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At an early stage of secondary development, the metaphloem sieveelements appeared to be the only functional axial transportconduit in fully elongated stems of P. vulgaris plants. Thereis no apparent barrier to the radial transfer of solutes inthe stem apoplast. However, radial transfer through the stemsymplast could be limited by discontinuities resulting fromprotoplast degeneration of the protophloem fibres and developingsecondary xylem fibres. Estimates of possible sucrose fluxesthrough the apoplastic and symplastic routes indicated thatradial photosynthate transfer from the sieve element-companioncell (se-cc) complexes of the stem metaphloem could follow eithercellular route. In the case of apoplastic transfer, the plasmamembrane surface area of the se-cc complexes is only sufficientto support some form of facilitated movement of sucrose. Incontrast, the plasma membrane surface area of the phloem parenchymais sufficient to permit passive diffusion of sucrose to theapoplast. Plasmodesmatal frequencies suggest that any symplastictransfer to the phloem parenchyma from the sieve elements wouldbe via the companion cells. Phaseolus vulgaris, french bean, stem, photosynthate, radial transfer (photosynthates), cellular pathway  相似文献   
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Ice formation and tissue response in apple twigs   总被引:7,自引:0,他引:7  
Abstract. The response of apple twig tissue to a freezing stress was examined using a combination of low temperature scanning electron microscopy and freeze substitution techniques. Bark and wood tissues responded differently. In the bark, large extracellular ice crystals were observed in the cortex. The adjacent cortical cells collapsed and a large reduction in cell volume was observed. The extent of cell collapse throughout the bark was not uniform. Cells in the periderm, phloem and cambium exhibited little change in cell volume compared to cortical cells. Large extracellular ice crystals were not observed in the xylem or pith tissues. The xylem ray parenchyma and pith cells did not collapse in response to a freezing stress, but retained their original shape. The pattern of ice formation and cell response was not observed to change with season or the level of cold acclimation. This study supported the concept that bark and xylem tissues exhibit contrasting freezing behaviour. The observations were consistent with the idea that water in bark freezes extracellularly while water in xylem ray parenchyma and pith cells may supercool to temperatures approaching –40 °C prior to freezing intracellularly.  相似文献   
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SYNOPSIS The fine structure of sporogonic stages of Nosema parkeri Krinsky, a microsporidan from the argasid tick, Ornithodoros parkeri Cooley, is described. Developmental changes in the spore coat and cytoplasmic organelles are discussed. As a sporoblast transforms into a spore, the organelles become more compact and the membranes surrounding them appear to become more taut. It is suggested that the polaroplast complex is involved in fluid transport during development of the spore. Organelles in the mature spore include 2 contiguous nuclei enveloped in a lattice containing ribosome-like particles, a polaroplast complex composed of laminar and saccular regions, and a coiled tubular polar filament attached to a polar sac. Sporogonic stages do not appear to have mitochondria, Golgi apparatus, or a posterior vacuole. The fine structure of the spore of N. parkeri is very similar to that of species of Nosema found in insects, crustaceans, and trematodes.  相似文献   
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A technique developed for detecting small differences in mildew infection under glasshouse/laboratory conditions is described. A satisfactory correlation was found between results obtained by this method and infections in the field. Detailed examination of the levels of infection in cultivars Maldwyn and Milford showed that the upper and more recently developed leaves of Maldwyn had a significantly smaller area infected than those of Milford, although seedling leaves of both genotypes were very susceptible. This was most marked when plants were in the 6- to 7-leaf stage. Comparison of host plants sown on successive dates during the spring and early summer showed that with the acceleration of the rate of growth occurring in later-sown plants, resistance was expressed progressively earlier in the life of the plant. Newly expanded leaves which show very low level of infection at the 6- to 7-leaf stage become susceptible as they age, resistance being then expressed in the younger leaves.  相似文献   
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One hundred and seventy-nine yellow pigmented Gram negative rods, including 170 new isolates obtained from a variety of habitats, were investigated and the results analysed by computer. Nine phena, embracing 146 strains, were distinguished. Five of these comprised 88 of the 109 non-motile, aflagellate strains (i.e. 'atypical cytophagas') and they should be assigned to a re-defined genus Flavobacterium . A separate phenon containing 41 of the gliding isolates was delineated which should be ascribed provisionally to the genus Flexibacter . Only low G + C contents have been recorded for representative strains from these six phena but one strain (which would have been ascribed to Flavobacterium ) had a high G + C content; such organisms (both peritrichous and non-motile) should comprise a separate genus Empedobacter (Brisou). The remaining three phena respectively comprised strains of Erwinia herbicola , pseudomonads and unclassified aflagellate isolates; their taxonomic position is discussed.  相似文献   
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Six-row and 2-row barley genotypes were grown as individually spaced plants in the field, and estimates of area of green tissue and other characters were obtained at ear emergence and maturity. Positive correlations (P<0.01) were found within both 6- and 2-row types between grain dry wt per main culm and grain number, mean date of ear emergence, area of green tissue above the flag-leaf node, and dry wt of the third leaf below the ear (F-2 leaf). This supports the hypothesis that the magnitude of assimilate supply prior to anthesis is a very important determinant of grain yield in barley, and the possible use of the F-2 leaf as a criterion for selection of genotypes with a large photosynthetic capacity and grain yield is discussed.  相似文献   
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