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阿塔卡马沙漠海岸线底栖微生物群落对痕量金属响应的空间共现模式。

Spatial co-occurrence patterns of benthic microbial assemblage in response to trace metals in the Atacama Desert Coastline.

作者信息

Zárate Ana, Molina Verónica, Valdés Jorge, Icaza Gonzalo, Vega Sue Ellen, Castillo Alexis, Ugalde Juan A, Dorador Cristina

机构信息

Doctorado en Ciencias Aplicadas mención Sistemas Marinos Costeros, Universidad de Antofagasta, Antofagasta, Chile.

Laboratorio de Complejidad Microbiana y Ecología Funcional, Instituto Antofagasta and Centro de Bioingeniería y Biotecnología (CeBiB), Universidad de Antofagasta, Antofagasta, Chile.

出版信息

Front Microbiol. 2023 Jan 16;13:1020491. doi: 10.3389/fmicb.2022.1020491. eCollection 2022.

Abstract

Taxonomic and functional microbial communities may respond differently to anthropogenic coastal impacts, but ecological quality monitoring assessments using environmental DNA and RNA (eDNA/eRNA) in response to pollution are poorly understood. In the present study, we investigated the utility of the co-occurrence network approach's to comprehensively explore both structure and potential functions of benthic marine microbial communities and their responses to Cu and Fe fractioning from two sediment deposition coastal zones of northern Chile 16S rRNA gene metabarcoding. The results revealed substantial differences in the microbial communities, with the predominance of two distinct module hubs based on study zone. This indicates that habitat influences microbial co-occurrence networks. Indeed, the discriminant analysis allowed us to identify keystone taxa with significant differences in eDNA and eRNA comparison between sampled zones, revealing that , , and were the primary representatives from Off Loa, whereas , , , and were the families responsible for the observed changes in Mejillones Bay. The quantitative evidence from the multivariate analyses supports that the benthic microbial assemblages' features were linked to specific environments associated with Cu and Fe fractions, mainly in the Bay. Furthermore, the predicted functional microbial structure suggested that transporters and DNA repair allow the communities to respond to metals and endure the interacting variable environmental factors like dissolved oxygen, temperature, and salinity. Moreover, some active taxa recovered are associated with anthropogenic impact, potentially harboring antibiotic resistance and other threats in the coastal zone. Overall, the method of scoping eRNA in parallel with eDNA applied here has the capacity to significantly enhance the spatial and functional understanding of real-time microbial assemblages and, in turn, would have the potential to increase the acuity of biomonitoring programs key to responding to immediate management needs for the marine environment.

摘要

分类学和功能性微生物群落对人为造成的海岸影响可能有不同的反应,但利用环境DNA和RNA(eDNA/eRNA)对污染做出反应的生态质量监测评估却鲜为人知。在本研究中,我们调查了共现网络方法在全面探索底栖海洋微生物群落的结构和潜在功能及其对来自智利北部两个沉积物沉积海岸带的铜和铁分级的反应方面的效用,采用16S rRNA基因元条形码技术。结果显示微生物群落存在显著差异,根据研究区域,有两个不同的模块枢纽占主导地位。这表明栖息地会影响微生物共现网络。事实上,判别分析使我们能够识别出在采样区域之间eDNA和eRNA比较中有显著差异的关键分类群,揭示出 、 和 是洛阿河外海的主要代表,而 、 、 和 是负责梅希约内斯湾观测到的变化的科。多变量分析的定量证据支持底栖微生物组合的特征与与铜和铁分级相关的特定环境有关,主要是在海湾地区。此外,预测的功能性微生物结构表明,转运蛋白和DNA修复使群落能够对金属做出反应,并承受溶解氧、温度和盐度等相互作用的可变环境因素。此外,一些恢复的活跃分类群与人为影响有关,可能在沿海地区存在抗生素耐药性和其他威胁。总体而言,这里应用的与eDNA并行界定eRNA的方法有能力显著增强对实时微生物组合的空间和功能理解,进而有可能提高生物监测计划的敏锐度,这对满足海洋环境的即时管理需求至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6cd/9885135/b3796c43047a/fmicb-13-1020491-g001.jpg

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