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Plant hairy root cultures as plasmodium modulators of the slime mold emergent computing substrate Physarum polycephalum

机译:植物毛状根培养物作为粘液霉菌应急计算基质substrate头的纤溶酶的调节剂

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摘要

Roots of the medicinal plant Valeriana officinalis are well-studied for their various biological activities. We applied genetically transformed V. officinalis root biomass to exert control of Physarum polycephalum, an amoeba-based emergent computing substrate. The plasmodial stage of the P. polycephalum life cycle constitutes a single, multinucleate cell visible by unaided eye. The plasmodium modifies its network of oscillating protoplasm in response to spatial configurations of attractants and repellents, a behavior that is interpreted as biological computation. To program the computing behavior of P. polycephalum, a diverse and sustainable library of plasmodium modulators is required. Hairy roots produced by genetic transformation with Agrobacterium rhizogenes are a metabolically stable source of bioactive compounds. Adventitious roots were induced on in vitro V. officinalis plants following infection with A. rhizogenes. A single hairy root clone was selected for massive propagation and the biomass was characterized in P. polycephalum chemotaxis, maze-solving, and electrical activity assays. The Agrobacterium-derived roots of V. officinalis elicited a positive chemotactic response and augmented maze-solving behavior. In a simple plasmodium circuit, introduction of hairy root biomass stimulated the oscillation patterns of slime mold's surface electrical activity. We propose that manipulation of P. polycephalum with the plant root culture platform can be applied to the development of slime mold microfluidic devices as well as future models for engineering the plant rhizosphere.
机译:药用植物缬草的根因其各种生物活性而被充分研究。我们应用遗传转化的五叶草根生物量来控制多头poly草,一种基于变形虫的紧急计算基质。多头疟原虫生命周期的纤溶阶段构成肉眼可见的单个多核细胞。疟原虫响应于引诱剂和驱避剂的空间构型修改其振荡的原生质体网络,这种行为被解释为生物学计算。要编程多头体育的计算行为,需要一个多样化且可持续的疟原虫调节剂文库。通过发根农杆菌的遗传转化产生的毛状根是生物活性化合物的代谢稳定来源。在用发根农杆菌感染后,在体外V.officinalis植物上诱导不定根。选择单个毛状根克隆进行大量繁殖,并通过多头脑球菌趋化性,迷宫溶解和电活性测定对生物量进行表征。源自农杆菌的V. officinalis的根引发了趋化反应并增强了迷宫解决行为。在一个简单的疟原虫回路中,毛状根生物量的引入刺激了粘液霉菌表面电活动的振荡模式。我们建议与植物根培养平台操纵多头体育可以应用于粘液霉菌微流控设备的开发以及工程植物根际的未来模型。

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