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51.
Male wing colors and wing scale morphology were examined for three species of lycaenid butterflies: Chrysozephyrus ataxus, Favonius cognatus and F. jezoensis. Measurement of spectral reflectance on the wing surface with a spectrophotometer revealed species‐specific reflection spectra, with one or two peaks in the ultraviolet and/or green ranges. Observations of wing scales using an optical microscope revealed that light was reflected from the inter‐ridge regions, where transmission electron microscopy revealed a multilayer structure. Based on the multilayer dimensions obtained, three models were devised and compared to explain the measured reflectance spectrum. The results showed that the best fit is a model in which thicknesses of thin films of the multilayer system are not constant and air spaces between cuticle layers are more or less packed with cuticle spacers. This suggests that the specific wing colors of the species examined are produced by the species‐specific arrangement of the multilayer structure of wing scales.  相似文献   
52.
The developmental fates of animal, vegetal, dorsal, and ventral egg regions of Xenopus laevis embryos were examined. For this purpose, a tracer enzyme (horseradish peroxidase) was injected bilaterally into pairs of eight-cell-stage blastomeres and the clonal organization of marked cells in the early tail-bud embryos was examined. The epidermis over most of the body originated from animal-ventral micromeres, but that in the head originated from animal-dorsal blastomeres and that in the area surrounding the anus originated from vegetal-ventral blastomeres. The neural tube originated from animal-dorsal, vegetal-dorsal, and animal-ventral blastomeres. These results were consistent with those of previous studies. But in contrast to previous findings, results showed that the entire notochord is derived from animal-dorsal micromeres and that the somites originate from all four bilateral pairs of blastomeres in the eight-cell stage. These results are discussed in relation to the current maps of prospective fates based on results of vital-dye staining. Morphogenetic movements are also discussed on the basis of the clonal organization demonstrated in the present study.  相似文献   
53.
In starfish follicle cells 1-methyladenine is produced under the influence of a gonad-stimulating hormonal peptide (GSS). Since such production of the substance is enhanced by the addition of L-methionine or S-adenosylmethionine in vitro, the presence of methionine-activating enzyme in the follicle cells of the starfish, Asterina pectinifera, was investigated. To detect enzyme activity, the enzyme was partially purified from the supernatant of the follicle-cell homogenate by precipitation with ammonium sulfate followed by gel-filtration on a Sephadex G-150 column. Using such a preparation of the enzyme, the production of S-adenosylmethionine from L-methionine and adenosine triphosphate was clearly demonstrated by thin-layer chromatography. GSS was found to exert no effect on the activity of the methionine-activating enzyme. The hormonal peptide, GSS, is therefore considered to take part in some reaction other than this step in the formation of 1-methyladenine.  相似文献   
54.
Mechanism by which the site of polar body formation is determined in starfish oocytes was investigated in relation to the action of 1-methyladenine (1-MeAde). Local staining with Nile Blue of Asterina pectinifera oocytes revealed that there exists a prospective site of polar body formation (PSPBF) on the nearest surface to the position of germinal vesicle. The site of polar body formation was found to shift to some extent from PSPBF toward the area locally applied with 1-MeAde, suggesting that the actual site of polar body formation is not determined yet at the germinal vesicle stage. Oocytes whose germinal vesicles had been shifted by centrifugation from PSPBF to the opposite surface before the commencement of germinal vesicle breakdown (GVBD) (less than 15 min after 1-MeAde treatment), failed to form polar bodies, whereas oocytes centrifuged after commencement of GVBD (20 min after 1-MeAde treatment) did form polar bodies where their fading germinal vesicles had reached by centrifugation. In the oocytes which failed to form polar bodies by centrifugation, an aster was observed near PSPBF of each oocyte. When inseminated, every oocyte treated with 1-MeAde developed normally irrespectively of the mode of polar body formation including the site and the occurrence, and the animal pole of every larva was derived from PSPBF.  相似文献   
55.
Nicotinamide inhibited both germinal vesicle breakdown (GVBD) and polar body formation (PBF) in surf clam and starfish oocytes. In the surf clam nicotinamide at 0.3 mM completely blocked PBF in the fertilized oocytes. For blockage of GVBD higher concentration was required. In the starfish, nicotinamide (30 mM) prevented PBF but not GVBD, when added 7 min after the commencement of 1-methyladenine (1-MeAde) administration. These results suggest that PBF is blocked by nicotinamide independent of its effect on GVBD. In the case of starfish, NAD+was more effective than nicotinamide in inhibiting oocyte maturation. Nicotinamide also blocked GVBD induced by microinjection of the cytoplasm containing maturation-promoting factor (MPF) obtained from 1-MeAde-treatcd oocytes. These results suggest that nicotinamide prevents the action of MPF rather than inhibiting the interaction of 1-McAde with cell membrane or the induction of MPF.  相似文献   
56.
Monoclonal antibodies (MAbs) were raised against surface antigens from Pythium sulcatum. The immunogens were prepared from salt extractable cell wall protein to produce monoclonal antibodies. The MAbs showed high specificity to seven P. sulcatum isolates among 26 species of soil‐borne fungi. Weak cross‐reactivities were observed with Pythium aristosporum, Pythium myriotylum, and Pythium zingiberum in indirect enzyme‐linked immunosorbent assay (ELISA), but no reaction was obtained in Western blot analysis. The MAbs recognized glycoproteins in cell wall. Pythium sulcatum was detected in naturally infected carrot tissues and soil using indirect competition ELISA.  相似文献   
57.
58.
Pterostichus thunbergi Morawitz and its related species of Japan are revised based on the structure of membranous parts of their genitalia for the first time, under the name of the thunbergi species group. This species group is monophyletic and is placed in the subgenus Morphnosoma Lutshnik. The monotypic subgenus Moritapterus Berlov, erected for P. thunbergi, is synonymized with Morphnosoma. Comparative study of the endophallus revealed that P. thunbergi michinoku Nakane is a junior synonym of P. habui and that four species should be recognized in this group. Three of them are sympatric with P. thunbergi and one of them, Pterostichus (Morphnosoma) robustistylis, is described as a new species. Molecular phylogeny based on the COI gene (mitochondrial [mt]DNA) supported its independence as a distinct species. The resultant trees of mtDNA and comparative study of morphology revealed that P. thunbergi is probably non‐monophyletic. In the present study we suggest the presence of further cryptic species of Morphnosoma in Japan.  相似文献   
59.
60.
To study the pathogenesis of acquired dermal melanocytosis (ADM), we reviewed the clinical, immunohistochemical, and ultrastructual features of 34 cases (female, 33, and male, 1) of ADM. The patients’ ages at onset ranged from 8 to 51 years and averaged 26.8+12.7 years. There was a positive family history. Gray-brown macules were mostly recognized on the face. Not only active dermal melanocytes but also non-pigmented c-KIT-and TRP-2-positive immature melanocytes were detected in the dermis. Taken together those clinical and histological findings, activation of pre-existing immature melanocytes by sunlight, estrogen, and/or progesterone, and some other factors, may be the most likely mode of the development of ADM. Moreover, using cultured murine neural crest cells as a model of c-KIT-positive immature melanocytes, we confirmed that endothelin-1, which is produced and secreted by keratinocytes after UV-irradiation, affects melanocytes and accelerated melanogenesis.  相似文献   
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