also in the transgenic trees grown for 5 years on the field when compared to the wild-type control. Conclusions The results demonstrate the usefulness of gene-mining programs to identify novel genes with the potential to improve biofuel production in tree biotechnology programs. Furthermore, multi-omic analyses, including transcriptomic, proteomic and metabolomic analyses, performed here provide a toolbox for future studies on the function of VAP27 proteins in plants.
机译:木材进生物产品和生物燃料的抽象背景生物转化是通过木质原料的不顺应,以生物过程受阻如酶糖化。所述原料的化学成分的靶向修饰可以提高糖化但这增益通常是通过在树的生长同时减少废止。结果在这项研究中,我们对转基因杂交白杨(欧洲山杨×山杨)线即表明潜力,增加生物量生产都在温室和5年在该领域增长后报告。转基因系进行一个从用于木材形成新颖调节的基因挖掘程序选择用于欧洲山杨×山杨囊泡相关膜蛋白(VAMP)相关蛋白PttVAP27-17过表达构建体。未经任何预处理的分析规模的酶糖化揭示所有温室生长的转基因品系,相对于野生型,在酶糖化后每干燥重量的葡萄糖产量增加20-44%,尽管它有统计学显著仅一条线的。与硫酸的现有水热预处理步骤酶糖化后的葡萄糖产量在干重基础上的温室生长的转基因树木没有增加,但整个生物质为基础计算时增加了26-50%相比于野生型对照。相比于野生型对照时倾向由高达24%增加的葡萄糖产率本酸性预处理和酶糖化也生长5年领域的转基因树木后一整棵树的生物质的基础上。结论结果表明基因挖掘计划的有效性,以确定新的基因与潜力,提高树的生物技术方案的生物燃料生产。此外,多OMIC分析,包括转录,蛋白质组学和代谢组学分析,在这里执行为未来的VAP27蛋白质在植物中的功能研究的工具箱。

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