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H. Preuschoft 《Human Evolution》1989,4(2-3):145-156
The variation of body shape among prosimians is reviewed. Special emphasis is placed on the selective advantages, that is
the mechanical reasons, to which variants of the locomotor apparatus can be traced back.
There are differences found in the cheiridia, but at present they cannot be explained in terms of mechanics; there is nearly
no knowledge about the mechanical meaning of their diversity. Myological characteristics of taxa can be explained mechanically,
but this has not yet been done.
Well known are variations of body proportions. These discriminate higher taxa, and are largely coincident with the often-used
locomotor categories. In spite of this, there are only few sound arguments about the real biomechanic value of characteristic
proportions for a given locomotor mode. What is known on this field, is reviewed. Progress can be made only, if the mechanical
conditions, set by postural behavior and locomotion, are understood completely.
The subtle distinctions between lower taxonomic units can normally be identified only on the basis of detailed and quantified
analyses of movements on one hand, and of biometrics on the other. In the few cases in which such studies have been made,
the differences of morphology fit to the mechanical requirements of locomotion which also differ only in quantitative details. 相似文献
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Andreas Christian Dorothee Koberg Holger Preuschoft 《Pal?ontologische Zeitschrift》1996,70(3-4):591-601
The pelvis ofPlateosaurus is examined from a biomechanical point of view. The shape of the acetabulum in particular is analysed in order to determine the range of possible directions of the forces exchanged between femur and pelvis. These forces must have been more or less confined to a sagittal plane. From a quasi-static analysis under consideration of the major hip muscles ofPlateosaurus, a nearly but not fully extended posture of the hindlimbs can be deduced. The hip joints ofPlateosaurus and probably of some other dinosaurs with a narrow biacetabular width were balanced rather by adducting than by abducting muscles. 相似文献
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Signe Frederiksen 《Nordic Journal of Botany》1994,14(1):3-6
Hybrid plants were obtained in an intergeneric cross between Taenìatherum caputmedusae (2n = 2x = 14) and Triticum aestívum (2n = 6x = 42). The chromosome number was as expected 2n = 28. Morphologically the offspring looked like Triticum aestívum . Analysis of meiotic metaphase I showed an unexpected high number of bi- and trivalents which is ascribed to homoeologous pairing of chromosomes from T. aestivum . It is concluded that the genome of Taeniatherum has effects on the pairing regulation system present in T. aestívum . 相似文献
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Signe Helbo Roy E. Weber Angela Fago 《Biochimica et Biophysica Acta - Proteins and Proteomics》2013,1834(9):1832-1839
Recent years have witnessed a new round of research on one of the most studied proteins - myoglobin (Mb), the oxygen (O2) carrier of skeletal and heart muscle. Two major discoveries have stimulated research in this field: 1) that Mb has additional protecting functions, such as the regulation of in vivo levels of the signaling molecule nitric oxide (NO) by scavenging and generating NO during normoxia and hypoxia, respectively; and 2) that Mb in vertebrates (particularly fish) is expressed as tissue-specific isoforms in other tissues than heart and skeletal muscle, such as vessel endothelium, liver and brain, as found in cyprinid fish. Furthermore, Mb has also been found to protect against oxidative stress after hypoxia and reoxygenation and to undergo allosteric, O2-linked S-nitrosation, as in rainbow trout. Overall, the emerging evidence, particularly from fish species, indicates that Mb fulfills a broader array of physiological functions in a wider range of different tissues than hitherto appreciated. This new knowledge helps to better understand how variations in Mb structure and function may correlate with differences in animals' lifestyles and hypoxia-tolerance. This review integrates old and new results on Mb expression patterns and functional properties amongst vertebrates and discusses how these may relate to adaptive variations in different species. This article is part of a special issue entitled: Oxygen Binding and Sensing Proteins. 相似文献
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Signe Viggor Jaanis Juhanson Merike Jõesaar Mario Mitt Jaak Truu Eve Vedler Ain Heinaru 《Microbiological research》2013,168(7):415-427
The coastal waters of the Baltic Sea are constantly threatened by oil spills, due to the extensive transportation of oil products across the sea. To characterise the hydrocarbon-degrading bacterial community of this marine area, microcosm experiments on diesel fuel, crude oil and shale oil were performed. Analysis of these microcosms, using alkane monooxygenase (alkB) and 16S rRNA marker genes in PCR-DGGE experiments, demonstrated that substrate type and concentration strongly influence species composition and the occurrence of alkB genes in respective oil degrading bacterial communities. Gammaproteobacteria (particularly the genus Pseudomonas) and Alphaproteobacteria were dominant in all microcosms treated with oils. All alkB genes carried by bacterial isolates (40 strains), and 8 of the 11 major DGGE bands from the microcosms, had more than 95% sequence identity with the alkB genes of Pseudomonas fluorescens. However, the closest relatives of the majority of sequences (54 sequences from 79) of the alkB gene library from initially collected seawater DNA were Actinobacteria. alkB gene expression, induced by hexadecane, was recorded in isolated bacterial strains. Thus, complementary culture dependent and independent methods provided a more accurate picture about the complex seawater microbial communities of the Baltic Sea. 相似文献
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