Laboratory of Molecular Structure Characterization, Institute of Microbiology, Academy of Sciences of the Czech Republic, Vídeňská 1083, 142 20, Prague 4-Krč, Czech Republic.
Folia Microbiol (Praha). 2021 Apr;66(2):241-246. doi: 10.1007/s12223-020-00839-9. Epub 2020 Nov 25.
Simultaneous application of polarization microscopy and Interphako interference contrast has been used to study the internal structure of algal cells. The interference contrast technique showed fine cell structures (important is the selection of interference colors according to the Mach-Zehnder interferometer setting). In a polarization microscope, the crossed polarization filters together with the first-order quartz compensator mounted turntable showed the maximum birefringence of the individual structures. Material containing green algae was collected in the villages Sýkořice and Zbečno, Protected Landscape Area (PLA) Křivoklátsko. The objects were studied in a Carl Zeiss Jena NfpK laboratory microscope equipped with an In 160 base body with an Interphako In contrast interference module including a Mach-Zehnder interferometer with variable phase contrast, a special condenser with interchangeable aperture plates, a turntable, a Meopta Praha polarizer, a LOMO Sankt Petersburg analyzer, and a quartz compensator with first-order red and the digital camera DSLR Nikon D 70. Green algae of three orders were studied: Siphonocladales, Zygnematales, and Desmidiales. Anisotropic structures were found in all studied representatives of the green algae of the phylum Chlorophyta. Especially their cell walls showed strong birefringence (in all representatives of these orders). On the other hand, a representative of the order Siphonocladales (the genus Cladophora, Cladophoraceae, Ulvophyceae) was rarely found to display weak birefringent granules of storage substances due to the setting of the Mach-Zehnder interferometer and the use of the first-order compensator (interference colors are intensified). In addition, a very weak birefringence of periphyton cells (microbial biofilm) was found. In the study of the second algae of the genus Spirogyra (Zygnemataceae, Zygnematales, Conjugatophyceae), a strongly birefringent connecting wall between algal cells was found in contrast to the weaker birefringence of the peripheral wall. It was the use of Interphako interference contrast together with polarization filters and a first-order quartz compensator that particularly emphasized the central part of the connecting wall. In the study of the twinned Pleurotaenium algae (Desmidiaceae, Desmidiales, Conjugatophyceae), a strongly birefringent wall was found along the periphery of the cell with a nucleus in the middle part (isthmus). In this narrowing in the center of the cell, a sharply delimited birefringent edge of the cell wall is visible, especially when using Interphako interference contrast along with crossed polarization filters and a first-order quartz compensator. In conclusion, Interphako interference contrast provides a high degree of image contrast in a microscope and, if suitably simultaneously complemented by polarization microscopy (including a first-order quartz compensator), it will allow us to infer some of the composition of the investigated structures. However, working with Interphako interference contrast is considerably more difficult (setting Mach-Zehnder interferometer) than using other contrast techniques (positive and negative phase contrast, color contrast, relief contrast, and dark field).
同时应用偏光显微镜和 Interphako 干涉对比技术研究了藻类细胞的内部结构。干涉对比技术显示了精细的细胞结构(根据马赫-曾德尔干涉仪的设置选择合适的干涉色非常重要)。在偏光显微镜下,交叉偏振滤光片和安装在转盘上的一级石英补偿器显示了各个结构的最大双折射。含有绿藻的材料是在 Sýkořice 和 Zbečno 村采集的,这些地方位于受保护的景观区(PLA)Křivoklátsko。研究对象在配备有 Interphako In 对比干涉模块的 Carl Zeiss Jena NfpK 实验室显微镜中进行研究,该模块包括带有可变相差的马赫-曾德尔干涉仪、带有可互换光阑板的特殊聚光镜、转盘、Meopta Praha 偏振器、LOMO Sankt Petersburg 分析仪以及带有一级红色和数字摄像头 DSLR Nikon D 70 的石英补偿器。研究了三个等级的绿藻:石莼目、绿球藻目和双星藻目。在研究绿藻门的所有代表中都发现了各向异性结构。特别是它们的细胞壁表现出强烈的双折射(在这些等级的所有代表中)。另一方面,由于马赫-曾德尔干涉仪的设置和一级补偿器的使用(增强干涉色),很少发现石莼目(Cladophora 属,Cladophoraceae,Ulvophyceae)的代表具有弱双折射的储存物质颗粒。此外,还发现了非常弱的周丛细胞(微生物生物膜)的双折射。在对螺旋藻属(绿球藻科,绿球藻目,接合藻纲)的第二种藻类的研究中,与外周壁较弱的双折射相比,在藻类细胞之间发现了强烈双折射的连接壁。正是使用 Interphako 干涉对比技术与偏光滤光片和一级石英补偿器一起,特别强调了连接壁的中心部分。在对双生 Pleurotaenium 藻类(双星藻科,双星藻目,接合藻纲)的研究中,在细胞核中部的细胞外周发现了强烈双折射的细胞壁(桥)。在细胞中心的这种变窄处,可以看到细胞壁的双折射边缘清晰地限定,尤其是当使用 Interphako 干涉对比技术与交叉偏光滤光片和一级石英补偿器一起使用时。总之,Interphako 干涉对比技术在显微镜中提供了高度的图像对比度,如果适当地与偏光显微镜(包括一级石英补偿器)同时补充,它将使我们能够推断出一些被研究结构的成分。然而,使用 Interphako 干涉对比技术的难度相当大(设置马赫-曾德尔干涉仪),而其他对比度技术(正相和负相对比度、颜色对比度、浮雕对比度和暗场)则容易得多。