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471.
Seismic reflection images of the Moho underlying melt sills at the East Pacific Rise 总被引:1,自引:0,他引:1
Singh SC Harding AJ Kent GM Sinha MC Combier V Bazin S Tong CH Pye JW Barton PJ Hobbs RW White RS Orcutt JA 《Nature》2006,442(7100):287-290
The determination of melt distribution in the crust and the nature of the crust-mantle boundary (the 'Moho') is fundamental to the understanding of crustal accretion processes at oceanic spreading centres. Upper-crustal magma chambers have been imaged beneath fast- and intermediate-spreading centres but it has been difficult to image structures beneath these magma sills. Using three-dimensional seismic reflection images, here we report the presence of Moho reflections beneath a crustal magma chamber at the 9 degrees 03' N overlapping spreading centre, East Pacific Rise. Our observations highlight the formation of the Moho at zero-aged crust. Over a distance of less than 7 km along the ridge crest, a rapid increase in two-way travel time of seismic waves between the magma chamber and Moho reflections is observed, which we suggest is due to a melt anomaly in the lower crust. The amplitude versus offset variation of reflections from the magma chamber shows a coincident region of higher melt fraction overlying this anomalous region, supporting the conclusion of additional melt at depth. 相似文献
472.
Kidd JM Cooper GM Donahue WF Hayden HS Sampas N Graves T Hansen N Teague B Alkan C Antonacci F Haugen E Zerr T Yamada NA Tsang P Newman TL Tüzün E Cheng Z Ebling HM Tusneem N David R Gillett W Phelps KA Weaver M Saranga D Brand A Tao W Gustafson E McKernan K Chen L Malig M Smith JD Korn JM McCarroll SA Altshuler DA Peiffer DA Dorschner M Stamatoyannopoulos J Schwartz D Nickerson DA Mullikin JC Wilson RK Bruhn L Olson MV Kaul R Smith DR Eichler EE 《Nature》2008,453(7191):56-64
Genetic variation among individual humans occurs on many different scales, ranging from gross alterations in the human karyotype to single nucleotide changes. Here we explore variation on an intermediate scale--particularly insertions, deletions and inversions affecting from a few thousand to a few million base pairs. We employed a clone-based method to interrogate this intermediate structural variation in eight individuals of diverse geographic ancestry. Our analysis provides a comprehensive overview of the normal pattern of structural variation present in these genomes, refining the location of 1,695 structural variants. We find that 50% were seen in more than one individual and that nearly half lay outside regions of the genome previously described as structurally variant. We discover 525 new insertion sequences that are not present in the human reference genome and show that many of these are variable in copy number between individuals. Complete sequencing of 261 structural variants reveals considerable locus complexity and provides insights into the different mutational processes that have shaped the human genome. These data provide the first high-resolution sequence map of human structural variation--a standard for genotyping platforms and a prelude to future individual genome sequencing projects. 相似文献
473.
Contribution of anthropogenic and natural sources to atmospheric methane variability 总被引:5,自引:0,他引:5
Bousquet P Ciais P Miller JB Dlugokencky EJ Hauglustaine DA Prigent C Van der Werf GR Peylin P Brunke EG Carouge C Langenfelds RL Lathière J Papa F Ramonet M Schmidt M Steele LP Tyler SC White J 《Nature》2006,443(7110):439-443
Methane is an important greenhouse gas, and its atmospheric concentration has nearly tripled since pre-industrial times. The growth rate of atmospheric methane is determined by the balance between surface emissions and photochemical destruction by the hydroxyl radical, the major atmospheric oxidant. Remarkably, this growth rate has decreased markedly since the early 1990s, and the level of methane has remained relatively constant since 1999, leading to a downward revision of its projected influence on global temperatures. Large fluctuations in the growth rate of atmospheric methane are also observed from one year to the next, but their causes remain uncertain. Here we quantify the processes that controlled variations in methane emissions between 1984 and 2003 using an inversion model of atmospheric transport and chemistry. Our results indicate that wetland emissions dominated the inter-annual variability of methane sources, whereas fire emissions played a smaller role, except during the 1997-1998 El Ni?o event. These top-down estimates of changes in wetland and fire emissions are in good agreement with independent estimates based on remote sensing information and biogeochemical models. On longer timescales, our results show that the decrease in atmospheric methane growth during the 1990s was caused by a decline in anthropogenic emissions. Since 1999, however, they indicate that anthropogenic emissions of methane have risen again. The effect of this increase on the growth rate of atmospheric methane has been masked by a coincident decrease in wetland emissions, but atmospheric methane levels may increase in the near future if wetland emissions return to their mean 1990s levels. 相似文献