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Transfer of pyrrolizidine alkaloids between living plants: A disregarded source of contaminations

机译:生物植物之间的吡咯醇生物碱转移:忽略污染源

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To elucidate the origin of the wide-spread contaminations of plant derived commodities with various alkaloids, we employed co-cultures of pyrrolizidine alkaloid (PA) containing Senecio jacobaea plants with various alkaloid free acceptor plants. Our analyses revealed that all plants grown in the vicinity of the Senecio donor plants indeed contain significant amounts of the PAs, which previously had been synthesized in the Senecio plants. These findings illustrate that typical secondary metabolites, such as pyrrolizidine alkaloids, are commonly transferred and exchanged between living plants. In contrast to the broad spectrum of alkaloids in Senecio, in the acceptor plants nearly exclusively jacobine is accumulated. This indicates that this alkaloid is exuded specifically by the Senecio roots. Although the path of alkaloid transfer from living donor plants is not yet fully elucidated, these novel insights will extend and change our understanding of plant-plant interactions and reveal a high relevance with respect to the widespread alkaloidal contaminations of plant-derived commodities. Moreover, they could be the basis for the understanding of various so far not fully understood phenomena in cultivation of various crops, e.g. the beneficial effects of crop rotations or the co-cultivation of certain vegetables. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了阐明各种生物碱的植物衍生商品的广泛污染的起源,我们使用含有各种生物碱的Anclaloid受体植物的含吡咯嗪生物碱(Pa)的共培养物。我们的分析表明,在Senecio供体植物附近生长的所有植物确实含有大量的PAS,先前已在Senecio植物中合成。这些发现表明,典型的次级代谢产物,例如吡咯烷生物碱,通常在生物植物之间转移和交换。与Senecio中的广谱对比,在接受植物中累积了何地累积。这表明该生物碱由Senecio Roots特定地渗出。虽然生物碱转移从生物供体植物的路径尚未完全阐明,但这些新颖的见解将延长和改变我们对植物植物相互作用的理解,并揭示了与植物衍生商品的广泛生物污染物的高相关性。此外,它们可能是理解各种迄今未完全理解的各种作物培养现象的基础,例如,作物旋转的有益效果或某些蔬菜的共同培养。 (c)2019 Elsevier Ltd.保留所有权利。

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