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β-变形菌纲中Limnohabitans-C和Polynucleobacter-B菌群成员对藻类衍生溶解有机物的菌株特异性消耗与转化

Strain-specific consumption and transformation of alga-derived dissolved organic matter by members of the Limnohabitans-C and Polynucleobacter-B clusters of Betaproteobacteria.

作者信息

Horňák Karel, Kasalický Vojtěch, Šimek Karel, Grossart Hans-Peter

机构信息

Limnological Station, Department of Plant and Microbial Biology, University of Zurich, Seestrasse 187, Kilchberg CH-8802, Switzerland.

Biology Centre of the Academy of Sciences of the Czech Republic, v.v.i., Institute of Hydrobiology, Na Sádkách 7, České Budějovice CZ-37005, Czech Republic.

出版信息

Environ Microbiol. 2017 Nov;19(11):4519-4535. doi: 10.1111/1462-2920.13900. Epub 2017 Sep 21.

DOI:10.1111/1462-2920.13900
PMID:28856804
Abstract

We investigated changes in quality and quantity of extracellular and biomass-derived organic matter (OM) from three axenic algae (genera Rhodomonas, Chlamydomonas, Coelastrum) during growth of Limnohabitans parvus, Limnohabitans planktonicus and Polynucleobacter acidiphobus representing important clusters of freshwater planktonic Betaproteobacteria. Total extracellular and biomass-derived OM concentrations from each alga were approximately 20 mg l and 1 mg l respectively, from which up to 9% could be identified as free carbohydrates, polyamines, or free and combined amino acids. Carbohydrates represented 54%-61% of identified compounds of the extracellular OM from each alga. In biomass-derived OM of Rhodomonas and Chlamydomonas 71%-77% were amino acids and polyamines, while in that of Coelastrum 85% were carbohydrates. All bacteria grew on alga-derived OM of Coelastrum, whereas only Limnohabitans strains grew on OM from Rhodomonas and Chlamydomonas. Bacteria consumed 24%-76% and 38%-82% of all identified extracellular and biomass-derived OM compounds respectively, and their consumption was proportional to the concentration of each OM compound in the different treatments. The bacterial biomass yield was higher than the total identifiable OM consumption indicating that bacteria also utilized other unidentified alga-derived OM compounds. Bacteria, however, also produced specific OM compounds suggesting enzymatic polymer degradation or de novo exudation.

摘要

我们研究了三种无菌藻类(红胞藻属、衣藻属、胶星藻属)的细胞外和生物量衍生有机物(OM)在小型湖生菌、浮游湖生菌和嗜酸多核杆菌生长过程中的质量和数量变化,这三种细菌代表了淡水浮游β-变形菌的重要类群。每种藻类的细胞外和生物量衍生OM总浓度分别约为20 mg/l和1 mg/l,其中高达9%可鉴定为游离碳水化合物、多胺或游离及结合氨基酸。碳水化合物占每种藻类细胞外OM已鉴定化合物的54%-61%。在红胞藻属和衣藻属的生物量衍生OM中,71%-77%是氨基酸和多胺,而在胶星藻属中,85%是碳水化合物。所有细菌都能利用胶星藻属的藻类衍生OM生长,而只有湖生菌菌株能利用红胞藻属和衣藻属的OM生长。细菌分别消耗了所有已鉴定的细胞外和生物量衍生OM化合物的24%-76%和38%-82%,它们的消耗量与不同处理中每种OM化合物的浓度成正比。细菌生物量产量高于可鉴定的OM总消耗量,这表明细菌还利用了其他未鉴定的藻类衍生OM化合物。然而,细菌也产生了特定的OM化合物,这表明存在酶促聚合物降解或从头分泌现象。

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