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141.
Growth of the bacterial cell   总被引:56,自引:0,他引:56  
W D Donachie  K J Begg 《Nature》1970,227(5264):1220-1224
  相似文献   
142.
S M Stack  W V Brown 《Nature》1969,222(5200):1275-1276
  相似文献   
143.
RNA-DNA hybrids at the cytological level   总被引:37,自引:0,他引:37  
H A John  M L Birnstiel  K W Jones 《Nature》1969,223(5206):582-587
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144.
RNA synthesis during early development of the mouse   总被引:5,自引:0,他引:5  
H R Woodland  C F Graham 《Nature》1969,221(5178):327-332
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145.
Hominoid tali from East Africa   总被引:1,自引:0,他引:1  
M H Day  B A Wood 《Nature》1969,222(5193):591-592
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146.
Genetics of the alkaline phosphatase polymorphism of the human placenta   总被引:27,自引:0,他引:27  
E B Robson  H Harris 《Nature》1965,207(5003):1257-1259
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147.
W W Douglas  A M Poisner 《Nature》1965,208(5015):1102-1103
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148.
A deficiency of the homeotic complex of the beetle Tribolium   总被引:10,自引:0,他引:10  
Stuart JJ  Brown SJ  Beeman RW  Denell RE 《Nature》1991,350(6313):72-74
In Drosophila, the establishment of regional commitments along most of the anterior/posterior axis of the developing embryo depends on two clusters of homeotic genes: the Antennapedia complex (ANT-C) and the bithorax complex (BX-C). The red flour beetle has a single complex (HOM-C) representing the homologues of the ANT-C and BX-C in juxtaposition. Beetles trans-heterozygous for two particular HOM-C mutations spontaneously generate a large deficiency, presumably by an exchange within the common region of two overlapping inversions. Genetic and molecular results indicate that this deficiency spans at least the interval between the Deformed and abdominal-A homologues. In deficiency homozygous embryos, all gnathal, thoracic and abdominal segments develop antennal appendages, suggesting that a gene(s) has been deleted that acts to distinguish trunk from head. There is no evidence that beetles have a homologue of the segmentation gene fushi tarazu of similar genomic location and function. On the basis of the genetic tractability, convenient genome size and organization of Tribolium, and its relatively long phylogenetic divergence from Drosophila (>300 million years), we have integrated developmental genetic and molecular analyses of the HOM-C. We isolated about 70 mutations in the complex representing at least six complementation groups. The homeotic phenotypes of adults and lethal embryos lead us to believe that these beetle genes are homologous with the Drosophila genes indicated in Fig. 1 (see text).  相似文献   
149.
Evolutionary distinctiveness of the endangered Kemp's ridley sea turtle   总被引:5,自引:0,他引:5  
B W Bowen  A B Meylan  J C Avise 《Nature》1991,352(6337):709-711
The endangered Kemp's ridley sea turtle (Lepidochelys kempi) nests almost exclusively at a single locality in the western Gulf of Mexico, whereas the olive ridley (L. olivacea) nests globally in warm oceans. Morphological similarities between kempi and olivacea, and a geographical distribution that "...makes no sense at all under modern conditions of climate and geography", raise questions about the degree of evolutionary divergence between these taxa. Analysis of mitochondrial (mt) DNA restriction sites shows that Kemp's ridley is distinct from the olive ridley in matriarchal phylogeny, and that the two are sister taxa with respect to other marine turtles. Separation of olive and the Kemp's ridley lineages may date to formation of the Isthmus of Panama, whereas the global spread of the olive ridley lineage occurred recently. In contrast to recent examples in which molecular genetic assessments challenged systematic assignments underlying conservation programmes, our mtDNA data corroborate the taxonomy of an endangered form.  相似文献   
150.
Animals have evolved a detoxication system to enable them to survive in a hostile chemical environment in which foods contain many non-nutrient chemicals. Detoxication depends on enzymes which are often genetically polymorphic. As a result, inter-individual variation is common, and in humans several Mendelian loci have been identified. However, most variation in response is probably due to the action of several genes. Genetic variation in response to the neurotoxin MPTP and to chemically and physically-induced seizures is reviewed. In the former case, differences between pigmented and white mouse strains have been noted which are consistent with the hypothesis that humans are more sensitive than mice or rats because of the presence of melanin in human brains. However, variation in sensitivity probably also depends on other genes. In the case of audiogenic seizures, a single locus has been identified and mapped, but its relationship with seizures induced by other agents is not clear. Genetic variation in response to alcohol is also discussed. The failure of most toxicologists to consider genetic variation as a potentially confounding variable, and as a powerful research tool, is discussed critically in relation to non-repeatability of research on the neurotoxic effects of lead, and in relation to the genetic variation in MPTP, seizures, and alcohol response already noted. It seems clear that genetic methods provide a powerful research tool which is largely being ignored by toxicologists.  相似文献   
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