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1.
Scanning electron microscopy was used to examine foliar surface features such as cuticular patterns, epicuticular wax, and trichome types in species ofAlnus, Betula, Carpinus, Corylus, andOstrya. Six trichome types are recognized in this survey, four non-glandular (acicular, filiform, aduncate, subulate) and two glandular (stipitate gland and peltate scale). The distribution of these trichomes among the genera supports the recognition of two tribes, Betuleae (Alnus andBetula) and Coryleae (Carpinus, Corylus, andOstrya). Trichome morphology can be an important supportive taxonomic character in determining evolutionary relationships.  相似文献   

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Scanning electron microscopy of foliar surfaces of the seven species ofFraxinus native in eastern North America confirms the importance of cuticular patterns (smooth, striated, striate-papillose, and coronulate) as useful taxonomic character states. There are there trichome types (acicular hairs ornamented with micro-striae or-papillae, peltate glands, and scales) which are found in nearly all species and which vary only in density. No differences in surface features are found by which determination can be made of either sex or ploidy level inF. americana. Hybridization betweenF. americana andF. pennsylvanica is considered to be rare in nature and is not a probable cause for the overlap of character states and concomitant difficulty of identification based upon gross morphological features. Likewise, the putative hybrid origins ofF. biltmoreana andF. profunda are not supported by micro-morphological features. Illustrations are given for all species.  相似文献   

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Scanning electron microscopy was used to examine foliar surface features such as trichome types and the micro-relief formed by cell contours, cuticular patterns, and epicuticular wax in the genusCarya. The fourteen taxa native to Mexico and eastern United States were sampled throughout their geographical ranges, and are represented here by specimens that include segregate taxa, interspecific hybrids, and mature and immature leaves of each. Six trichome types are recognized in this survey: acicular, fasciculate, multiradiate, solitary, capitate-glandular, and peltate scale. There are no consistent differences between representatives of either the two Sections of the genus or the two ploidy levels. Although there is significant inter- and intra-specific variation, the use of scanning electron microscopy provides few taxonomically useful characters or character-states beyond those already available through light microscopy. Foliar surfaces of the fourteen taxa and three hybrids are illustrated.  相似文献   

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Several Frankia strains have been shown to be copper-tolerant. The mechanism of their copper tolerance was investigated for Frankia sp. strain EuI1c. Copper binding was shown by binding studies. Unusual globular structures were observed on the surface of the bacterium. These globular structures were composed of aggregates containing many relatively smaller “leaf-like” structures. Scanning electron microscopy with energy-dispersive X-ray (SEM-EDAX) analysis of these structures indicated elevated copper and phosphate levels compared to the control cells. Fourier transform infrared spectroscopy (FTIR) analysis indicated an increase in extracellular phosphate on the cell surface of copper-stressed cells. Bioinformatics’ analysis of the Frankia sp. strain EuI1c genome revealed five potential cop genes: copA, copZ, copC, copCD, and copD. Experiments with Frankia sp. strain EuI1c using qRT-PCR indicated an increase in messenger RNA (mRNA) levels of the five cop genes upon Cu2+ stress. After 5 days of Cu2+ stress, the copA, copZ, copC, copCD, and copD mRNA levels increased 25-, 8-, 18-, 18-, and 25-fold, respectively. The protein profile of Cu2+-stressed Frankia sp. strain EuI1c cells revealed the upregulation of a 36.7 kDa protein that was identified as FraEuI1c_1092 (sulfate-binding periplasmic transport protein). Homologues of this gene were only present in the genomes of the Cu2+-resistant Frankia strains (EuI1c, DC12, and CN3). These data indicate that copper tolerance by Frankia sp. strain EuI1c involved the binding of copper to the cell surface and transport proteins.  相似文献   

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Cytotoxicity of Fusarium T-2 toxin was evaluated in cultured Madin-Darby bovine kidney (MDBK) and primary fetal bovine kidney (PFBK) cells. The criteria for evaluation included number of adherent cells, phase contrast microscopy, and the scanning and transmission electron microscopy. The primary cells were more sensitive to the toxic effects of T-2 toxin than MDBK cultures. Cytotoxicity was observed when the cultures were exposed to the toxin for only 1 hour and then incubated with untreated media. Cell multiplication was decreased in both systems in 72 hour cultures. Scanning electron microscopy indicated loss of inter-cell contact and marked alterations in cell shape. Transmission electron microscopy indicated extensive proliferation of lysosomal bodies and proliferation of endoplasmic reticulum. The membrane system and mitochondria were not affected. Results indicated the kidney cells are highly sensitive to the toxic effects of T-2 toxin.  相似文献   

