596
Views
110
CrossRef citations to date
0
Altmetric
Original Articles

Cadmium Accumulation in Sunflower Plants Influenced by Arbuscular Mycorrhiza

, , &
Pages 1-13 | Published online: 04 Apr 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (14)

Toshihiro Watanabe, Ryosuke Okada & Masaru Urayama. (2022) Differences in ionomic responses to nutrient deficiencies among plant species under field conditions. Journal of Plant Nutrition 45:10, pages 1493-1503.
Read now
Leila Tabrizi, Mahdiyeh Lakzaei & Babak Motesharezadeh. (2021) The yield potential and growth responses of licorice (Glycyrrhiza glabra L.) to mycorrhization under Pb and Cd stress. International Journal of Phytoremediation 23:3, pages 316-327.
Read now
Geetu Singh, Umesh Pankaj, Sukhmal Chand & Rajesh Kumar Verma. (2019) Arbuscular Mycorrhizal Fungi-Assisted Phytoextraction of Toxic Metals by Zea mays L. From Tannery Sludge. Soil and Sediment Contamination: An International Journal 28:8, pages 729-746.
Read now
Fangdong Zhan, Bo Li, Ming Jiang, Tianguo Li, Yongmei He, Yuan Li & Youshan Wang. (2019) Effects of arbuscular mycorrhizal fungi on the growth and heavy metal accumulation of bermudagrass [Cynodon dactylon (L.) Pers.] grown in a lead–zinc mine wasteland. International Journal of Phytoremediation 21:9, pages 849-856.
Read now
Reda E. Abdelhameed & Rabab A. Metwally. (2019) Alleviation of cadmium stress by arbuscular mycorrhizal symbiosis. International Journal of Phytoremediation 21:7, pages 663-671.
Read now
Beatriz Gonçalves Pereira Costa, Gilberto Costa Justino, Leandro Ferreira Aguiar, Lucas Anjos Souza & Liliane Santos Camargos. (2019) Boron phytoremediation: Stizolobium aterrimum is tolerant and can be used for phytomanagement of boron excess in soils. International Journal of Environmental Studies 76:2, pages 329-337.
Read now
Zhugui Wen, Liang Shi, Yangze Tang, Zhenguo Shen, Yan Xia & Yahua Chen. (2017) Effects of Pisolithus tinctorius and Cenococcum geophilum inoculation on pine in copper-contaminated soil to enhance phytoremediation. International Journal of Phytoremediation 19:4, pages 387-394.
Read now
Muhammad Rizwan, Shafaqat Ali, Hina Rizvi, Jörg Rinklebe, Daniel C. W. Tsang, Erik Meers, Yong Sik Ok & Wajid Ishaque. (2016) Phytomanagement of heavy metals in contaminated soils using sunflower: A review. Critical Reviews in Environmental Science and Technology 46:18, pages 1498-1528.
Read now
Amna, Sajid Masood, Jabir Hussain Syed, Muhammad Farooq Hussain Munis & Hassan Javed Chaudhary. (2015) Phyto-Extraction of Nickel by Linum usitatissimum in Association with Glomus intraradices. International Journal of Phytoremediation 17:10, pages 981-987.
Read now
N. Garg & P. Bhandari. (2014) Cadmium toxicity in crop plants and its alleviation by arbuscular mycorrhizal (AM) fungi: An overview. Plant Biosystems - An International Journal Dealing with all Aspects of Plant Biology 148:4, pages 609-621.
Read now
Neera Garg & Purnima Bhandari. (2012) Influence of Cadmium Stress and Arbuscular Mycorrhizal Fungi on Nodule Senescence in Cajanus Cajan (L.) MILLSP.. International Journal of Phytoremediation 14:1, pages 62-74.
Read now
Xiaopeng Gao, Mario Tenuta, Donald N. Flaten & Cynthia A. Grant. (2011) Cadmium Concentration in Flax Colonized by Mycorrhizal Fungi Depends on Soil Phosphorus and Cadmium Concentrations. Communications in Soil Science and Plant Analysis 42:15, pages 1882-1897.
Read now
Ali Akbar Safari Sinegani & Fahime Khalilikhah. (2010) Effects of EDTA, Sheep Manure Extract, and Their Application Time on Cd Uptake by Helianthus annuus from a Calcareous Mine Soil. Soil and Sediment Contamination: An International Journal 19:3, pages 378-390.
