Contrasting dynamics and environmental controls of dispersed bacteria along a hydrologic gradient

Q3 Earth and Planetary Sciences Advances in Oceanography and Limnology Pub Date : 2017-12-22 DOI:10.4081/AIOL.2017.7232
C. Ruiz‐González, Juan Pablo Niño‐García, M. Berggren, P. Giorgio
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引用次数: 13

Abstract

Freshwater bacterioplankton communities are influenced by the transport of bacteria from the surrounding terrestrial environments. It has been shown that, although most of these dispersed bacteria gradually disappear along the hydrologic continuum, some can thrive in aquatic systems and become dominant, leading to a gradual succession of communities. Here we aimed at exploring the environmental factors driving the structure of such contrasting bacterial populations as well as their functional properties. Using Illumina sequencing of the 16S rRNA gene, we characterized the taxonomic composition of bacterioplankton communities from 10 streams and rivers in Quebec spanning the whole hydrologic continuum (river Strahler order 0 to 7), which were sampled in two occasions. With the aim to understand the fate and controls of the transported bacteria, among the taxa present at the origin of the hydrologic gradient ( i.e ., in the smallest headwater streams) we identified two types of dynamics: i) ‘Tourist’ taxa, which were those that decreased in abundance from the headwaters towards the largest rivers, and ii) ‘Seed’ taxa, those that increased their abundances along the hydrologic continuum. Communities changed gradually from the fast-flowing headwater streams dominated by ‘Tourist’ taxa (ca. 95% of the sequences) towards the largest rivers (Strahler order 4-7) where ‘Seed’ taxa comprised up to 80% of community sequences. Variation in taxonomic composition of the communities dominated by ‘Tourist’ taxa in streams seemed related to different degree of terrestrial inputs, whereas compositional changes in ‘Seed’ communities in the large rivers were linked to differences in autochthonous processes. Finally, the two types of communities differed significantly in their metabolic potential assessed through Biolog Ecoplates. All this suggests that hydrologic transport modulates the gradual replacement of two contrasting population types subjected to different environmental controls and with different metabolic potentials. Moreover, we show that the separate exploration of the two pools of taxa allows unveiling environmental drivers and processes operating on them that remain hidden if explored at the whole community level.
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沿水文梯度分布的细菌的动力学对比和环境控制
淡水浮游细菌群落受到来自周围陆地环境的细菌运输的影响。研究表明,尽管这些分散的细菌大多数在水文连续统中逐渐消失,但有些细菌可以在水生系统中茁壮成长并成为主导,导致群落的逐渐演替。在这里,我们的目的是探索驱动这种对比细菌群体的结构以及它们的功能特性的环境因素。利用Illumina 16S rRNA基因测序技术,研究了魁北克省10条河流(河流strhler目0 ~ 7)中浮游细菌群落的分类组成。为了了解这些细菌的命运和控制,我们在水文梯度的起源(即最小的源头)的分类群中确定了两种类型的动态:i)“旅游”分类群,即从源头到最大河流的丰度减少的分类群;ii)“种子”分类群,即沿着水文连续体增加其丰度的分类群。群落逐渐从以“旅游”类群(约95%的序列)为主的湍急的源头河流转变为最大的河流(Strahler阶4-7),其中“种子”类群占高达80%的群落序列。溪流中以“游客”类群为主的群落的分类组成变化似乎与不同程度的陆地输入有关,而大河中“种子”群落的组成变化与本土过程的差异有关。最后,两种类型的群落在通过生物生态板评估的代谢潜力方面存在显著差异。所有这些都表明,在不同的环境控制和不同的代谢潜力下,水文运输调节了两种截然不同的种群类型的逐渐替代。此外,我们表明,两个分类群的单独探索可以揭示环境驱动因素和过程,如果在整个社区层面进行探索,这些驱动因素和过程仍然是隐藏的。
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来源期刊
Advances in Oceanography and Limnology
Advances in Oceanography and Limnology Agricultural and Biological Sciences-Aquatic Science
CiteScore
2.00
自引率
0.00%
发文量
2
审稿时长
12 weeks
期刊介绍: Advances in Oceanography and Limnology was born in 2010 from the 35 years old Proceedings of the national congress of the Italian Association of Oceanology and Limnology. The AIOL Journal was funded as an interdisciplinary journal embracing both fundamental and applied Oceanographic and Limnological research, with focus on both single and multiple disciplines. Currently, two regular issues of the journal are published each year. In addition, Special Issues that focus on topics that are timely and of interest to a significant number of Limnologists and Oceanographers are also published. The journal, which is intended as an official publication of the AIOL, is also published in association with the EFFS (European Federation for Freshwater Sciences), which aims and objectives are directed towards the promotion of freshwater sciences throughout Europe. Starting from the 2015 issue, the AIOL Journal is published as an Open Access, peer-reviewed journal. Space is given to regular articles, review, short notes and opinion paper
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