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AIMS AND SCOPE     
The Journal of Bionic Engineering publishes original research papers and reviews on all aspects of bionic science and engineering including fundamental understandings of animals and plants for bionic engineering, such as locomotion and behaviors of animals, structures, composites, morphology and physical properties of plants and natural materials, applications of such understandings in engineering, technology and designs.  相似文献   

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One of the highest-ranking journals In biology with an Impact factor of 6.787! BioEssays Editor: Adam S. Wilkins, Cambridge, UK BioEssays offers readers in-depth review articles and serves as a resource for education and new ideas by exploring a wide range of biological topics. Researchers and teachers are presented with a unique tool for learning how findings in molecular, cellular,  相似文献   

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PartlissubdividedintotWollthofaed,Whichcomrisefluvial-lacustrinandfissure-cavemlahons'Fluvial-laCUStrinetritSdopoaitalinthelowerpartoftheriverchannels,basinsorplain;fissare-cavendbotSexPondonlyinthemountaintriin,wherePartIisabout5-8mmickandharsmammalfotalsSUchasbooridaefeen'etrp.indot.),MbonasP.,lycbotessineasis,cfMthechtai,FelissP-,Archhaplandna,Cervche,andColubdee'ItmaybeconsideredtobeearlyPleistocene'Partnismorethan2OInmick'ThefadesofPartIIcomrisealluvial-laCUStrineandfise-caved…  相似文献   

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The expression “universal base” is very often used to express hybridization properties and recognition patterns of nucleosides. Their behaviour in biological applications, however, is of great interest regarding, e.g., their incorporation by polymerases. The 4,6-difluorobenzimidazole and the 2,4-difluorobenzene nucleoside analogues have proven to be universal bases that do not discriminate between the four natural nucleobases in RNA duplexes. Therefore, we synthesized the corresponding triphosphates to evaluate their behavior in polymerase catalyzed reactions and to investigate their ability to serve as substrates for the T7 RNA polymerase.  相似文献   

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N4-Acetyl-1-(2, 3-di-O-acetyl-4-thio-β-D-arabinofuranosyl)cytosine (2) was synthesized in three steps from 1-(4-thio-β-D-arabinofuranosyl)cytosine (1). The reaction of this partially blocked 4′-thio-ara-C derivative 2 with 2-chloro-4H-1,3,2-benzodioxaphosphorin-4-one gave the 5′-phosphitylate derivative 3, which on reaction with pyrophosphate gave the 5′-nucleosidylcyclotriphosphite 4. Product 4 was then oxidized with iodine/pyridine/water and deblocked with concentrated ammonium hydroxide to provide the desired 4′-thio-ara-C-5′-triphosphate 5. This triphosphate 5 was converted to 4′-thio-ara-C -5′-monophosphate 6 by treatment with snake venom phosphodiesterase I. The details of the synthesis, purification, and characterization of both nucleotides are described.  相似文献   

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Our view of sperm competition is largely shaped by game-theoretic models based on external fertilizers. External fertilization is of particular interest as it is the ancestral mode of reproduction and as such, relevant to the evolution and maintenance of anisogamy (i.e., large eggs and tiny, numerous sperm). Current game-theoretic models have been invaluable in generating predictions of male responses to sperm competition in a range of internal fertilizers but these models are less relevant to marine broadcast spawners, the most common and archetypal external fertilizers. Broadcast spawners typically have incomplete fertilization due to sperm limitation and/or polyspermy (too many sperm), but the effects of incomplete (<100% fertilization rates) fertilization on game-theoretic predictions are unclear particular with regards to polyspermy. We show that incorporating the effects of sperm concentration on fertilization success changes the predictions of a classic game-theoretic model, dramatically reversing the relationship between sperm competition and the evolutionarily stable sperm release strategy. Furthermore, our results suggest that male and female broadcast spawners are likely to be in conflict at both ends of the sperm environment continuum rather than only in conditions of excess sperm as previously thought. Across the majority of the parameter space we explored, males release either too little to too much sperm for females to achieve complete fertilization. This conflict could result in a coevolutionary race that may have led to the evolution of internal fertilization in marine organisms.  相似文献   

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