Read now

Articles from other publishers (96)

Leilei Zhang, Monica Yorlady Alzate Zuluaga, Youry Pii, Angelica Barone, Stefano Amaducci, Begoña Miras-Moreno, Erika Martinelli, Gabriele Bellotti, Marco Trevisan, Edoardo Puglisi & Luigi Lucini. (2023) A Pseudomonas Plant Growth Promoting Rhizobacterium and Arbuscular Mycorrhiza differentially modulate the growth, photosynthetic performance, nutrients allocation, and stress response mechanisms triggered by a mild Zinc and Cadmium stress in tomato. Plant Science 337, pages 111873.
Crossref
Rodrigo Pérez, Yasna Tapia, Mónica Antilén, Antonieta Ruiz, Paula Pimentel, Christian Santander, Humberto Aponte, Felipe González & Pablo Cornejo. (2023) Beneficial Interactive Effects Provided by an Arbuscular Mycorrhizal Fungi and Yeast on the Growth of Oenothera picensis Established on Cu Mine Tailings. Plants 12:23, pages 4012.
Crossref
Tanveer Kaur & M. Sudhakara Reddy. (2023) Diversity of arbuscular mycorrhizal fungi in seleniferous soils and their role in plant growth promotion. 3 Biotech 13:11.
Crossref
Nisreen A. Jdayea, Shamil I. Neamah & Mazin A. Alalousi. (2023) Silver Nanoparticles Reduce the Toxic Effects of Cadmium on Datura stramonium Callus Culture. International Journal of Agronomy 2023, pages 1-11.
Crossref
Xue Li, Yuchen Wang, Peiran Guo, Zhechao Zhang, Xi Cui, Baihui Hao & Wei Guo. (2023) Arbuscular mycorrhizal fungi facilitate Astragalus adsurgens growth and stress tolerance in cadmium and lead contaminated saline soil by regulating rhizosphere bacterial community. Applied Soil Ecology 187, pages 104842.
Crossref
Zhengjun Feng, Huizhi Ren, Huiping Song, Yan Zou, Miroslav Vosatka, Shaobin Huang, Hainan Lu & Fangqin Cheng. (2023) Arbuscular Mycorrhizal Fungi Induced Changes of Pb Migration and Bacterial Community in Both the Rhizosphere and Non-rhizosphere Soils of Paspalum notatum. Water, Air, & Soil Pollution 234:3.
Crossref
Jiahua Sun, Qiong Jia, Yi Li, Kanglong Dong, Shuai Xu, Yanan Ren, Ting Zhang, Jiayuan Chen, Nannan Shi & Shenglei Fu. (2023) Effect of Arbuscular Mycorrhiza Fungus Diversispora eburnea Inoculation on Lolium perenne and Amorpha fruticosa Growth, Cadmium Uptake, and Soil Cadmium Speciation in Cadmium-Contaminated Soil. International Journal of Environmental Research and Public Health 20:1, pages 795.
Crossref
Hassan Etesami & Bernard R. Glick. (2023) Exploring the potential: Can mycorrhizal fungi and hyphosphere silicate-solubilizing bacteria synergistically alleviate cadmium stress in plants?. Current Research in Biotechnology 6, pages 100158.
Crossref
Wentao Hu & Lan Pan. 2023. Microbial Bioprocesses. Microbial Bioprocesses 1 20 .
Megha Sethi, I. B. Prasher & Sunita Kapila. 2023. Fungal Resources for Sustainable Economy. Fungal Resources for Sustainable Economy 39 68 .
Surya Chauhan, Sonam Mahawar, Devendra Jain, Sudhir K. Udpadhay, Santosh Ranjan Mohanty, Abhijeet Singh & Elina Maharjan. (2022) Boosting Sustainable Agriculture by Arbuscular Mycorrhiza under Stress Condition: Mechanism and Future Prospective. BioMed Research International 2022, pages 1-28.
Crossref
Salwan Al-Maliki & Ayat Al-Shamary. (2022) Enhanced phytoremediation of soil heavy metals by arbuscular mycorrhizal fungi, Bacillus subtilis and CO2 release in Typha domingensis rhizosphere. Arabian Journal of Geosciences 15:22.
