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[吸水链霉菌生长动力学的微观研究]

[Microscopic studies of Streptomyces hygroscopicus growth kinetics].

作者信息

Schuhmann E, Bergter F

出版信息

Z Allg Mikrobiol. 1976;16(3):201-5. doi: 10.1002/jobm.3630160305.

Abstract

Growth kinetics, branch formation, and cytological properties of mycelial growth of Streptomyces hygroscopicus on solid media were investigated by phase-contrast microscopy using a microculture method. Measurements were made on taken photographs of the growing hyphae from the beginning of spore germination up to maximal 18 hours. The specific growth rate of the germ tube was much higher than the specific growth rate of the mycelium. The doubling time of the total length of the mycelial hyphae and the doubling time of branch formation was quite the same for the period investigated. After a short time of outgrowth each individual hypha grows at a constant rate, i.e. the length increases linearly, but the growth kinetics of the whole mycelium becomes exponentially by branching. It seems, that nucleoids only divide in that part of a hypha between the tip and the nearest branch. A cell unit (1.4-1.9 mum on different media) could be calculated by the length of a hypha and the number of nucleoids. A hypha is growing with the cell unit at the tip or with the polar cap only. No interkalary growth in length could be found. Branches were formed only up to about 100 mum from the tip on complex medium and up to about 50 mum from the tip on mineral salt medium. A simple method of mycelial growth has been developed. Some properties showing the connection between Streptomycetes and prokaryotic organisms on one hand and hyphal growing fungi on the other hand are discussed.

摘要

采用微培养方法,通过相差显微镜研究了吸水链霉菌在固体培养基上的菌丝生长动力学、分支形成和细胞学特性。对从孢子萌发开始直至最长18小时的生长菌丝的照片进行测量。芽管的比生长速率远高于菌丝体的比生长速率。在所研究的时间段内,菌丝体菌丝总长度的倍增时间和分支形成的倍增时间相当相同。在短时间的生长后,每根单个菌丝以恒定速率生长,即长度呈线性增加,但整个菌丝体的生长动力学通过分支呈指数增长。似乎,类核仅在菌丝尖端与最近分支之间的那部分菌丝中分裂。可以通过菌丝长度和类核数量计算出一个细胞单位(在不同培养基上为1.4 - 1.9微米)。菌丝仅在尖端以细胞单位生长或仅通过极帽生长。未发现长度的居间生长。在复合培养基上,分支仅在距尖端约100微米处形成,在矿物盐培养基上,分支仅在距尖端约50微米处形成。已开发出一种简单的菌丝生长方法。讨论了一些一方面显示链霉菌与原核生物之间联系,另一方面显示与菌丝生长真菌之间联系的特性。

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