Harwood C S, Gibson J
Department of Microbiology, New York State College of Agriculture and Life Sciences, Ithaca.
Appl Environ Microbiol. 1988 Mar;54(3):712-7. doi: 10.1128/aem.54.3.712-717.1988.
The purple nonsulfur photosynthetic bacterium Rhodopseudomonas palustris used diverse aromatic compounds for growth under anaerobic and aerobic conditions. Many phenolic, dihydroxylated, and methoxylated aromatic acids, as well as aromatic aldehydes and hydroaromatic acids, supported growth of strain CGA001 in both the presence and absence of oxygen. Some compounds were metabolized under only aerobic or under only anaerobic conditions. Two other strains, CGC023 and CGD052, had similar anaerobic substrate utilization patterns, but CGD052 was able to use a slightly larger number of compounds for growth. These results show that R. palustris is far more versatile in terms of aromatic degradation than had been previously demonstrated. A mutant (CGA033) blocked in aerobic aromatic metabolism remained wild type with respect to anaerobic degradative abilities, indicating that separate metabolic pathways mediate aerobic and anaerobic breakdown of diverse aromatics. Another mutant (CGA047) was unable to grow anaerobically on either benzoate or 4-hydroxybenzoate, and these compounds accumulated in growth media when cells were grown on more complex aromatic compounds. This indicates that R. palustris has two major anaerobic routes for aromatic ring fission, one that passes through benzoate and one that passes through 4-hydroxybenzoate.
紫色非硫光合细菌沼泽红假单胞菌在厌氧和好氧条件下利用多种芳香族化合物进行生长。许多酚类、二羟基化和甲氧基化芳香酸,以及芳香醛和氢化芳香酸,在有氧和无氧条件下均支持CGA001菌株的生长。一些化合物仅在有氧或仅在厌氧条件下被代谢。另外两个菌株CGC023和CGD052具有相似的厌氧底物利用模式,但CGD052能够利用略多一些的化合物进行生长。这些结果表明,沼泽红假单胞菌在芳香族化合物降解方面比之前所证明的具有更强的通用性。一个在有氧芳香族代谢中受阻的突变体(CGA033)在厌氧降解能力方面仍为野生型,这表明不同的代谢途径介导了多种芳香族化合物的有氧和厌氧分解。另一个突变体(CGA047)在以苯甲酸盐或4-羟基苯甲酸盐为底物时无法厌氧生长,当细胞在更复杂的芳香族化合物上生长时,这些化合物会在生长培养基中积累。这表明沼泽红假单胞菌具有两条主要的厌氧芳香环裂解途径,一条途径经过苯甲酸盐,另一条途径经过4-羟基苯甲酸盐。