Crossref
Murat ŞAHİN & Lütfi PIRLAK. (2022) Effect of Bacterial Inoculation on Morphological and Pomological Characteristics of Three Strawberry (Fragaria x ananassa Duch.) Cultivars Under Cadmium ToxicityEffect of Bacterial Inoculation on Morphological and Pomological Characteristics of Three Strawberry (Fragaria x ananassa Duch.) Cultivars Under Cadmium Toxicity. Türkiye Tarımsal Araştırmalar Dergisi 9:3, pages 352-370.
Crossref
Ruwanthika Kalamulla, Samantha C. Karunarathna, Saowaluck Tibpromma, Mahesh C. A. Galappaththi, Nakarin Suwannarach, Steven L. Stephenson, Suhail Asad, Ziad Salman Salem & Neelamanie Yapa. (2022) Arbuscular Mycorrhizal Fungi in Sustainable Agriculture. Sustainability 14:19, pages 12250.
Crossref
Salwan Al-Maliki & Ayat Al-Shamary. (2022) Vital evidence for arbuscular mycorrhizal fungi, bacteria and cattail plant to remove Pb-Cd heavy metals from contaminated soils. Acta Ecologica Sinica 42:4, pages 392-397.
Crossref
Wuyan Shen, Zhengjun Feng, Huiping Song, Dapeng Jin, Yuanhong Fu & Fangqin Cheng. (2022) Effects of solid waste-based soil conditioner and arbuscular mycorrhizal fungi on crop productivity and heavy metal distribution in foxtail millet (Setaria italica). Journal of Environmental Management 313, pages 114974.
Crossref
Huimin Huang, Li Fan, Yunlin Zhao, Qi Jin, Guiyan Yang, Di Zhao & Zhenggang Xu. (2022) Integrating Broussonetia papyrifera and Two Bacillus Species to Repair Soil Antimony Pollutions. Frontiers in Microbiology 13.
Crossref
Kobra Valed Saravi, Sakineh Saeidi-Sar, Mahmod Reza Ramezanpour & Bostan Roudi. (2022) Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation, glyoxalase system and ionic homeostasis in Aloysia citriodora Palau under cadmium toxicity. Biologia 77:10, pages 2779-2791.
Crossref
Ellen Aparecida Nunes, Eduardo Kiyota & Sara Adrián López Andrade. (2022) Cadmium Accumulation in a Tropicalized Lettuce Variety Under Overfertilization Simulation. CLEAN – Soil, Air, Water 50:3, pages 2100065.
Crossref
Nurudeen Olatunbosun Adeyemi, Olalekan Suleiman Sakariyawo, Paul Abayomi Sobowale Soremi & Mufutau Olaoye Atayese. 2022. Current Developments in Biotechnology and Bioengineering. Current Developments in Biotechnology and Bioengineering 73 92 .
Robin Raveau, Anissa Lounès-Hadj Sahraoui & Joël Fontaine. 2022. Advances in Microbe-assisted Phytoremediation of Polluted Sites. Advances in Microbe-assisted Phytoremediation of Polluted Sites 165 206 .
Yingying Huang, Samavia Mubeen, Zhongyi Yang & Junli Wang. 2022. Theories and Methods for Minimizing Cadmium Pollution in Crops. Theories and Methods for Minimizing Cadmium Pollution in Crops 1 30 .
Harmanjit Kaur, Tashima & Bhawna Sunkaria. 2022. Sustainable Management of Environmental Contaminants. Sustainable Management of Environmental Contaminants 139 171 .
Muhammad KHALID, Saeed UR-RAHMAN, Danial HASSANI, Kashif HAYAT, Pei ZHOU & Nan HUI. (2021) Advances in fungal-assisted phytoremediation of heavy metals: A review. Pedosphere 31:3, pages 475-495.
Crossref
Mohammed Antar, Dongmei Lyu, Mahtab Nazari, Ateeq Shah, Xiaomin Zhou & Donald L. Smith. (2021) Biomass for a sustainable bioeconomy: An overview of world biomass production and utilization. Renewable and Sustainable Energy Reviews 139, pages 110691.
Crossref
Muhammad Riaz, Muhammad Kamran, Yizeng Fang, Qianqian Wang, Huayuan Cao, Guoling Yang, Lulu Deng, Youjuan Wang, Yaoyu Zhou, Ioannis Anastopoulos & Xiurong Wang. (2021) Arbuscular mycorrhizal fungi-induced mitigation of heavy metal phytotoxicity in metal contaminated soils: A critical review. Journal of Hazardous Materials 402, pages 123919.
