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SYNOPSIS. Growth of Ochromonas danica is competitively inhibited by ethionine. Inhibition can be reversed by methionine. Inhibition indexes of the effect of ethionine on growth and methionine incorporation into proteins are 1 and 4, respectively. Inside the cell, methionine is partially de-methylated and metabolized to form cysteine. Ethionine is partially de-ethylated, and the homocysteine moiety is either re-methylated to form methionine or further metabolized to form cysteine. Ethionine is also incorporated into proteins of O. danica. The kind of metabolic interference, expressed by inhibition of growth, and correlated with incorporation of ethionine, is yet unknown.  相似文献   
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SYNOPSIS. Ethionine or methionine can serve as sole nitrogen source for growth of Prymnesium parvum. Both amino acids are taken up as such at a ratio of 2 : 1 methionine/ethionine. Ethionine is totally de-ethylated in the cell, while methionine is probably only partially de-methylated. The homocysteine moiety of both amino acids is similarly metabolised to form cysteine or re-methylated to form methionine. De-ethylation of ethionine seems how P. parvum avoids its antimetabolic effect  相似文献   
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Aminoacyl-tRNA synthetase and tRNA were isolated from the chrysomonad Ochromonas danica. The mutual effect of methionine and ethionine, and the effect of other amino acids on methionyl- and ethionyl-tRNA formation, were tested in an in vitro system. The tRNAMet had a similar accepting capacity for either methionine or ethionine. Ethionine and methionine, but none of the other amino acids tested, competed for the same aminoacyl-tRNA synthetase. The Km of methionine was 0.88 × 10–5 M, and that of ethionine 5 × 10–4 M. Ethionine inhibited methionine binding; Ki 3.4 × 10–4 M. The respective values in a similar system isolated from E. coli were 2.2 × 10–5, 1.95 × 10–3, and 1.95 × 10–3.  相似文献   
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A sharper Bonferroni procedure for multiple tests of significance   总被引:62,自引:0,他引:62  
HOCHBERG  YOSEF 《Biometrika》1988,75(4):800-802
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Many genetic changes that ultimately lead to adaptive evolution come with a short‐term cost expressed in terms of reduced survival and reproduction. In the absence of genetic drift, it is unclear how such costly mutations may persist. Here we experimentally demonstrate that parasites can promote the persistence of costly genetic variants. We employed a genetically engineered strain (GMMO) of the bacterium Pseudomonas fluorescens as a model of the acquisition of a new gene either through a major mutation or through horizontal transfer, and examined its persistence in different evolving communities comprising an ancestral strain and a lytic bacteriophage. Whereas competition resulted in the elimination of the GMMO, inclusion of the phage promoted GMMO persistence. We provide evidence for why this effect is due to the differential susceptibility of GMMO and ancestral bacteria to phage.  相似文献   
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Deep-water trawl surveys on seamounts around New Caledonia yielded62 specimens of the little-known genus, Scaeurgus. Members ofthis genus of octopuses typically occur at depths of 200–500m in temperate and tropical latitudes worldwide. Prior to thisstudy, Scaeurgus was considered to contain one to two species.The new material from New Caledonia contained a surprising diversityof Scaeurgus species from a small area: three distinct new speciesare described and limited material of a further two taxa isreported. A pygmy member of this genus is reported for the firsttime. Distributions of these new taxa are consistent with reportsof high endemism on the seamount systems in this region. Fifty-eightof the 62 specimens were collected from seamounts, with fourof the five taxa unique to a single seamount. (Received 12 January 2004; accepted 28 January 2005)  相似文献   
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