financially supported by the Key Research Program of Frontier Sciences CAS(QYZDJ-SSWDQC031);Key Project of the Chinese Academy of Sciences(KZZDEW-04-05);the National Natural Science Foundation of China(91025024);the ‘‘Western Light’’ project of the Chinese Academy of Science
Evidence exists of nighttime transpiration and its potential impact on plant/water relations for species in a diversity of ecosystems. However, relevant data related to typical desert riparian forest species remains l...
We assessed the potential of white poplar(Populus alba L.) and its inter-sectional hybridization with euphrates poplar(P. euphratica Oliv.) for carbon storage and sequestration in central Iran. Trials were establi...
financially supported by the National Natural Sciences Foundation of China(30060007);the National Basic Research Program of China(2012CB723204);the National Programs for Science and Technology Development of China(2013BAC10B01)
The aims of this study were to explore the interspecific differences of Populus euphratica Oliv.and Populus pruinosa Schrenk populations and the intraspecific differences of males and females within the same species i...
supported by the West Light Talents Cultivation Program of Chinese Academy of Sciences (XBBS 200801);the National Natural Science Foundation of China (40801146);the JSPS Project (21403001)
Leaf biochemical properties have been widely assessed using hyperspectral reflectance information by inversion of PROSPECT model or by using hyperspectral indices, but few studies have focused on arid ecosystems. As a...
supported by the National Natural Science Foundation of China (Grant Nos. 30730077,30972339, 31070597);the "948" Project of the State Forestry Administration of China (2007-4-01);the National Key Technologies R&D Program of China(2011BAD38B01)
We established a cDNA-AFLP (amplified fragment length polymorphism) system for Populus euphratica, after optimizing several key factors. The results show that optimized CTAB method is suitable for the extraction of ...
National Natural Science Foundation of China,No.40961035,No.41461012;Science and Technology Project of Gansu Province,No.0803RJZA094
Daily average temperature data from 48 meteorological stations in Chinese oases that are within the distribution area of Populus euphratica were analyzed to determine the spatiotemporal responses of this tree to clima...
Supported by Knowledge Innovation Important Direction Item of Chinese Academy of Sciences (Grant No. kzcx2-yw-127);National Natural Science Foundation of China (Grant Nos. 90502004, 40671014)
In order to lucubrate the daily variation of respiration in soils of Populus euphratica forests and analyze its relationship with environmental factors in the middle and lower reaches of the Tarim River, the LI-8100 i...
the National Natural Science Foundation of China"Nighttime tran-spiration and its eco-hydrological effects in typical desert vegetation"(42001038);the Major special projects of science and technology in Inner Mongolia Autonomous Region(zdzx2018057);the project of CAS innovation cross team(JCTD-2019-19);The authors thank anonymous reviewers for their valuable review and constructive comments on this manuscript.
Ecophysiological responses to drought stress of Populus euphratica in Alashan Desert Eco-hydrology Experimental Research Station were investigated.Results show that under mild and moderate drought stress,stomatal leng...
Supported by the State Key Basic Research and Development Plant of China (2004CB720200), the National Natural Science Foundation of China (90502004) and the Knowledge Innovation Project of the Chinese Academy of Sciences.
Plants growing on both sides of the Tarim River in western China serve as a natural barrier containing the deserts and protecting the oasis, and their growth is greatly affected by water conditions In their local habi...