Crossref
Akanksha Sharma, Aditya Singh, Meenakshi Raina & Deepak Kumar. 2021. Mycoremediation and Environmental Sustainability. Mycoremediation and Environmental Sustainability 291 326 .
J.Y. Cornu, S. Bussière, C. Coriou, T. Robert, M. Maucourt, C. Deborde, A. Moing & C. Nguyen. (2020) Changes in plant growth, Cd partitioning and xylem sap composition in two sunflower cultivars exposed to low Cd concentrations in hydroponics. Ecotoxicology and Environmental Safety 205, pages 111145.
Crossref
Jihen Jalali, Pierre Gaudin, Emna Ammar & Thierry Lebeau. (2020) Bioaugmentation coupled with phytoextraction for the treatment of Cd and Sr, and reuse opportunities for phosphogypsum rare earth elements. Journal of Hazardous Materials 399, pages 122821.
Crossref
Hui Li, Xun Wen Chen, Li Wu, Na Luo, Wei Xiong Huang, Ce Hui Mo, Yan Wen Li, Lei Xiang, Hai Ming Zhao, Quan Ying Cai & Ming Hung Wong. (2020) Effects of arbuscular mycorrhizal fungi on redox homeostasis of rice under Cd stress. Plant and Soil 455:1-2, pages 121-138.
Crossref
Samuel Mutiti, Megan Corley & Mutande Tembo. (2020) Mobilization and Translocation of Subsurface Lead by Tithonia rotundifolia. Water, Air, & Soil Pollution 231:8.
Crossref
Neera Garg, Purnima Bhandari, Lakita Kashyap & Sandeep Singh. 2020. Metalloids in Plants. Metalloids in Plants 315 354 .
Vinicius Henrique De Oliveira, Ihsan Ullah, Jim M. Dunwell & Mark Tibbett. (2020) Mycorrhizal symbiosis induces divergent patterns of transport and partitioning of Cd and Zn in Populus trichocarpa. Environmental and Experimental Botany 171, pages 103925.
Crossref
Éder de Vilhena Araújo, João Guilherme de Moraes Pontes, Stephanie Nemesio da Silva, Luciana da Silva Amaral & Taicia Pacheco Fill. 2020. Microbial Endophytes. Microbial Endophytes 125 159 .
E. Janeeshma & Jos T. Puthur. (2019) Direct and indirect influence of arbuscular mycorrhizae on enhancing metal tolerance of plants. Archives of Microbiology 202:1, pages 1-16.
Crossref
Laíze Aparecida Ferreira Vilela, Raquel Caroline dos Santos, Camila Amadio Plaça, Felipe Machado de Oliveira Lourenço, Amanda Augusta Fernandes, Carina Pereira Cotta & Janaína Aparecida de Fátima Silva. 2020. Plant Ecophysiology and Adaptation under Climate Change: Mechanisms and Perspectives II. Plant Ecophysiology and Adaptation under Climate Change: Mechanisms and Perspectives II 643 672 .
Amir Hossein Baghaie, Forough Aghili & Reza Jafarinia. (2019) Soil-indigenous arbuscular mycorrhizal fungi and zeolite addition to soil synergistically increase grain yield and reduce cadmium uptake of bread wheat (through improved nitrogen and phosphorus nutrition and immobilization of Cd in roots). Environmental Science and Pollution Research 26:30, pages 30794-30807.
Crossref
N. Rohani, F. Daneshmand, A. Vaziri, M. Mahmoudi & F. Saber-Mahani. (2019) Growth and some physiological characteristics of Pistacia vera L. cv Ahmad Aghaei in response to cadmium stress and Glomus mosseae symbiosis. South African Journal of Botany 124, pages 499-507.
Crossref
Alicia Isabel Cano Tamayo, Diana Milena Zuleta Zapata & Leonardo Alberto Ríos Osorio. (2019) Papel de los hongos formadores de micorrizas en la biorremediación de suelos agrícolas contaminados con metales pesados: revisión sistemática. Hechos Microbiológicos 7:1-2, pages 61-75.
Crossref
Klara Andrés Rask, Jesper Liengaard Johansen, Rasmus Kjøller & Flemming Ekelund. (2019) Differences in arbuscular mycorrhizal colonisation influence cadmium uptake in plants. Environmental and Experimental Botany 162, pages 223-229.
