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耐热关键细菌在热应激下维持肩突硬蜱微生物组的功能多样性。

Thermostable Keystone Bacteria Maintain the Functional Diversity of the Ixodes scapularis Microbiome Under Heat Stress.

作者信息

Wu-Chuang Alejandra, Obregon Dasiel, Estrada-Peña Agustín, Cabezas-Cruz Alejandro

机构信息

Anses, INRAE, Ecole Nationale Vétérinaire d'Alfort, UMR BIPAR, Laboratoire de Santé Animale, Maisons-Alfort, F-94700, France.

School of Environmental Sciences, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.

出版信息

Microb Ecol. 2022 Nov;84(4):1224-1235. doi: 10.1007/s00248-021-01929-y. Epub 2021 Nov 24.

Abstract

Variations in the composition and diversity of tick microbiome due to high temperatures may influence the hierarchy of community members as a response to environmental change. Modifications in the community structure are hypothesized to drive alterations in the presence and/or abundance of functional pathways in the bacterial metagenome. In this study, this hypothesis was tested by using published 16S rRNA datasets of Ixodes scapularis males incubated at different temperatures (i.e., 4, 20, 30, and 37 °C) in a laboratory setting. Changes in community structure and functional profiles in response to temperature shifts were measured using co-occurrence networks and metagenome inference. Results from laboratory-reared ticks were then compared with those of field-collected ticks. The results from laboratory-reared ticks showed that high temperature altered the structure of the microbial community and decreased the number of keystone taxa. Notably, four taxa were identified as keystone in all the temperatures, and the functional diversity of the tick microbiome was contained in the four thermostable keystone their associated bacterial taxa. Three of the thermostable keystone taxa were also found in free-living ticks collected in Massachusetts. Moreover, the comparison of functional profiles of laboratory-reared and field-collected ticks revealed the existence of an important set of metabolic pathways that were common among the different datasets. Similar to the laboratory-reared ticks, the keystone taxa identified in field-collected ticks alongside their consortia (co-occurring taxa) were sufficient to retain the majority of the metabolic pathways in the functional profile. These results suggest that keystone taxa are essential in the stability and the functional resiliency of the tick microbiome under heat stress.

摘要

高温导致的蜱虫微生物群落组成和多样性变化可能会影响群落成员的层级结构,以应对环境变化。据推测,群落结构的改变会驱动细菌宏基因组中功能途径的存在和/或丰度发生变化。在本研究中,通过使用已发表的在实验室环境中于不同温度(即4、20、30和37°C)下孵育的肩突硬蜱雄性的16S rRNA数据集,对这一假设进行了检验。使用共现网络和宏基因组推断来测量响应温度变化时群落结构和功能概况的变化。然后将实验室饲养的蜱虫的结果与野外采集的蜱虫的结果进行比较。实验室饲养的蜱虫的结果表明,高温改变了微生物群落的结构,并减少了关键类群的数量。值得注意的是,在所有温度下都有四个类群被确定为关键类群,蜱虫微生物群落的功能多样性包含在这四个耐热关键类群及其相关细菌类群中。在马萨诸塞州采集的自由生活蜱虫中也发现了其中三个耐热关键类群。此外,对实验室饲养和野外采集的蜱虫的功能概况的比较揭示了在不同数据集中存在一组重要的共同代谢途径。与实验室饲养的蜱虫类似,在野外采集的蜱虫中与其共生体(共现类群)一起鉴定出的关键类群足以保留功能概况中的大多数代谢途径。这些结果表明,关键类群对于蜱虫微生物群落在热应激下的稳定性和功能恢复力至关重要。

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