Long-term Trend and Variability of China's Arid Climate and Drought Area based on the Standardized Precipitation Index

文献类型: 外文期刊

第一作者: Liu Yang

作者: Liu Yang;Jiang Wenlai;Xiao Bilin;Gao Mingjie;Lei Bo

作者机构:

关键词: drought;spatiotemporal evolution;standardized precipitation index;timescale

期刊名称:THIRD INTERNATIONAL CONFERENCE ON AGRO-GEOINFORMATICS (AGRO-GEOINFORMATICS 2014)

ISSN: 2334-3168

年卷期: 2014 年

页码:

收录情况: SCI

摘要: Drought is one of the major agricultural and meteorological disasters in China that occurs at high frequency, affects wide areas, and causes considerable agricultural loss. Research on the long-term spatiotemporal variability of arid climate and drought area in the context of global climate change is important and practically significant to the intention to cope with drought. Standardized precipitation index (SPI) was calculated using long-term monthly data of surface precipitation with 0.5 degrees x 0.5 degrees resolution at 12-month timescales. The capacity of the SPI index to describe arid climate was verified using three drought cases that occurred in Southern China in the early 2000s. The spatiotemporal variability of China's arid climate and drought area from the perspective of meteorological drought was analyzed. All categories of drought (i. e., mild, moderate, severe, and extreme) exhibited slight downward trend in terms of drought area, but variation was observed from region to region. Over the past 50 years, Southwest and Northeast China experienced more arid, while Southeast and Northwest China experienced the opposite.

分类号:

  • 相关文献

[1]Arabidopsis enhanced drought tolerance1/HOMEODOMAIN GLABROUS11 confers drought tolerance in transgenic rice without yield penalty. Yu, Linhui,Chen, Xi,Wang, Zhen,Xiang, Chengbin,Wang, Shimei,Zhu, Qisheng,Wang, Yuping,Li, Shigui,Wang, Shimei,Zhu, Qisheng.

[2]Effect of soil salinity, soil drought, and their combined action on the biochemical characteristics of cotton roots. Zhang, Lei,Chen, Binglin,Zhang, Guowei,Li, Jianliang,Wang, Youhua,Meng, Yali,Zhou, Zhiguo,Zhang, Lei. 2013

[3]An NAM Domain Gene, GhNAC79, Improves Resistance to Drought Stress in Upland Cotton. Guo, Yaning,Yu, Shuxun,Jia, Xiaoyun,Dou, Lingling,Yu, Shuxun,Guo, Yaning,Pang, Chaoyou,Ma, Qifeng,Zhao, Fengli,Gu, Lijiao,Wei, Hengling,Wang, Hantao,Fan, Shuli,Su, Junji. 2017

[4]The changes of organelle ultrastructure and Ca2+ homeostasis in maize mesophyll cells during the process of drought-induced leaf senescence. Ma, Yuan-Yuan,Guo, Xiu-Lin,Liu, Zi-Hui,Ma, Yuan-Yuan,Shao, Hong-Bo,Shao, Hong-Bo,Liu, Bin-Hui. 2011

[5]MicroRNAs associated with drought response in the pulse crop common bean (Phaseolus vulgaris L.). Wu, Jing,Wang, Lanfen,Wang, Shumin. 2017

[6]Resistance strategies of Phragmites australis (common reed) to Pb pollution in flood and drought conditions. Zhang, Na,Zhang, Zhenhua,Zhang, Na,Chen, Jing,Zhang, Na,Zhang, Jinwei,Mu, Chunsheng,Li, Zhiqiang. 2018

[7]Analysis of Drought Characteristic in Sunit Prairie Based on Precipitation Anomaly Percentage during 2000-2015. Sun, Xiaodong,Liu, Guixiang,Zhang, Xiaode,Bao, Yuhai. 2016

[8]AtCPK6, a functionally redundant and positive regulator involved in salt/drought stress tolerance in Arabidopsis. Xu, Jing,Tian, Yong-Sheng,Peng, Ri-He,Xiong, Ai-Sheng,Zhu, Bo,Jin, Xiao-Fen,Gao, Feng,Fu, Xiao-Yan,Yao, Quan-Hong,Xu, Jing,Hou, Xi-Lin. 2010

