- Misiou O., Koutsoumanis K. Climate change and its implications for food safety and spoilage. Trends in Food Science and Technology. 2022;126:142-152.
- Ploetz R.C. Management of Fusarium wilt of banana: A review with special reference to tropical race 4. Crop Protection. 2015;73:7-15.
- Avelino J., Cristancho M., Georgiou S., Imbach P., Aguilar L., Bornemann G., Läderach P., Anzueto F., Hruska A.J., Morales C. The coffee rust crises in Colombia and Central America (2008-2013): Impacts, plausible causes and proposed solutions. Food Security. 2015;7:303-321.
- Singh R.P., Hodson D.P., Huerta-Espino J., Jin Y., Bhavani S., Njau P., Herrera-Foessel S., Singh P.K., Singh S., Govindan V. The emergence of Ug99 races of the stem rust fungus is a threat to world wheat production. Annual Review of Phytopathology. 2011;49(1):465-481.
- Singh B.K., Delgado-Baquerizo M., Egidi E., Guirado E., Leach J.E., Liu H., Trivedi P. Climate change impacts on plant pathogens, food security and paths forward. Nature Reviews Microbiology. 2023;21(10):640-656.
- Yadav N., Upadhyay R.K. Global effect of climate change on seasonal cycles, vector population and rising challenges of communicable diseases: A review. Journal of Atmospheric Science Research. 2023;6(1):21-59.
7. Fones H.N., Bebber D.P., Chaloner T.M., Kay W.T., Steinberg G., Gurr S.J. Threats to global food security from emerging fungal and oomycete crop pathogens. Nature Food. 2020;1(6):332-342.
8. Hendrickson J.A., Hu C., Aitken S.L., Beyda N. Antifungal resistance: A concerning trend for the present and future. Current Infectious Disease Reports. 2019;21:47.
- Nazzaro F., Fratianni F., Coppola R., De Feo V. Essential oils and antifungal activity. Pharmaceuticals. 2017;10(4):86.
- Deresa E.M., Diriba T.F. Phytochemicals as alternative fungicides for controlling plant diseases: A comprehensive review of their efficacy, commercial representatives, advantages, challenges for adoption, and possible solutions. Heliyon. 2023;9(3).
- Hayat S., Ahmad A., Ahmad H., Hayat K., Khan M.A., Runan T. Garlic, from medicinal herb to possible plant bioprotectant: A review. Scientia Horticulturae. 2022;304:111296.
- Parikh L., Agindotan B.O., Burrows M.E. Antifungal activity of plant-derived essential oils on pathogens of pulse crops. Plant Disease. 2021;105(6):1692-1701.
- Wylie M.R., Merrell D.S. The antimicrobial potential of the neem tree Azadirachta indica. Frontiers in Pharmacology. 2022;13:891535.
- Dietz T., Shwom R.L., Whitley C.T. Climate change and society. Annual Review of Sociology. 2020;46:135-158.
- Vetrita Y., Cochrane M.A. Fire frequency and related land-use and land-cover changes in Indonesia’s peatlands. Remote Sensing. 2019;12(1):5.
- Garrett K.A., Nita M., De Wolf E.D., Esker P.D., Gomez-Montano L., Sparks A.H. Plant pathogens as indicators of climate change. In Climate change. Elsevier. 2021.
- Hunjan M.S., Lore J.S. Climate change: Impact on plant pathogens, diseases, and their management. In: Jabran K., Florentine S., Chauhan B. (eds) Crop Protection Under Changing Climate. Springer, Cham. 2020.
- Delgado-Baquerizo M., Guerra C.A., Cano-Díaz C., Egidi E., Wang J.T., Eisenhauer N., Singh B.K., Maestre F.T. The proportion of soil-borne pathogens increases with warming at the global scale. Nature Climate Change. 2020;10(6):550-554.
- Hay W.T., McCormick S.P., Vaughan M.M. Effects of atmospheric CO2 and temperature on wheat and corn susceptibility to Fusarium graminearum and deoxynivalenol contamination. Plants. 2021;10(12):2582.
- Pouresmaeily M. Ecological responses to climate change. InClimate Change: The Social and Scientific Construct. Cham: Springer International Publishing. 2022.
- Nnadi N.E., Carter D.A. Climate change and the emergence of fungal pathogens. PLoS Pathogens. 2021;17(4):e1009503.
- Benedict K., Park B.J. Invasive fungal infections after natural disasters. Emerging Infectious Diseases. 2014;20(3):349.
- Bradley P.W., Brawner M.D., Raffel T.R., Rohr J.R., Olson D.H., Blaustein A.R. Shifts in temperature influence how Batrachochytrium dendrobatidis infects amphibian larvae. PLoS One. 2019;14(9):e0222237.
- Herkert P.F., Hagen F., Pinheiro R.L., Muro M.D., Meis J.F., Queiroz-Telles F. Ecoepidemiology of Cryptococcus gattii in developing countries. Journal of Fungi. 2017;3(4):62.
