16 research outputs found

    The phylogenetic composition and structure of soil microbial communities shifts in response to elevated carbon dioxide

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    http://www.nature.com/ismej/journal/v6/n2/full/ismej201199a.htmlOne of the major factors associated with global change is the ever-increasing concentration of atmospheric CO2. Although the stimulating effects of elevated CO2 (eCO2) on plant growth and primary productivity have been established, its impacts on the diversity and function of soil microbial communities are poorly understood. In this study, phylogenetic microarrays (PhyloChip) were used to comprehensively survey the richness, composition and structure of soil microbial communities in a grassland experiment subjected to two CO2 conditions (ambient, 368 p.p.m., versus elevated, 560 p.p.m.) for 10 years. The richness based on the detected number of operational taxonomic units (OTUs) significantly decreased under eCO2. PhyloChip detected 2269 OTUs derived from 45 phyla (including two from Archaea), 55 classes, 99 orders, 164 families and 190 subfamilies. Also, the signal intensity of five phyla (Crenarchaeota, Chloroflexi, OP10, OP9/JS1, Verrucomicrobia) significantly decreased at eCO2, and such significant effects of eCO2 on microbial composition were also observed at the class or lower taxonomic levels for most abundant phyla, such as Proteobacteria, Firmicutes, Actinobacteria, Bacteroidetes and Acidobacteria, suggesting a shift in microbial community composition at eCO2. Additionally, statistical analyses showed that the overall taxonomic structure of soil microbial communities was altered at eCO2. Mantel tests indicated that such changes in species richness, composition and structure of soil microbial communities were closely correlated with soil and plant properties. This study provides insights into our understanding of shifts in the richness, composition and structure of soil microbial communities under eCO2 and environmental factors shaping the microbial community structure

    Mechanisms employed by retroviruses to exploit host factors for translational control of a complicated proteome

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    Gangs, Migration and Crime; The changing landscape in Europe and the United States

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    The history of gangs is intertwined with migration. In America, a number of classic studies have reported on the possible causal link between immigration, socio-economic position, social disorganization, and gang formation. More recently in Europe, the impact of migration on gangs reflects a complex mix of factors that also includes cultural and media influences. In addition, there are other contextual factors such as immigration and population movement that have received less attention, yet condition the relationship between structural factors and the formation of gangs. Processes such as immigration, migration, and resettlement have had an important impact on the transmission of gangs on an international, national, and local scale, often enhanced by the impact of immigration. This article examines the relationship between immigration, culture, and gangs and contrasts European and US research

    The familyHerpesviridae: an update

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