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生态位分离随着蓝藻水华形成菌之间遗传距离的增加而增大。

Niche Separation Increases With Genetic Distance Among Bloom-Forming Cyanobacteria.

作者信息

Tromas Nicolas, Taranu Zofia E, Martin Bryan D, Willis Amy, Fortin Nathalie, Greer Charles W, Shapiro B Jesse

机构信息

Département de Sciences Biologiques, Université de Montréal, Montreal, QC, Canada.

Department of Biology, University of Ottawa, Ottawa, ON, Canada.

出版信息

Front Microbiol. 2018 Mar 27;9:438. doi: 10.3389/fmicb.2018.00438. eCollection 2018.

Abstract

Bacterial communities are composed of distinct groups of potentially interacting lineages, each thought to occupy a distinct ecological niche. It remains unclear, however, how quickly niche preference evolves and whether more closely related lineages are more likely to share ecological niches. We addressed these questions by following the dynamics of two bloom-forming cyanobacterial genera over an 8-year time-course in Lake Champlain, Canada, using 16S amplicon sequencing and measurements of several environmental parameters. The two genera, () and (), are frequently observed simultaneously during bloom events and thus have partially overlapping niches. However, the extent of their niche overlap is debated, and it is also unclear to what extent niche partitioning occurs among strains within each genus. To identify strains within each genus, we applied minimum entropy decomposition (MED) to 16S rRNA gene sequences. We confirmed that at a genus level, and have different preferences for nitrogen and phosphorus concentrations. Within each genus, we also identified strains differentially associated with temperature, precipitation, and concentrations of nutrients and toxins. In general, niche similarity between strains (as measured by co-occurrence over time) declined with genetic distance. This pattern is consistent with habitat filtering - in which closely related taxa are ecologically similar, and therefore tend to co-occur under similar environmental conditions. In contrast with this general pattern, similarity in certain niche dimensions (notably particulate nitrogen and phosphorus) did not decline linearly with genetic distance, and instead showed a complex polynomial relationship. This observation suggests the importance of processes other than habitat filtering - such as competition between closely related taxa, or convergent trait evolution in distantly related taxa - in shaping particular traits in microbial communities.

摘要

细菌群落由不同的潜在相互作用谱系组组成,每个谱系都被认为占据一个独特的生态位。然而,生态位偏好的进化速度有多快,以及亲缘关系更近的谱系是否更有可能共享生态位,目前尚不清楚。我们通过在加拿大尚普兰湖进行的为期8年的时间进程中追踪两个形成水华的蓝藻属的动态变化来解决这些问题,采用16S扩增子测序和几个环境参数的测量。这两个属,()和(),在水华事件期间经常同时被观察到,因此具有部分重叠的生态位。然而,它们生态位重叠的程度存在争议,而且每个属内不同菌株之间的生态位划分程度也不清楚。为了识别每个属内的菌株,我们将最小熵分解(MED)应用于16S rRNA基因序列。我们证实,在属的水平上,和对氮和磷浓度有不同的偏好。在每个属内,我们还识别出与温度、降水以及营养物质和毒素浓度有差异关联的菌株。一般来说,菌株之间的生态位相似性(通过随时间的共现来衡量)随着遗传距离的增加而下降。这种模式与栖息地筛选一致——亲缘关系密切的分类群在生态上相似,因此倾向于在相似的环境条件下同时出现。与这种一般模式相反,某些生态位维度(特别是颗粒氮和磷)的相似性并没有随着遗传距离线性下降,而是呈现出复杂的多项式关系。这一观察结果表明,除了栖息地筛选之外,其他过程——例如亲缘关系密切的分类群之间的竞争,或者亲缘关系较远的分类群中的趋同性状进化——在塑造微生物群落的特定性状方面也很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5469/5880894/12920616fba9/fmicb-09-00438-g001.jpg

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