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Microbial growth on hydrocarbons: terminal branching inhibits biodegradation.

机译:碳氢化合物上的微生物生长:末端分支抑制了生物降解。

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摘要

A variety of octane-utilizing bacteria and fungi were screened for growth on some terminally branched dimethyloctane derivatives to explore the effects of iso- and anteiso-termini on the biodegradability of such hydrocarbons. Of 27 microbial strains tested, only 9 were found to use any of the branched hydrocarbons tested as a sole carbon source, and then only those hydrocarbons containing at least one iso-terminus were susceptible to degradation. Anteiso-or isopropenyl termini prevented biodegradation. None of the hydrocarbonoclastic yeasts tested was able to utilize branched-hydrocarbon growth sustrates. In the case of pseudomonads containing the OCT plasmid, whole-cell oxidation of n-octane was poorly induced by terminally branched dimethyloctanes. In the presence of a gratuitous inducer of the octane-oxidizing enzymes, the iso-branched 2,7-dimethyloctane was slowly oxidized by whole cells, whereas the anteiso-branched 3,6-dimethyloctane was not oxidized at all. This microbial sampling dramatically illustrated the deleterious effect of alkyl branching, especially anteiso-terminal branching, on the biodegradation of hydrocarbons.
机译:筛选了多种利用辛烷的细菌和真菌在一些末端支链的二甲基辛烷衍生物上生长,以探索异端和异端对此类烃的生物降解性的影响。在测试的27种微生物菌株中,仅发现9种使用任何支链烃作为唯一的碳源,然后只有那些包含至少一个同构末端的烃才易于降解。异或异丙烯基末端可防止生物降解。测试的烃破酵母中没有一个能够利用支链烃生长基质。在含有OCT质粒的假单胞菌的情况下,末端支链的二甲基辛烷很难诱导正辛烷的全细胞氧化。在辛烷氧化酶的免费诱导物的存在下,异支链的2,7-二甲基辛烷被整个细胞缓慢氧化,而前异支链的3,6-二甲基辛烷则完全不被氧化。该微生物采样显着说明了烷基支化,特别是前异端支化对烃类生物降解的有害作用。

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