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首页> 外文期刊>European Journal of Phycology >Flow cytometric analysis of the encystment process induced by paraquat exposure in Haematococcus pluvialis (Chlorophyceae)
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Flow cytometric analysis of the encystment process induced by paraquat exposure in Haematococcus pluvialis (Chlorophyceae)

机译:百草枯暴露于雨生红球菌(绿藻科)引起的包囊过程的流式细胞仪分析

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摘要

The freshwater microalga Haematococcus pluvialis exhibits a unique morphological response to environmental stress, accumulating carotenoid pigment during encystment. The complexity of characterizing the different cell stages and monitoring the pigment cell content during the life cycle of this microalga is one of the main problems reported when assessing astaxanthin accumulation and degradation. Therefore, with the aim of studying the potential encystment response in this microalga by means of flow cytometry (FCM), we induced oxidative stress in cultures of vegetative growing cells by treating them with paraquat, a known generator of superoxide anion radicals. Two flow cytometric approaches were successfully used to monitor the effect of oxidative stress on morphological changes and genesis of carotenoids in H. pluvialis: (1) a cytometric characterization of different cell types based on analysis of the fluorescence of chlorophyll a vs the fluorescence of astaxanthin, and (2) staining with the fluorochromes hydroethidium (HE) and dihydrorhodamine 123 (DHR), in order to measure the invivo intracellular levels of reactive oxygen species (ROS). FCM data showed that astaxanthin accumulation during encystment hampers the production of ROS. Furthermore, the cell content of astaxanthin seems to be a good indicator of the extent to which H. pluvialis cells undergo oxidative stress, and also of how the cells defend themselves under stress conditions.
机译:淡水微藻血球菌对环境压力表现出独特的形态反应,在包囊过程中会积累类胡萝卜素。在评估虾青素的积累和降解时,主要的问题之一是表征该微藻生命周期中不同细胞阶段并监测色素细胞含量的复杂性。因此,为了通过流式细胞术(FCM)研究该微藻中的潜在包囊反应,我们通过用百草枯(一种已知的超氧化物阴离子自由基产生剂)对其进行处理,在营养生长细胞的培养物中诱导了氧化应激。成功地使用了两种流式细胞术方法来监测氧化应激对雨生红球藻类胡萝卜素形态变化和发生的影响:(1)基于对叶绿素a荧光与虾青素荧光的分析,对不同细胞类型进行了细胞学表征(2)用荧光染料氢乙啶(HE)和二氢罗丹明123(DHR)进行染色,以测量体内活性氧(ROS)的细胞内水平。 FCM数据显示,包囊过程中虾青素的积累会阻碍ROS的产生。此外,虾青素的细胞含量似乎可以很好地指示幽门螺杆菌细胞受到氧化应激的程度,以及细胞在应激条件下如何自我防御。

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