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In monocotyledons, the leaf vascular network consists of a hierarchicalsequence of vertical vascular bundles and numerous transverseveins that interconnect adjacent vertical veins. In the leafsheath of these species, especially grasses, lysigenous gascavities (gas spaces) are developed into intervascular spacesand provide a gas conducting system to non-aerial parts underflooded conditions. The spatial relationship between gas spaceformation and transverse vein differentiation was investigatedusing the leaf sheath of rice (Oryza sativa L.). Histochemicalobservation showed that patterns of differentiation of the transversevein are distinct from those of vertical vascular bundles. Onthe other hand, gas spaces are formed through the processesof cell death (collapse). Both events are initiated at a specificcell position in the middle layers of the leaf sheath, fromwhich the vascular system of the leaf is derived; this indicatesthat differentiation of transverse veins is associated withgas space formation. The cell-to-cell movement of fluoresceinisothiocyanate-conjugated dextran injected into middle layercells coincided with the area where cell collapse occurred,indicating a close relationship between the middle and adaxialcell layers, but not abaxial cell layers. A uniform cell numberbetween each transverse vein in the leaf sheath suggested theinvolvement of spatial regulation in transverse vein formationregardless of clonal history at the later stage of leaf veincanalization. Copyright 2000 Annals of Botany Company Cell collapse, leaf development, middle cell layer, microinjection, Oryza sativa L., rice, programmed cell death.  相似文献   
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The effects of ergothioneine on spermatozoa and ova were investigated in vitro and in vivo. Spermatozoa were treated with ergothioneine in vitro , and injected into the uterine cavity of female mice immediately after the induction of superovulation. The ova were recovered 24 hr later and assessed for fertilization. Preincubation of spermatozoa with ergothioneine resulted in a significant increase in the fertilization rate. When ova were inseminated in the same manner in vitro with spermatozoa treated with 0.1 or 1.0 mM of ergothioneine, the penetration rate was significantly increased. These results suggest that ergothioneine is effective in inducing both capacitation and the acrosome reaction of mouse spermatozoa. Ergothioneine at concentrations of 0.1 and 1.0 mM in the preincubation medium was also effective in inducing the acrosome reaction of guinea pig spermatozoa. However, it had no significant effect on the development of 2-cell ova in vitro .  相似文献   
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ABSTRACT. The Gram-negative bacterium Holospora obrusa is a macronucleus-specific symbiont of the ciliate Paramecium caudatum. The infectious form of this bacterium infects the host macronucleus through digestive vacuoles and differentiates into the reproductive form two days after the infection in the nucleus. The monoclonal antibodies IF-3–1 and IF-3–2 reacted with 39 and 1S kDa periplasmic proteins, respectively, that were specific for the infectious form of H. obrusa. Because the antigens were not detected in the reproductive form of the bacterium, it appears that expression of the proteins decreases during or soon after the infection. Using these antibodies, quantitative changes in the antigens in the early infection process were examined by immunoblotting and immunogold electron microscopy. Immunoblotting showed that the amounts of both antigens were reduced within 1 h after the bacteria were engulfed into the digestive vacuoles of the paramecia, but that the amounts of IF-3–2 antigens declined earlier than the IF-3–1 antigen. Immunogold labeling showed that the level of IF-3–2 antigens became very low in the bacteria in the host digestive vacuoles, whereas there was no similar decrease in amount of IF-3–1 antigens. Possible functions of the antigens are discussed. The IF-3–1 antigens decrease in concentration in parallel with the decrease in the periplasmic region.  相似文献   
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Rice internodes are vital for supporting high‐yield panicles, which are controlled by various factors such as cell division, cell elongation and cell wall biosynthesis. Therefore, formation and regulation of the internode cell‐producing intercalary meristem (IM) are important for determining the shape of internodes. To understand the regulation of internode development, we analysed a rice dwarf mutant, dwarf 50 (d50). Previously, we reported that parenchyma cells in the elongated internodes of d50 ectopically deposit cell wall phenolics. In this study, we revealed that D50 encodes putative inositol polyphosphate 5‐phosphatase (5PTase), which may be involved in phosphoinositide signalling required for many essential cellular functions, such as cytoskeleton organization, endocytosis and vesicular trafficking in eukaryotes. Analysis of the rice genome revealed 20 putative 5PTases including D50. The d50 mutation induced abnormally oriented cell division, irregular deposition of cell wall pectins and thick actin bundles in the parenchyma cells of the IM, resulting in abnormally organized cell files of the internode parenchyma and dwarf phenotype. Our results suggest that the putative 5PTase, encoded by D50, is essential for IM formation, including the direction of cell division, deposition of cell wall pectins and control of actin organization.  相似文献   
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