The growing global population and the phenomenon of climate change are two of the principal concerns of the contemporary world. Every year, the necessity for innovative and eco-friendly technologies to enhance the efficiency of industrial activities increases. The development of materials through nanotechnology has gained attention because of their exceptional physicochemical properties. Indeed, nanomaterials have emerged as innovative tools for improving various industrial processes and products.
For several years, advances in nanotechnology were related to the study of non-biological physicochemical processes. For instance, the synthesis of nanoparticles was one of the most developed topics, as evidenced by the high number of scientific publications [1,2,3]. Firstly, nanoparticles were synthesized through non-biological methods. In other words, Nano Fungicide organic and inorganic precursors, reducing agents, and stabilizers, often under extreme temperature and pH conditions, were combined in order to produce nanoparticles [4]. Unfortunately, even to this day, stability and toxicity are two of the biggest unsolved problems of chemically synthesized nanoparticles [5].
The necessity to search for eco-friendly alternatives for the chemical synthesis of nanoparticles has led to the exploration of the potential of microorganisms. The first scientific report related to the biological synthesis of nanoparticles was published in 2002. In that year, Kowshik et al. reported the extracellular synthesis of silver nanoparticles using a metal-tolerant yeast strain. This study highlighted the relevance and advantages of the biological synthesis of nanoparticles, for instance, the simplicity of particle separation and the environmentally friendly nature of the process [6].
Nanotechnology, particularly through the synthesis of nanoparticles, has had a positive impact on science and different industries. Currently, solar energy systems, electronic devices, and skin-protecting sunscreens are based on nanotechnology. Despite these advances, the use of nanoparticles in agriculture, whether chemically or biologically synthesized, still has not reached its full potential. A major challenge in modern agriculture is the resistance that fungal phytopathogens have developed in recent years.
In the present review, we analyzed and discussed two interesting nanotechnological alternatives to face fungal disease and resistance in crops. The difference between nano-biofungicides and bio-nanofungicides is discussed in this work.
2. Global Impact of Fungal Diseases in Agriculture
Fungal plant pathogens are the primary cause of plant diseases, leading to substantial crop losses globally. Fungicide resistance is a problem of global concern, exacerbated by the emergence of fungicide-resistant strains that compromise the control of diseases. Despite current treatments, fungal diseases cost pre-harvest crops an estimated 10–23% of crop losses per year. Post-harvest losses add 10–20% more. These pathogens impact a variety of crops such as rice, wheat, maize, and soybean [7]. Resistant fungal phytopathogens provoke serious economic losses to crops every year, estimated at USD 60 billion


/>The severity of fungal diseases may vary each year depending on the environmental conditions, the success of disease control measures, and the development of fungicide-resistant strains. Brazil and the United States are among the major soybean producers globally. In Brazil, for instance, Asian Soybean Rust disease caused by Phakopsora pachyrhizi is the most damaging disease for soybean, with yield losses reaching up to 90% (if not managed properly). The extensive occurrence of this pathogen requires the application of a large amount of fungicide, increasing production costs and THE environmental impact [9]. In the United States, Frogeye Leaf Spot caused by Cercospora sojina led to significant yield reductions each year. For instance, between 2013 and 2017, in Midwestern states, the estimated losses increased from 460,000 to 7.6 million bushels, indicating a growing threat to soybean growers [


/>3. Fungicide Resistance in Phytopathogenic F


/>The widespread use of synthetic chemical fungicides has driven the evolution of resistant fungal phytopathogens. The resistance to fungicides is an adaptive ability of pathogens to survive and proliferate in the presence of fungicides that were previously effective in controlling them. This phenomenon is a major challenge in agriculture, threatening crop yields and food security [11]. Fungicide resistance mechanisms are well documented in the existing literature [12,13,14]; therefore, this review will not address them furt


