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1.
To observe the dynamic behavior of callose of microspore mother cells during meiosis, we developed a convenient, rapid and efficient staining method using an improved carbol fuchsin/aniline blue solution. The stained microspore mother cells during meiosis showed yellowish green callose, red cytoplasm and dark red chromosomes when excited with blue light, which produced a contrasting image with a three-dimensional effect. When stained with only improved carbol fuchsin solution, the cells had red cytoplasm and chromosomes when excited with green light. The improved carbol fuchsin solution can be used to replace other more expensive DNA-specific dyes, such as DAPI and H33258, to reduce experimental costs.  相似文献   

2.
植物小孢子母细胞减数分裂过程中胼胝质染色的新方法   总被引:1,自引:0,他引:1  
利用改良苯酚品红-苯胺蓝压片法,观察小孢子母细胞减数分裂过程中胼胝质的动态变化。使用该方法简便、快速且省时,获得的照片颜色鲜艳,细胞质呈红色,染色体为深红色,胼胝质呈黄绿色荧光,对比明显,有三维效果。单用改良苯酚品红染液对新鲜材料进行压片,在蓝光激发下,细胞质与染色体呈红色荧光,染色体清晰。实验结果表明,改良苯酚品红染液可作为荧光染料代替DAPI及H33258等昂贵的核染料,从而降低实验成本。  相似文献   

3.
Summary A fluorescent staining procedure to detect suberin, lignin and callose in plants has been developed. This procedure greatly improves on previous methods for visualizing Casparian bands in root exodermal and endodermal cells, and performs equally well on a variety of other plant tissues. Berberine was selected as the most suitable replacement forChelidonium majus root extract after comparing the staining properties of the extract with those of four of its constituent alkaloids. Aniline blue counterstaining efficiently quenched unwanted background fluorescence and nonspecific berberine staining, while providing a fluorochrome for callose. When used with multichambered holders which allow simultaneous processing of freehand sections, this efficient staining procedure facilitates morphological studies involving large numbers of samples.Abbreviations ISCC-NBS Inter-Society Color Council-National Bureau of Standards - UV ultraviolet light  相似文献   

4.
The structure and dynamics of microtubular cytoskeleton and of callose walls in normal pollen mother cells (PMC) of tobacco N. tabacum L. and in cells with intercellular translocation of nuclear material (cytomictic) was studied in the course of the cell cycle. The microtubular cytoskeleton was established as playing no obvious role in the process of cytomixis. The elevated level of cytomictic seems to be due to disturbances of synthesis of callose walls as a result of their attenuation and perforation. Possible causes of cytomictic in tobacco PMC at the cellular level are discussed.  相似文献   

5.
Entrapped bacterial cells are widely used in several biotechnological applications. Cell entrapment procedures are known to affect the viability of bacterial cells. To determine the effect of entrapment procedures on viability of bacterial cells, dissolution of the entrapment matrices using chelating agents or heat is required immediately after the entrapment is completed. Chelating agents and heat applied in the matrix dissolution reduce cell viability and in turn hinder accurate quantification of viable cells. In this study, a method to determine the effect of entrapment procedure on bacterial cell viability which involves entrapping cells directly onto glass slides was developed. The developed method showed less viability reduction than the methods requiring matrix dissolution. The percentage of live cells in the culture before entrapment ranged from 54% to 74%, while the percent of live cells after entrapment determined by the developed method was 39-62%.  相似文献   

6.
Summary Cytokinesis in Impatiens sultani microspore mother cells is simultaneous. It starts with the formation of small ingrowths of the surrounding callosic wall. Next, an incomplete cell plate is formed by fusion of small dictyosome vesicles. The cell plate consists of a network of anastomosing tubules and sacs. Aggregates of fusing vesicles are associated with bundles of microtubules, which are oriented perpendicular to the plane of the future cell walls. In the sacculate parts of the cell plate, some callose is deposited, while the associated microtubules disappear. The cell walls ultimately develop by enlargement of the previously formed wall ingrowths, which successively incorporate the elements of the cell plate. The enlargement and thickening of the walls is not accompanied by a further fusion and incorporation of dictyosome vesicles.  相似文献   

7.
李兆勇  王新宇等 《西北植物学报》2001,21(4):700-705,T001,T002
结合戊二醛-饿酸固定,环氧树脂包埋,苯胺蓝-DAPI染色和荧光显微镜观察。研究了黑麦小孢子母细胞的发育过程及其细胞胼胝质壁合成的变化。结果发现,黑麦花药中胼胝质的合成最早出现在造孢细胞晚期,并首先在小孢子囊中央的造孢细胞中沉积,随后向小孢子囊两端的细胞扩展,随着花药的发育,胼胝质在小孢子囊中央的造孢细胞中大量积累并解本,而且,小孢子囊中央的细胞与邻近绒毡层排列的造孢细胞分离并逐渐消失。紧靠绒毡层排列的造孢细胞最后转变成花粉母细胞,经减数分裂,形成小孢子,本研究对胼胝质的功能和形成的机制进行了讨论。  相似文献   

