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    题名 作者 年代 出处 被引量
1The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants显示文摘Fanrong Zeng Shafaqat Ali Haitao Zhang Younan Ouyang Boyin Qiu Feibo Wu Guoping Zhang 2010Environmental Pollution2010,,1:3
2The genome and gene editing system of sea barleygrass provide a novel platform for cereal domestication and stress tolerance studies显示文摘The tribe Triticeae provides important staple cereal crops and contains elite wild species with wide geneticdiversity and high tolerance to abiotic stresses. Sea barleygrass (Hordeum marinum Huds.), a wildTriticeae species, thrives in saline marshlands and is well known for its high tolerance to salinity and waterlogging. Here, a 3.82-Gb high-quality reference genome of sea barleygrass is assembled de novo, with 3.69Gb (96.8%) of its sequences anchored onto seven chromosomes. In total, 41 045 high-confidence (HC)genes are annotated by homology, de novo prediction, and transcriptome analysis. Phylogenetics, nonsynonymous/synonymous mutation ratios (Ka/Ks), and transcriptomic and functional analyses provide genetic evidence for the divergence in morphology and salt tolerance among sea barleygrass, barley, andwheat. The large variation in post-domestication genes (e.g. IPA1 and MOC1) may cause interspecies differences in plant morphology. The extremely high salt tolerance of sea barleygrass is mainly attributed tolow Na+ uptake and root-to-shoot translocation, which are mainly controlled by SOS1, HKT, and NHX transporters. Agrobacterium-mediated transformation and CRISPR/Cas9-mediated gene editing systems weredeveloped for sea barleygrass to promote its utilization for exploration and functional studies of hubgenes and for the genetic improvement of cereal crops.Liuhui Kuang Qiufang Shen Liyang Chen Lingzhen Ye Tao Yan Zhong-Hua Chen Robbie Waugh Qi Li Lu Huang Shengguan Cai Liangbo Fu Pengwei Xing Kai Wang Jiari Shao Feibo Wu Lixi Jiang Dezhi Wu Guoping Zhang 2022Plant Communications2022,3,5:2
3Proteomic analy- sis of nitrogen stress-responsive proteins in two rice cul- tivars differing in N utilization efficiency 显示文摘SONG C ZENG F FEIBO W 2011Journal of IntegratedOMICS2011,1,1:1
4Solid state self-assembly synthesis of cobalt( Ⅱ ), nickel(Ⅱ), copper( Ⅱ ), and zinc ( Ⅱ ) complexes with a bis-Schiff base显示文摘Zhou Yiming Ye Xiangrong Xin Feibo 1999Transition Metal Chemistry1999,24,:1
5Cadmium translocation and accumulation in developing barley grains显示文摘Fei Chen Feibo Wu Kang Wei 2007Planta2007,227,:1
6Changes of organic acid exudation and rhizosphere pH in rice plants under chromium stress显示文摘Fanrong Zeng Song Chen Ying Miao Feibo Wu Guoping Zhang 2007Environmental Pollution2007,,2:1
7Four barley genotypes respond differently to cadmium: lipid peroxidation and activities of antioxidant capacity显示文摘WU Feibo ZHANG Guoping DOMINY P 2003Environmental and Experimental Botany2003,50,1:1
8GENOTYPIC VARIATION IN KERNEL HEAVY METAL CONCENTRATIONS IN BARLEY AND AS AFFECTED BY SOIL FACTORS显示文摘Feibo Wu Guoping Zhang 2002Journal of Plant Nutrition2002,,6:1
9Modulation of Exogenous Glutathione in Ultrastructure and Photosynthetic Performance Against Cd Stress in the Two Barley Genotypes Differing in Cd Tolerance显示文摘Fang Wang Fei Chen Yue Cai Guoping Zhang Feibo Wu 2011Biological Trace Element Research2011,,1:1
10Effects of aluminum and cadmium toxicity on growth and antioxidant enzyme activities of two barley genotypes with different Al resistance显示文摘Tianrong Guo Guoping Zhang Meixue Zhou Feibo Wu Jinxin Chen 2004Plant and Soil2004,,1:1
11The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants显示文摘Fanrong Zeng Shafaqat Ali Haitao Zhang Younan Ouyang Boyin Qiu Feibo Wu Guoping Zhang 2010Environmental Pollution2010,,1:1
12Effects of aluminum and cadmium toxicity on growth and antioxidant enzyme activities of two barley genotypes with different Al resistance显示文摘Tianrong Guo Guoping Zhang Meixue Zhou Feibo Wu Jinxin Chen 2004Plant and Soil2004,,1:1
13Four barley genotypes respond differently to cadmium : lipid peroxidation and activities of antioxidant capacity显示文摘Feibo Wu Guoping Zhang Peter Dominy 2003Environmental and Experimental Botany2003,50,:1
14The changes of β-glucan content and β-glucanase activity in barley before and after malting and their relationships to malt qualities显示文摘Junmei Wang Guoping Zhang Jinxin Chen Feibo Wu 2003Food Chemistry2003,,2:1
15Comparison of EDTA- and Citric Acid-Enhanced Phytoextraction of Heavy Metals in Artificially Metal Contaminated Soil by Typha Angustifolia显示文摘Dawood Muhammad Fei Chen Jing Zhao Guoping Zhang Feibo Wu 2009International Journal of Phytoremediation2009,,6:1
16Genotypic and environmental variation in chromium, cadmium and lead concentrations in rice显示文摘Fanrong Zeng Ying Mao Wangda Cheng Feibo Wu Guoping Zhang 2007Environmental Pollution2007,,2:1
17Zinc alleviates growth inhibition and oxidative stress caused by cadmium in rice 显示文摘Muhammad Jaffar Hassan Guoping Zhang Feibo Wu et aI 2005Journal of Plant Nutrition Soil Science2005,168,:1
18Differences in yield components and kernel Cd accumulation in response to Cd toxicity in four barley genotypes显示文摘Feibo Wu Guoping Zhang Peter Dominy Hongxia Wu Dango M.L. Bachir 2007Chemosphere2007,,1:1
19Cadmium translocation and accumulation in developing barley grains显示文摘Fei Chen Feibo Wu Jing Dong Eva Vincze Guoping Zhang Fang Wang Youzhong Huang Kang Wei 2007Planta2007,,1:1
20Four barley genotypes respond differently to cadmium :Lipid peroxidation and activities of antioxidant capacity显示文摘Feibo Wu Guoping Zhang Peter Dominy 2003Environmental and Experimental Botany2003,50,:1
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