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氧气对总状毛霉形态发生和多肽表达的影响。

Effect of oxygen on morphogenesis and polypeptide expression by Mucor racemosus.

作者信息

Phillips G J, Borgia P T

出版信息

J Bacteriol. 1985 Dec;164(3):1039-48. doi: 10.1128/jb.164.3.1039-1048.1985.

Abstract

The morphology of Mucor racemosus in cultures continuously sparged with nitrogen gas was investigated. When appropriate precautions were taken to prevent oxygen from entering the cultures, the morphology of the cells was uniformly yeastlike irrespective of the N2 flow rate. When small amounts of oxygen entered the cultures the resulting microaerobic conditions evoked mycelial development. Polypeptides synthesized by aerobic mycelia, microaerobic mycelia, anaerobic yeasts, and yeasts grown in a CO2 atmosphere were compared by two-dimensional gel electrophoresis. The results indicated that a large number of differences in polypeptide expression exist when microaerobic mycelia or anaerobic yeasts are compared with aerobic mycelia and that these alterations correlate with a change from an oxidative to a fermentative metabolic mode. Relatively few differences in polypeptide composition exist when microaerobic cells are compared with anaerobic cells, but these changes correlate with a change from the mycelial to the yeast morphology. We hypothesize that oxygen regulates the expression of polypeptides involved in both the metabolic mode and in morphogenesis.

摘要

对在持续通入氮气的培养物中的总状毛霉的形态进行了研究。当采取适当措施防止氧气进入培养物时,无论氮气流量如何,细胞形态均呈均匀的酵母样。当少量氧气进入培养物时,由此产生的微需氧条件会引发菌丝体发育。通过二维凝胶电泳比较了需氧菌丝体、微需氧菌丝体、厌氧酵母以及在二氧化碳气氛中生长的酵母所合成的多肽。结果表明,当将微需氧菌丝体或厌氧酵母与需氧菌丝体进行比较时,多肽表达存在大量差异,并且这些改变与从氧化代谢模式向发酵代谢模式的转变相关。当将微需氧细胞与厌氧细胞进行比较时,多肽组成的差异相对较少,但这些变化与从菌丝体形态向酵母形态的转变相关。我们推测氧气调节参与代谢模式和形态发生的多肽的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acf7/219295/975fb86fa824/jbacter00217-0075-a.jpg

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