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通过叶绿素荧光动力学显微镜在单细胞水平上对鱼腥藻 PCC 7120 异形胞分化过程中的光合作用进行调控的研究。

Regulation of photosynthesis during heterocyst differentiation in Anabaena sp. strain PCC 7120 investigated in vivo at single-cell level by chlorophyll fluorescence kinetic microscopy.

机构信息

Laboratory of Photosynthesis-Algatech, Institute of Microbiology, Academy of Sciences of the Czech Republic, Třeboň, 379 81, Czech Republic.

出版信息

Photosynth Res. 2013 Sep;116(1):79-91. doi: 10.1007/s11120-013-9897-z. Epub 2013 Aug 6.

Abstract

Changes of photosynthetic activity in vivo of individual heterocysts and vegetative cells in the diazotrophic cyanobacterium Anabaena sp. strain PCC 7120 during the course of diazotrophic acclimation were determined using fluorescence kinetic microscopy (FKM). Distinct phases of stress and acclimation following nitrogen step-down were observed. The first was a period of perception, in which the cells used their internally stored nitrogen without detectable loss of PS II activity or pigments. In the second, the stress phase of nitrogen limitation, the cell differentiation occurred and an abrupt decline of fluorescence yield was observed. This decline in fluorescence was not paralleled by a corresponding decline in photosynthetic pigment content and PS II activity. Both maximal quantum yield and sustained electron flow were not altered in vegetative cells, only in the forming heterocysts. The third, acclimation phase started first in the differentiating heterocysts with a recovery of PS II photochemical yields [Formula: see text] Afterwards, the onset of nitrogenase activity was observed, followed by the restoration of antenna pigments in the vegetative cells, but not in the heterocysts. Surprisingly, mature heterocysts were found to have an intact PS II as judged by photochemical yields, but a strongly reduced PS II-associated antenna as judged by decreased F 0. The possible importance of the functional PS II in heterocysts is discussed. Also, the FKM approach allowed to follow in vivo and evaluate the heterogeneity in photosynthetic performance among individual vegetative cells as well as heterocysts in the course of diazotrophic acclimation. Some cells along the filament (so-called "superbright cells") were observed to display transiently increased fluorescence yield, which apparently proceeded by apoptosis.

摘要

使用荧光动力学显微镜(FKM)测定了固氮蓝藻 Anabaena sp. 菌株 PCC 7120 中异形胞和营养细胞光合作用活性的变化。观察到氮逐渐减少后适应固氮的应激和适应的不同阶段。第一阶段是感知阶段,在此期间,细胞利用其内部储存的氮,而没有检测到 PS II 活性或色素的损失。在第二阶段,即氮限制的应激阶段,发生细胞分化,并观察到荧光产率的突然下降。荧光的下降并没有与光合色素含量和 PS II 活性的相应下降相平行。在营养细胞中,最大量子产量和持续电子流都没有改变,只有在形成异形胞中才会改变。第三,适应阶段首先在分化的异形胞中开始,PS II 光化学产率恢复[公式:见正文] 之后,观察到固氮酶活性的开始,随后在营养细胞中恢复天线色素,但在异形胞中没有恢复。令人惊讶的是,成熟的异形胞被发现具有完整的 PS II,这可以从光化学产率来判断,但 PS II 相关天线的功能却大大降低,这可以从减少的 F 0 来判断。异形胞中功能性 PS II 的重要性正在讨论中。此外,FKM 方法允许在活体中跟踪和评估固氮适应过程中单个营养细胞和异形胞之间光合作用性能的异质性。在丝状细胞中观察到一些细胞(所谓的“超亮细胞”)表现出短暂的荧光产率增加,显然是通过细胞凋亡进行的。

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