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首页> 外文期刊>Applied and Environmental Microbiology >Bacterial Growth Stimulation with Exogenous Siderophore and Synthetic N-Acyl Homoserine Lactone Autoinducers under Iron-Limited and Low-Nutrient Conditions
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Bacterial Growth Stimulation with Exogenous Siderophore and Synthetic N-Acyl Homoserine Lactone Autoinducers under Iron-Limited and Low-Nutrient Conditions

机译:限铁和低营养条件下外源铁载体和合成的N-酰基同型内酯内酯自诱导剂对细菌的生长刺激

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The growth of marine bacteria under iron-limited conditions was investigated. Neither siderophore production nor bacterial growth was detected for Pelagiobacter sp. strain V0110 when Fe(III) was present in the culture medium at a concentration of <1.0 μM. However, the growth of V0110 was strongly stimulated by the presence of trace amounts of exogenous siderophore from an alpha proteobacterium, V0902, and 1 nM N-acyl-octanoylhomoserine lactone (C8-HSL), which is known as a quorum-sensing chemical signal. Even though the iron-binding functionality of a hydroxamate siderophore was undetected in the supernatant of V0902, a hydroxamate siderophore was detected in the supernatant of V0110 under the above conditions. These results indicated that hydroxamate siderophore biosynthesis by V0110 began in response to the exogenous siderophore from V0902 when in the presence of C8-HSL; however, C8-HSL production by V0110 and V0902 was not detected. Direct interaction between V0902 and V0110 through siderophore from V0902 was observed in the dialyzing culture. Similar stimulated growth by exogenous siderophore and HSL was also observed in other non-siderophore-producing bacteria isolated from marine sponges and seawater. The requirement of an exogenous siderophore and an HSL for heterologous siderophore production indicated the possibility that cell-cell communication between different species was occurring.
机译:研究了铁限制条件下海洋细菌的生长。没有检测到 Pelagiobacter sp的铁载体生成和细菌生长。当Fe(III)以<1.0μM的浓度存在于培养基中时,菌株V0110。然而,α01变形杆菌,V0902和1 nM N -酰基-辛酰基高丝氨酸内酯(C 8 -HSL),即称为群体感应化学信号。即使在V0902的上清液中未检测到异羟肟酸铁载体的铁结合功能,在上述条件下,在V0110的上清液中仍检测出异羟肟酸酯的铁载体。这些结果表明,当存在C 8 -HSL时,V0110对异源铁载体的响应开始于V0110的异羟肟酸铁载体的生物合成。但是,未检测到V0110和V0902生成C 8 -HSL。在透析培养中观察到V0902和V0110之间通过铁载体从V0902直接相互作用。在从海洋海绵和海水中分离出来的其他非产生铁载体的细菌中也观察到了类似的外源铁载体和HSL刺激的生长。产生异源铁载体需要外源铁载体和HSL,这表明可能发生不同物种之间的细胞间通讯。

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