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基于共生异养生物对藻类光合代谢产物的利用开发新型人工培养基。

Development of a novel artificial medium based on utilization of algal photosynthetic metabolites by symbiotic heterotrophs.

作者信息

Watanabe K, Imase M, Aoyagi H, Ohmura N, Saiki H, Tanaka H

机构信息

Ibaraki Kasumigaura Environmental Science Center, Ibaraki, Japan.

出版信息

J Appl Microbiol. 2008 Sep;105(3):741-51. doi: 10.1111/j.1365-2672.2008.03785.x. Epub 2008 Mar 17.

Abstract

AIMS

(i) Quantitative and qualitative analyses of photosynthetic metabolites of Chlorella sorokiniana and elucidation of the mechanism of their utilization by algal symbionts. (ii) Development of artificial medium that imitates photoautotroph-heterotroph interaction and investigation of its suitability for isolation of novel microbes from the environment.

METHODS AND RESULTS

Various components, including free dissolved carbohydrates, nitrogenous compounds and vitamin, were detected and together contributed 11.1% (as carbon content) of the total photosynthetic metabolites in the medium. Utilization of these photosynthetic metabolites in algal culture broth by algal symbionts was studied. Many symbionts showed specific utilization patterns. A novel artificial extracellular released organic carbon medium, which imitated the nutritional conditions surrounding algae, was developed based on the pattern of utilization of the algal metabolites by the symbiotic heterotrophs. About 42.9% of the isolates were closely related to photoautotrophic-dependent and oligotrophic bacteria.

CONCLUSIONS

With the novel artificial medium, it was possible to selectively isolate some bacterial strains.

SIGNIFICANT AND IMPACT OF THE STUDY

Synthetic bacterial growth medium is an important and basic tool for bacterial isolation from environmental samples. The current study shows that preferential separation of typical bacterial subset can be achieved by using artificial medium that mimics photosynthetic metabolites.

摘要

目的

(i)对索氏小球藻光合代谢产物进行定量和定性分析,并阐明藻类共生体对其利用的机制。(ii)开发模拟光合自养生物 - 异养生物相互作用的人工培养基,并研究其对从环境中分离新型微生物的适用性。

方法与结果

检测了包括游离溶解碳水化合物、含氮化合物和维生素在内的各种成分,它们在培养基中光合代谢产物总量中占比11.1%(以碳含量计)。研究了藻类共生体对藻类培养液中这些光合代谢产物的利用情况。许多共生体表现出特定的利用模式。基于共生异养生物对藻类代谢产物的利用模式,开发了一种新型人工细胞外释放有机碳培养基,该培养基模拟了藻类周围的营养条件。约42.9%的分离株与光合自养依赖性和贫营养细菌密切相关。

结论

利用这种新型人工培养基,可以选择性地分离出一些细菌菌株。

研究的意义和影响

合成细菌生长培养基是从环境样品中分离细菌的重要基础工具。当前研究表明,通过使用模拟光合代谢产物的人工培养基,可以实现典型细菌子集的优先分离。

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