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Impact of global sea surface temperature on the recent early winter Arctic tropospheric warming in coordinated large ensemble simulations
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作者 lutao wang Yongqi Gao +3 位作者 Dong Guo Tao wang Ying Zhang Wei Hua 《Atmospheric and Oceanic Science Letters》 CSCD 2021年第1期57-62,共6页
Coordinated numerical ensemble experiments with six different state-of-the-art atmosphere models were used to evaluate and quantify the impact of global SST(from reanalysis data)on the early winter Arctic warming duri... Coordinated numerical ensemble experiments with six different state-of-the-art atmosphere models were used to evaluate and quantify the impact of global SST(from reanalysis data)on the early winter Arctic warming during 1982-2014.Two sets of experiments were designed:in the first set(EXP1),OISSTv2 daily sea-ice concentration and SST variations were used as the lower boundary forcing,while in the second set(EXP2)the SST data were replaced by the daily SST climatology.In the results,the multi-model ensemble mean of EXP1 showed a nearsurface(~850 hPa)warming trend of 0.4℃/10 yr,which was 80%of the warming trend in the reanalysis.The simulated warming trend was robust across the six models,with a magnitude of 0.36-0.50℃/10 yr.The global SST could explain most of the simulated warming trend in EXP1 in the mid and low troposphere over the Arctic,and accounted for 58%of the simulated near-surface warming.The results also suggest that the uppertropospheric warming(~200 hPa)over the Arctic in the reanalysis is likely not a forced signal;rather,it is caused by natural climate variability.The source regions that can potentially impact the early winter Arctic warming are explored and the limitations of the study are discussed. 展开更多
关键词 Arctic warming Sea surface temperature Multi-model coordinated experiment Eliassen-Palm flux Planetary wave
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基因组学研究多药耐药鲍曼不动杆菌生物被膜的基因特征
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作者 李海涛 董超 +3 位作者 阎锡新 李帅 张鲁涛 王伯丽 《国际呼吸杂志》 2017年第12期948-952,共5页
目的 基因组学研究细菌生物被膜独特的存在方式和独特的基因表达特征。方法 选取多药耐药鲍曼不动杆菌菌株,研究同一菌株在不同生长状态、浮游细菌状态和生物被膜状态下,两个样本间基因组的表达差异;分析细菌生物被膜状态下独特的基因... 目的 基因组学研究细菌生物被膜独特的存在方式和独特的基因表达特征。方法 选取多药耐药鲍曼不动杆菌菌株,研究同一菌株在不同生长状态、浮游细菌状态和生物被膜状态下,两个样本间基因组的表达差异;分析细菌生物被膜状态下独特的基因表达。结果 我们发现,不同生长状态下两个样本间存在基因表达差异。相对于浮游状态菌,生物被膜菌株有198个基因出现表达差异; 其中106个基因表达上调,92个基因表达下调。结论 细菌生物被膜状态下的菌体,有着自己独特的基因和蛋白质表达。菌体生理生化特性、致病力和对药物敏感性都与浮游菌状态显著不同。这些表达差异的基因中,主要集中于外膜蛋白和调控因子相关基因的表达。 展开更多
关键词 基因组学研究 多药耐药鲍曼不动杆菌 生物被膜 基因特征
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