/>3.1. Current Fungicides and Strategies to Combat Fungal Disease and Resist


/>Nowadays, farmers use different strategies to manage fungal phytopathogen resistance. The rotation of crops, the use of fungicides with different mechanisms of action, and the optimization of dose to maintain effectiveness and reduce selection pressure are probably the most common strategies. Awarded for the continuous and strong development of fungicide resistance, the agrochemical companies invest in their R&D sector’s to discover the following: 1. fungicides with new mechanisms of action to target resistant pathogens; 2. the effective combination of active ingredients with different mechanisms of action to prevent the easy development of resistance; 3. cocktails of fungicides containing several active ingredients to combat different pathogens simultaneou


/>The most common molecules used by the agrochemical companies for the formulation of fungicides are listed in Table 1 alongside their mechanisms of action. As mentioned above, the combination of active ingredients with different mechanisms of action is a widely adopted strategy to control resistance. For instance, formulations containing 400 g/L of Mefentrifluconazole + Pyraclostrobin or 450 g/L of Bixafen + Prothioconazole + Trifloxystrobin are currently available in the marke

/>If you have any thoughts with regards to the place and how to use Nano Fungicide, you can get in touch with us at our own webpage.
번호 제목 글쓴이 날짜 조회 수
공지 충압펌프 관리요령(충압펌프가 계속 돌아요) 관리자 2025.06.20 378
10514 The Ultimate Guide To Getting From LaGuardia Airport (LGA) To Midtown new ToryAskew11010690 2025.10.08 0
10513 5 Laws Anyone Working In Remodeling Insights Should Know new PabloHammett57100 2025.10.08 0
10512 Limo From Nj To Nyc new BernadetteCameron 2025.10.08 0
10511 Limo Service Ct To Boston new LarhondaDore03335031 2025.10.08 0
10510 Black Car For Rent Nyc new RollandCarvalho9 2025.10.08 0
10509 Rencontres Pour Professionnels : Trouvez L'Amour En Harmonie Avec Votre Carrière new BrigitteLawton9 2025.10.08 0
10508 Installation De Pelouse En Rouleau à Québec : Guide Complet Par Un Gazon Instantané new ElwoodParer816595387 2025.10.08 0
10507 Design D'intérieur épuré : Comment Créer Un Intérieur Zen Et Moderne new CharlaAbate7905351 2025.10.08 0
10506 Traitement De La Pelouse En Automne : Comment Préparer Votre Gazon Pour La Saison Froide new Marion315878158022256 2025.10.08 0
10505 L'aménagement De Bureau Professionnel : La Clé Du Succès En Entreprise new MerleSpinelli248 2025.10.08 0
10504 Meilleur Engrais Par Pelouse à Québec : Guide Pour Une Herbe Verte Et Luxuriante new DwightSymons34423 2025.10.08 0
10503 Suivi De Chantier Design : Optimiser Votre Projet Architectural new RollandMaier7905 2025.10.08 0
10502 Service D'Entretien De Pelouse Sur Le Québec : Comment Choisir Le Meilleur Service Par Garder Votre Pelouse En Bonne Santé new WendellMoultrie 2025.10.08 1
10501 MLB Roundup: Red Sox End Skid, Sink Royals On Walk-off Slam new DaniBarclay756297941 2025.10.08 0
10500 Le Design Hôtelier : L'Art De Créer Des Expériences Mémorables new ElissaTimm22932 2025.10.08 0
10499 Match Site De Rencontre : Trouvez Votre Partenaire Idéal En Ligne new Liliana5577262610210 2025.10.08 1
10498 La Gestion Professionnelle De Chantier Design : Garantir L'excellence new JeffryLehman5360 2025.10.08 0
10497 La Décoration Rustique Chic: Un Style Intemporel Pour Votre Intérieur new Chang73O5825285 2025.10.08 0
10496 Answers About Real Estate Investing new ThanhD5542812169816 2025.10.08 0
10495 Design De Sous-sol : Transformez Votre Espace En Un Lieu Contemporain new EmmanuelMonash46 2025.10.08 0