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单细胞水平上斜生栅藻(绿藻纲)细胞大小和脂质含量异质性的量化

Quantification of Tetradesmus obliquus (Chlorophyceae) cell size and lipid content heterogeneity at single-cell level.

作者信息

Di Caprio Fabrizio, Pagnanelli Francesca, Wijffels Rene H, Van der Veen Douwe

机构信息

Department of Chemistry, Sapienza University of Rome, P.le Aldo Moro 5, 00185, Rome, Italy.

Bioprocess Engineering & AlgaePARC, Wageningen University and Research, P.O. Box 16, 6700 AA, Wageningen, The Netherlands.

出版信息

J Phycol. 2018 Apr;54(2):187-197. doi: 10.1111/jpy.12610. Epub 2018 Jan 16.

Abstract

Much of our current knowledge of microbial growth is obtained from studies at a population level. Driven by the realization that processes that operate within a population might influence a population's behavior, we sought to better understand Tetradesmus obliquus (formerly Scenedesmus obliquus) physiology at the cellular level. In this work, an accurate pretreatment method to quantitatively obtain single cells of T. obliquus, a coenobia-forming alga, is described. These single cells were examined by flow cytometry for triacylglycerol (TAG), chlorophyll, and protein content, and their cell sizes were recorded by coulter counter. We quantified heterogeneity of size and TAG content at single-cell level for a population of T. obliquus during a controlled standard batch cultivation. Unexpectedly, variability of TAG content per cell within the population increased throughout the batch run, up to 400 times in the final stage of the batch run, with values ranging from 0.25 to 99 pg · cell . Two subpopulations, classified as having low or high TAG content per cell, were identified. Cell size also increased during batch growth with average values from 36 to 70 μm  · cell ; yet cell size variability increased only up to 16 times. Cell size and cellular TAG content were not correlated at the single-cell level. Our data show clearly that TAG production is affected by cell-to-cell variation, which suggests that its control and better understanding of the underlying processes may improve the productivity of T. obliquus for industrial processes such as biodiesel production.

摘要

我们目前对微生物生长的许多认识来自于群体水平的研究。鉴于认识到群体内发生的过程可能会影响群体行为,我们试图在细胞水平上更好地了解斜生栅藻(以前称为斜生栅藻)的生理学。在这项工作中,描述了一种准确的预处理方法,用于定量获得形成群体的藻类斜生栅藻的单细胞。通过流式细胞术检测这些单细胞的三酰甘油(TAG)、叶绿素和蛋白质含量,并通过库尔特计数器记录它们的细胞大小。我们在受控的标准分批培养过程中,对斜生栅藻群体在单细胞水平上的大小和TAG含量的异质性进行了量化。出乎意料的是,群体中每个细胞的TAG含量变异性在整个分批培养过程中都有所增加,在分批培养的最后阶段增加了400倍,其值范围为0.25至99 pg·细胞。确定了两个亚群,分别归类为每个细胞具有低或高TAG含量。细胞大小在分批生长过程中也增加,平均值从36至70 μm·细胞;然而细胞大小变异性仅增加到16倍。在单细胞水平上,细胞大小和细胞TAG含量不相关。我们的数据清楚地表明,TAG的产生受细胞间变异的影响,这表明对其控制以及对潜在过程的更好理解可能会提高斜生栅藻在生物柴油生产等工业过程中的生产力。

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