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Conjugative Gene Transfer between Nourished and Starved Cells of Photobacterium damselae ssp. damselae and Escherichia coli

机译:damselae ssp。细菌的营养细胞和饥饿细胞之间的共轭基因转移。少女和大肠杆菌

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摘要

Horizontal gene transfer (HGT) between bacteria with different habitats and nutritional requirements is important for the spread of antibiotic resistance genes (ARG). The objective of the present study was to clarify the effects of organic matter on HGT between nourished and starved bacteria. We demonstrated that conjugation ability is affected by the nutritional conditions of the cell and environment. A filter mating HGT experiment was performed using ssp. , strain 04Ya311, a marine-origin bacterium possessing the multidrug-resistance plasmid pAQU1, as the donor, and as the recipient. The donor and recipient were both prepared as nutrient-rich cultured and starved cells. Filter mating was performed on agar plates with and without organic nutrients. The transcription of the plasmid-borne genes (M) and was quantitated under eutrophic and oligotrophic conditions. The donor transferred the plasmid to at a transfer rate of 10 under oligotrophic and eutrophic conditions. However, when the donor was starved, HGT was not detected under oligotrophic conditions. The addition of organic matter to starved cells restored conjugative HGT even after 6 d of starvation. The transcription of was not detected in starved cells, but was restored upon the addition of organic matter. The HGT rate appears to be affected by the transcription of plasmid-associated genes. The present results suggest that the HGT rate is low in starved donors under oligotrophic conditions, but is restored by the addition of organic matter.
机译:不同生境和营养需求的细菌之间的水平基因转移(HGT)对于抗生素抗性基因(ARG)的传播很重要。本研究的目的是阐明营养物质和饥饿细菌之间有机物对HGT的影响。我们证明了结合能力受细胞和环境营养条件的影响。使用ssp进行过滤器匹配HGT实验。 ,是具有多药抗性质粒pAQU1的海洋起源细菌菌株04Ya311,作为供体和作为受体。供体和受体都准备为营养丰富的培养和饥饿细胞。在有和没有有机营养物的琼脂平板上进行滤器交配。质粒携带的基因(M)的转录在富营养和寡营养条件下进行定量。供体在贫营养和富营养条件下以10的转移速率转移质粒。但是,当供体饥饿时,在贫营养条件下未检测到HGT。即使在饥饿6天后,向饥饿细胞中添加有机物也能恢复结合型HGT。在饥饿的细胞中未检测到转录,但在添加有机物后得以恢复。 HGT率似乎受质粒相关基因的转录影响。目前的结果表明饥饿的供体在贫营养条件下的HGT发生率较低,但通过添加有机物可以恢复。

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