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一种新的双重杂交方法揭示淡水谱系LimA(Limnohabitans属)的分布和生态偏好。

Distribution and ecological preferences of the freshwater lineage LimA (genus Limnohabitans) revealed by a new double hybridization approach.

作者信息

Shabarova Tanja, Kasalický Vojtěch, Šimek Karel, Nedoma Jiří, Znachor Petr, Posch Thomas, Pernthaler Jakob, Salcher Michaela M

机构信息

Institute of Hydrobiology, Aquatic Microbial Ecology, Biology Centre CAS, České Budějovice, Czech Republic.

Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.

出版信息

Environ Microbiol. 2017 Mar;19(3):1296-1309. doi: 10.1111/1462-2920.13663. Epub 2017 Feb 6.

Abstract

The ecological relevance and factors shaping dynamics of Limnohabitans sp. have been largely studied by fluorescence in situ hybridization with a 16S rRNA probe targeting the R-BT group (lineages LimBCDE), but not lineage LimA. Consequently, ecology and distribution of LimA remained unknown. We developed a double hybridization strategy using a novel 23S rRNA probe specifically targeting LimA and LimE that in combination with the existing R-BT probe can discriminate LimA populations. This technique was applied for more than 1000 samples from 46 freshwater sites including long-term data sets from oligo-mesotrophic Lake Zurich, CH and meso-eutrophic Římov reservoir, CZ. LimA was ubiquitously distributed and highly abundant. Observed ecological preferences of LimA in Lake Zurich were in general similar to already reported for Limnohabitans with highest numbers in surface waters during growing seasons. Three times higher densities of LimA were detected in Římov reservoir, where they were significantly more abundant at the riverine zone especially after flood events that introduced fresh terrestrial DOM (dissolved organic matter). Moreover, statistical analyses of biological and physicochemical parameters obtained from small dynamic water bodies confirmed a correspondence between LimA and allochthonous DOM, in opposite to R-BT that was more related to algal primary production.

摘要

通过使用针对R - BT组(谱系LimBCDE)而非谱系LimA的16S rRNA探针进行荧光原位杂交,对Limnohabitans sp.的生态相关性和影响其动态变化的因素进行了大量研究。因此,LimA的生态学和分布情况仍然未知。我们开发了一种双重杂交策略,使用一种专门针对LimA和LimE的新型23S rRNA探针,该探针与现有的R - BT探针结合使用,可以区分LimA种群。这项技术应用于来自46个淡水站点的1000多个样本,包括来自瑞士苏黎世贫中营养湖和捷克里莫夫中富营养水库的长期数据集。LimA分布广泛且数量众多。在苏黎世湖中观察到的LimA的生态偏好总体上与已报道的Limnohabitans相似,在生长季节表层水中数量最多。在里莫夫水库中检测到LimA的密度高出三倍,在那里它们在河滨区明显更为丰富,尤其是在引入新鲜陆地溶解有机物(DOM)的洪水事件之后。此外,从小型动态水体获得的生物和物理化学参数的统计分析证实了LimA与外源DOM之间的对应关系,这与R - BT与藻类初级生产的相关性更强相反。

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