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PNAS Plus: Host modification of a bacterial quorum-sensing signal induces a phenotypic switch in bacterial symbionts

机译:PNAS Plus:细菌群体感应信号的宿主修饰在细菌共生体中诱导表型转换

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摘要

Bacterial communities colonize epithelial surfaces of most animals. Several factors, including the innate immune system, mucus composition, and diet, have been identified as determinants of host-associated bacterial communities. Here we show that the early branching metazoan Hydra is able to modify bacterial quorum-sensing signals. We identified a eukaryotic mechanism that enables Hydra to specifically modify long-chain 3-oxo-homoserine lactones into their 3-hydroxy-HSL counterparts. Expression data revealed that Hydra’s main bacterial colonizer, Curvibacter sp., responds differentially to N-(3-hydroxydodecanoyl)-l-homoserine lactone (3OHC12-HSL) and N-(3-oxododecanoyl)-l-homoserine lactone (3OC12-HSL). Investigating the impacts of the different N-acyl-HSLs on host colonization elucidated that 3OHC12-HSL allows and 3OC12-HSL represses host colonization of Curvibacter sp. These results show that an animal manipulates bacterial quorum-sensing signals and that this modification leads to a phenotypic switch in the bacterial colonizers. This mechanism may enable the host to manipulate the gene expression and thereby the behavior of its bacterial colonizers.
机译:细菌群落定居在大多数动物的上皮表面。几个因素,包括先天免疫系统,粘液成分和饮食,已​​被确定为宿主相关细菌群落的决定因素。在这里,我们显示了早期分支的后生动物Hydra能够修饰细菌群体感应信号。我们确定了一种真核机制,使九头蛇能够将长链3-氧代-高丝氨酸内酯特异地修饰为其3-羟基-HSL对应物。表达数据显示,Hydra的主要细菌定居者弯曲杆菌属(Curvibacter sp。)对N-(3-羟基十二烷酰基)-1-高丝氨酸内酯(3OHC12-HSL)和N-(3-氧十二烷酰基)-1-高丝氨酸内酯(3OC12-HSL)有不同的反应)。调查不同的N-酰基-HSLs对宿主定植的影响,阐明了3OHC12-HSL允许且3OC12-HSL抑制弯曲杆菌属的宿主定植。这些结果表明,动物操纵细菌群体感应信号,并且这种修饰导致细菌定植器中的表型转换。该机制可以使宿主能够操纵基因表达,从而操纵其细菌定植者的行为。

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