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Indigo formation by microorganisms expressing styrene monooxygenase activity.

机译:表达苯乙烯单加氧酶活性的微生物形成的靛蓝。

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摘要

The transformation of indole to indigo by microorganisms expressing styrene monooxygenase (SMO) has been studied. Styrene and indole are structurally very similar, and thus we looked at a variety of styrene-degrading strains for indole transformation to indigo. Two strains, Pseudomonas putida S12 and CA-3, gave a blue color on solid media when grown in the presence of indole. Indole induces its own transformation on solid media but is a poor inducer in liquid media. Styrene is the best inducer of indole transformation in both strains. Arginine represses styrene consumption and indigo formation rates in P. putida S12 compared to phenylacetic acid-grown cells, while the opposite effect is seen for P. putida CA-3. Characterization of an SMO- and styrene oxide isomerase (SOI)-negative transposon mutant of P. putida CA-3 and an SOI-negative N-methyl-N'-nitro-N-nitrosoguanidine mutant of P. putida S12 reveals the involvement of both SMO and SOI in indole transformation to indigo. Both strains stoichiometrically produce high-purity indigo from indole.
机译:已经研究了表达苯乙烯单加氧酶(SMO)的微生物将吲哚转化为靛蓝的过程。苯乙烯和吲哚在结构上非常相似,因此我们研究了将苯乙烯降解为靛蓝的各种苯乙烯降解菌株。当在吲哚存在下生长时,两种假单胞菌恶臭假单胞菌S12和CA-3在固体培养基上呈现蓝色。吲哚在固体培养基上诱导其自身的转化,但在液体培养基中诱导效果较差。苯乙烯是两种菌株中吲哚转化的最佳诱导剂。与苯乙酸生长的细胞相比,精氨酸可以抑制恶臭假单胞菌S12中的苯乙烯消耗和靛蓝形成速率,而恶臭假单胞菌CA-3则具有相反的效果。恶臭假单胞菌CA-3的SMO和苯乙烯氧化物异构酶(SOI)阴性转座子突变体以及恶臭假单胞菌S12的SOI阴性N-甲基-N'-硝基-N-亚硝基胍突变体的表征揭示了参与SMO和SOI均由吲哚转化为靛蓝。两种菌株化学计量地从吲哚产生高纯度的靛蓝。

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