- de Vallavieille‐Pope C., Bahri B., Leconte M., Zurfluh O., Belaid Y., Maghrebi E., Huard F., Huber L., Launay M., Bancal M.O. Thermal generalist behaviour of invasive Puccinia striiformis f. sp. tritici strains under current and future climate conditions. Plant Pathology. 2018;67(6):1307-1320.
- Dweba C.C., Figlan S., Shimelis H.A., Motaung T.E., Sydenham S., Mwadzingeni L., Tsilo T.J. Fusarium head blight of wheat: Pathogenesis and control strategies. Crop Protection. 2017;91:114-122.
- Savary S., Willocquet L., Pethybridge S.J., Esker P., McRoberts N., Nelson A. The global burden of pathogens and pests on major food crops. Nature Ecology & Evolution. 2019;3(3):430-439.
28. Juroszek P., Laborde M., Kleinhenz B., Mellenthin M., Racca P., Sierotzki H. A review on the potential effects of temperature on fungicide effectiveness. Plant Pathology. 2022;71(4):775-784.
- Chaloner T.M., Gurr S.J., Bebber D.P. Plant pathogen infection risk tracks global crop yields under climate change. Nature Climate Change. 2021;11(8):710-715.
- Proesmans W., Albrecht M., Gajda A., Neumann P., Paxton R.J., Pioz M., Polzin C., Schweiger O., Settele J., Szentgyörgyi H., Thulke H.H. Pathways for novel epidemiology: plant–pollinator–pathogen networks and global change. Trends in Ecology & Evolution. 2021;36(7):623-636.
- Cai L., Liu C., Fan G., Liu C., Sun X. Preventing viral disease by ZnONPs through directly deactivating TMV and activating plant immunity in Nicotiana benthamiana. Environmental Science: Nano. 2019;6(12):3653-3669.
- van Bruggen A., Nikolic I., Kwakkel J. Modeling with stakeholders for transformative change. Sustainability. 2019;11(3):825.
- Musiime O., Tenywa M.M., Majaliwa M.J., Lufafa A., Nanfumba D., Wasige J.E., Woomer P.L., Kyondha M. Constraints to rice production in Bugiri District. InAfrican Crop Science Conference Proceedings. 2005.
- Simion VE. Dairy cows health risk: Mycotoxins. Ruminants: The Husbandry, Economic and Health Aspects. InTech. 2018.
- Khaskheli M.A., Nizamani M.M., Tarafder E., Das D., Nosheen S., Muhae-Ud-Din G., Khaskheli R.A., Ren M.J., Wang Y., Yang S.W. Sustainable management of major fungal phytopathogens in sorghum (Sorghum bicolor L.) for food security: A comprehensive review. Journal of Fungi. 2025;11(3):207.
- Fisher M.C., Hawkins N.J., Sanglard D., Gurr S.J. Worldwide emergence of resistance to antifungal drugs challenges human health and food security. Science. 2018;360(6390):739-742.
- Benedict K., Chiller T.M., Mody R.K. Invasive fungal infections acquired from contaminated food or nutritional supplements: a review of the literature. Foodborne Pathogens and Disease. 2016;13(7):343-349.
- Liu N., Chen Y., Liu J., Su Q., Zhao B., Sun M., Jia H., Cao Z., Dong J. Transcriptional differences between major Fusarium pathogens of maize, Fusarium verticillioides and Fusarium graminearum with different optimum growth temperatures. Frontiers in Microbiology. 2022;13:1030523.
- Pautasso M., Doring T.F., Garbelotto M., Pellis L., Jeger M.J. Impacts of climate change on plant diseases – opinions and trends. European Journal of Plant Pathology. 2012;133:295-313.
- Gunawardena A.D. Management of Fusarium root rot of lentil and Ascochyta blight of field pea on the Northern Great Plains. Doctoral dissertation, North Dakota State University. 2023.
- Keswani C., Dilnashin H., Birla H., Singh S.P. Unravelling efficient applications of agriculturally important microorganisms for alleviation of induced inter-cellular oxidative stress in crops. Acta Agriculturae Slovenica. 2019;114(1):121-130.
- Sanchez-Lucas R., Mayoral C., Raw M., Mousouraki M.A., Luna E. Elevated CO2 alters photosynthesis, growth and susceptibility to powdery mildew of oak seedlings. Biochemical Journal. 2023;480(17):1429-1443.
- West J.S., Townsend J.A., Stevens M., Fitt B.D. Comparative biology of different plant pathogens to estimate effects of climate change on crop diseases in Europe. European Journal of Plant Pathology. 2012;133:315-331.
- Guche M.D., Dalla Costa L., Trenti F., Guella G., Malnoy M., Moser C., Pilati S. Functional study of lipoxygenase-mediated resistance against Erysiphe necator in grapevine. In XIth International Symposium on Grapevine Physiology and Biotechnology 2021, Stellenbosch, South Africa, ZA. 2021.
- Turkington T.K., Xi K. The role of crop rotation, intercropping and tillage practices for foliar disease management of wheat and barley University of Saskatchewan, Canada. InIntegrated disease management of wheat and barley. Burleigh Dodds Science Publishing. 2018.
- Bekele B., Dawit W. Review on the status and management strategies of Fusarium head blight (Fusarium graminearum) of wheat. International Journal of Research in Agricultural Science. 2018;4:2348-3997.
