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Summary The effects of restricted feeding schedules on the circadian rhythms of wheel-running of Dasyurus viverrinus were examined under a light/dark cycle and in constant darkness (experiment 1) and in constant light (experiment 2). The results of the 2 experiments showed that: (1) in contrast to the light/dark cycle, restricted feeding is only a weak zeitgeber for the wheel-running activity rhythms of D. viverrinus; (2) restricted feeding elicits meal anticipatory activity in D. viverrinus comparable to that elicited by restricted feeding in the rat; (3) transient cycles of the anticipatory activity free-run with a period different to that of the main component of activity for several cycles after the termination of restricted feeding; and (4) activity suggestive of beating between 2 oscillators occurs during restricted feeding and after the termination of restricted feeding. Taken together the latter 3 observations suggest that the activity rhythms of D. viverrinus are controlled by at least 2 separate circadian oscillators.  相似文献   
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Competent Bacillus subtilis cells were exposed to radioactive and density labeled donor DNA extracted from B. pumilus and B. licheniformis. The DNA from these strains hybridized with B. subtilis DNA in vitro at a rate of 24% and 11%, respectively. After entry the vast majority of heterologous DNA was found at the single-strand DNA position in CsCl gradients, and was gradually degraded during incubation. Much less donor DNA than expected from the hybridization values participated in the formation of the donorrecipient complex (DRC). By subjecting the heterologous DRC to sonication and alkaline CsCl gradient centrifugation, it was established that the DRC consisted of three components: (1) recipient DNA in which breakdown products of donor DNA were incorporated through DNA synthesis, (2) recipient DNA in which donor DNA was covalently integrated and (3) recipient DNA in which the donor moiety was not covalently integrated.  相似文献   
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Hybrids between Papio anubis and P. cynocephalus occur in nature. We have studied laboratory bred hybrids, together with their backcrossed offspring. Electrophoretic experiments on the proteins, serum enzymes and erythrocytes obtained from both hybrids and parents lead to three conclusions. First, both parents and hybrids possess proteins having identical mobilities; this case is the most frequent in the 23 loci studied. Second, individual polymorphism caused by, for example, carbonic anhydrase I or transferrin in one or both parents results in the appearance of a codominant phenotype in the hybrid, when the parental components are distinguishable. Third, when other enzymes such as albumin, alkaline phosphatase, haemoglobin and the serum esterases have particular electrophoretic mobilities in the parents, then the hybrid is again codominant; a particularly interesting case among the esterases is that of pseudocholinesterase, where the paternal component is partially repressed in the hybrid. The hybrid than exhibits the phenomenon of allelic repression of at least one gene, which confirms the taxonomic position of species of the two forms of Papio studied.  相似文献   
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Our previous assignment of the gene loci HBB, HRAS1, INS, PTH, LDHA, and CAT to owl monkey chromosome 19 of karyotype VI (K-VI) indicated a putative homology of this owl monkey chromosome with the short arm of human chromosome 11 (HSA 11p). To investigate further the extent of shared homology, we localized in the owl monkey complement two genes known to be on HSA 11q. Segregation analysis of ETS1 and THY1 homologous DNA in three karyotypically different panels of rodent x owl monkey somatic cell hybrids provided evidence for the syntenic assignment of these loci to homologous chromosomes of three owl monkey karyotypes, namely, chromosomes 4 (K-VI), 3 (K-II), and 5 (K-V). The results indicate a disruption of syntenic gene loci on the distal portion of HSA 11q from 11p during primate evolution.  相似文献   
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Summary Aggressive interactions among reef corals involving direct interference through extracoelenteric digestion has previously been considered as a potential mechanism for the maintenance of high species diversity. In this report I show that induced development of sweeper tentacles can reverse initial digestive interactions. In the eastern Pacific these reversals contribute to resource monopolization by fast growing pocilloporid corals. This suggests that other mechanisms must account for the maintenance of local species diversity.  相似文献   
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