Suppr超能文献

普通嗜热放线菌营养生长的动力学

Kinetics of vegetative growth of Thermoactinomyces vulgaris.

作者信息

Kretschmer S

出版信息

Z Allg Mikrobiol. 1978;18(10):701-11. doi: 10.1002/jobm.3630181002.

Abstract

The growth of Thermoactinomyces vulgaris on solid media was studied by microculture technique. Starting from a germinating spore the further development was followed by phase contrast microscopy. From serially taken photographs the kinetics of growth and branching of the mycelium was calculated. Also some observations on morphological behaviour were made. Regarding the total mycelium developing from one spore the growth occurred witha constant exponential growth rate, at least for the time tested (about ten doublings). The constancy of the mycelial growth rate was not attributed to constant rates of hyphal growth or branching. The hyphal growth rate increased during the development of the mycelium, so that the length produced by a hypha within a given time was smallest after germination and largest at the end of the experiment. Between the first and the 10th doubling of the mycelium the mean hyphal growth rate increased by the factor 27, in some cultures even by the factor 40. While hyphal growth changed from exponential to linear, branching was first linear and then approached exponential kinetics. Under different conditions of cultivation mycelia could have identical doubling times, but different hyphal growth rates and vice versa. Yeast extract caused a reduction of the hyphal growth rate and an enhancement of branching. Likewise the diminution of the supply of oxygen did not reduce the mycelial growth rate, but markedly decreased the hyphal growth rate, especially of the germ tube. The data obtained concerning the kinetics of growth and branching can be explained by a special form of cooperation of cytoplasmic and cell wall synthesis. With respect to the synthesis of cytoplasma a T. vulgaris mycelium behaves as one individual, which is not differentiated into replicating and non replicating areas (as recently was shown to be likely for Streptomyces hygroscopicus by Schuhmann and Bergter 1976). The mycelial growth rate thus reflects the rate of the synthesis of cytoplasm. The hyphal growth rate is moreover determined by the rate of cell wall synthesis at the tip of each hypha. The observed increase of the hyphal growth rate is explainable by an acceleration of the cell wall synthesis during the development of the mycelium. Probably the branching is regulated indirectly. According to the different manner of cytoplasmic and cell wall synthesis, within a hypha a balance between both processes is maintainable only for a limited time. As soon as the momentary apical capacity for cell wall synthesis is exhausted, the balance is attained anew by originating a new site for wall synthesis, i.e. by branching. Branching was often defective. Especially in the absence of yeast extract a lot of lateral branches arose, which ceased further growth at an average length of 2.5 micron. It is suggested that yeast extract supports the transport of the nucleoids into the lateral branches, which otherwise is often infeasible. Reduction of the supply of oxygen favoured apical branching, so that dichotomous forms resulted.

摘要

采用微量培养技术研究了嗜热放线菌在固体培养基上的生长情况。从萌发的孢子开始,通过相差显微镜观察其进一步的发育过程。根据连续拍摄的照片计算菌丝体生长和分支的动力学。同时,对形态学行为也进行了一些观察。对于从一个孢子发育而来的整个菌丝体,其生长以恒定的指数生长速率进行,至少在所测试的时间内(约十次倍增)如此。菌丝体生长速率的恒定并非归因于菌丝生长或分支速率的恒定。在菌丝体发育过程中,菌丝生长速率增加,因此在给定时间内由一根菌丝产生的长度在萌发后最小,在实验结束时最大。在菌丝体第一次倍增到第十次倍增之间,平均菌丝生长速率增加了27倍,在某些培养物中甚至增加了40倍。当菌丝生长从指数型转变为线性时,分支首先是线性的,然后接近指数动力学。在不同的培养条件下,菌丝体可能具有相同的倍增时间,但菌丝生长速率不同,反之亦然。酵母提取物导致菌丝生长速率降低和分支增加。同样,氧气供应的减少并没有降低菌丝体生长速率,但显著降低了菌丝生长速率,尤其是芽管的生长速率。所获得的关于生长和分支动力学的数据可以通过细胞质和细胞壁合成的一种特殊合作形式来解释。就细胞质合成而言,嗜热放线菌菌丝体表现为一个个体,没有分化为复制区和非复制区(正如舒曼和伯格特1976年最近对吸水链霉菌所表明的那样)。因此,菌丝体生长速率反映了细胞质合成的速率。此外,菌丝生长速率由每个菌丝顶端的细胞壁合成速率决定。观察到的菌丝生长速率的增加可以通过菌丝体发育过程中细胞壁合成的加速来解释。分支可能是间接调节的。根据细胞质和细胞壁合成的不同方式,在一根菌丝内,这两个过程之间的平衡只能在有限的时间内维持。一旦瞬间的顶端细胞壁合成能力耗尽,通过产生一个新的细胞壁合成位点,即通过分支,重新达到平衡。分支常常有缺陷。特别是在没有酵母提取物的情况下,会出现许多侧枝,这些侧枝在平均长度为2.5微米时停止进一步生长。有人认为酵母提取物支持类核向侧枝的运输,否则这通常是不可行的。氧气供应的减少有利于顶端分支,从而产生二叉状形态。

相似文献

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验