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在微流控装置中研究纤细裸藻避光反应中的瞬态冻结行为。

Transient freezing behavior in photophobic responses of Euglena gracilis investigated in a microfluidic device.

作者信息

Ozasa Kazunari, Lee Jeesoo, Song Simon, Maeda Mizuo

机构信息

Bioengineering Lab., RIKEN, 2-1 Hirosawa, Wako, Saitama, 351-0198 Japan

Department of Mechanical Convergence Engineering, Hanyang University, 17 Haendang-dong, Seongdong-gu, Seoul, 133-791, Korea.

出版信息

Plant Cell Physiol. 2014 Oct;55(10):1704-12. doi: 10.1093/pcp/pcu101. Epub 2014 Jul 29.

Abstract

We found that the transient freezing behavior in photophobic responses of Euglena gracilis is a good indicator of the metabolic status of the cells. The transient blue light photophobic responses of E. gracilis cells were investigated on-chip using a new measurement, 'trace momentum' (TM), to evaluate their swimming activity quantitatively in real time. When blue light of intensity >30 mW cm(-2) was repeatedly switched on and off, a large negative spike in the TM was observed at the onset of the 'blue-light-off' phase. Single-cell trace analysis at a blue light intensity of 40 mW cm(-2) showed that 48% (on average, n = 15) of tumbling Euglena cells ceased activity ('freezing') for 2-30 s at the onset of blue-light-off before commencing forward motion in a straight line (termed 'straightforward swimming'), while 45% smoothly commenced straightforward swimming without delay. The proportion of freezing Euglena cells depended on the blue light intensity (only 20% at 20 mW cm(-2)). When the cells were stimulated by four blue light pulses at the higher intensity, without pre-exposure, the transient freezing behavior was more prominent but, on repeating the stimuli after an 80 min interval in red light, the same cells did not freeze. This shows that the metabolism of the cells had changed to anti-freezing during the interval. The relationship between the interval time with/without light irradiation and the blue light adaptation was elucidated experimentally. The origin of the freezing behavior is considered to be a shortage of a metabolic substance that promotes smooth switching of flagellum movement from in situ rotation mode to a straightforward swimming mode.

摘要

我们发现,纤细裸藻避光反应中的瞬时冻结行为是细胞代谢状态的良好指标。利用一种新的测量方法“微量动量”(TM)在芯片上研究了纤细裸藻细胞的瞬时蓝光避光反应,以实时定量评估其游动活性。当强度>30 mW cm(-2)的蓝光反复开关时,在“蓝光关闭”阶段开始时观察到TM出现一个大的负尖峰。在40 mW cm(-2)的蓝光强度下进行单细胞微量分析表明,48%(平均,n = 15)翻滚的裸藻细胞在蓝光关闭开始时停止活动(“冻结”)2 - 30秒,然后开始直线向前运动(称为“直线游动”),而45%的细胞则顺利地立即开始直线游动。冻结的裸藻细胞比例取决于蓝光强度(在20 mW cm(-2)时仅为20%)。当细胞在较高强度下受到四个蓝光脉冲刺激且无预暴露时,瞬时冻结行为更为明显,但在红光下间隔80分钟重复刺激后,相同的细胞不再冻结。这表明在该间隔期间细胞代谢已转变为抗冻状态。通过实验阐明了有无光照间隔时间与蓝光适应性之间的关系。冻结行为的起源被认为是促进鞭毛运动从原位旋转模式顺利切换到直线游动模式的代谢物质短缺。

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