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A Novel Method for Culturing of Leptothrix sp. Strain OUMS1 in Natural Conditions

机译:Leptothrix sp。的新培养方法。自然条件下的OUMS1菌株

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Although some strains of Leptothrix spp. isolated from aquatic environments have been characterized by culturing them in laboratory conditions, they often show morphological and chemical features distinct from those found in natural environments. To resolve this discrepancy, a novel cultivation method was devised for culturing such strains in natural groundwater. Leptothrix sp. strain OUMS1 was pre-cultured in a medium lacking Fe for 2 days, and then injected into a small dialysis tube bag and immersed in a container with continuously flowing groundwater for 1–3 and 14 days. Microscopic analysis of the initial phase of sheath formation and arbitrary comparisons with medium cultures revealed that in groundwater the surface coat of the sheath comprised much thinner fibrils, and an inner sheath wall that was much thinner and more indistinct compared with medium cultures. These differences were probably attributable to poorer secretion from the cell surface in groundwater conditions. A nutrient-rich medium likely activates cell metabolism and promotes secretion, resulting in a thicker inner sheath wall and thicker outer coat fibrils. Aqueous-phase Fe was deposited on immature sheaths in a similar manner in both cultures. These results indicate that laboratory culture of isolated microbes does not always reflect their characteristics in natural environments.
机译:虽然有一些Leptothrix spp菌株。分离自水生环境的特征是在实验室条件下对其进行培养,它们通常表现出与自然环境不同的形态和化学特征。为了解决这种差异,设计了一种新的栽培方法来在天然地下水中培养这种菌株。 Leptothrix sp。菌株OUMS1在缺少铁的培养基中预培养2天,然后注入一个小的透析管袋中,并浸入装有连续流动地下水的容器中1-3和14天。对鞘形成初期的显微镜分析和与培养基的任意比较表明,在地下水中,鞘的表层包含较细的原纤维,而鞘的内壁与培养基相比则更薄且不明显。这些差异可能归因于地下水条件下细胞表面较差的分泌。营养丰富的培养基可能会激活细胞新陈代谢并促进分泌,从而导致内鞘壁变厚和外被纤维变厚。在两种培养物中,水相Fe均以相似的方式沉积在未成熟的鞘上。这些结果表明,分离微生物的实验室培养并不总是反映其在自然环境中的特征。

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