Crossref
Xing Li, Ao Yu Chen, Le Yi Yu, Xue Xue Chen, Lei Xiang, Hai Ming Zhao, Ce Hui Mo, Yan Wen Li, Quan Ying Cai, Ming Hung Wong & Hui Li. (2019) Effects of β-cyclodextrin on phytoremediation of soil co-contaminated with Cd and BDE-209 by arbuscular mycorrhizal amaranth. Chemosphere 220, pages 910-920.
Crossref
Aradhana Mishra, Arpita Bhattacharya & Nishtha Mishra. 2019. New and Future Developments in Microbial Biotechnology and Bioengineering. New and Future Developments in Microbial Biotechnology and Bioengineering 113 128 .
Laíze Aparecida Ferreira Vilela & Marisângela Viana Barbosa. 2019. Cadmium Tolerance in Plants. Cadmium Tolerance in Plants 553 586 .
Gagan Preet Singh Sidhu, Aditi Shreeya Bali & Renu Bhardwaj. 2019. Cadmium Toxicity and Tolerance in Plants. Cadmium Toxicity and Tolerance in Plants 397 426 .
Xiongfei Guo. 2019. Biofertilizers for Sustainable Agriculture and Environment. Biofertilizers for Sustainable Agriculture and Environment 501 520 .
Qing Chang, Feng-wei Diao, Qi-fan Wang, Liang Pan, Zhen-hua Dang & Wei Guo. (2018) Effects of arbuscular mycorrhizal symbiosis on growth, nutrient and metal uptake by maize seedlings (Zea mays L.) grown in soils spiked with Lanthanum and Cadmium. Environmental Pollution 241, pages 607-615.
Crossref
Sedigheh Ahmadi-Sakha, Mohsen Sharifi, Vahid Niknam & Najmeh Ahmadian-Chashmi. (2018) Phenolic compounds profiling in shake flask and bioreactor system cell cultures of Scrophularia striata Boiss. In Vitro Cellular & Developmental Biology - Plant 54:4, pages 444-453.
Crossref
Yu Zhang, Junli Hu, Jianfeng Bai, Junhua Wang, Rui Yin, Jingwei Wang & Xiangui Lin. (2018) Arbuscular mycorrhizal fungi alleviate the heavy metal toxicity on sunflower (Helianthus annuus L.) plants cultivated on a heavily contaminated field soil at a WEEE-recycling site. Science of The Total Environment 628-629, pages 282-290.
Crossref
Harmanjit Kaur & Neera Garg. (2017) Recent Perspectives on Cross Talk Between Cadmium, Zinc, and Arbuscular Mycorrhizal Fungi in Plants. Journal of Plant Growth Regulation 37:2, pages 680-693.
Crossref
Maíra da Silva, Sara Adrián López de Andrade & Alfredo Borges De-Campos. (2018) Phytoremediation Potential of Jack Bean Plant for Multi-Element Contaminated Soils From Ribeira Valley, Brazil. CLEAN - Soil, Air, Water 46:6, pages 1700321.
Crossref
Lidiane Silva Pereira, Romária Pereira de Araújo, Priscila Souza de Oliveira, Leandro Dias da Silva, Patricia Alves Casaes Alves, Valéria Ferreira Fernandes & Eduardo Gross. (2018) Cadmium induced changes in Solidago chilensis Meyen (Asteraceae) grown on organically fertilized soil with reference to mycorrhizae, metabolism, anatomy and ultrastructure. Ecotoxicology and Environmental Safety 150, pages 76-85.
Crossref
Hong Sun, Yixiao Xie, Yulong Zheng, Yanli Lin & Fuyu Yang. (2018) The enhancement by arbuscular mycorrhizal fungi of the Cd remediation ability and bioenergy quality-related factors of five switchgrass cultivars in Cd-contaminated soil. PeerJ 6, pages e4425.
Crossref
Mahmut Palutoglu, Bunyamin Akgul, Vasily Suyarko, Myroslava Yakovenko, Nataliya Kryuchenko & Ahmet Sasmaz. (2017) Phytoremediation of Cadmium by Native Plants Grown on Mining Soil. Bulletin of Environmental Contamination and Toxicology 100:2, pages 293-297.
Crossref
Rosilaine Carrenho, Lander de J. Alves & Irailde da Silva Santos. 2018. Bio-Geotechnologies for Mine Site Rehabilitation. Bio-Geotechnologies for Mine Site Rehabilitation 261 279 .
