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信号分子介导藻类细胞程序性死亡的研究进展 被引量:3
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作者 黄素珍 张璐 +4 位作者 彭雪 葛芳杰 刘碧云 周巧红 吴振斌 《水生生物学报》 CAS CSCD 北大核心 2020年第5期1014-1019,共6页
藻类是水生态系统中的重要初级生产者,在物质转换和能量迁移过程中发挥重要作用。细胞程序性死亡(PCD)作为一种细胞自我调控的死亡模式,受到多种信号分子的控制。研究发现藻类细胞在遭受环境胁迫的情况下,在形态和生理上均表现出类PCD... 藻类是水生态系统中的重要初级生产者,在物质转换和能量迁移过程中发挥重要作用。细胞程序性死亡(PCD)作为一种细胞自我调控的死亡模式,受到多种信号分子的控制。研究发现藻类细胞在遭受环境胁迫的情况下,在形态和生理上均表现出类PCD的特征,同时伴随着活性氧/一氧化氮/钙离子(ROS/NO/Ca^2+)水平的变化。研究认为, ROS/NO/Ca^2+作为信号分子介导藻细胞内的caspase-like酶活性变化,从而触发藻细胞的类程序性死亡。然而,对信号分子是如何在环境胁迫下的藻类细胞中引发类PCD仍知之甚少。文章综述了信号分子ROS/NO/Ca^2+介导藻类类PCD的研究进展以及信号分子间的级联关系,并对今后类PCD在该领域待开展的研究进行了展望。 展开更多
关键词 类细胞程序性死亡 信号分子 活性氧 一氧化氮 CA^2+
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Survival,recovery and microcystin release of Microcystis aeruginosa in cold or dark condition 被引量:3
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作者 丁奕 甘南琴 +3 位作者 刘津 郑凌凌 李林 宋立荣 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2017年第2期313-323,共11页
Microcystis often dominates phytoplankton in eutrophic lakes and must survive a long period of cold or dark conditions. However, the survival strategies of Microcystis to withstand cold or dark stress are less well kn... Microcystis often dominates phytoplankton in eutrophic lakes and must survive a long period of cold or dark conditions. However, the survival strategies of Microcystis to withstand cold or dark stress are less well known. In this study, we conducted experiments on the responses of two toxic Microcystis aeruginosa strains (FACHB-905 and FACHB-915) and their microcystin release in conditions of low temperature (15℃ or 4℃, with illumination) or darkness, and subsequent recovery in standard conditions (25℃ with illumination). On exposure to 15℃, a small decrease in cell viability was observed, but the cell number increased gradually, suggesting that M. aeruginosa FACHB-905 and FACHB-915 cells seem in general tolerant in 15℃. Interestingly, our results show that a higher carotenoid content and microcystin release potentially enhance the fitness of surviving cells at 15℃. M. aeruginosa cells exposed to lower temperature light stress (4℃) did not completely lose viability and retained the ability to reinitiate growth. In darkness, the maximum quantum yield (Fv/Fm) and the maximum electron transport rate (ETRmax) values and cell viability of M. aeruginosa cells gradually decreased with time. During the recovery period, the photosynthetic efficiency of M. aeruginosa reverted to the normal level. Additionally, M. aeruginosa FACHB-905 and FACHB-915 exposed to low temperature had increased caspase-3-1ike activity and DNA fragmentation, which suggests the occurrence of a type of cell death in M. aeruginosa cells under cold stress similar to programmed cell death. Overall, our findings could confer certain advantages on the Microcystis for surviving cold or dark conditions encountered in the annual cycle, and help explain its repeated occurrence in water blooms in large and shallow lakes. 展开更多
关键词 Microcystis aeruginosa MICROCYSTIN low temperature DARKNESS Caspase-3-1ike activity DNA fragmentation
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