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根瘤菌科某些成员中磺基喹喔啉基二酰基甘油的存在情况。

Occurrence of sulfoquinovosyl diacylglycerol in some members of the family Rhizobiaceae.

作者信息

Cedergren R A, Hollingsworth R I

机构信息

Department of Chemistry, Michigan State University, East Lansing 48824-1319.

出版信息

J Lipid Res. 1994 Aug;35(8):1452-61.

PMID:7989869
Abstract

A radiolabeled component of a membrane extract of Rhizobium meliloti 2011 cells grown in the presence of 35S-labeled sulfate was isolated by silica flash chromatography and purified by high performance liquid chromatography (HPLC). Based on 1- and 2-dimensional nuclear magnetic resonance (NMR) spectroscopic and mass spectrometric analyses, the structure of the compound was determined to be sulfoquinovosyl diacylglycerol (SQDG). NMR analyses indicated substantial heterogeneity in the fatty acid composition and that an important group was the cyclopropyl fatty acids. This first report of the occurrence of SQDG outside of the plant kingdom, photosynthetic bacteria or diatoms deserves special attention as, in this case, the bacterium is one that can fix nitrogen in symbiosis with plants. The origins of the bacterium's ability to synthesize this class of membrane lipids is an important question. Membrane extracts of other strains of the family Rhizobiaceae were screened for the presence of SQDG. The occurrence of SQDG in the symbiotic organisms was confirmed, while no SQDG was detected in either the Agrobacterium tumefaciens or the Escherichia coli strains tested. The current function of these lipids in symbiosis and the commonality of the ability of bacteria that function as plant symbionts to synthesize such molecules are all germane to studies of the Rhizobium/legume symbiosis.

摘要

在含有35S标记硫酸盐的条件下培养的苜蓿根瘤菌2011细胞的膜提取物中的一种放射性标记成分,通过硅胶快速柱色谱法分离,并通过高效液相色谱法(HPLC)纯化。基于一维和二维核磁共振(NMR)光谱分析和质谱分析,确定该化合物的结构为磺基喹啉二酰基甘油(SQDG)。NMR分析表明脂肪酸组成存在显著异质性,并且一个重要的类别是环丙基脂肪酸。关于SQDG在植物界、光合细菌或硅藻之外出现的这一首次报道值得特别关注,因为在这种情况下,该细菌是一种能够与植物共生固氮的细菌。该细菌合成这类膜脂的能力的起源是一个重要问题。对根瘤菌科其他菌株的膜提取物进行了SQDG存在情况的筛选。证实了共生生物中存在SQDG,而在所测试的根癌农杆菌或大肠杆菌菌株中均未检测到SQDG。这些脂质在共生中的当前功能以及作为植物共生体的细菌合成此类分子能力的共性,都与根瘤菌/豆科植物共生的研究密切相关。

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