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The Caribbean basin is home to some of the most complex interactions in recent history among previously diverged human populations. Here, we investigate the population genetic history of this region by characterizing patterns of genome-wide variation among 330 individuals from three of the Greater Antilles (Cuba, Puerto Rico, Hispaniola), two mainland (Honduras, Colombia), and three Native South American (Yukpa, Bari, and Warao) populations. We combine these data with a unique database of genomic variation in over 3,000 individuals from diverse European, African, and Native American populations. We use local ancestry inference and tract length distributions to test different demographic scenarios for the pre- and post-colonial history of the region. We develop a novel ancestry-specific PCA (ASPCA) method to reconstruct the sub-continental origin of Native American, European, and African haplotypes from admixed genomes. We find that the most likely source of the indigenous ancestry in Caribbean islanders is a Native South American component shared among inland Amazonian tribes, Central America, and the Yucatan peninsula, suggesting extensive gene flow across the Caribbean in pre-Columbian times. We find evidence of two pulses of African migration. The first pulse—which today is reflected by shorter, older ancestry tracts—consists of a genetic component more similar to coastal West African regions involved in early stages of the trans-Atlantic slave trade. The second pulse—reflected by longer, younger tracts—is more similar to present-day West-Central African populations, supporting historical records of later transatlantic deportation. Surprisingly, we also identify a Latino-specific European component that has significantly diverged from its parental Iberian source populations, presumably as a result of small European founder population size. We demonstrate that the ancestral components in admixed genomes can be traced back to distinct sub-continental source populations with far greater resolution than previously thought, even when limited pre-Columbian Caribbean haplotypes have survived.  相似文献   
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The Lewis bases triphenyl phosphine and tricyclohexyl phosphine (L) displace [60]fullerene (C60) from fac-(η2-C60)(η2-phen)W(CO)3 (phen=1,10-phenanthroline) to produce fac-(η2-phen)(η1-L)W(CO)3. Under flooding conditions, the reactions were first order with respect to fac-(η2-C60)(η2-phen)W(CO)3. The order with respect to C60 and L depends on the reaction conditions i.e., whether [C60]/[L] ≈ 0 or 0?It [C60]/[L] ≈ 1. Two limiting cases of an interchange displacement of [60]fullerene from fac-(η2-C60)(η2-phen)W(CO)3, whose relative contributions to the overall mechanism depend on the nature of the solvent, are proposed based on the rate law and on the activation parameters. The mechanism involves an initial [60]fullerene dissociation to produce (i) the electronically unsaturated intermediate (η2-phen)W(CO)3 for the dissociative displacement and (ii) the solvated intermediate fac-(solvent)(η2-phen)W(CO)3 for the solvent-assisted [60]fullerene dissociation. The W-C60 bond energy in fac-(η2-C60)(η2-phen)W(CO)3 was estimated to be in the vicinity of 105 kJ/mol based on the enthalpy of activation of the step where presumably [60]fullerene dissociates from fac-(η2-C60)(η2-phen)W(CO)3 to produce (η2-phen)W(CO)3.  相似文献   
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