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一种新分离出的类似于嗜硫红假单胞菌(嗜硫红杆菌)的非硫紫色细菌对半胱氨酸的完全同化作用。

Complete assimilation of cysteine by a newly isolated non-sulfur purple bacterium resembling Rhodovulum sulfidophilum (Rhodobacter sulfidophilus).

作者信息

Heising S, Dilling W, Schnell S, Schink B

机构信息

Fakultät für Biologie, Universität Konstanz, Postfach 5560, D-78434 Konstanz, Germany.

出版信息

Arch Microbiol. 1996 Jun;165(6):397-401. doi: 10.1007/s002030050343.

DOI:10.1007/s002030050343
PMID:8661933
Abstract

A rod-shaped, motile, phototrophic bacterium, strain SiCys, was enriched and isolated from a marine microbial mat, with cysteine as sole substrate. During phototrophic anaerobic growth with cysteine, sulfide was produced as an intermediate, which was subsequently oxidized to sulfate. The molar growth yield with cysteine was 103 g mol-1, in accordance with complete assimilation of electrons from the carbon and the sulfur moiety into cell material. Growth yields with alanine and serine were proportionally lower. Thiosulfate, sulfide, hydrogen, and several organic compounds were used as electron donors in the light, whereas cystine, sulfite, or elemental sulfur did not support phototrophic anaerobic growth. Aerobic growth in the dark was possible with fructose as substrate. Cultures of strain SiCys were yellowish-brown in color and contained bacteriochlorophyll a, spheroidene, spheroidenone, and OH-spheroidene as major photosynthetic pigments. Taking the morphology, photosynthetic pigments, aerobic growth in the dark, and utilization of sulfide for phototrophic growth into account, strain SiCys was assigned to the genus Rhodovulum (formerly Rhodobacter) and tentatively classified as a strain of R. sulfidophilum. In cell-free extracts in the presence of pyridoxal phosphate, cysteine was converted to pyruvate and sulfide, which is characteristic for cysteine desulfhydrase activity (l-cystathionine gamma-lyase, EC 4.4. 1.1).

摘要

从海洋微生物垫中富集并分离出一株杆状、具运动性、光合自养细菌SiCys菌株,其以半胱氨酸作为唯一底物。在以半胱氨酸进行光合自养厌氧生长过程中,硫化物作为中间产物产生,随后被氧化为硫酸盐。以半胱氨酸的摩尔生长产率为103 g mol-1,这与碳和硫部分的电子完全同化到细胞物质中相一致。以丙氨酸和丝氨酸的生长产率相应较低。硫代硫酸盐、硫化物、氢气以及几种有机化合物在光照下用作电子供体,而胱氨酸、亚硫酸盐或元素硫不支持光合自养厌氧生长。以果糖为底物在黑暗中可进行有氧生长。SiCys菌株培养物呈黄棕色,含有细菌叶绿素a、球形烯、球形烯酮和OH-球形烯作为主要光合色素。综合形态、光合色素、黑暗中的有氧生长以及利用硫化物进行光合自养生长等因素,SiCys菌株被归入红育菌属(以前的红杆菌属),并初步归类为嗜硫红育菌的一个菌株。在存在磷酸吡哆醛的无细胞提取物中,半胱氨酸被转化为丙酮酸和硫化物,这是半胱氨酸脱硫酶活性(L-胱硫醚γ-裂合酶,EC 4.4.1.1)的特征。

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