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The effect of the biological control agent Aureobasidium pullulans (de Bary) G. Arnaud on the development of Fusarium head blight (FHB) on winter wheat and kernel contamination with fungi of the genera Fusarium, Acremonium, Cladosporium and Penicillium was analyzed in a greenhouse experiment. Scanning electron microscopy was used to evaluate the distribution of A. pullulans cells and aggregates on wheat kernels, infection structures of Fusarium culmorum (W.G. Smith) Sacc and the antagonist-pathogen interactions. Biological control with A. pullulans reduced FHB severity by 21.67 % and improved grain filling by 5.02 %, compared with the control treatment. The survival of A. pullulans was good (to 31 cells per kernel), in particular on the surface and in the crease of kernels, including in pathogen-inoculated wheat plants. A. pullulans cells firmly adhered to F. culmorum hyphae, and damaged them. In most cases, autochthonous communities of filamentous fungi of the genera Acremonium and Penicillium developed at a slower rate after kernel inoculation with the pathogen.  相似文献   

10.
Robert J. Hill 《Brittonia》1976,28(1):86-112
Six hundred seeds belonging to the genusMentzelia (Loasaceae) were examined using the Scanning Electron Microscope. The seeds represented all six sections of the genus and approximately 76% of the total number of species from northern Mexico and western United States. Emphasis was placed on seed material from Wyoming and adjoining states. Ovule serial sectioning was done to determine testa ontogeny. In all cases seed surface structures could be related to excrescences developing from the integument cells. Six basic seed coat relief features could be distinguished, corresponding to the six sections in the genus. Minor variations in the basic types are constant and characteristic for species or, in very few instances, for species groups. A dendrogram was constructed from the seed testa data which supports the phylogeny established from chromosomal and morphological data. Practical application of seed coat microcharacter specificity to identification ofMentzelia seeds from prehistoric sites is suggested.  相似文献   

11.
Scanning electron microscopy studies of 60 genera and 118 species of the Poaceae revealed prominent spermoderm patterns. The most common patterns observed (with percent occurrence) were simple reticulate with straight walls (48.3%), simple reticulate with wavy walls (14.4%), and verrucate without pubescence (13.6%). No other pattern occurred in more than 10% of the species observed. Some genera possess common spermoderm patterns among species while others do not.  相似文献   

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Microbial attachment to particles in marine and freshwater ecosystems   总被引:2,自引:0,他引:2  
Scanning electron microscopy observations ofin situ suspended marine and freshwater particles show diverse but similar modes of bacterial and fungal attachment. A survey of Sierra Nevada mountain lakes and pelagic and near-shore waters in the Pacific Ocean indicates that attachment is most noticeable in the near-surface waters where fresh dissolved and particulate input of carbon from phytoplankton and elevated temperatures favor microbial growth. The most common modes of attachment are: adhesive stalk formation, growth on adhesive webs, attachment by the use of pili-like appendages and slimy capsular secretions, and molecular or chemical sorption without the use of visualized structural appendages. Attached microbial growth is accelerated when particulate substrates are supplied, even when they are not rich in organic nutrients. This is the case in the Lake Tahoe basin, where microflora attached to eroded silts can significantly modify the organic carbon and nutrient content of such minerogenous particles.  相似文献   

14.
Edwin B. Smith 《Brittonia》1983,35(2):164-169
Coreopsis californica var. newberryi, a new variety, differing from typical material ofC. californica in achene morphology, is proposed. Achene spotting in the two varieties exhibits maternal inheritance.  相似文献   

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Forty tracheas were harvested from donor New Zealand rabbits. Thirty of the tracheas were randomly divided into four treatment groups corresponding to 4, 5, 6, or 7% NaClO4 and one untreated group (n = 6 each group). Scanning electron microscopy distinctly revealed the cilium of epithelial cells in the fresh trachea. The internal surface of the trachea was rough in the 4% treatment group and smooth in the 5% treatment group, whereas the matrix was fractured in the 6% treatment group and highly fractured in the 7% treatment group. We observed that the number of nuclei in the cells of the 4, 5, 6, and 7% treatment groups decreased compared to the cells of the untreated group (p < 0.05). Although there was a significant decrease in maximum tensile strength, tensile strain at fracture and the elastic modulus (p < 0.05) with increasing concentrations of NaClO4, the content of glycosaminoglycans (GAGs) did not significantly decline (p > 0.05) in the 5% treatment group. In addition, histopathological analysis showed that the fiber component and basement membrane of the matrix in the 5% treatment group were retained after optimal decellularization. Despite the preserved cartilage, in vitro immunohistochemical analysis revealed that the matrix did not show the presence of major histocompatibility complex (MHC) antigens. The remaining ten donor tracheas, which were divided into a positive control group and an optimal decellularized group, were used for allogeneic transplantation. Blood samples were taken regularly, and histologic examinations were performed at 30 days postimplantation, which showed no significant immune rejection. In conclusion, we surveyed the structural integrity through morphological observation and compared the biomechanical and immunogenic changes in the tracheal matrix under the different treatments. The optimal decellularized tracheal matrix with preserved cartilage, which was acquired via 5% NaClO4 treatment, exhibited structural integrity, antigen cell removal and immune privilege and would be suitable for use as a tissue-engineered trachea for in vivo transplantation in rabbit models.  相似文献   

