Tran Hanh T M, Stephenson Steven L, Tullis Jason A
School of Biotechnology, Ho Chi Minh International University, Ho Chi Minh City, 70000 Vietnam.
Department of Biological Sciences, University of Arkansas, Fayetteville, AR 72701 USA.
Fungal Biol Biotechnol. 2015 Nov 19;2:7. doi: 10.1186/s40694-015-0017-z. eCollection 2015.
The conventional method used to assess growth of the plasmodium of the slime mold in solid culture is to measure the extent of plasmodial expansion from the point of inoculation by using a ruler. However, plasmodial growth is usually rather irregular, so the values obtained are not especially accurate. Similar challenges exist in quantification of the growth of a fungal mycelium.
In this paper, we describe a method that uses geographic information system software to obtain highly accurate estimates of plasmodial growth over time. This approach calculates plasmodial area from images obtained at particular intervals following inoculation. In addition, the correlation between plasmodial area and its dry cell weight value was determined. The correlation could be used for biomass estimation without the need of having to terminate the cultures in question.
The method described herein is simple but effective and could also be used for growth measurements of other microorganisms such as fungi on solid media.
在固体培养中评估黏菌疟原质团生长的传统方法是用尺子测量从接种点开始的疟原质团扩展程度。然而,疟原质团的生长通常相当不规则,所以得到的值不是特别准确。在量化真菌菌丝体的生长方面也存在类似挑战。
在本文中,我们描述了一种使用地理信息系统软件来获得疟原质团随时间生长的高度准确估计值的方法。这种方法根据接种后特定时间间隔获取的图像计算疟原质团面积。此外,还确定了疟原质团面积与其干细胞重量值之间的相关性。该相关性可用于生物量估计,而无需终止相关培养。
本文所述方法简单但有效,也可用于测量其他微生物如固体培养基上真菌的生长。