数字农科院2.0

Exploring the potential of nanomaterials (NMs) as diagnostic tools and disease resistance for crop pathogens

文献类型: 外文期刊

作者: Muhammad Jabran;Muhammad Amjad Ali;Saima Muzammil;Adil Zahoor;Faizan Ali;Sarfaraz Hussain;Ghulam Muhae-Ud-Din;Munazza Ijaz;Li Gao

作者机构:

关键词: Disease identification;Disease resistance;Eco-friendly;Nanomaterials;Plant defense system;Plant pathogens

期刊名称: Chemical and Biological Technologies in Agriculture

ISSN: 2196-5641

年卷期: 2024 年 11 卷 1 期

页码:

收录情况: SCIE(2024版)

摘要: Food crops are attacked by microbial pathogens and insect pests, leading to significant yield reductions and economic losses. Conventional disease diagnosis and management approaches often fail to provide rapid and eco-friendly solutions. In the current situation, nanomaterials (NMs) serve a valuable role in both managing emerging pathogens and monitoring overall plant health. Nanotechnology has transformed the biotechnology industry including agriculture with specific applications such as nano-fungicides, nano-bactericides, and nano-pesticides. This review focuses on the use of various nanomaterials, including inorganic materials such as Ag, ZnO, CuO, and CeO, as well as carbon-based nanoparticles, nanotubes, nanowires, and nano-capsules. The application of NMs holds the potential to address various challenges in food security through novel applications like advanced nano-biosensors for rapid pathogen detection and targeted disease management strategies. This includes the potential to minimize reliance on chemical inputs and contribute to more sustainable agricultural practices. Nanomaterials (NMs) promise to deliver plant hormones and signaling molecules to plants, enhancing resistance inducers against major crop pathogens. NMs against newly arising pathogens through reactive oxygen generation, membrane damage, and biochemical interference are also reviewed. However, challenges regarding the stability, toxicity, and environmental impacts of NMs are discussed, along with recommendations on green synthesis and functionalization approaches. This article aims to investigate the role of nanomaterials (NMs) in managing emerging pathogens and monitoring overall crop health offering an insightful outlook for future generations. Further biosafety aspects and larger-scale validation of NM-based applications could enable their commercialization for improving global food security. Graphical Abstract: (Figure presented.)

分类号:

  • 相关文献

[1]RepDI: A light-weight CPU network for apple leaf disease identification. Jiye Zheng,Kaiyu Li,Wenbin Wu,Huaijun Ruan. 2023

[2]Evaluation of aphid transmission abilities and vector transmission phenotypes of barley yellow dwarf viruses in China. Li, L.,Liu, L.,Wang, X. F.,Zhou, G..

[3]Survey of faba bean and field pea viruses in Yunnan Province, China. Bao Shiying,Wang Xiaoming,Zhu Zhendong,Zong Xuxiao,Kumari, Safaa,Freeman, Angela,van Leur, Joop.

[4]Colletotrichum - names in current use. Hyde, K. D.,Noireung, P.,Prihastuti, H.,Cai, L.,Cannon, P. F.,Cannon, P. F.,Crouch, J. A.,Crous, P. W.,Damm, U.,Goodwin, P. H.,Hyde, K. D.,Chen, H.,Johnston, P. R.,McKenzie, E. H. C.,Pennycook, S. R.,Weir, B. S.,Jones, E. B. G.,Liu, Z. Y.,Yang, Y. L.,Moriwaki, J.,Pfenning, L. H.,Sato, T.,Shivas, R. G.,Tan, Y. P.,Taylor, P. W. J.,Yang, Y. L.,Zhang, J. Z.. 2009

[5]Strategies for reducing Cd concentration in paddy soil for rice safety. NaziaTahir,Aman Ullah,Adnan Tahir,Haroon Ur Rashid,Talmiz ur Rehman,Subhan Danish,Babar Hussain,Hanife Akca. 2021

[6]The Newly Identified Trichoderma harzianum Partitivirus (ThPV2) Does Not Diminish Spore Production and Biocontrol Activity of Its Host. Rongqun Wang,Chenchen Liu,Xiliang Jiang,Zhaoyan Tan,Hongrui Li,Shujin Xu,Shuaihu Zhang,Qiaoxia Shang,Holger B. Deising,Sven Erik Behrens,Beilei Wu. 2022

[7]Utilization Of Potato Peel As E.co-Friendly Products: A Review. Gebrechristos, HY, Chen, WH. 2018

