4.6 Article

Accumulation of Tetrahymena pyriformis on Interfaces

期刊

MICROMACHINES
卷 12, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/mi12111339

关键词

swimming microorganism; ciliates; cell suspension; cell accumulation; diffusion equation

资金

  1. JSPS KAKENHI [19KK0180, 21H05308, 21K03855]
  2. JSPS Core-to-Core Program, A. Advanced Research Networks
  3. Kurita Water and Environment Foundation [20E028]
  4. Project of Junior Scientist Promotion in Hokkaido University
  5. Human Frontier Science Program [LT000013/2019-C]
  6. Grants-in-Aid for Scientific Research [19KK0180, 21K03855, 21H05308] Funding Source: KAKEN

向作者/读者索取更多资源

The study investigates the spatial population dynamics of the ciliate Tetrahymena pyriformis through quantitative data analysis, utilizing image processing of 3D micrographs and machine learning to obtain individual cell positional data and examine their statistical properties based on spatio-temporal data. The cells are found to accumulate both on the solid wall at the bottom surface and underneath the air-liquid interface at the top according to their 3D spatial distribution and temporal evolution. A simple behavioral model incorporating quantitative accumulation coefficients was created to quantitatively clarify the difference in accumulation levels between the bulk and the interface, allowing for comparisons under different conditions and between different species.
The behavior of ciliates has been studied for many years through environmental biology and the ethology of microorganisms, and recent hydrodynamic studies of microswimmers have greatly advanced our understanding of the behavioral dynamics at the single-cell level. However, the association between single-cell dynamics captured by microscopic observation and pattern dynamics obtained by macroscopic observation is not always obvious. Hence, to bridge the gap between the two, there is a need for experimental results on swarming dynamics at the mesoscopic scale. In this study, we investigated the spatial population dynamics of the ciliate, Tetrahymena pyriformis, based on quantitative data analysis. We combined the image processing of 3D micrographs and machine learning to obtain the positional data of individual cells of T. pyriformis and examined their statistical properties based on spatio-temporal data. According to the 3D spatial distribution of cells and their temporal evolution, cells accumulated both on the solid wall at the bottom surface and underneath the air-liquid interface at the top. Furthermore, we quantitatively clarified the difference in accumulation levels between the bulk and the interface by creating a simple behavioral model that incorporated quantitative accumulation coefficients in its solution. The accumulation coefficients can be compared under different conditions and between different species.

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