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环境暴露而非塑料成分塑造了太平洋与加勒比海现场培养中海洋微塑料相关细菌群落的组成。

Environmental exposure more than plastic composition shapes marine microplastic-associated bacterial communities in Pacific versus Caribbean field incubations.

机构信息

School of Life Sciences and Center for Fundamental and Applied Microbiomics, Arizona State University, Tempe, Arizona, USA.

School of Ocean Futures, Arizona State University, Tempe, Arizona, USA.

出版信息

Environ Microbiol. 2023 Dec;25(12):2807-2821. doi: 10.1111/1462-2920.16519. Epub 2023 Oct 29.

Abstract

Microplastics have arisen as a global threat to marine ecosystems. In this study, we explored the role that plastic polymer type, incubation time and geographic location have on shaping the microbial community adhered to the microplastics, termed the plastisphere. We performed detailed bacterial plastisphere community analyses on microplastics of six different household plastic polymers, serving as proxies of secondary microplastics, incubated for 6 weeks in coastal Pacific waters. These bacterial communities were compared to the plastisphere communities grown on identical microplastic particles incubated in the coastal Caribbean Sea at Bocas del Toro, Panama. Ribosomal gene sequencing analyses revealed that bacterial community composition did not exhibit a significant preference for plastic type at either site but was instead driven by the incubation time and geographic location. We identified a 'core plastisphere' composed of 57 amplicon sequence variants common to all plastic types, incubation times and locations, with possible synergies between taxa. This study contributes to our understanding of the importance of geography in addition to exposure time, in the composition of the plastisphere.

摘要

微塑料已成为对海洋生态系统的全球性威胁。在这项研究中,我们探讨了塑料聚合物类型、孵育时间和地理位置对附着在微塑料上的微生物群落(称为塑料体)形成的影响。我们对六种不同家用塑料聚合物的微塑料进行了详细的细菌塑料体群落分析,这些微塑料作为二次微塑料的替代品,在太平洋沿海地区孵育了 6 周。这些细菌群落与在巴拿马博卡斯德尔托罗(Bocas del Toro)的加勒比海沿海地区用相同的微塑料颗粒在相同条件下孵育的塑料体群落进行了比较。核糖体基因测序分析表明,细菌群落组成在两个地点都没有明显偏向于塑料类型,而是由孵育时间和地理位置驱动。我们确定了一个由 57 个扩增子序列变异体组成的“核心塑料体”,这些变异体存在于所有塑料类型、孵育时间和地点中,可能存在分类群之间的协同作用。这项研究有助于我们理解除了暴露时间外,地理位置在塑料体组成中的重要性。

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