首页> 美国卫生研究院文献>PLoS Clinical Trials >Plant-fed versus chemicals-fed rhizobacteria of Lucerne: Plant-only teabags culture media not only increase culturability of rhizobacteria but also recover a previously uncultured Lysobacter sp., Novosphingobium sp. and Pedobacter sp.
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Plant-fed versus chemicals-fed rhizobacteria of Lucerne: Plant-only teabags culture media not only increase culturability of rhizobacteria but also recover a previously uncultured Lysobacter sp., Novosphingobium sp. and Pedobacter sp.

机译:卢塞恩州的植物喂养与化学喂养的根瘤菌:仅植物性的茶袋培养基不仅可以提高根瘤菌的可培养性,而且还可以恢复以前未培养的溶菌属的新孢子菌属。和Pedobacter sp。

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摘要

In an effort to axenically culture the previously uncultivable populations of the rhizobacteria of Lucerne (Medicago sativa L.), we propose plant-only teabags culture media to mimic the nutritional matrix available in the rhizosphere. Here, we show that culture media prepared from Lucerne powder teabags substantially increased the cultivability of Lucerne rhizobacteria compared with a standard nutrient agar, where we found that the cultivable populations significantly increased by up to 60% of the total bacterial numbers as estimated by Quantitative Real-time Polymerase Chain Reaction (qRT-PCR). Cluster analysis of 16S rDNA Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis (PCR-DGGE) of cultivable Colony-Forming Units (CFUs) revealed a more distinct composition and separation of bacterial populations recovered on the plant-only teabags culture media than those developed on a standard nutrient agar. Further, the new plant medium gave preference to the micro-symbiont Sinorhizobium meliloti, and succeeded in isolating a number of not-yet-cultured bacteria, most closely matched to Novosphingobium sp., Lysobacter sp. and Pedobacter sp. The present study may encourage other researchers to consider moving from the well-established standard culture media to the challenging new plant-only culture media. Such a move may reveal previously hidden members of rhizobacteria, and help to further explore their potential environmental impacts.
机译:为了对卢塞恩(Medicago sativa L.)根瘤菌的以前无法培养的种群进行不育,我们提出了仅植物性的茶袋培养基,以模仿根际中可用的营养基质。在这里,我们表明,与标准营养琼脂相比,用卢塞恩粉状茶袋制备的培养基大大提高了卢塞恩根瘤菌的可培养性,在该培养基中,我们发现可培养群体显着增加了多达60%的细菌总数(由Quantitative Real估算)时聚合酶链反应(qRT-PCR)。可培养菌落形成单位(CFU)的16S rDNA聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)的聚类分析显示,与仅在植物上形成的袋泡培养基相比,在仅植物性茶袋培养基上回收的细菌种群的组成和分离更加明显。标准营养琼脂。此外,新的植物培养基优先使用微共生菌Sinorhizobium meliloti,并成功分离出许多尚未培养的细菌,与新孢菌属Lysobacter sp。最匹配。和Pedobacter sp。本研究可能会鼓励其他研究人员考虑从完善的标准培养基转移到具有挑战性的仅植物培养基。这样的举动可能揭示出以前隐藏的根瘤菌成员,并有助于进一步探索其潜在的环境影响。

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