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Titlebook: Electron Microscopy of Plant Pathogens; Kurt Mendgen,Dietrich-Eckhardt Lesemann Book 1991 Springer-Verlag Berlin Heidelberg 1991 Cryofixat

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发表于 2025-3-21 18:37:13 | 显示全部楼层 |阅读模式
书目名称Electron Microscopy of Plant Pathogens
编辑Kurt Mendgen,Dietrich-Eckhardt Lesemann
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图书封面Titlebook: Electron Microscopy of Plant Pathogens;  Kurt Mendgen,Dietrich-Eckhardt Lesemann Book 1991 Springer-Verlag Berlin Heidelberg 1991 Cryofixat
描述Plants, fungi, and viruses were among the first biological objects studied with an electron microscope. One of the two first instruments built by Siemens was used by Helmut Ruska, a brother of Ernst Ruska, the pioneer in constructing electron microscopes. H. Ruska published numerous papers on different biological objects in 1939. In one of these, the pictures by G. A. Kausche, E. Pfankuch, and H. Ruska of tobacco mosaic virus opened a new age in microscopy. The main problem was then as it still is today, to obtain an appropriate preparation of the specimen for observation in the electron microscope. Beam damage and specimen thickness were the first obstacles to be met. L. Marton in Brussels not only built his own instrument, but also made considerable progress in specimen preparation by introducing the impregnation of samples with heavy metals to obtain useful contrast. His pictures of the bird nest orchid root impregnated with osmium were revolutionary when published in 1934. It is not the place here to recall the different techniques which were developed in the subsequent years to attain the modern knowledge on the fine structure of plant cells and of different plant pathogens. T
出版日期Book 1991
关键词Cryofixation; Elektronenmikroskopie; Gefrierfixierung; Pathogen; Pflanzen-Pathogene; Protozoa; Viren; Virus
版次1
doihttps://doi.org/10.1007/978-3-642-75818-8
isbn_softcover978-3-642-75820-1
isbn_ebook978-3-642-75818-8
copyrightSpringer-Verlag Berlin Heidelberg 1991
The information of publication is updating

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Low-Temperature Scanning Electron Microscopy of Fungi and Fungus-Plant Interactions,on microscope (SEM). Biological specimens prepared and examined in this way typically exhibit superior preservation over those prepared by procedures which necessitate examination of dried material at ambient temperature. This is because frozen-hydrated specimens: (a) are rapidly immobilized and sta
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High Pressure Freezing of Rust Infected Plant Leaves,cellular processes, this is a very long time, resulting in the introduction of numerous artifacts, such as undulation of membranes [23, 19]. This problem is even more pronounced in plants infected by pathogens. The hyphae or reproductive structures of fungal pathogens in plant tissue are variable in
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Cytochemistry of Fungal Surfaces: Carbohydrate Containing Molecules,nlike bacteria, adhesion of fungi is poorly documented and very few molecules of the fungal surface involved in adhesion processes have been identified [25, 41]. This is due in part to insufficient knowledge of the chemistry of the outer layer of fungal walls [51]. Amongst the numerous treatments us
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Analytical Electron Microscopy in Plant Pathology: X-Ray Microanalysis and Energy Loss Spectroscopyunts of information concerning parasites and host-parasite interactions. Electron microscopes are of great value in plant pathology, as this book illustrates, and it is difficult to envision doing either applied or fundamental pathology research without them. Moreover, electron microscopes yield mor
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The Fine Structure of Virus Particles,le(s) contained in a protein capsid made of one or perhaps two molecular species regularly arranged as structural elements or subunits. The possible designs for such structures, made by polymerization of a large number of identical subunits [2000 for tobacco mosaic virus (TMV)], are limited [1]: hel
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Immunoelectron Microscopy for Virus Identification,ly short excursions into the topic of immune reactions on or in thin sections, as these are considered elsewhere in this book. As the field has been thoroughly reviewed, what I shall say will be more an informal commentary than an exhaustive survey, and I shall not necessarily follow each statement
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Specific Cytological Alterations in Virus-Infected Plant Cells,ecific for the inducing virus but are relatively independent from the host plant and its general reactions to the metabolic disturbances caused by the virus. Thus, alterations like the degradation of chloroplast membrane system in chlorotic tissues, or alterations of cytoplasm and organelle structur
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