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1.
E Keitges  M Rivest  M Siniscalco  S M Gartler 《Nature》1985,315(6016):226-227
In the human there is an X-linked gene affecting steroid sulphatase (STS) activity which, when deficient, is associated with X-linked congenital ichthyosis. The gene (STS) is located on the distal tip of the short arm and is only partially inactivated when it is on the inactive X-chromosome. In the mouse, the genetics of STS are not clear; the results of one study using XX:X0 oocyte comparisons indicated X-linkage, but three other studies using STS variants have produced segregation data compatible with autosomal linkage of murine STS. Here we present the results of STS assays of crosses of deficient C3H/An male mice to normal X0 animals which demonstrate X-linkage of STS in the mouse and indirectly indicate the existence of a functional STS allele on the Y-chromosome which undergoes obligatory recombination during meiosis with the X-linked allele.  相似文献   

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Sex steroid hormone regulation of IgA and IgG in rat uterine secretions   总被引:11,自引:0,他引:11  
C R Wira  C P Sandoe 《Nature》1977,268(5620):534-536
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Evolution of homeothermy in mammals   总被引:7,自引:0,他引:7  
A W Crompton  C R Taylor  J A Jagger 《Nature》1978,272(5651):333-336
We propose that mammalian homeothermy was was acquired in two steps. The first step enabled mammals to invade a nocturnal niche without an increase in resting metabolic rate. The second step enabled them to invade a diurnal niche and involved the acquisition of higher body temperatures and metabolic rates.  相似文献   

6.
Maternal investment in mammals   总被引:1,自引:0,他引:1  
S I Zeveloff  M S Boyce 《Nature》1986,321(6069):537-538
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7.
U Mittwock 《Nature》1967,214(5088):554-556
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8.
Ageing of mammals   总被引:3,自引:0,他引:3  
W S Bullough 《Nature》1971,229(5287):608-610
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9.
Interspecies mammalian cloning can be achieved by application of two key techniques, i.e.the technique of interspecies nuclear transfer and the technique of interspecies pregnancy.The general principles, problems and possible solutions, as well as the recent advances of interspecies mammalian cloning have been summarized in this review.  相似文献   

10.
Coordination of circadian timing in mammals   总被引:106,自引:0,他引:106  
Reppert SM  Weaver DR 《Nature》2002,418(6901):935-941
Time in the biological sense is measured by cycles that range from milliseconds to years. Circadian rhythms, which measure time on a scale of 24 h, are generated by one of the most ubiquitous and well-studied timing systems. At the core of this timing mechanism is an intricate molecular mechanism that ticks away in many different tissues throughout the body. However, these independent rhythms are tamed by a master clock in the brain, which coordinates tissue-specific rhythms according to light input it receives from the outside world.  相似文献   

11.
MCWHIRTER KG 《Nature》1956,178(4538):870-871
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12.
Evolution of X-chromosome inactivation in mammals   总被引:5,自引:0,他引:5  
M F Lyon 《Nature》1974,250(5468):651-653
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13.
Mercury-selenium correlations in marine mammals   总被引:8,自引:0,他引:8  
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14.
Schroeder T 《Nature》2008,453(7193):345-351
The ability to observe biological processes continuously, instead of at discrete time points, holds great promise for the study of tissue regeneration. Ideally, single cells would be followed continuously within large tissue volumes (such as organs) over long periods of time. Technical limitations, however, preclude such studies. But, recently, there have been improvements in imaging technologies and biologically compatible labelling agents. Together with new insights into the molecular characteristics of stem cells, which are ultimately responsible for the regenerative potential of all tissues, researchers are now much closer to applying single-cell imaging approaches to research into regeneration and its clinical applications.  相似文献   

15.
哺乳动物是一类具有高代谢率的恒温动物,它们可通过自身体内氧化代谢产热在较大的环境温度范围内维持高而相对恒定的体温,其体温具有周期性节律变化的特征。冬眠是动物在进化过程中形成的一种应对寒冷、食物缺乏等恶劣环境的生物学习性。冬眠时动物的体温会大幅度下降,这种低体温是动物主动调节的。冬眠的哺乳动物,不论是在冬眠季节还是非冬眠季节,表现出的体温都是在中枢神经系统调节下产热和散热效应综合作用的结果,其机理和产热特征一直是研究的热点。概括叙述了冬眠哺乳动物在活跃季节、入眠过程以及冬眠季节体温调节的特点;恒温哺乳动物体温调节的假说及其发展;冬眠哺乳动物的体温调节;以及对近年来人们关注的热点问题TRP通道进行简要的综述。  相似文献   

16.
Natural selection has a critical role in the diversity of morphological traits. However, the genetic basis underlying the evolution and diversity of morphological characteristics, particularly in the context an organism’s behavior, lifestyle, and environment, is not well understood. The discovery of nasal chemoreceptors in mammals provided an opportunity to address this question. Here, we identify 4 nasal chemoreceptor gene families (V1R, V2R, OR, and TAAR) from horse, guinea pig, marmoset and orangutan genome sequences, respectively. Together with previously described mammalian nasal chemoreceptor gene repertoires, we found a significant positive correlation between functional gene number and morphological complexity, both in the main olfactory system and the vomeronasal system. The combined analysis of morphological data, behavioral data, and gene repertoires suggests that nocturnal mammals tend to possess more species-specific chemoreceptor genes and more complicated olfactory organs than diurnal mammals. Moreover, analysis of evolutionary forces revealed the existence of positive selection on the species-specific genes, likely reflecting the species-specific detection of odors and pheromones. Taken together, these results reflect a rare case of adaptation to circadian rhythm activity at the genome scale, and strongly suggest that the complexity of morphological olfactory organs and the diversification of nasal chemoreceptors in nocturnal mammals are under selection for the ability to perceive the variety of odors that nocturnal mammals may encounter in their particular dark environments.  相似文献   

17.
Mosaic evolution of brain structure in mammals   总被引:6,自引:0,他引:6  
Barton RA  Harvey PH 《Nature》2000,405(6790):1055-1058
The mammalian brain comprises a number of functionally distinct systems. It might therefore be expected that natural selection on particular behavioural capacities would have caused size changes selectively, in the systems mediating those capacities. It has been claimed, however, that developmental constraints limited such mosaic evolution, causing co-ordinated size change among individual brain components. Here we analyse comparative data to demonstrate that mosaic change has been an important factor in brain structure evolution. First, the neocortex shows about a fivefold difference in volume between primates and insectivores even after accounting for its scaling relationship with the rest of the brain. Second, brain structures with major anatomical and functional links evolved together independently of evolutionary change in other structures. This is true at the level of both basic brain subdivisions and more fine-grained functional systems. Hence, brain evolution in these groups involved complex relationships among individual brain components.  相似文献   

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Yen HL  Peiris JS 《Nature》2012,486(7403):332-333
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20.
New neurohypophysial principle in foetal mammals   总被引:3,自引:0,他引:3  
E Vizsolyi  A M Perks 《Nature》1969,223(5211):1169-1171
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