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Extinction risk from climate change 总被引:20,自引:0,他引:20
Thomas CD Cameron A Green RE Bakkenes M Beaumont LJ Collingham YC Erasmus BF De Siqueira MF Grainger A Hannah L Hughes L Huntley B Van Jaarsveld AS Midgley GF Miles L Ortega-Huerta MA Peterson AT Phillips OL Williams SE 《Nature》2004,427(6970):145-148
Climate change over the past approximately 30 years has produced numerous shifts in the distributions and abundances of species and has been implicated in one species-level extinction. Using projections of species' distributions for future climate scenarios, we assess extinction risks for sample regions that cover some 20% of the Earth's terrestrial surface. Exploring three approaches in which the estimated probability of extinction shows a power-law relationship with geographical range size, we predict, on the basis of mid-range climate-warming scenarios for 2050, that 15-37% of species in our sample of regions and taxa will be 'committed to extinction'. When the average of the three methods and two dispersal scenarios is taken, minimal climate-warming scenarios produce lower projections of species committed to extinction ( approximately 18%) than mid-range ( approximately 24%) and maximum-change ( approximately 35%) scenarios. These estimates show the importance of rapid implementation of technologies to decrease greenhouse gas emissions and strategies for carbon sequestration. 相似文献
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M G Peterson J Inostroza M E Maxon O Flores A Admon D Reinberg R Tjian 《Nature》1991,354(6352):369-373
136.
Structural and crystallographic observations on hagfish insulin 总被引:1,自引:0,他引:1
137.
Isolation of a cDNA clone coding for an SB beta-chain 总被引:1,自引:0,他引:1
Class II antigens of the major histocompatibility complex (MHC) consist of a family of closely related cell surface-expressed glycoproteins. These antigens, which are genetically polymorphic, control important aspects of the immune response. At least three types of human class II antigens, namely, DR, DC and SB (refs 2-4), have been identified. All class II antigens are heterodimers composed of one alpha- and one beta-chain. The genes for both types of subunits are encompassed within the MHC. The general features of the DC and DR antigens have recently been elucidated. Much less is known, however, about the SB molecules. Here we describe the isolation of a cDNA clone as well as a genomic clone encoding a beta-chain whose amino acid sequence is compatible with the partial amino-terminal sequence of SB beta-chains. 相似文献
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Stream denitrification across biomes and its response to anthropogenic nitrate loading 总被引:11,自引:0,他引:11
Mulholland PJ Helton AM Poole GC Hall RO Hamilton SK Peterson BJ Tank JL Ashkenas LR Cooper LW Dahm CN Dodds WK Findlay SE Gregory SV Grimm NB Johnson SL McDowell WH Meyer JL Valett HM Webster JR Arango CP Beaulieu JJ Bernot MJ Burgin AJ Crenshaw CL Johnson LT Niederlehner BR O'Brien JM Potter JD Sheibley RW Sobota DJ Thomas SM 《Nature》2008,452(7184):202-205
Anthropogenic addition of bioavailable nitrogen to the biosphere is increasing and terrestrial ecosystems are becoming increasingly nitrogen-saturated, causing more bioavailable nitrogen to enter groundwater and surface waters. Large-scale nitrogen budgets show that an average of about 20-25 per cent of the nitrogen added to the biosphere is exported from rivers to the ocean or inland basins, indicating that substantial sinks for nitrogen must exist in the landscape. Streams and rivers may themselves be important sinks for bioavailable nitrogen owing to their hydrological connections with terrestrial systems, high rates of biological activity, and streambed sediment environments that favour microbial denitrification. Here we present data from nitrogen stable isotope tracer experiments across 72 streams and 8 regions representing several biomes. We show that total biotic uptake and denitrification of nitrate increase with stream nitrate concentration, but that the efficiency of biotic uptake and denitrification declines as concentration increases, reducing the proportion of in-stream nitrate that is removed from transport. Our data suggest that the total uptake of nitrate is related to ecosystem photosynthesis and that denitrification is related to ecosystem respiration. In addition, we use a stream network model to demonstrate that excess nitrate in streams elicits a disproportionate increase in the fraction of nitrate that is exported to receiving waters and reduces the relative role of small versus large streams as nitrate sinks. 相似文献