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Progress on research and mitigation of wind-blown sand risk in Dunhuang Singing Sand Mountain and Crescent Spring Scenic area,China 被引量:1
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作者 BenLi Liu KeCun Zhang +6 位作者 JianJun Qu HaiJiang Li QingHe Niu ZhiShan An YingJun Pang LiHai Tan gensheng yang 《Research in Cold and Arid Regions》 CSCD 2023年第3期113-121,共9页
The Singing Sand Mountain and Crescent Spring Scenic Spot in Dunhuang,Northwest China is a world-renowned desert attraction that is also an integral component of the Dunhuang UNESCO Global Geopark.This scenic area und... The Singing Sand Mountain and Crescent Spring Scenic Spot in Dunhuang,Northwest China is a world-renowned desert attraction that is also an integral component of the Dunhuang UNESCO Global Geopark.This scenic area underwent a 30-year transformation,i.e.,from a severe sand risk with spring water threatened by sand burial due to dune deformation,to restoration of the original sand flow field and mitigation of the sand burial problem.The current paper summarizes the research on the intensive monitoring of the dynamic change of star dunes near the spring,observation of wind and sand flow movement,and then restoring the harmonic vibration of the sand particles(singing sand)that were previously silenced.The existing and prospective impacts of anthropogenic and natural forces on the deformation of the sand dunes are investigated by integrated methods,guiding the implementation of mitigating measures with significant ameliorative effects.Contrast to common sand control practices that aim to reduce wind speed and stop blown sands,our research highlights the importance of maintaining the natural wind flow field in stabilizing surrounding dunes.These mitigation measures consist of removing excessive vegetation and newly constructed buildings to recover the original wind flow field and sand transport activity.Such research and mitigation efforts ensure the scientific protection and restoration of the special desert landform,and contribute to the mutual enhancement of the conservation and exploitation of this desert scenic spot and similar sites. 展开更多
关键词 Singing Sand Mountain Crescent Spring Wind-blown sand problem Wind flow field Star dune
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超声处理对PRC2相关蛋白染色质免疫共沉淀测序结果的影响
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作者 杨根生 焦芳芳 +1 位作者 吕瑞途 郭睿 《生物工程学报》 CAS CSCD 北大核心 2020年第2期341-352,共12页
超声处理是染色质免疫共沉淀(Chromatin immunoprecipitation,Ch IP)实验过程中染色质片段化的重要手段之一。选用多梳抑制复合物2 (Polycomb repressive complex 2,PRC2)相关蛋白组蛋白甲基转移酶EZH2及其催化产物H3K27me3为代表,研究... 超声处理是染色质免疫共沉淀(Chromatin immunoprecipitation,Ch IP)实验过程中染色质片段化的重要手段之一。选用多梳抑制复合物2 (Polycomb repressive complex 2,PRC2)相关蛋白组蛋白甲基转移酶EZH2及其催化产物H3K27me3为代表,研究不同分子量大小的蛋白在不同超声处理时间下对染色质免疫共沉淀测序(Chromatin immunoprecipitation sequencing,Ch IP-seq)实验的影响,结果表明在启动子区或非启动子区,不同超声时间下小分子量组蛋白H3K27me3结合位点的注释基因均无明显差异,说明超声时间对组蛋白Ch IP-seq数据影响不大。与组蛋白不同,超声时间从10 min延长至20 min后启动子区EZH2新增结合位点的注释基因能够显著聚类在与肌动蛋白丝组装等相关通路上。超声20min相比10min,非启动子区EZH2新增基因的GO(Gene ontology)聚类通路要远多于丢失基因,且超声30 min相比20 min,非启动子区丢失基因的GO聚类通路要远多于新增基因,这些通路大多与RNA聚合酶Ⅱ(RNApolymeraseⅡ,RNAPII)、器官发育、细胞形态发生相关。这表明超声时间不足或过长均会导致EZH2的基因组定位信息的不全。另外,超声主要影响启动子区中的PRC2非结合区域及二价启动子区域的EZH2结合位点,还影响非启动子区中PRC2结合区域、PRC2不结合区域以及活化态增强子区域的EZH2结合位点。综上,建议对大分子量的染色质修饰相关蛋白优化超声处理时间,使形成的染色质片段聚集在100–500 bp可获得比较全面的基因组信息。对小分子量的组蛋白来说,超声时间对Ch IP-seq结果影响不大。 展开更多
关键词 超声时间 染色质片段化 EZH2 PRC2 启动子 增强子
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