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贝氏硫菌对还原态硫化合物的利用

Use of reduced sulfur compounds by Beggiatoa sp.

作者信息

Nelson D C, Castenholz R W

出版信息

J Bacteriol. 1981 Jul;147(1):140-54. doi: 10.1128/jb.147.1.140-154.1981.

Abstract

A strain of Beggiatoa cf. leptomitiformis (OH-75-B, clone 2a) was isolated which is unique among reported strains in its ability to deposit internal sulfur granules from thiosulfate. It also deposited these characteristic granules (as all BEggiatoa species do) from sulfide. In cultures where growth was limited by exhaustion of organic substrates, these granules generally comprised about 20% of the total cell weight. With medium containing acetate and thiosulfate, no measurable utilization of thiosulfate or deposition of elemental sulfur (S0) took place until after the exponential growth phase. Neither sulfide nor thiosulfate added an increment to heterotrophic growth yield except for the weight of the deposited S0. The deposition of S0 from thiosulfate was probably a disproportionation in which S0 and sulfate were produced in a 1:1 ratio. Some of the S0 was further oxidized to sulfate. No autotrophic or mixotrophic growth was demonstrated for this strain. When inoculated in small, well-dispersed quantities into yeast extract medium, this strain grew only after long lags. Addition of the enzyme catalase eliminated initial lags and increased growth rates slightly. In contrast, catalase had no influence on growth rate when added to mineral medium containing acetate. In yeast extract medium, the inhibition of growth rate was presumably because of peroxides. Addition of thiosulfate was almost as effective as catalase in eliminating this inhibition. The S0 granules which, in this case, were deposited during the exponential growth phase, appeared to be partly responsible for this relief. This strain of Beggiatoa sp. remained active for at least 5 days under strictly anaerobic conditions, and under those conditions, it increased its dry weight by about 2.5-fold. Anaerobic "growth" and maintenance required the presence of an energy source, such as acetate. When cells containing much internal S0 were transferred to an organic anaerobic medium, a substantial portion of the internal S0 was eventually converted to sulfide.

摘要

分离出了一种近似纤毛贝氏硫菌的菌株(OH - 75 - B,克隆2a),该菌株在利用硫代硫酸盐沉积内部硫颗粒的能力方面,在已报道的菌株中独一无二。它也能从硫化物中沉积这些特征性颗粒(所有贝氏硫菌属物种都能如此)。在因有机底物耗尽而生长受限的培养物中,这些颗粒通常占细胞总重量的约20%。在含有乙酸盐和硫代硫酸盐的培养基中,直到指数生长期之后才发生硫代硫酸盐的可测量利用或元素硫(S⁰)的沉积。除了沉积的S⁰的重量外,硫化物和硫代硫酸盐都没有增加异养生长产量。硫代硫酸盐中S⁰的沉积可能是一种歧化反应,其中S⁰和硫酸盐以1:1的比例产生。一些S⁰进一步氧化成硫酸盐。未证明该菌株有自养或兼养生长。当以少量、充分分散的量接种到酵母提取物培养基中时,该菌株仅在长时间延迟后才生长。添加过氧化氢酶消除了初始延迟并略微提高了生长速率。相比之下,当添加到含有乙酸盐的矿物培养基中时,过氧化氢酶对生长速率没有影响。在酵母提取物培养基中,生长速率的抑制可能是由于过氧化物。添加硫代硫酸盐在消除这种抑制方面几乎与过氧化氢酶一样有效。在这种情况下,在指数生长期沉积的S⁰颗粒似乎部分促成了这种缓解。这种贝氏硫菌菌株在严格厌氧条件下至少保持活性5天,并且在这些条件下,其干重增加了约2.5倍。厌氧“生长”和维持需要能量源的存在,例如乙酸盐。当含有大量内部S⁰的细胞转移到有机厌氧培养基中时,大部分内部S⁰最终转化为硫化物。

相似文献

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Use of reduced sulfur compounds by Beggiatoa sp.贝氏硫菌对还原态硫化合物的利用
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本文引用的文献

1
Beggiatoa: occurrence in the rice rhizosphere.贝氏硫菌属:在水稻根际的出现。
Science. 1972 Dec 1;178(4064):990-2. doi: 10.1126/science.178.4064.990.
4
Isolation and properties of Beggiatoa.贝日阿托氏菌的分离与特性
Arch Mikrobiol. 1962;42:353-68. doi: 10.1007/BF00409071.
5
Enrichment and cultivation of Beggiatoa alba.白色贝日阿托氏菌的富集与培养
J Bacteriol. 1961 Jan;81(1):99-106. doi: 10.1128/jb.81.1.99-106.1961.
6
Intracellular deposition of sulfur by Sphaerotilus natans.浮游球衣菌在细胞内沉积硫。
J Bacteriol. 1957 Apr;73(4):504-12. doi: 10.1128/jb.73.4.504-512.1957.
7
Sulphur metabolism in soil.土壤中的硫代谢
Appl Microbiol. 1953 Mar;1(2):70-7. doi: 10.1128/am.1.2.70-77.1953.
8
Organic nutrition of Beggiatoa sp.贝氏硫细菌的有机营养
J Bacteriol. 1981 Jul;147(1):236-47. doi: 10.1128/jb.147.1.236-247.1981.

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