[8]Prediction Model of Photodegradation for PBAT/PLA Mulch Films: Strategy to Fast Evaluate Service Life. Xie, Jiazhuo,Yan, Yan,Fan, Shaohua,Min, Xiangyu,Wang, Lei,You, Xiaoqing,Jia, Xianfei,Waterhouse, Geoffrey I. N.,Wang, Jing,Xu, Jing. 2022

[9]Sustainable Agriculture: Rare-Actinomycetes to the Rescue. Oyedoh, Oghoye P. P.,Yang, Wei,Dhanasekaran, Dharumadurai,Santoyo, Gustavo,Glick, Bernard R. R.,Babalola, Olubukola O. O.. 2023

[10]Different Preharvest Diseases in Garlic and Their Eco-Friendly Management Strategies. Anum H.,Tong Y.,Cheng R.. 2024

[11]Complete genome sequence of a Chinese Pseudomonas syringae pv. actinidiae strain Yunnan3.2. Yao, Guanglu,Yang, Fenghuan,Yu, Chao,Wang, Qin,Yang, Yijuan,Chen, Huamin. 2024

[12]Novel Environmentally Friendly RNAi Biopesticides: Targeting V-ATPase in Holotrichia parallela Larvae Using Layered Double Hydroxide Nanocomplexes. Jiang, Li,Wang, Qian,Kang, Zhan-hai,Wen, Jing-xin,Yang, Yu-bo,Lu, Xiu-jun,Guo, Wei,Zhao, Dan. 2024

[13]Growth regulation in bread wheat via novel bioinoculant formulation. Muhammad Jabran,Muhammad Amjad Ali,Tuba Acet,Adil Zahoor,Amjad Abbas,Usman Arshad,Muhammad Mubashar,Muhammad Naveed,Abdul Ghafoor,Li Gao. 2024

[14]The TOR signalling pathway in fungal phytopathogens: A target for plant disease control. Yun Song,Yaru Wang,Huafang Zhang,Muhammad Abu Bakar Saddique,Xiumei Luo,Maozhi Ren. 2024

[15]Sustainable reuse of plant waste through biofumigation: controlling soil-borne pathogens and enhancing soil health via microbial regulation. Ji, Yutong,Zhang, Yi,Chen, Xinhua,Guo, Anmin,Zhang, Wei,Liu, Xuemei,Wang, Hongyu,Sun, Hai,Yan, Dongdong,Li, Yuan,Fang, Wensheng,Cao, Aocheng,Wang, Qiuxia. 2025

[16]Chemodynamic Metal-Phenolic Nanopesticide Performs In Situ Hydrogen Peroxide Self-Supply against Plant Pathogens for Food Sustainability. Wang, Mingyao,Yang, Xiao,Gou, Tingting,Huang, Tao,Wang, Xiaoling,Yang, Qichang,Guo, Junling. 2025

[17]Nanomaterials in biochar: Review of their effectiveness in remediating heavy metal-contaminated soils. Mahmoud Mazarji,Muhammad Tukur Bayero,Tatiana Minkina,Svetlana Sushkova,Saglara Mandzhieva,Tatiana V. Bauer,Alexander Soldatov,Mika Sillanpää,Ming Hung Wong. 2023

[18]Nanomaterials enabled photoelectrocatalysis for removing pollutants in the environment and food. Jing Zeng,Ran Xu,Ahmed A. El-Kady,Behrouz Tajdar Oranj,Rajib Ahmed,Romanovski Valentin,Xiaofeng Hu,Wenqin Wu,Du Wang,Jin Mao,Huimin Wu,Xin Gu,Peiwu Li,Weilin Xu,Zhaowei Zhang. 2023

[19]Plant Salinity Stress Response and Nano-Enabled Plant Salt Tolerance. Zengqiang Li,Lan Zhu,Fameng Zhao,Jiaqi Li,Xin Zhang,Xiangjun Kong,Honghong Wu,Zhiyong Zhang. 2022

[20]Nanomaterials and nanotechnology for the delivery of agrochemicals: strategies towards sustainable agriculture. Changcheng An,Changjiao Sun,Ningjun Li,Bingna Huang,Jiajun Jiang,Yue Shen,Chong Wang,Xiang Zhao,Bo Cui,Chunxin Wang,Xingye Li,Shenshan Zhan,Fei Gao,Zhanghua Zeng,Haixin Cui,Yan Wang. 2022

作者其他论文 更多>>