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Understanding the Mechanisms Behind the Response to Environmental Perturbation in Microbial Mats: A Metagenomic-Network Based Approach

机译:了解微生物席子对环境扰动的响应背后的机制:基于元基因组网络的方法

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摘要

To date, it remains unclear how anthropogenic perturbations influence the dynamics of microbial communities, what general patterns arise in response to disturbance, and whether it is possible to predict them. Here, we suggest the use of microbial mats as a model of study to reveal patterns that can illuminate the ecological processes underlying microbial dynamics in response to stress. We traced the responses to anthropogenic perturbation caused by water depletion in microbial mats from Cuatro Cienegas Basin (CCB), Mexico, by using a time-series spatially resolved analysis in a novel combination of three computational approaches. First, we implemented MEBS (Multi-genomic Entropy-Based Score) to evaluate the dynamics of major biogeochemical cycles across spatio-temporal scales with a single informative value. Second, we used robust Time Series-Ecological Networks (TS-ENs) to evaluate the total percentage of interactions at different taxonomic levels. Lastly, we utilized network motifs to characterize specific interaction patterns. Our results indicate that microbial mats from CCB contain an enormous taxonomic diversity with at least 100 phyla, mainly represented by members of the rare biosphere (RB). Statistical ecological analyses point out a clear involvement of anaerobic guilds related to sulfur and methane cycles during wet versus dry conditions, where we find an increase in fungi, photosynthetic, and halotolerant taxa. TS-ENs indicate that in wet conditions, there was an equilibrium between cooperation and competition (positive and negative relationships, respectively), while under dry conditions there is an over-representation of negative relationships. Furthermore, most of the keystone taxa of the TS-ENs at family level are members of the RB and the microbial mat core highlighting their crucial role within the community. Our results indicate that microbial mats are more robust to perturbation due to redundant functions that are likely shared among community members in the highly connected TS-ENs with density values close to one (≈0.9). Finally, we provide evidence that suggests that a large taxonomic diversity where all community members interact with each other (low modularity), the presence of permanent of low-abundant taxa, and an increase in competition can be potential buffers against environmental disturbance in microbial mats.
机译:迄今为止,尚不清楚人为扰动如何影响微生物群落的动态,对扰动的反应会产生什么样的一般模式以及是否有可能预测它们。在这里,我们建议使用微生物垫作为研究模型,以揭示可阐明潜在微生物动态响应压力的生态过程的模式。通过在三种计算方法的新颖组合中使用时间序列空间分辨分析,我们追踪了墨西哥Cuatro Cienegas盆地(CCB)微生物垫中水耗竭引起的人为扰动的响应。首先,我们实施了MEBS(基于多基因组熵的评分),以单个信息值评估跨时空尺度的主要生物地球化学循环的动力学。其次,我们使用了健壮的时间序列-生态网络(TS-ENs)来评估不同分类标准下相互作用的总百分比。最后,我们利用网络主题来描述特定的交互模式。我们的结果表明,来自CCB的微生物垫具有巨大的分类学多样性,至少有100个门,主要由稀有生物圈(RB)成员代表。统计生态学分析指出,与潮湿和干燥条件下的硫和甲烷循环有关的厌氧行会的明确参与,在那里我们发现真菌,光合作用和卤虫类群的增加。 TS-ENs表明,在潮湿条件下,合作与竞争之间处于平衡状态(分别为正向和负向关系),而在干燥条件下,过度代表了负向关系。此外,TS-EN的大多数基层分类群都是家庭成员,是RB和微生物垫核心,突出了它们在社区中的关键作用。我们的结果表明,由于冗余功能很可能使微生物垫更坚固,因为冗余功能可能在高度连接的TS-EN中社区成员之间共享,其密度值接近1(≈0.9)。最后,我们提供的证据表明,所有社区成员相互影响的低分类学多样性(低模块性),低丰度分类单元的永久存在以及竞争的加剧可能是抵抗微生物垫环境干扰的潜在缓冲。

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