Ming-Hung Wong. 2018. Twenty Years of Research and Development on Soil Pollution and Remediation in China. Twenty Years of Research and Development on Soil Pollution and Remediation in China 15 37 .
Mercedes García-Sánchez, Tereza Stejskalová, Inmaculada García-Romera, Jiřina Száková & Pavel Tlustoš. (2017) Risk element immobilization/stabilization potential of fungal-transformed dry olive residue and arbuscular mycorrhizal fungi application in contaminated soils. Journal of Environmental Management 201, pages 110-119.
Crossref
Lucas A. Souza, Fernando A. Piotto, Manuella N. Dourado, Daiana Schmidt, Mônica R. Franco, Luis F. Boaretto, Tiago Tezotto, Renato R. Ferreira & Ricardo A. Azevedo. (2015) Physiological and biochemical responses of Dolichos lablab L. to cadmium support its potential as a cadmium phytoremediator. Journal of Soils and Sediments 17:5, pages 1413-1426.
Crossref
Marcela Ruscitti, María Arango & José Beltrano. (2017) Improvement of copper stress tolerance in pepper plants (Capsicum annuum L.) by inoculation with arbuscular mycorrhizal fungi. Theoretical and Experimental Plant Physiology 29:1, pages 37-49.
Crossref
Neveen B. Talaat & Bahaa T. Shawky. 2017. Plant-Microbe Interactions in Agro-Ecological Perspectives. Plant-Microbe Interactions in Agro-Ecological Perspectives 101 133 .
Nuria Ferrol, Elisabeth Tamayo & Paola Vargas. (2016) The heavy metal paradox in arbuscular mycorrhizas: from mechanisms to biotechnological applications. Journal of Experimental Botany 67:22, pages 6253-6265.
Crossref
Hui Li, Na Luo, Li Jun Zhang, Hai Ming Zhao, Yan Wen Li, Quan Ying Cai, Ming Hung Wong & Ce Hui Mo. (2016) Do arbuscular mycorrhizal fungi affect cadmium uptake kinetics, subcellular distribution and chemical forms in rice?. Science of The Total Environment 571, pages 1183-1190.
Crossref
Katia Plouznikoff, Stéphane Declerck & Maryline Calonne-Salmon. 2016. Belowground Defence Strategies in Plants. Belowground Defence Strategies in Plants 341 400 .
Sophie Trouvelot, Laurent Bonneau, Dirk Redecker, Diederik van Tuinen, Marielle Adrian & Daniel Wipf. (2015) Arbuscular mycorrhiza symbiosis in viticulture: a review. Agronomy for Sustainable Development 35:4, pages 1449-1467.
Crossref
Yahua Chen, Kazuhide Nara, Zhugui Wen, Liang Shi, Yan Xia, Zhenguo Shen & Chunlan Lian. (2015) Growth and photosynthetic responses of ectomycorrhizal pine seedlings exposed to elevated Cu in soils. Mycorrhiza 25:7, pages 561-571.
Crossref
Stéphane Firmin, Sonia Labidi, Joël Fontaine, Frédéric Laruelle, Benoit Tisserant, Florian Nsanganwimana, Bertrand Pourrut, Yolande Dalpé, Anne Grandmougin, Francis Douay, Pirouz Shirali, Anthony Verdin & Anissa Lounès-Hadj Sahraoui. (2015) Arbuscular mycorrhizal fungal inoculation protects Miscanthus×giganteus against trace element toxicity in a highly metal-contaminated site. Science of The Total Environment 527-528, pages 91-99.
Crossref
Fatemeh Aghababaei & Fayez Raiesi. (2015) Mycorrhizal fungi and earthworms reduce antioxidant enzyme activities in maize and sunflower plants grown in Cd-polluted soils. Soil Biology and Biochemistry 86, pages 87-97.
Crossref
Amna, Naeem Ali, Sajid Masood, Tehmeena Mukhtar, Muhammad Aqeel Kamran, Mazhar Rafique, M. Farooq Hussain Munis & Hassan Javed Chaudhary. (2015) Differential effects of cadmium and chromium on growth, photosynthetic activity, and metal uptake of Linum usitatissimum in association with Glomus intraradices. Environmental Monitoring and Assessment 187:6.
Crossref
敏 曹. (2015) Nitrogen Metabolism of Arbuscular Mycorrhizal Symbiosis and Its Physiological and Ecological Regulation Mechanism. Botanical Research 04:03, pages 64-75.