- Bonfada É.B., Honnef D., Friedrich M.T., Boller W., Deuner C.C. Performance of fungicides on the control of fusarium head blight (Triticum aestivum L.) and deoxynivalenol contamination in wheat grains. Summa Phytopathologica. 2020;45:374-380.
- Klocke B., Sommerfeldt N., Wagner C., Schwarz J., Baumecker M., Ellmer F., Jacobi A., Matschiner K., Petersen J., Wehling P., Sellmann J. Disease threshold-based fungicide applications: potential of multi-disease resistance in winter wheat cultivars in Germany. European Journal of Plant Pathology. 2023;165(2):363-383.
49. Alin D.I.N., Mitrea I., Mitrea R. Natural compounds: an effective and eco-friendly strategies for controlling and combating plant pathogens. Notulae Botanicae Horti Agrobotanici Cluj-Napoca. 2023;51(1):12991-12991.
- Ahmed H.F., Seleiman M.F., Mohamed I.A., Taha R.S., Wasonga D.O., Battaglia M.L. Activity of essential oils and plant extracts as biofungicides for suppression of soil-borne fungi associated with root rot and wilt of marigold (Calendula officinalis L.). Horticulturae. 2023;9(2):222.
51. Sood M., Kapoor D., Kumar V., Sheteiwy M.S., Ramakrishnan M., Landi M., Araniti F., Sharma A. Trichoderma: The “secrets” of a multitalented biocontrol agent. Plants. 2020;9(6):762.
52. Jaisani P., Gohel N.M. Use of novel chitin amended formulation of Trichoderma asperellum and Pseudomonas fluorescens to induce systemic induced resistance in chickpea (Cicer arietinum L.) against biotic stresses. Journal of Food Legumes. 2021;34(1):21-30.
53. Kruidhof H.M., Elmer W.H. Cultural methods for greenhouse pest and disease management. Integrated Pest and Disease Management in Greenhouse Crops. Springer. 2020.
54. Gramaje D., Urbez-Torres J.R., Sosnowski M.R. Managing grapevine trunk diseases with respect to etiology and epidemiology: current strategies and future prospects. Plant Disease. 2018;102(1):12-39.
55. Oliver R.P., Hewitt H.G. Fungicides in crop protection. Cabi. 2014.
- Kohl J., Kolnaar R., Ravensberg W.J. Mode of action of microbial biological control agents against plant diseases: relevance beyond efficacy. Frontiers in Plant Science. 2019;10:454982.
- Lynch J.P., Glynn E., Kildea S., Spink J. Yield and optimum fungicide dose rates for winter wheat (Triticum aestivum L.) varieties with contrasting ratings for resistance to Septoria tritici blotch. Field Crops Research. 2017;204:89-100.
- Torriani S.F., Melichar J.P., Mills C., Pain N., Sierotzki H., Courbot M. Zymoseptoria tritici: A major threat to wheat production, integrated approaches to control. Fungal Genetics and Biology. 2015;79:8-12.
- Brent K.J., Hollomon D.W. Fungicide resistance in crop pathogens: How can it be managed? CropLife International: Brussels, Belgium. 2007.
- Keulemans W., Bylemans D., de Coninck B. Farming without plant protection products: Can we grow without using herbicides, fungicides and insecticides?. European Parliamentary Research Service. Scientific Foresight Unit (STOA). 2019.
- Leadbeater A. Recent developments and challenges in chemical disease control. Plant Protection Science. 2015;51:163-169.
- Sparks T.C., Lorsbach B.A. Perspectives on the agrochemical industry and agrochemical discovery. Pest Management Science. 2017;73(4):672-677.
- Mcloughlin A.G., Walker P.L., Wytinck N., Sullivan D.S., Whyard S., Belmonte M.F. Developing new RNA interference technologies to control fungal pathogens. Canadian Journal of Plant Pathology. 2018;40(3):325-335.
- Dong X., Liu X., Hou Q., Wang Z. From natural environment to animal tissues: A review of microplastics (nanoplastics) translocation and hazards studies. Science of the Total Environment. 2023;855:158686.
- Davies C.R., Wohlgemuth F., Young T., Violet J., Dickinson M., Sanders J.W., Vallieres C., Avery S.V. Evolving challenges and strategies for fungal control in the food supply chain. Fungal Biology Reviews. 2021;36:15-26.
- Drakopoulos D., Meca G., Torrijos R., Marty A., Kägi A., Jenny E., Forrer H.R., Six J., Vogelgsang S. Control of Fusarium graminearum in wheat with mustard-based botanicals: From in vitro to in planta. Frontiers in Microbiology. 2020;11:1595.
- Liu H., Trivedi P. Climate change impacts on plant pathogens, food security and paths forward. Nature Reviews Microbiology. 2023;21(10):640-656.
- Perrone G., Ferrara M., Medina A., Pascale M., Magan N. Toxigenic fungi and mycotoxins in a climate change scenario: Ecology, genomics, distribution, prediction and prevention of the risk. Microorganisms. 2020;8(10):1496.
|