8.
介绍一种检测SDS聚丙烯酰胺凝胶电泳中家蝇幼虫蛋白的新方法-海波银染法。该方法对传统银染方法中的试剂与步骤加以改进,省略了乙醇固定与洗涤步骤,只需20 min即可完成全部染色过程,且仅在国产分析纯试剂及普通操作条件下,灵敏度可达毫微克级水平。  相似文献   

9.
Abstract

Most natural and synthetic dyes currently used for microbial fluorescent staining are toxic or carcinogenic and are harmful to animals, humans and the environment. A food dye for microbial staining, brilliant blue FCF, was used as an alternative to lactofuchsin and lactophenol blue. Brilliant blue FCF shows pronounced microbial cell fluorescence staining of an array of pathogenic/toxigenic (Fusarium granunearum 3- and 15-acetyldeoxynivalenol chemotypes, and Escherichia coli O157:H7) and beneficial fungi and bacteria (Trichoderma harzianum and Bacillus subtilis). Brilliant blue FCF has no toxic effects on the microbes tested and is inexpensive.  相似文献   

10.
To confirm the position and timing of meiosis in Porphyra yezoensis Ueda, the nuclear division of vegetative cells, conchosporangial cells and conchospores was observed. An improved staining method using modified carbol fuchsin was introduced to stain the chromosomes of Porphyra. Pit‐connections between conchosporangial cells also stained well with this method. Leptotene, zygotene, pachytene, diplotene, diakinesis, metaphase, anaphase and telophase were observed in the conchosporangial cells. During the germination of conchospores, no characteristics of meiosis I were found. No difference between the nuclear division of vegetative cells and that of conchospores was observed, and 2–3 days were needed for the first cell division both in vegetative cells and conchospores. Therefore, the cell division that occurs during conchospore germination is not meiosis I. Our results indicate that the prophase of meiosis I begins during the formation of conchosporangial branches, and metaphase I, anaphase I and telophase I take place during the maturation of conchosporangial branches. Then the three‐bivalent nucleate sporangia complete cell division to form two individual conchospores, each with one three‐univalent nucleus. The conchospores released from the sporangia are at meiotic interphase. Meiosis II occurs at the first nuclear division during conchospore germination, which is a possible explanation for the observation of mosaic thalli in mutant germlings of P. yezoensis. The mosaic thalli might also arise from gene conversion/post meiotic segregation events, comparable to those in Sordaria fimicola (Roberge ex Desm.) Ces. & De Not. and Neurospora crassa Shear & B.O. Dodge.  相似文献   

11.
Abstract

Understanding the infection biology of fungi is the key step in devising suitable control strategies for plant diseases. Recently, the Arabidopsis-Colletotrichum higginsianum (causal agent of anthracnose) system has emerged as a seminal paradigm for deciphering the infection biology underlying fungus-plant interactions. We describe here three staining methods coupled with confocal microscopy: trypan blue, aniline blue and dual trypan blue-aniline blue fluorescence staining. Trypan blue and aniline blue staining were employed to scan the infection structures of the hemibiotrophic fungus C. higginsianum and host response in A. thaliana leaf tissues. The two techniques then were combined to observe the contrast between in planta fungal infection structures, i.e., infection vesicles, primary hyphae and secondary hyphae, and the host plant defense responses, i.e., papilla formation and hypersensitive response. These staining techniques also were applied to the lentil–C. truncatum pathosystem to demonstrate their applicability for multiple pathosystems.  相似文献   

12.
13.
Summary Differentiation of microspore mother cells inNicotiana starts with a period of active vesiculation in archesporial cells which is attended by a reduction of ribosome population. Vesiculation has been interpreted to cause cell reorganization and with their presumed hydrolytic functions the vesicles are reckoned to eliminate macromolecules associated with the sporophytic phase and result in the formation of cells capable of gametophytic functions. However, a part of cell cytoplasm is preserved in the form of membrane inclusions, which are bi- or multimembranous structures. Therefore, the rationale behind elimination and preservation of part of ribosomes remains to be understood. Another important feature of cell reorganization, the significance of which is quite elusive, is the dedifferentiation of organelles mitochondria and plastids. The former become electron dense and lose their cristae and the latter become cup-shaped and show regression of lamellae.  相似文献   