[9]De novo assembly of the desert tree Haloxylon ammodendron (C. A. Mey.) based on RNA-Seq data provides insight into drought response, gene discovery and marker identification. Long, Yan,Zhang, Jingwen,Tian, Xinjie,Wu, Shanshan,Pei, Xin Wu,Zhang, Qiong,Zhang, Jianping,Dang, Zhanhai. 2014

[10]Expression of TERF1 in rice regulates expression of stress-responsive genes and enhances tolerance to drought and high-salinity. Gao, Shumei,Zhang, Haiwen,Tian, Yun,Li, Fang,Zhang, Zhijin,Chen, Xiaoliang,Huang, Rongfeng,Gao, Shumei,Zhang, Haiwen,Zhang, Zhijin,Huang, Rongfeng,Tian, Yun,Li, Fang,Lu, Xiangyang. 2008

[11]Transgenic rice expressing a cassava (Manihot esculenta Crantz) plasma membrane gene MePMP3-2 exhibits enhanced tolerance to salt and drought stresses. Yu, Y.,Cui, Y. C.,Ren, C.,Rocha, P. S. C. F.,Wang, M. L.,Xia, X. J.,Yu, Y.,Ren, C.,Peng, M.,Xu, G. Y.. 2016

[12]De novo sequencing and analysis of root transcriptome using 454 pyrosequencing to discover putative genes associated with drought tolerance in Ammopiptanthus mongolicus. Zhou, Yijun,Gao, Fei,Liu, Ran,Feng, Jinchao,Gao, Fei,Li, Hongjie. 2012

[13]Identification of Drought-Responsive MicroRNAs from Roots and Leaves of Alfalfa by High-Throughput Sequencing. Li, Yue,Wan, Liqiang,Bi, Shuyi,Wan, Xiufu,Li, Zhenyi,Cao, Jing,Tong, Zongyong,Xu, Hongyu,He, Feng,Li, Xianglin. 2017

[14]Genotypically Identifying Wheat Mesophyll Conductance Regulation under Progressive Drought Stress. Olsovska, Katarina,Brestic, Marian,Shao, Hong Bo,Olsovska, Katarina,Kovar, Marek,Brestic, Marian,Zivcak, Marek,Slamka, Pavol,Shao, Hong Bo. 2016

[15]Modified AnM technique in combination with black and transparent film mulching in peanut production. Qin, Feifei,Takano, Tetsuo,Qin, Feifei,Xu, Hui-lian,Qin, Feifei. 2012

[16]DROUGHT-INDUCED TRANSCRIPTION OF RESISTANT AND SENSITIVE COMMON MILLET VARIETIES. Wang, R. Y.,Liu, X. Y.,Lian, S.,Wang, R. Y.,Wang, H. G.,Chen, L.,Qiao, Z. J.,Wang, L.,McInerney, C. E.. 2017

[17]Abscisic acid is involved in the water stress-induced betaine accumulation in pear leaves. Gao, XP,Pan, QH,Li, MJ,Zhang, LY,Wang, XF,Shen, YY,Lu, YF,Chen, SW,Liang, Z,Zhang, DP. 2004

[18]Characterization and expression analysis of cDNAs encoding abscisic acid 8'-hydroxylase during mulberry fruit maturation and under stress conditions. Cai, Yuxiang,Zhu, Panpan,Liu, Changying,Zhao, Aichun,Yu, Jian,Wang, Chuanhong,Yu, Maode,Li, Zhengang,Huang, Ping.

[19]Sugar Input, Metabolism, and Signaling Mediated by Invertase: Roles in Development, Yield Potential, and Response to Drought and Heat. Ruan, Yong-Ling,Ruan, Yong-Ling,Jin, Ye,Jin, Ye,Yang, Yue-Jian,Li, Guo-Jing,Boyer, John S.,Boyer, John S.. 2010

[20]Isolated and characterization of a cDNA encoding ethylene-responsive element binding protein (EREBP)/AP2-type protein, RCBF2, in Oryza sativa L.. Liu, Jin-Ge,Zhang, Zhen,Qin, Qiu-Lin,Peng, Ri-He,Xiong, Ai-Sheng,Chen, Jian-Min,Xu, Fang,Zhu, Hong,Yao, Quan-Hong.

作者其他论文 更多>>