PLANT_SPECIES

作品数:161被引量:467H指数:12
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相关机构:中国科学院植物研究所扬州大学中国科学院中国科学院大学更多>>
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  • 期刊=Journal of Arid Landx
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Predicting changes in the suitable habitats of six halophytic plant species in the arid areas of Northwest China
《Journal of Arid Land》2024年第10期1380-1408,共29页YANG Ao TU Wenqin YIN Benfeng ZHANG Shujun ZHANG Xinyu ZHANG Qing HUANG Yunjie HAN Zhili YANG Ziyue ZHOU Xiaobing ZHUANG Weiwei ZHANG Yuanming 
supported by the Third Xinjiang Scientific Expedition Program (2022xjkk1205);the Tianshan Talent Training Program (2023TSYCTD0084);the Science and Technology Major Program of Xinjiang Uygur Autonomous Region (2023A01002);the Young Top Talents of Xinjiang Normal University (XJNUQB2022-29);the Youth Innovation Promotion Association of the Chinese Academy of Sciences (2020437)
In the context of changes in global climate and land uses,biodiversity patterns and plant species distributions have been significantly affected.Soil salinization is a growing problem,particularly in the arid areas of...
关键词:HALOPHYTES climate change global warming maximum entropy(MaxEnt)model soil salinization suitable habitats Northwest China 
A new method of searching for concealed Au deposits by using the spectrum of arid desert plant species
《Journal of Arid Land》2021年第11期1183-1198,共16页CUI Shichao ZHOU Kefa ZHANG Guanbin DING Rufu WANG Jinlin CHENG Yinyi JIANG Guo 
This research was funded by the National Natural Science Foundation of China(U1803117);the Young Scholars in Western China,Chinese Academy of Sciences(2020-XBQNXZ-014);the Tianchi Doctoral Plan(Y970000317);the Key Project of Natural Science Foundation of China-Xinjiang Joint Fund(U1803241);the Xinjiang Uygur Autonomous Region Talent Special Plan-Tianshan Outstanding Youth(2019Q033);the Geological Exploration Project of Xinjiang Bureau of Geo-exploration and Minera development(XGMB202143).
With the increase of exploration depth,it is more and more difficult to find Au deposits.Due to the limitation of time and cost,traditional geological exploration methods are becoming increasingly difficult to be effe...
关键词:concealed Au deposits reflectance spectroscopy soil Au content characteristic band soil geochemical prospecting competitive adaptive reweighted sampling Seriphidium terrae-albae 
Interactions between vegetation dynamic and edaphic factors in the Great Salt Desert of central Iran
《Journal of Arid Land》2021年第2期123-134,共12页Hossein BASHARI Seyed Mehrdad KAZEMI Soghra POODINEH Mohammad R MOSADDEGHI Mostafa TARKESH Seyed Mehdi ADNANI 
Investigating the relationships between vegetation dynamic and edaphic factors provide management insights into factors affecting the growth and establishment of plant species and vegetation communities in saline area...
关键词:DESERT generalized linear method mechanically-dispersible clay ORDINATION plant species response curves spontaneously-dispersible clay 
A drought resistance index to select drought resistant plant species based on leaf water potential measurements被引量:4
《Journal of Arid Land》2019年第4期623-635,共13页SayedJamaleddin KHAJEDDIN SayedHamid MATINKHAH Zahra JAFARI 
The water deficit in arid and semi-arid regions is the primary limiting factor for the development of urban greenery and forestation. In addition, planting the species that consume low levels of water is useful in ari...
关键词:DROUGHT RESISTANT species DROUGHT resistance index forestation leaf WATER potential WATER DEFICIT 
Leaf N and P stoichiometry of 57 plant species in the Karamori Mountain Ungulate Nature Reserve,Xinjiang,China被引量:18
《Journal of Arid Land》2016年第6期935-947,共13页TAO Ye WU Ganlin ZHANG Yuanming ZHOU Xiaobing 
financially supported by the National Natural Science Foundation of China(41201056);the National Basic Research Program of China(2014CB954202);the West Light Foundation of the Chinese Academy of Sciences(XBBS-2014-20);the Program of Joint Foundation of the National Natural Science Foundation;the Government of Xinjiang Uygur Autonomous Region of China(U1503101)
Nitrogen (N) and phosphorus (P) are the major nutrients that constrain plant growth and development, as well as the structure and function of ecosystems. Hence, leaf N and P patterns can contribute to a deep under...
关键词:leaf stoichiometry desert plant functional group nutrient limitation Junggar Desert Karamori Mountain 
Spatial heterogeneity of plant species on the windward slope of active sand dunes in a semi-arid region of China被引量:3
《Journal of Arid Land》2013年第1期80-88,共9页DeMing JIANG ChunPing MIAO XueHua LI XiaoLan LI ALAMUSA QuanLai ZHOU 
funded by the National Natural Science Foundation of China (41071187);the State Forestry Administration Industry Special Project (201004023)
Species richness and abundance are two important species diversity variables that have attracted particular attention because of their significance in determining present and future species composition conditions. Thi...
关键词:ABUNDANCE richness grain size species-area curve VARIOGRAM Horqin Sandy Land 
Rare and endangered plant species of the Chinese Altai Mountains被引量:3
《Journal of Arid Land》2010年第3期222-230,共9页Marina V.OLONOVA 
supported by the Xinjiang Committee of Science and Technology (200933122)
Altai (also named Altay in China) Mountain Country (Mountain System) is a unique natural region,located on the border between different floristic regimes of the Boreal and ancient Mediterranean sub-kingdoms,where dist...
关键词:CONSERVATION Important Plant Area ENDEMICS Altai Mountain System 
Spatial organization of multiple plant species in arid ecosystems:linking patterns and processes被引量:1
《Journal of Arid Land》2010年第1期9-13,共5页Amit CHAKRABORTY B.Larry LI 
supported by the U.S. National Science Foundation’s Biocom-plexity Program (DEB-0421530);Long-Term Ecological Research Program (Sevilleta LTER, DEB-0217774 and 0620482);University of California Agricultural Experiment Station
Spatial organization of multiple plant species that appears as a non-random distribution of vegetative patches is one of the mostly observed spatial patterns in arid ecosystems. Yet understanding of ecological process...
关键词:spatial organization competition-colonization tradeoffs spatial coexistence occupancy-abundance relationship 
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