1,822
Views
31
CrossRef citations to date
0
Altmetric
Research Article

Omics to address the opportunities and challenges of nanotechnology in agriculture

ORCID Icon & ORCID Icon
Pages 2595-2636 | Published online: 27 Jun 2020

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

Read on this site (1)

Scott A. Bradford, Chongyang Shen, Hyunjung Kim, Robert J. Letcher, Jörg Rinklebe, Yong Sik Ok & Lena Ma. (2022) Environmental applications and risks of nanomaterials: An introduction to CREST publications during 2018–2021. Critical Reviews in Environmental Science and Technology 52:21, pages 3753-3762.
Read now

Articles from other publishers (30)

Javeria Ayub, Muhammad Usama Saeed, Nazim Hussain, Iqra Zulfiqar, Tahir Mehmood, Hafiz M. N. Iqbal & Muhammad Bilal. (2022) Designing robust nano-biocatalysts using nanomaterials as multifunctional carriers - expanding the application scope of bio-enzymes. Topics in Catalysis 66:9-12, pages 625-648.
Crossref
Mohammad Awashra & Piotr Młynarz. (2023) The toxicity of nanoparticles and their interaction with cells: an in vitro metabolomic perspective . Nanoscale Advances 5:10, pages 2674-2723.
Crossref
Bilal Beig, Muhammad Bilal Khan Niazi, Zaib Jahan, Munir Zia, Ghulam Abbas Shah & Zahid Iqbal. (2022) Biodegradable Polymer Encapsulated Nickel Nanoparticles for Slow Release Urea Promotes Rhode Grass Yield and Nitrogen Recovery. Journal of Polymers and the Environment 31:5, pages 1866-1883.
Crossref
Weiwei Li & Arturo A. Keller. (2023) Optimization of Targeted Plant Proteomics Using Liquid Chromatography with Tandem Mass Spectrometry (LC-MS/MS). ACS Agricultural Science & Technology.
Crossref
Mingshan Li, Xiaowei Sun, Meizhen Yin, Jie Shen & Shuo Yan. (2023) Recent Advances in Nanoparticle-Mediated Co-Delivery System: A Promising Strategy in Medical and Agricultural Field. International Journal of Molecular Sciences 24:6, pages 5121.
Crossref
Ayesha Ahmed, Pengfei He, Pengbo He, Yixin Wu, Yueqiu He & Shahzad Munir. (2023) Environmental effect of agriculture-related manufactured nano-objects on soil microbial communities. Environment International 173, pages 107819.
Crossref
Javed Ahmad, Farin Khatoon, Amna, Nida & Mohammad Irfan Qureshi. 2023. Engineered Nanomaterials for Sustainable Agricultural Production, Soil Improvement and Stress Management. Engineered Nanomaterials for Sustainable Agricultural Production, Soil Improvement and Stress Management 205 226 .
Jessica Pandohee, Ritee Basu, Sukanya Dasgupta, Priya Sundarrajan, Nusrat Shaikh, Nimisha Patel & Ayesha Noor. 2023. Sustainable Agriculture in the Era of the OMICs Revolution. Sustainable Agriculture in the Era of the OMICs Revolution 103 118 .
Golla Nagaraju Gari Saritha, Thattantavide Anju & Ajay Kumar. (2022) Nanotechnology - Big impact: How nanotechnology is changing the future of agriculture?. Journal of Agriculture and Food Research 10, pages 100457.
Crossref
Soumitra Shome, Sujit Tewari, Mrinal Kanti Bhattacharya, Sanjib Kumar Panda & Hrishikesh Upadhyaya. (2022) Phytofunctionalized ZnO nanoparticles ameliorate water stress and its recovery in Oryza sativa L.. Acta Physiologiae Plantarum 44:12.
Crossref
Basma A. Omran & Kwang-Hyun Baek. (2022) Control of phytopathogens using sustainable biogenic nanomaterials: Recent perspectives, ecological safety, and challenging gaps. Journal of Cleaner Production 372, pages 133729.
Crossref
Erkai He, Willie J.G.M. Peijnenburg & Hao Qiu. (2022) Photosynthetic, antioxidative, and metabolic adjustments of a crop plant to elevated levels of La and Ce exposure. Ecotoxicology and Environmental Safety 242, pages 113922.
Crossref
Wei Liu, Mengting Li, Weiwei Li, Arturo A. Keller & Vera I. Slaveykova. (2022) Metabolic alterations in alga Chlamydomonas reinhardtii exposed to nTiO 2 materials . Environmental Science: Nano 9:8, pages 2922-2938.
Crossref
Yolanda González-García, Elsy Rubisela López-Vargas, Marissa Pérez-Álvarez, Gregorio Cadenas-Pliego, Adalberto Benavides-Mendoza, Jesús Valdés-Reyna, Fabián Pérez-Labrada & Antonio Juárez-Maldonado. (2022) Seed Priming with Carbon Nanomaterials Improves the Bioactive Compounds of Tomato Plants under Saline Stress. Plants 11:15, pages 1984.