Crossref
Fatima Maria de Souza Moreira, Paulo Ademar Avelar Ferreira, Laíze Aparecida Ferreira Vilela & Marco Aurélio Carbone Carneiro. 2015. Heavy Metal Contamination of Soils. Heavy Metal Contamination of Soils 215 243 .
Qing Yao, Ruiheng Yang, Liangkun Long & Honghui Zhu. (2014) Phosphate application enhances the resistance of arbuscular mycorrhizae in clover plants to cadmium via polyphosphate accumulation in fungal hyphae. Environmental and Experimental Botany 108, pages 63-70.
Crossref
Lingzhi Liu, Zongqiang Gong, Yulong Zhang & Peijun Li. (2014) Growth, cadmium uptake and accumulation of maize (Zea mays L.) under the effects of arbuscular mycorrhizal fungi. Ecotoxicology 23:10, pages 1979-1986.
Crossref
Fatemeh Aghababaei, Fayez Raiesi & Alireza Hosseinpur. (2014) The significant contribution of mycorrhizal fungi and earthworms to maize protection and phytoremediation in Cd-polluted soils. Pedobiologia 57:4-6, pages 223-233.
Crossref
Junli Hu, Fuyong Wu, Shengchun Wu, Cheung Lung Lam, Xiangui Lin & Ming Hung Wong. (2014) Biochar and Glomus caledonium Influence Cd Accumulation of Upland Kangkong (Ipomoea aquatica Forsk.) Intercropped with Alfred Stonecrop (Sedum alfredii Hance). Scientific Reports 4:1.
Crossref
Benoît Cloutier-Hurteau, Marie-Claude Turmel, Catherine Mercier & François Courchesne. (2013) The sequestration of trace elements by willow (Salix purpurea)—which soil properties favor uptake and accumulation?. Environmental Science and Pollution Research 21:6, pages 4759-4771.
Crossref
Saad Eldin Hassan, Mohamed Hijri & Marc St-Arnaud. (2013) Effect of arbuscular mycorrhizal fungi on trace metal uptake by sunflower plants grown on cadmium contaminated soil. New Biotechnology 30:6, pages 780-787.
Crossref
Lucas Anjos Souza, Fernando Angelo Piotto, Roberta Corrêa Nogueirol & Ricardo Antunes Azevedo. (2013) Use of non-hyperaccumulator plant species for the phytoextraction of heavy metals using chelating agents. Scientia Agricola 70:4, pages 290-295.
Crossref
N. Garg & H. Kaur. (2012) Response of Antioxidant Enzymes, Phytochelatins and Glutathione Production Towards C d and Z n Stresses in C ajanus cajan ( L .) M illsp. Genotypes Colonized by Arbuscular Mycorrhizal Fungi . Journal of Agronomy and Crop Science 199:2, pages 118-133.
Crossref
Fa Yuan Wang, Zhao Yong Shi, Xiao Feng Xu, Xu Gang Wang & You Jun Li. (2013) Contribution of AM inoculation and cattle manure to lead and cadmium phytoremediation by tobacco plants. Environmental Science: Processes & Impacts 15:4, pages 794.
Crossref
Muriel da Silva Folli-Pereira, Lydice Sant’Anna Meira-Haddad, Cristina Maria Nobre Sobral de Vilhena da Cruz Houghton & Maria Catarina Megumi Kasuya. 2013. Crop Improvement. Crop Improvement 209 238 .
Rupam Kapoor, Heikham Evelin, Piyush Mathur & Bhoopander Giri. 2013. Plant Acclimation to Environmental Stress. Plant Acclimation to Environmental Stress 359 401 .
Muriel da Silva Folli-Pereira, Lydice Sant'Anna Meira-Haddad, Denise Mara Soares Bazzolli & Maria Catarina Megumi Kasuya. (2012) Micorriza arbuscular e a tolerância das plantas ao estresse. Revista Brasileira de Ciência do Solo 36:6, pages 1663-1679.
Crossref
Fa Yuan Wang, Ling Wang, Zhao Yong Shi, You Jun Li & Zhi Mei Song. (2012) Effects of AM Inoculation and Organic Amendment, Alone or in Combination, on Growth, P Nutrition, and Heavy-Metal Uptake of Tobacco in Pb-Cd-Contaminated Soil. Journal of Plant Growth Regulation 31:4, pages 549-559.
