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Original Articles

Benefits of arbuscular mycorrhizal fungi in reducing organic contaminant residues in crops: Implications for cleaner agricultural production

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Pages 1580-1612 | Published online: 23 Sep 2019

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Li Chen, Fayuan Wang, Zhiqin Zhang, Herong Chao, Haoran He, Weifang Hu, Yi Zeng, Chengjiao Duan, Ji Liu & Linchuan Fang. (2023) Influences of arbuscular mycorrhizal fungi on crop growth and potentially toxic element accumulation in contaminated soils: A meta-analysis. Critical Reviews in Environmental Science and Technology 53:20, pages 1795-1816.
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Tong Jia, Yue Zhang, Yushan Yao, Yu Wang, Xueli Liang, Mengyao Zheng, Lijuan Zhao & Baofeng Chai. (2023) Effects of AMF inoculation on the eco-physiological characteristics of Imperata cylindrica under differing soil nitrogen conditions. Frontiers in Plant Science 14.
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Jeanette Rosas-Moreno, Christopher Walker, Katie Duffy, Claudia Krüger, Manuela Krüger, Clare H. Robinson & Jon K. Pittman. (2023) Isolation and identification of arbuscular mycorrhizal fungi from an abandoned uranium mine and their role in soil-to-plant transfer of radionuclides and metals. Science of The Total Environment 876, pages 162781.
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Vikrant Goswami, Sharma Deepika, Ram Chandra, C.R. Babu & David Kothamasi. (2023) Arbuscular mycorrhizas accelerate the degradation of colour containing organic pollutants present in distillery spent wash leachates. Journal of Hazardous Materials 452, pages 131291.
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Addisu Ebbisa. 2023. Arbuscular Mycorrhizal Fungi in Agriculture - New Insights. Arbuscular Mycorrhizal Fungi in Agriculture - New Insights.
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Narges Sabeti, Seyed Sajjad Hosseini, Jalal Sadeghi, Samaneh Abduolrahimi & Amir Lakzian. (2023) The Effects of Funneliformis mosseae and Serendipita indica on the Accumulation of Tetracycline and Chlortetracycline in Lettuce (Lactuca sativa) and Recovering Soil Microbial Activities. Water, Air, & Soil Pollution 234:1.
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Bo Hu, Shanshan Hu, Jan Vymazal & Zhongbing Chen. (2022) Application of arbuscular mycorrhizal fungi for pharmaceuticals and personal care productions removal in constructed wetlands with different substrate. Journal of Cleaner Production 339, pages 130760.
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Agnieszka Jamiołkowska, Barbara Skwarylo-Bednarz, Ali Hamood Thanoon & Weronika Kursa. (2021) Contribution of mycorrhizae to sustainable and ecological agriculture: a review. International Agrophysics 35:4, pages 331-341.
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M.J. Salomon, S.J. Watts-Williams, M.J. McLaughlin, C.J. Brien, N. Jewell, B. Berger & T.R. Cavagnaro. (2021) Evaluation of commercial composts and potting mixes and their ability to support arbuscular mycorrhizal fungi with maize (Zea mays) as host plant. Waste Management 134, pages 187-196.
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Isabel Brito, Mário Carvalho & Michael J. Goss. (2021) Managing the functional diversity of arbuscular mycorrhizal fungi for the sustainable intensification of crop production. PLANTS, PEOPLE, PLANET 3:5, pages 491-505.
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Peng Cheng, Shuqi Zhang, Quanlong Wang, Xueying Feng, Shuwu Zhang, Yuhuan Sun & Fayuan Wang. (2021) Contribution of Nano-Zero-Valent Iron and Arbuscular Mycorrhizal Fungi to Phytoremediation of Heavy Metal-Contaminated Soil. Nanomaterials 11:5, pages 1264.
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Agata Borowik, Jadwiga Wyszkowska & Jan Kucharski. (2021) Microbiological Study in Petrol-Spiked Soil. Molecules 26:9, pages 2664.
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Weiwei Yang, Peng Cheng, Catharine A. Adams, Shuwu Zhang, Yuhuan Sun, Hongwei Yu & Fayuan Wang. (2021) Effects of microplastics on plant growth and arbuscular mycorrhizal fungal communities in a soil spiked with ZnO nanoparticles. Soil Biology and Biochemistry 155, pages 108179.
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E. Janeeshma & Jos T. Puthur. 2021. Sustainable Environmental Clean-up. Sustainable Environmental Clean-up 165 185 .
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Miroslav Pohanka & Vitezslav Vlcek. (2020) Immunoassay of Glomalin by Quartz Crystal Microbalance Biosensor Containing Iron Oxide Nanoparticles. International Journal of Analytical Chemistry 2020, pages 1-6.
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