Crossref
M. D. Vijayakumar, G. J. Surendhar, L. Natrayan, Pravin P. Patil, P. M. Bupathi Ram & Prabhu Paramasivam. (2022) Evolution and Recent Scenario of Nanotechnology in Agriculture and Food Industries. Journal of Nanomaterials 2022, pages 1-17.
Crossref
Mihebai Yilimulati, Lang Zhou, Dmitry Shevela & Shujuan Zhang. (2022) Acetylacetone Interferes with Carbon and Nitrogen Metabolism of Microcystis aeruginosa by Cutting Off the Electron Flow to Ferredoxin . Environmental Science & Technology 56:13, pages 9683-9692.
Crossref
Dengjun Wang, Navid B. Saleh, Andrew Byro, Richard Zepp, Endalkachew Sahle-Demessie, Todd P. Luxton, Kay T. Ho, Robert M. Burgess, Markus Flury, Jason C. White & Chunming Su. (2022) Nano-enabled pesticides for sustainable agriculture and global food security. Nature Nanotechnology 17:4, pages 347-360.
Crossref
Mahima Misti Sarkar, Ashis Sarkar & Swarnendu Roy. 2022. Plant Stress: Challenges and Management in the New Decade. Plant Stress: Challenges and Management in the New Decade 421 443 .
Xiangning Huang & Arturo A. Keller. (2021) Metabolomic Response of Early-Stage Wheat (Triticum aestivum) to Surfactant-Aided Foliar Application of Copper Hydroxide and Molybdenum Trioxide Nanoparticles. Nanomaterials 11:11, pages 3073.
Crossref
Sanghamitra Majumdar, Randall W. Long, Jay S. Kirkwood, Anastasiia S. Minakova & Arturo A. Keller. (2021) Unraveling Metabolic and Proteomic Features in Soybean Plants in Response to Copper Hydroxide Nanowires Compared to a Commercial Fertilizer. Environmental Science & Technology 55:20, pages 13477-13489.
Crossref
Xiangning Huang, Pabel Cervantes-Avilés, Weiwei Li & Arturo A. Keller. (2021) Drilling into the Metabolomics to Enhance Insight on Corn and Wheat Responses to Molybdenum Trioxide Nanoparticles. Environmental Science & Technology 55:20, pages 13452-13464.
Crossref
Pabel Cervantes-Avilés, Xiangning Huang & Arturo A. Keller. (2021) Dissolution and Aggregation of Metal Oxide Nanoparticles in Root Exudates and Soil Leachate: Implications for Nanoagrochemical Application. Environmental Science & Technology 55:20, pages 13443-13451.
Crossref
Monika Mortimer, Ying Wang & Patricia A. Holden. (2021) Molecular Mechanisms of Nanomaterial-Bacterial Interactions Revealed by Omics—The Role of Nanomaterial Effect Level. Frontiers in Bioengineering and Biotechnology 9.
Crossref
Oksana Shtark, Roman Puzanskiy, Galina Avdeeva, Vladislav Yemelyanov, Alexey Shavarda, Daria Romanyuk, Marina Kliukova, Anastasia Kirpichnikova, Igor Tikhonovich, Vladimir Zhukov & Maria Shishova. (2021) Metabolic Alterations in Pisum sativum Roots during Plant Growth and Arbuscular Mycorrhiza Development. Plants 10:6, pages 1033.
Crossref
Ting Wu, Yangzhi Liu, Kun Yang, Lizhong Zhu, Jason C. White & Daohui Lin. (2021) Synergistic remediation of PCB-contaminated soil with nanoparticulate zero-valent iron and alfalfa: targeted changes in the root metabolite-dependent microbial community. Environmental Science: Nano 8:4, pages 986-999.
Crossref
Susana García-Sánchez, Michal Gala & Gabriel Žoldák. (2021) Nanoimpact in Plants: Lessons from the Transcriptome. Plants 10:4, pages 751.
Crossref
Vera I. Slaveykova, Sanghamitra Majumdar, Nicole Regier, Weiwei Li & Arturo A. Keller. (2021) Metabolomic Responses of Green Alga Chlamydomonas reinhardtii Exposed to Sublethal Concentrations of Inorganic and Methylmercury . Environmental Science & Technology 55:6, pages 3876-3887.
Crossref
Gaurav Gopal Naik, Jainam Shah, Arun Kumar Balasubramaniam & Alakh N Sahu. (2021) Applications of natural product-derived carbon dots in cancer biology. Nanomedicine 16:7, pages 587-608.
Crossref
Subhaswaraj Pattnaik & Busi Siddhardha. 2021. Microbes in Land Use Change Management. Microbes in Land Use Change Management 221 238 .
Min Huang, Arturo A. Keller, Xiaomi Wang, Liyan Tian, Bing Wu, Rong Ji & Lijuan Zhao. (2020) Low Concentrations of Silver Nanoparticles and Silver Ions Perturb the Antioxidant Defense System and Nitrogen Metabolism in N 2 -Fixing Cyanobacteria . Environmental Science & Technology 54:24, pages 15996-16005.
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.