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Original Articles

Amino acids exuded from axenic roots of lettuce and white lupin seedlings exposed to different cadmium concentrations

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Pages 883-900 | Published online: 21 Nov 2008

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A.P. Pinto, A. de Varennes, M.L. S. Gonçalves & A.M. Mota. (2006) Sorghum Detoxification Mechanisms. Journal of Plant Nutrition 29:7, pages 1229-1242.
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Yang Hoan Lim, In Sung Kim, Hyo Jung Shim, Kyung Hong Kang & Eun Ju Lee. (2006) Bioaccumulation patterns and ecophysiological responses of monochoria korsakowi exposed to cadmium. Integrative Biosciences 10:3, pages 125-130.
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Günter Neumann & Uwe Ludewig. 2023. Marschner's Mineral Nutrition of Plants. Marschner's Mineral Nutrition of Plants 545 585 .
Sushmita Mahour, Sudhir Kumar Verma & Shalini Srivastava. (2022) Functionalized agro-waste for toxic metal remediation from water bodies: A green pre-treatment process. Materials Today: Proceedings 50, pages 287-292.
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Aditi Shreeya Bali, Gagan Preet Singh Sidhu & Vinod Kumar. (2020) Root exudates ameliorate cadmium tolerance in plants: A review. Environmental Chemistry Letters 18:4, pages 1243-1275.
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C. Thamaraiselvi, A. Ancy Jenifer & Muthunarayanan Vasanthy. 2019. Waste Water Recycling and Management. Waste Water Recycling and Management 53 64 .
Rahul Mahadev Shelake, Rajesh Ramdas Waghunde, Eugene Hayato Morita & Hidenori Hayashi. 2018. Plant Microbiome: Stress Response. Plant Microbiome: Stress Response 283 305 .
Jiewei Wang, Huiyuan Li, Dandan Zou, Jinfeng Zhao, Lianxue Fan & Tao Wu. (2017) Transcriptome profile analysis of cadmium tolerance in Chinese flowering cabbage. Horticulture, Environment, and Biotechnology 58:1, pages 56-65.
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Kristýna Večeřová, Zbyněk Večeřa, Bohumil Dočekal, Michal Oravec, Antonio Pompeiano, Jan Tříska & Otmar Urban. (2016) Changes of primary and secondary metabolites in barley plants exposed to CdO nanoparticles. Environmental Pollution 218, pages 207-218.
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Beenish SabaAnn D. ChristyMadeeha Jabeen. (2016) Kinetic and Enzymatic Decolorization of Industrial Dyes Utilizing Plant-Based Biosorbents: A Review. Environmental Engineering Science 33:9, pages 601-614.
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Trina Dutta & Sangita Bhattacherjee. 2015. Advancements of Medical Electronics. Advancements of Medical Electronics 323 332 .
Shahzad M.A. Basra, Z. Iqbal, Khalil-ur-Rehman, Hafeez-Ur-Rehman & M.F. Ejaz. (2014) Time Course Changes in pH, Electrical Conductivity and Heavy Metals (Pb, Cr) of Wastewater Using Moringa oleifera Lam. Seed and Alum, a Comparative Evaluation. Journal of Applied Research and Technology 12:3, pages 560-567.
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Kumar Rohit Raj, Abhishek Kardam & Shalini Srivastava. (2012) PEI modified Leucaena leucocephala seed powder, a potential biosorbent for the decontamination of arsenic species from water bodies: bioremediation. Applied Water Science 3:1, pages 327-333.
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Shubha Nigam, Padma S. Vankar & Krishna Gopal. (2012) Biosorption of arsenic from aqueous solution using dye waste. Environmental Science and Pollution Research 20:2, pages 1161-1172.
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Kumar Rohit Raj, Abhishek Kardam, Jyoti Kumar Arora, Shalini Srivastava & M. M. Srivastava. (2012) Adsorption behavior of dyes from aqueous solution using agricultural waste: modeling approach. Clean Technologies and Environmental Policy 15:1, pages 73-80.
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. 2012. Marschner's Mineral Nutrition of Higher Plants. Marschner's Mineral Nutrition of Higher Plants 483 643 .
Linkun Wu, Haibin Wang, Zhixing Zhang, Rui Lin, Zhongyi Zhang & Wenxiong Lin. (2011) Comparative Metaproteomic Analysis on Consecutively Rehmannia glutinosa-Monocultured Rhizosphere Soil. PLoS ONE 6:5, pages e20611.
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Abhishek Kardam, Kumar Rohit Raj, Jyoti Kumar Arora, Man Mohan Srivastava & Shalini Srivastava. (2010) Artificial Neural Network Modeling for Sorption of Cadmium from Aqueous System by Shelled Moringa Oleifera Seed Powder as an Agricultural Waste. Journal of Water Resource and Protection 02:04, pages 339-344.
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Kumar Rohit Raj, Abhishek Kardam, Jyoti Kumar Arora, Man Mohan Srivastava & Shalini Srivastava. (2010) Neural Network Modeling for Ni(II) Removal from Aqueous System Using Shelled Moringa Oleifera Seed Powder as an Agricultural Waste. Journal of Water Resource and Protection 02:04, pages 331-338.
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Pritee Goyal & Shalini Srivastava. (2009) Characterization of novel Zea mays based biomaterial designed for toxic metals biosorption. Journal of Hazardous Materials 172:2-3, pages 1206-1211.
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Günter Neumann & Volker Römheld. 2007. The Rhizosphere. The Rhizosphere 23 72 .
Elisabetta Gianazza, Robin Wait, Andrea Sozzi, Simona Regondi, Dolores Saco, Massimo Labra & Elisabetta Agradi. (2007) Growth and protein profile changes in Lepidium sativum L. plantlets exposed to cadmium. Environmental and Experimental Botany 59:2, pages 179-187.
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R GUPTA, D DUBEY, G KANNAN & S FLORA. (2007) Concomitant administration of Moringa oleifera seed powder in the remediation of arsenic-induced oxidative stress in mouse. Cell Biology International 31:1, pages 44-56.
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Günter Neumann. 2007. Nutrient Cycling in Terrestrial Ecosystems. Nutrient Cycling in Terrestrial Ecosystems 123 157 .
Pushpa Kumari, Parul Sharma, Shalini Srivastava & M.M. Srivastava. (2006) Biosorption studies on shelled Moringa oleifera Lamarck seed powder: Removal and recovery of arsenic from aqueous system. International Journal of Mineral Processing 78:3, pages 131-139.
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Parul Sharma, Pushpa Kumari, M.M. Srivastava & Shalini Srivastava. (2006) Removal of cadmium from aqueous system by shelled Moringa oleifera Lam. seed powder. Bioresource Technology 97:2, pages 299-305.
Crossref
L Sanità di Toppi & R Gabbrielli. (1999) Response to cadmium in higher plants. Environmental and Experimental Botany 41:2, pages 105-130.
Crossref

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