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Microbial communities on flower surfaces act as signatures of pollinator visitation

机译:花表面的微生物群落是授粉媒介访视的标志

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摘要

Microbes are easily dispersed from one place to another, and immigrant microbes might contain information about the environments from which they came. We hypothesized that part of the microbial community on a flower's surface is transferred there from insect body surfaces and that this community can provide information to identify potential pollinator insects of that plant. We collected insect samples from the field, and found that an insect individual harbored an average of 12.2 × 105 microbial cells on its surface. A laboratory experiment showed that the microbial community composition on a flower surface changed after contact with an insect, suggesting that microbes are transferred from the insect to the flower. Comparison of the microbial fingerprint approach and direct visual observation under field condition suggested that the microbial community on a flower surface could to some extent indicate the structure of plant–pollinator interactions. In conclusion, species-specific insect microbial communities specific to insect species can be transferred from an insect body to a flower surface, and these microbes can serve as a “fingerprint” of the insect species, especially for large-bodied insects. Dispersal of microbes is a ubiquitous phenomenon that has unexpected and novel applications in many fields and disciplines.
机译:微生物很容易从一个地方散布到另一个地方,而移民微生物可能包含有关它们所来自的环境的信息。我们假设花朵表面的一部分微生物群落从昆虫的体表转移到那里,并且该群落可以提供信息来识别该植物的潜在传粉昆虫。我们从现场收集了昆虫样本,发现一个昆虫个体的表面平均拥有12.2×10 5 个微生物细胞。实验室实验表明,与昆虫接触后,花表面的微生物群落组成发生了变化,这表明微生物已从昆虫转移到花上。在田间条件下对微生物指纹图谱方法和直接视觉观察的比较表明,花表面上的微生物群落可以在某种程度上指示植物与传粉媒介相互作用的结构。总之,特定于昆虫物种的特定物种昆虫微生物群落可以从昆虫体内转移到花的表面,这些微生物可以作为昆虫物种的“指纹”,尤其是对于大型昆虫。微生物的扩散是普遍存在的现象,在许多领域和学科中具有出乎意料的新颖应用。

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