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3D Confocal Laser Scanning Microscopy for the Analysis of Chlorophyll Fluorescence Parameters of Chloroplasts in Intact Leaf Tissues

机译:3D共聚焦激光扫描显微镜分析完整叶片组织中叶绿体的叶绿素荧光参数

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We analyzed the chlorophyll fluorescence parameters in a 3D cellular arrangement in vivo by using a modified Nipkow disk-type confocal laser scanning microscope (CLSM). We first defined the 3D values of ΦPSII (photochemical yield of PSII) and NPQ (non-photochemical quenching) in mesophyll, epidermal and guard cell chloroplasts from the leaf surface to several tens of microns in depth. We also used this CLSM method to analyze the relationships between actinic light intensity and the chlorophyll fluorescence parameters for Boston fern and broad bean leaf specimens. As the actinic light intensity increased, the mean ΦPSII values decreased and the NPQ values increased in all chloroplasts of Boston fern and broad bean leaf. These values differed with cell type and species. The Boston fern chloroplasts had lower ΦPSII values than the broad bean chloroplasts, and vice versa for the NPQ values. The ΦPSII values of Boston fern chloroplasts decreased in the order mesophyll, epidermal and guard cell chloroplasts. The NPQ values decreased in the order guard cell, mesophyll and epidermal chloroplasts, except at 12 μmol m–2 s–1 actinic light, when the mesophyll value was slightly lower than that of the epidermis. The trend in the ΦPSII and NPQ values of broad bean mesophyll and guard cell chloroplasts was opposite to that of Boston fern chloroplasts. As 3D CLSM can provide the ΦPSII and NPQ values of each chloroplast in a 3D cellular arrangement, this method has potential for investigating differences in the functions of chloroplasts in vivo.
机译:我们通过使用改良的Nipkow盘式共聚焦激光扫描显微镜(CLSM)分析了体内3D细胞排列中的叶绿素荧光参数。我们首先定义了叶表面,表皮和保卫细胞叶绿体中Φ PSII (PSII的光化学产率)和NPQ(非光化学猝灭)的3D值,深度为数十微米。我们还使用这种CLSM方法来分析波士顿蕨和蚕豆叶片标本的光化光强度与叶绿素荧光参数之间的关系。随着光化强度的增加,波士顿蕨和蚕豆叶片的所有叶绿体中平均Φ PSII 值降低,NPQ值增加。这些值随细胞类型和种类而异。波士顿蕨叶绿体的Φ PSII 值低于蚕豆叶绿体,而NPQ值反之亦然。波士顿蕨叶绿体的Φ PSII 值以叶肉,表皮和保卫细胞叶绿体的顺序降低。当叶绿素值略低于12μmolm –2 s -1 的光化光时,阶保卫细胞,叶肉和表皮叶绿体的NPQ值降低。表皮的蚕豆叶肉和保卫细胞叶绿体的Φ PSII 和NPQ值趋势与波士顿蕨叶绿体相反。由于3D CLSM可以提供3D细胞排列中每个叶绿体的Φ PSII 和NPQ值,因此该方法具有研究体内叶绿体功能差异的潜力。

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