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2篇 您的检索式:作者名="Mostofa MG"
    题名 作者 年代 出处 被引量
1妊娠期基因-环境相互作用与母体砷甲基化效率显示文摘单核昔酸多态性(SNPs)主要是指在基因组水平上由单个核昔酸的变异所引起的DNA序列多态性,是人类可遗传的变异中最常见的一种,占所有已知多态性的80%以上。有研究表明,SNPs可能通过影响砷的甲基化效干扰砷代谢。而环境与基因的交互作用是否会影响孕期砷代谢目前尚不明确,因此,本研究分析SNP-砷的交互作用对砷甲基化效率的影响。Gao S Mostofa MG Quamruzzaman Q 李园园(编译) 2019中华预防医学杂志2019,53,5:2
2Potential impacts of climate and anthropogenic-induced changes on DOM dynamics among the major Chinese rivers显示文摘Dissolved organic matter (DOM) is closely linked to human activities in drainage basins and plays a crucial role in maintaining ecosystem functioning and reflecting environmental quality. However, the impacts of climate and anthropogenic-induced changes on DOM in riverine systems under increasingly warming conditions still need to be better understood, particularly at large regional scales. To address this knowledge gap, we analyzed a dataset containing 386 published measurements for nine major Chinese river systems, examining dissolved organic carbon (DOC) concentrations and optical properties of chromophoric DOM (CDOM) under diverse envi- ronmental conditions, including mean air temperature, precipitation, surface solar radiation, population density, and land use. Our findings indicate that riverine DOC concentrations are significantly higher in northern China (at ∼46.8%) than in the south. This disparity is primarily due to the high input of soil erosion-induced DOM from drying-affected lands (57.0%), farmland (49.1%), and forests in the north. The high temperate and strong hydrological conditions would lead to DOM degradation easily in the riverine system in the south of China. Our study highlights that various climatic and anthropogenic factors, such as agriculture, vegetation coverage, soil erosion, surface solar radiation, and precipitation, individually or in combination, can affect DOM dynamics in river systems. Therefore, considering alterations in DOM dynamics resulting from climate and environmental changes is crucial for carbon-neutral policies and sustainable river ecosystem assessments.Si-Liang Li Hao Zhang Yuanbi Yi Yutong Zhang Yulin Qi Khan MG Mostofa Laodong Guo Ding He Pingqing Fu Cong-Qiang Liu 2023Geography and Sustainability2023,4,4:0
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