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烟草作为蓝藻素商业生产的平台。

Tobacco as platform for a commercial production of cyanophycin.

作者信息

Nausch Henrik, Hausmann Tina, Ponndorf Daniel, Hühns Maja, Hoedtke Sandra, Wolf Petra, Zeyner Annette, Broer Inge

机构信息

University of Rostock, Faculty of Agricultural and Environmental Sciences, Department of Agrobiotechnology and Risk Assessment for Bio- und Gene Technology, Justus-von-Liebig Weg 8, Mecklenburg-Western Pomerania, 18059, Rostock, Germany.

University of Rostock, Faculty of Agricultural and Environmental Sciences, Department of Agrobiotechnology and Risk Assessment for Bio- und Gene Technology, Justus-von-Liebig Weg 8, Mecklenburg-Western Pomerania, 18059, Rostock, Germany.

出版信息

N Biotechnol. 2016 Dec 25;33(6):842-851. doi: 10.1016/j.nbt.2016.08.001. Epub 2016 Aug 5.

Abstract

Cyanophycin (CP) is a proteinogenic polymer that can be substituted for petroleum in the production of plastic compounds and can also serve as a source of valuable dietary supplements. However, because there is no economically feasible system for large-scale industrial production, its application is limited. In order to develop a low-input system, CP-synthesis was established in the two commercial Nicotiana tabacum (N. tabacum) cultivars 'Badischer Geudertheimer' (BG) and 'Virginia Golta' (VG), by introducing the cyanophycin-synthetase gene from Thermosynecchococcus elongatus BP-1 (CphA) either via crossbreeding with transgenic N. tabacum cv. Petit Havana SR1 (PH) T2 individual 51-3-2 or by agrobacterium-mediated transformation. Both in F1 hybrids (max. 9.4% CP/DW) and T0 transformants (max. 8.8% CP/DW), a substantial increase in CP content was achieved in leaf tissue, compared to a maximum of 1.7% CP/DW in PH T0 transformants of Hühns et al. (2008). In BG CP, yields were homogenous and there was no substantial difference in the variation of the CP content between primary transformants (T0), clones of T0 individuals, T1 siblings and F1 siblings of hybrids. Therefore, BG meets the requirements for establishing a master seed bank for continuous and reliable CP-production. In addition, it was shown that the polymer is not only stable in planta but also during silage, which simplifies storage of the harvest prior to isolation of CP.

摘要

蓝藻素(CP)是一种可用于生产塑料化合物以替代石油的蛋白质原聚合物,还可作为有价值的膳食补充剂来源。然而,由于缺乏经济可行的大规模工业生产系统,其应用受到限制。为了开发一种低投入系统,通过与转基因烟草品种 Petit Havana SR1(PH)T2个体51-3-2杂交或农杆菌介导的转化,将来自嗜热聚球藻BP-1(CphA)的蓝藻素合成酶基因导入两个商业烟草品种“Badischer Geudertheimer”(BG)和“Virginia Golta”(VG)中,从而建立了CP合成体系。与Hühns等人(2008年)报道的PH T0转化体中最高1.7%的CP/干重相比,在F1杂种(最高9.4%的CP/干重)和T0转化体(最高8.8%的CP/干重)中,叶片组织中的CP含量都有显著增加。在BG中,CP产量均匀,初级转化体(T0)、T0个体的克隆、T1同胞以及杂种的F1同胞之间的CP含量变化没有实质性差异。因此,BG满足建立用于持续可靠生产CP的主种子库的要求。此外,研究表明该聚合物不仅在植物体内稳定,在青贮过程中也很稳定,这简化了CP分离前收获物的储存。

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