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S L Marcus S W Smith C I Jarowski M J Modak 《Biochemical and biophysical research communications》1976,70(1):37-44
Guanosine, rather than its methylated derivative, was found to be the inverted nucleoside present in the 5′ terminal capping structure of insect oocyte messenger RNA. Since methylation of the terminal guanosine at the 7 position is necessary for the initiation of protein synthesis in eukaryotes, this evidence suggests that the translational inactivity of the mRNA prior to fertilization may be associated with the absence of methylation. 相似文献
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Marcus Clauss Jan Adamczewski Reinhold R. Hofmann 《European Journal of Wildlife Research》2010,56(2):181-185
The intraruminal papillation pattern indicates the degree of rumen contents stratification and is related to the feeding niche
of a ruminant. Muskoxen (Ovibos moschatus) display a variety of morphophysiological adaptations typical for grazers. We investigated the intraruminal papillation of
22 free-ranging muskoxen from five different months by comparing the surface enlargement factor both between seasons and between
individual rumen regions. The seasonal pattern of rumen papillation indicated a distinct seasonality in food quality. The
intraruminal papillation indicated a moderate degree of rumen contents stratification typical for intermediate feeders. The
nutritional ecology of muskoxen is characterised by specific morphophysiological adaptations to a grass-dominated diet that
nevertheless allow extensive seasonal use of browse forage. 相似文献
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Effects of DNase production, plasmid size, and restriction barriers on transformation of Vibrio cholerae by electroporation and osmotic shock 总被引:14,自引:0,他引:14
Hilda Marcus Julian M. Ketley James B. Kaper Randall K. Holmes 《FEMS microbiology letters》1990,68(1-2):149-154
Attempts to transform wild type strains of V. cholerae with plasmid DNA by traditional osmotic shock methods were not successful. A mutant of V. cholerae that was deficient in extracellular DNase was transformed with plasmid DNA by osmotic shock, demonstrating directly that extracellular DNase is a major barrier to transformation of V. cholerae. Transformation of wild type and DNase-negative strains of V. cholerae was accomplished by electroporation. Efficiency of transformation by electroporation increased with field strength, decreased with plasmid size, and was relatively insensitive to changes in the electrolyte composition of the buffer as long as isotonic sucrose was present. Host-controlled modification/restriction systems also affected transformation efficiency in V. cholerae. 相似文献
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Moya M. Smith Zerina Johanson Thomas Butts Rolf Ericsson Melinda Modrell Frank J. Tulenko Marcus C. Davis Gareth J. Fraser 《Proceedings. Biological sciences / The Royal Society》2015,282(1805)
Ray-finned fishes (Actinopterygii) are the dominant vertebrate group today (+30 000 species, predominantly teleosts), with great morphological diversity, including their dentitions. How dental morphological variation evolved is best addressed by considering a range of taxa across actinopterygian phylogeny; here we examine the dentition of Polyodon spathula (American paddlefish), assigned to the basal group Acipenseriformes. Although teeth are present and functional in young individuals of Polyodon, they are completely absent in adults. Our current understanding of developmental genes operating in the dentition is primarily restricted to teleosts; we show that shh and bmp4, as highly conserved epithelial and mesenchymal genes for gnathostome tooth development, are similarly expressed at Polyodon tooth loci, thus extending this conserved developmental pattern within the Actinopterygii. These genes map spatio-temporal tooth initiation in Polyodon larvae and provide new data in both oral and pharyngeal tooth sites. Variation in cellular intensity of shh maps timing of tooth morphogenesis, revealing a second odontogenic wave as alternate sites within tooth rows, a dental pattern also present in more derived actinopterygians. Developmental timing for each tooth field in Polyodon follows a gradient, from rostral to caudal and ventral to dorsal, repeated during subsequent loss of teeth. The transitory Polyodon dentition is modified by cessation of tooth addition and loss. As such, Polyodon represents a basal actinopterygian model for the evolution of developmental novelty: initial conservation, followed by tooth loss, accommodating the adult trophic modification to filter-feeding. 相似文献
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