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2001—2014年中国植被净初级生产力时空变化及其与气象因素的关系 被引量:63
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作者 刘刚 孙睿 +1 位作者 肖志强 崔天翔 《生态学报》 CAS CSCD 北大核心 2017年第15期4936-4945,共10页
植被净初级生产力(NPP)是表征植被活动的关键变量,对于评估生态系统承载力,理解陆地生态系统碳循环有着重要意义。以全球陆表特征数据集(GLASS)为基础,对2001—2014年中国植被NPP进行了估算。在此基础上,利用一元线性回归、经验正交分解... 植被净初级生产力(NPP)是表征植被活动的关键变量,对于评估生态系统承载力,理解陆地生态系统碳循环有着重要意义。以全球陆表特征数据集(GLASS)为基础,对2001—2014年中国植被NPP进行了估算。在此基础上,利用一元线性回归、经验正交分解(EOF)分析了我国植被NPP时空变化,利用逐象元相关性分析、奇异值分解(SVD)两种方法分析了我国植被NPP与温度、降雨量的相关性。结果表明:(1)我国植被NPP空间上基本呈由东南向西北递减的分布趋势,主要是由于植被分布和气候条件决定的。研究期间我国植被NPP呈波动增加趋势,总量在3.02—3.49PgC/a之间,平均约为3.25 PgC/a。(2)一元线性回归与EOF分析结果较为一致,表明我国长江中下游、华北平原和东北长白山地区NPP呈减少趋势,而青藏高原、西北、内蒙古中部及东南沿海地区NPP呈增加趋势。(3)NPP与气象要素逐象元相关性分析表明,长白山、青藏高原及南方地区NPP与温度呈正相关,内蒙东部和西北地区NPP与降雨量呈正相关,东北、长江下游地区NPP与降雨量呈负相关。SVD分析结果与逐象元分析结果基本一致表明,NPP与温度、降雨量均存在明显相关性,长白山、内蒙古、青藏高原地区NPP与温度正相关,西北、内蒙中部地区NPP与降雨量呈正相关,长江下游、东北地区NPP与降雨量呈负相关。 展开更多
关键词 NPP 时空变化特征 气候因素 中国
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Interactive effects of elevation and land use on soil bacterial communities in the Tibetan Plateau 被引量:4
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作者 Yuanyuan YANG Yin ZHOU +5 位作者 Zhou SHI Raphael A.VISCARRA ROSSEL Zongzheng LIANG Haizhen WANG Lianqing ZHOU Wu YU 《Pedosphere》 SCIE CAS CSCD 2020年第6期817-831,共15页
The Tibetan Plateau of China is uniquely vulnerable to the global climate change and anthropogenic disturbances.As soil bacteria exert a considerable influence on the ecosystem function,understanding their response to... The Tibetan Plateau of China is uniquely vulnerable to the global climate change and anthropogenic disturbances.As soil bacteria exert a considerable influence on the ecosystem function,understanding their response to different climates and land-use types is important.Here,we characterized the bacterial community composition and diversity across three major ecosystems(cropland,forest,and grassland)in the Sygera Mountains of Tibet,along a typical elevational gradient(3300–4600 m).The abundance of taxa that preferentially inhabit neutral or weak alkaline soil environments(such as Actinobacteria,Thermoleophilia,and some non-acidophilus Acidobacteria)was significantly greater in the cropland than in the forest and grassland.Furthermore,the diversity of soil bacterial communities was also significantly greater in the cropland than in the forest and grassland.We observed a unimodal distribution of bacterial species diversity along the elevation gradient.The dominant phyla Acidobacteria and Proteobacteria exhibited consistent elevational distribution patterns that mirrored the abundance of their most abundant classes,while different patterns were observed for Acidobacteria and Proteobacteria at the class level.Soil pH was the primary edaphic property that regulated bacterial community composition across the different land-use types.Additionally,soil pH was the main factor distinguishing bacterial communities in managed soils(i.e.,cropland)from the communities in the natural environments(i.e.,forest and grassland).In conclusion,land use(particularly anthropogenic disturbances such as cropping)largely controlled soil environment,played a major role in driving bacterial community composition and distribution,and also surpassed climate in affecting bacterial community distribution. 展开更多
关键词 alpine ecosystem climate environmental controls PYROSEQUENCING soil microbe
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