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高效液相色谱法检测水生环境中的光养细菌色素。

High performance liquid chromatography detection of phototrophic bacterial pigments in aquatic environments.

机构信息

Kinneret Limnological Laboratory, P.O. Box 345, 14102, Tiberias, Israel.

出版信息

Microb Ecol. 1990 Mar;19(2):127-36. doi: 10.1007/BF02012094.

Abstract

Pigment extracts of phototrophic bacteria isolated from Lake Kinneret (Rhodopseudomonas palustris, Thiocapsa roseopersicina, Prosthecochloris aestuaris andChlorobium phaeobacteroides) were studied by means of high performance liquid chromatography (HPLC). An absorption wavelength of 360 nm provided the best resolution among the pigments of the species tested and between them and chlorophylla. Signature pigments were identified for each of these species, and their presence was thereby monitored in lake water samples.C. phaeobacteroides, which was observed in the anaerobic hypolimnion and predominated in the metalimnion, was recognized by a characteristic cluster of major chlorophyllous pigment peaks. The spectral qualities of these pigments were close but not identical to published data on bacteriochlorophylle, presumably due to the use of different solvents for extraction. The intensity of these pigment peaks was employed to determine the depth of the greatest phototrophic bacterial biomass, which was not related to that of algae.

摘要

从加利利海(沼泽红假单胞菌、玫瑰色硫细菌、河口鱼腥藻和 荚膜红细菌)中分离出的光养细菌的色素提取物通过高效液相色谱法(HPLC)进行了研究。在测试的物种的色素之间以及它们与叶绿素之间,360nm 的吸收波长提供了最佳的分辨率。为这些物种中的每一个都确定了特征性的色素,并在湖水样本中监测到了它们的存在。荚膜红细菌在厌氧的湖下层和湖上层中观察到,在湖上层中占优势,它的特征是主要叶绿素色素峰的聚类。这些色素的光谱质量与已发表的细菌叶绿素数据接近但不相同,可能是由于提取时使用了不同的溶剂。这些色素峰的强度被用来确定最大的光合细菌生物量的深度,它与藻类的生物量无关。

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