Crossref
Saleh Shahabivand, Hassan Zare Maivan, Ebrahim Mohammadi Goltapeh, Mozafar Sharifi & Ali Asghar Aliloo. (2012) The effects of root endophyte and arbuscular mycorrhizal fungi on growth and cadmium accumulation in wheat under cadmium toxicity. Plant Physiology and Biochemistry 60, pages 53-58.
Crossref
Mirza Hasanuzzaman, Mohammad Anwar Hossain & Masayuki Fujita. (2012) Exogenous Selenium Pretreatment Protects Rapeseed Seedlings from Cadmium-Induced Oxidative Stress by Upregulating Antioxidant Defense and Methylglyoxal Detoxification Systems. Biological Trace Element Research 149:2, pages 248-261.
Crossref
Achref Aloui, Ghislaine Recorbet, Franck Robert, Benoît Schoefs, Martine Bertrand, Céline Henry, Vivienne Gianinazzi-Pearson, Eliane Dumas-Gaudot & Samira Aschi-Smiti. (2011) Arbuscular mycorrhizal symbiosis elicits shoot proteome changes that are modified during cadmium stress alleviation in Medicago truncatula. BMC Plant Biology 11:1.
Crossref
Neera Garg & Nalini Aggarwal. (2011) Effects of Interactions Between Cadmium and Lead on Growth, Nitrogen Fixation, Phytochelatin, and Glutathione Production in Mycorrhizal Cajanus cajan (L.) Millsp.. Journal of Plant Growth Regulation 30:3, pages 286-300.
Crossref
Lucas Anjos de Souza, Sara Adrián López de Andrade, Sarah Caroline Ribeiro de Souza & Marlene Aparecida Schiavinato. (2011) Tolerância e potencial fitorremediador de Stizolobium aterrimum associada ao fungo micorrízico arbuscular Glomus etunicatum em solo contaminado por chumbo. Revista Brasileira de Ciência do Solo 35:4, pages 1441-1451.
Crossref
Arafat Abdel Hamed Abdel Latef. (2011) RETRACTED ARTICLE: Influence of arbuscular mycorrhizal fungi and copper on growth, accumulation of osmolyte, mineral nutrition and antioxidant enzyme activity of pepper (Capsicum annuum L.). Mycorrhiza 21:6, pages 495-503.
Crossref
Michelle M. Meighan, Taressa Fenus, Emma Karey & Joseph MacNeil. (2011) The impact of EDTA on the rate of accumulation and root/shoot partitioning of cadmium in mature dwarf sunflowers. Chemosphere 83:11, pages 1539-1545.
Crossref
Anthea Johnson, Naresh Singhal & Marya Hashmatt. 2011. Biomanagement of Metal-Contaminated Soils. Biomanagement of Metal-Contaminated Soils 29 63 .
S.A.L. Andrade, A.P.D. Silveira & P. Mazzafera. (2010) Arbuscular mycorrhiza alters metal uptake and the physiological response of Coffea arabica seedlings to increasing Zn and Cu concentrations in soil. Science of The Total Environment 408:22, pages 5381-5391.
Crossref
Sara A.L. Andrade, Priscila L. Gratão, Ricardo A. Azevedo, Adriana P.D. Silveira, Marlene A. Schiavinato & Paulo Mazzafera. (2010) Biochemical and physiological changes in jack bean under mycorrhizal symbiosis growing in soil with increasing Cu concentrations. Environmental and Experimental Botany 68:2, pages 198-207.
Crossref
Katarzyna Turnau, Przemysław Ryszka & Grzegorz Wojtczak. 2010. Arbuscular Mycorrhizas: Physiology and Function. Arbuscular Mycorrhizas: Physiology and Function 257 276 .
T. J. Purakayastha & P. K. Chhonkar. 2010. Soil Heavy Metals. Soil Heavy Metals 389 429 .
Sara A.L. Andrade, Priscila L. Gratão, Marlene A. Schiavinato, Adriana P.D. Silveira, Ricardo A. Azevedo & Paulo Mazzafera. (2009) Zn uptake, physiological response and stress attenuation in mycorrhizal jack bean growing in soil with increasing Zn concentrations. Chemosphere 75:10, pages 1363-1370.
Crossref
S. A. L. ANDRADE, P. MAZZAFERA, M. A. SCHIAVINATO & A. P. D. SILVEIRA. (2009) Arbuscular mycorrhizal association in coffee. The Journal of Agricultural Science 147:2, pages 105-115.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.