14.
Summary A quick, simple and inexpensive technique utilizing an isotonic matrix of semi-solid agarose for immobilizing channel catfish (Ictalurus punctatus) peripheral blood leucocytes onto microscope slides before cytochemical staining is described. The technique was demonstrated to be superior to the more conventional means of immobilizing cells for procedures requiring either fixed (Sudan Black B and nonspecific esterase stains) or viable (Nitro-Blue Tetrazolium stain) cells. Although the agarose immobilization technique was developed with channel catfish leucocytes, its utility with other fragile cell populations seems likely.  相似文献   

15.
Cytochemical method for staining fish basophils   总被引:2,自引:0,他引:2  
The occurrence of basophils in peripheral blood of 15 freshwater teleosts was examined using the metachromatic stain, toluidine blue, on blood smears fixed with lead subacetate. Metachromasia was more identifiable through better preservation of the granules. The occurrence of basophils in teleost blood was confirmed as very rare and was not caused by failure to preserve the basophil granules.  相似文献   

16.
Sieve cells and sieve tube members can be macerated from the phloem of various organs of woody and herbaceous species by au-toclaving the tissue in a mild macerating medium. This treatment does not digest the primary walls or the callose deposits on the sieve areas and sieve plates of the sieve elements. These cells can then be recognized by the fluorescence of their callose after staining with aniline blue. Sometimes adjacent sieve elements fail to separate and one can observe details of their junctures.  相似文献   

17.
The primary plant cell wall is laid down over a brief period of time during cytokinesis. Initially, a membrane network forms at the equator of a dividing cell. The cross-wall is then assembled and remodeled within this membrane compartment. Callose is the predominant luminal component of the nascent cross-wall or cell plate, but is not a component of intact mature cell walls, which are composed primarily of cellulose, pectins and xyloglucans. Widely accepted models postulate that callose comprises a transient, rapid spreading force for the expansion of membrane networks during cytokinesis. In this study, we clone and characterize an Arabidopsis gene, MASSUE / AtGSL8 , which encodes a putative callose synthase. massue mutants are seedling-lethal and have a striking cytokinesis-defective phenotype. Callose deposition was delayed in the cell plates of massue mutants. Mutant cells were occasionally bi- or multi-nucleate, with cell-wall stubs, and we frequently observed gaps at the junction between cross-walls and parental cell walls. The results suggest that the timely deposition of callose is essential for the completion of plant cytokinesis. Surprisingly, confocal analysis revealed that the cell-plate membrane compartment forms and expands, seemingly as far as the parental wall, prior to the appearance of callose. We discuss the possibility that callose may be required to establish a lasting connection between the nascent cross-wall and the parental cell wall.  相似文献   

18.
19.
H. Kauss  W. Jeblick  A. Domard 《Planta》1989,178(3):385-392
Partially and fully deacetylated chitosan fragments and oligomers were compared for their potency to elicit formation of the 1.3--glucan callose in suspension-cultured cells and protoplasts of Catharanthus roseus (line 385). Chitosan oligomers induced little callose formation, while callose synthesis increased with the degree of polymerization of chitosan up to several thousand corresponding to a molecular mass near 106 Da. At a comparable degree of polymerization, partially N-acetylated chitosan fragments were less effective. Colloidal chitin and chitin oligomers induced only trace callose synthesis in protoplasts. These results indicate that the primary interaction involved the amino groups of chitosan and numerous negative charges at the surface of the plasma membrane with spacing in the nanometer range and occurring regularly over micrometer stretches. Charged phospholipid head-groups may fulfill these requirements. The resulting alteration of membrane fluidity may lead to the changes in ion transport known to be associated with the induction of callose formation.Abbreviations DP degree of polymerization - FDA fluorescein diacetate - PE pachyman equivalents  相似文献   

20.
Horst  W.J.  Püschel  A.-K.  Schmohl  N. 《Plant and Soil》1997,192(1):23-30
The screening of 37 Zea mays L. cultivars in nutrient solution using root elongation (24 h) as a parameter showed large genotypic differences in Al resistance among the genetic material evaluated.Callose concentrations in root tips were closely and positively related to Al-induced inhibition of root elongation. Therefore, Al-induced callose formation in root tips appears to be an excellent indicator of Al injury and can be used as a selection criteria for Al sensitivity. In contrast, aluminium concentrations in root tips were not related to Al-induced inhibition of root elongation, nor to Al-induced callose formation. Callose formation was also induced by short-term A1 treatment in root tip protoplasts, and the response of protoplasts clearly reflected the cultivar-specific response to Al of intact roots. This indicates that in maize, Al sensitivity is expressed on the protoplast level.  相似文献   

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