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31.
Cells of Escherichia coli will reduce sodium selenite to elemental selenium. Examination by electron microscopy of E. coli cultures grown in the presence of sodium selenite show selenium deposited on the cell membrane and cell wall but not in the cytoplasm. 相似文献
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The Rift Valley fever virus is responsible for periodic, explosive epizootics throughout sub-Saharan Africa. The development of therapeutics targeting this virus is difficult due to a limited understanding of the viral replicative cycle. Utilizing a virus-like particle system, we have established roles for each of the viral structural components in assembly, release, and virus infectivity. The envelope glycoprotein, Gn, was discovered to be necessary and sufficient for packaging of the genome, nucleocapsid protein and the RNA-dependent RNA polymerase into virus particles. Additionally, packaging of the genome was found to be necessary for the efficient release of particles, revealing a novel mechanism for the efficient generation of infectious virus. Our results identify possible conserved targets for development of anti-phlebovirus therapies. 相似文献
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AIMS: To investigate the ability of baker's yeast (Saccharomyces cerevisiae) to degrade the herbicide glyphosate during the fermentation cycle of the breadmaking process. METHODS AND RESULTS: Aqueous glyphosate was added to bread ingredients and kneaded by commercially available breadmaking equipment into dough cultures. Cultures were incubated in the breadmaker throughout the fermentation cycle. The recovery of glyphosate levels following fermentation was determined, thus allowing an estimation of glyphosate degradation by yeast. CONCLUSIONS: It was shown, for the first time, that S. cerevisiae plays a role in metabolizing glyphosate during the fermentation stages of breadmaking. Approximately 21% was degraded within 1 h. SIGNIFICANCE AND IMPACT OF THE STUDY: As a result of projected increases in the glyphosate use on wheat and the role of bread as a dietary staple, this may contribute to more informed decisions being made relating to the use of glyphosate on glyphosate-resistant wheat, from a public health/regulatory perspective. 相似文献
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The DNA sequence of chromosome I of an African trypanosome: gene content,chromosome organisation,recombination and polymorphism 总被引:9,自引:1,他引:9 下载免费PDF全文
Hall N Berriman M Lennard NJ Harris BR Hertz-Fowler C Bart-Delabesse EN Gerrard CS Atkin RJ Barron AJ Bowman S Bray-Allen SP Bringaud F Clark LN Corton CH Cronin A Davies R Doggett J Fraser A Grüter E Hall S Harper AD Kay MP Leech V Mayes R Price C Quail MA Rabbinowitsch E Reitter C Rutherford K Sasse J Sharp S Shownkeen R MacLeod A Taylor S Tweedie A Turner CM Tait A Gull K Barrell B Melville SE 《Nucleic acids research》2003,31(16):4864-4873
The African trypanosome, Trypanosoma brucei, causes sleeping sickness in humans in sub-Saharan Africa. Here we report the sequence and analysis of the 1.1 Mb chromosome I, which encodes approximately 400 predicted genes organised into directional clusters, of which more than 100 are located in the largest cluster of 250 kb. A 160-kb region consists primarily of three gene families of unknown function, one of which contains a hotspot for retroelement insertion. We also identify five novel gene families. Indeed, almost 20% of predicted genes are members of families. In some cases, tandemly arrayed genes are 99–100% identical, suggesting an active process of amplification and gene conversion. One end of the chromosome consists of a putative bloodstream-form variant surface glycoprotein (VSG) gene expression site that appears truncated and degenerate. The other chromosome end carries VSG and expression site-associated genes and pseudogenes over 50 kb of subtelomeric sequence where, unusually, the telomere-proximal VSG gene is oriented away from the telomere. Our analysis includes the cataloguing of minor genetic variations between the chromosome I homologues and an estimate of crossing-over frequency during genetic exchange. Genetic polymorphisms are exceptionally rare in sequences located within and around the strand-switches between several gene clusters. 相似文献
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Dating the origin of the CCR5-Delta32 AIDS-resistance allele by the coalescence of haplotypes. 总被引:12,自引:2,他引:12 下载免费PDF全文
J C Stephens D E Reich D B Goldstein H D Shin M W Smith M Carrington C Winkler G A Huttley R Allikmets L Schriml B Gerrard M Malasky M D Ramos S Morlot M Tzetis C Oddoux F S di Giovine G Nasioulas D Chandler M Aseev M Hanson L Kalaydjieva D Glavac P Gasparini E Kanavakis M Claustres M Kambouris H Ostrer G Duff V Baranov H Sibul A Metspalu D Goldman N Martin D Duffy J Schmidtke X Estivill S J O'Brien M Dean 《American journal of human genetics》1998,62(6):1507-1515
The CCR5-Delta32 deletion obliterates the CCR5 chemokine and the human immunodeficiency virus (HIV)-1 coreceptor on lymphoid cells, leading to strong resistance against HIV-1 infection and AIDS. A genotype survey of 4,166 individuals revealed a cline of CCR5-Delta32 allele frequencies of 0%-14% across Eurasia, whereas the variant is absent among native African, American Indian, and East Asian ethnic groups. Haplotype analysis of 192 Caucasian chromosomes revealed strong linkage disequilibrium between CCR5 and two microsatellite loci. By use of coalescence theory to interpret modern haplotype genealogy, we estimate the origin of the CCR5-Delta32-containing ancestral haplotype to be approximately 700 years ago, with an estimated range of 275-1,875 years. The geographic cline of CCR5-Delta32 frequencies and its recent emergence are consistent with a historic strong selective event (e.g. , an epidemic of a pathogen that, like HIV-1, utilizes CCR5), driving its frequency upward in ancestral Caucasian populations. 相似文献