17.
A CO2-added ammonia explosion pretreatment was performed for bioethanol production from rice straw. The pretreatment conditions, such as ammonia concentration, CO2 loading level, residence time, and temperature were optimized using response surface methodology. The response for optimization was defined as the glucose conversion rate. The optimized pretreatment conditions resulting in maximal glucose yield (93.6 %) were determined as 14.3 % of ammonia concentration, 2.2 MPa of CO2 loading level, 165.1 °C of temperature, and 69.8 min of residence time. Scanning electron microscopy analysis showed that pretreatment of rice straw strongly increased the surface area and pore size, thus increasing enzymatic accessibility for enzymatic saccharification. Finally, an ethanol yield of 97 % was achieved via simultaneous saccharification and fermentation. Thus, the present study suggests that CO2-added ammonia pretreatment is an appropriate process for bioethanol production from rice straw.  相似文献   

18.
Seeds of 39 species representing all native genera and sections of New WorldAntirrhineae were examined with the Scanning Electron Microscope and Light Microscope. Based on seed shape and surface ornamentation, seven morphological categories are recognized: cristate, tetracostate, foveolate, tumid tuberculate/cristate, circumalate, medusiform, and a miscellaneous category. Most sections and/or generic categories can be characterized by a single morphological type, althoughMaurandya s.l. has several distinctive seed types included within present generic boundaries. The cristate seed type is believed to be the “primitive type” from which the medusiform and tumid tuberculate/cristate types have developed. The tumid tuberculate/cristate type presumably gave rise to the circumalate, tetracostate, and foveolate patterns. The miscellaneous category (represented byLinaria andKickxia) may be phyletically remote from the other New World types. Seeds of the New WorldAntirrhineae mostly seem to be adapted for water dispersal although some adaptations for wind dispersal (e.g. wings, light weight) are evident. Free-hand sections and seed coat clearings indicate that circumalate seeds are of two different anatomical patterns; such structural diversity may be found in the other seed types.  相似文献   

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In the present study, silver nanoparticles (AgNPs) with an average particle size of 5.5 ± 3.1 nm were biosynthesized using an endophytic fungus Cryptosporiopsis ericae PS4 isolated from the ethno-medicinal plant Potentilla fulgens L. The nanoparticles were characterized using UV-visible spectrophotometer, transmission electron microscopy (TEM), scanning electron microscopy (SEM), selective area electron diffraction (SAED), and energy dispersive X-ray (EDX) spectroscopy analysis. Antimicrobial efficacy of the AgNPs was analyzed singly and in combination with the antibiotic/antifungal agent chloramphenicol/fluconazole, against five pathogenic microorganisms-Staphylococcus aureus MTCC96, Salmonella enteric MTCC735, Escherichia coli MTCC730, Enterococcus faecalis MTCC2729, and Candida albicans MTCC 183. The activity of AgNPs on the growth and morphology of the microorganisms was studied in solid and liquid growth media employing various susceptibility assays. These studies demonstrated that concentrations of AgNPs alone between 10 and 25 μM reduced the growth rates of the tested bacteria and fungus and revealed bactericidal/fungicidal activity of the AgNPs by delaying the exponential and stationary phases. Examination using SEM showed pits and ruptures in bacterial cells indicating fragmented cell membrane and severe cell damage in those cultures treated with AgNPs. These experimental findings suggest that the biosynthesized AgNPs may be a potential antimicrobial agent.  相似文献   

20.
The rapid-freezing technique was applied in association with scanning and transmission electron microscopy to observe the initial attachment (or contact) ofCandida albicans cells to exfoliated human buccal epithelial cells. Low temperature scanning electron microscopy provided detailed three-dimensional morphological features of the yeast-epithelial cell association; adhesion ofC. albicans cells to host cells was primarily owing to an interaction between fibrillar layer of the yeast cell wall and the membrane interdigitations of the epithelial cells. Such a particular interconnection between the two cells was confirmed by the freeze-substitution fixation for transmission electron microscopy. These results clearly demonstrate the outermost fibrillar cell wall layer ofC. albicans responsible for adhesion to host cells.  相似文献   

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