Cite

Abyaneh M., Abdolamir A., Mehdi G. (2005): Morphological alteration in toxigenic Aspergillus parasiticus exposed to neem (Azadirachta indica L.) leaf and seed aqueous extracts. Mycopathologia 159: 565 – 570. DOI: 10.1007/s11046-005-4332-4. Search in Google Scholar

Adjanohoun E.J., Aboubakar N., Dramane K. (1966): Traditional Medicine and Pharmacopoeia: Contribution to ethnobotanical and floristic studies in Cameroon. 1st Edition, Published by Porto-Novo (Benin) STRC / OUA. Search in Google Scholar

Aghofack N.J., Schinzoumka P.A., Tatchago V. (2015): Effects of extracts or powder of Jatropha curcas and Spirulina platensis on the growth and development of tomato plant. Journal of Applied Biosciences 90: 8413 – 8420. Search in Google Scholar

Alvarez M., Pennell R., Meijer P., Ishikawa A., Dixon R., Lamb C. (1998): Reactive oxygen intermediates mediate a systemic signal network in the establishment of plant immunity. Cell 92: 773 – 784. Search in Google Scholar

Amoabeng B., Gurr G., Gitau C. (2013): Tri-insecticidal effects of African plants against cabbage pests. PLOS ONE 8: 10.1371. Search in Google Scholar

Audy P., Broger L. (2000): Extraits protéiques avec activité antimicrobienne contre les agents de la brûlure tardive et de la gale commune de la pomme de terre. In Résumés des Communications de la 92e Assemblée Annuelle de la Société de Protection des Plantes du Québec (pp. 78 – 80). Search in Google Scholar

Bouket A.C., Narmani A., Tavasolee A., Elyasi G., Abdi A., Naeimi S., Sharifi K., Oszako T., Alenezi F.N., Belbahri L. (2020): In vitro evaluation of wood vinegar (Pyroligneous Acid) VOCs inhibitory effect against a Fungus-like microorganism Ovati sporangium (Phytopythium) isolate recovered from tomato fields in Iran. Agronomy 12: 1609. https://doi.org/10.3390/agronomy12071609 Search in Google Scholar

Campbell C.L., Madden L.V. (1990): Introductory to Plant Disease Epidemiology, 2nd ed. John Wiley & Sons, New York. Search in Google Scholar

Chang C., Yang M., Wen H., Chern J. (2002): Estimation of Total Flavonoid Content in Propolis by Two Complementary Colorimetric Methods. Journal of Food Drug Analysis 10: 178–182. Search in Google Scholar

Chen H., Chen T., Giudici P., Chen F. (2016): Vinegar functions on health: Constituents, sources, and formation mechanisms. Comprehensive Reviews in Food Science and Food Safety 15: 1124 – 1138. Search in Google Scholar

Cowan M.M. (1999): Plant products as antimicrobial agents. Clinical Microbiology Reviews 12: 564 – 582. Search in Google Scholar

Damalas C. A., Koutroubas S.D. (2016): Farmers’ Exposure to Pesticides: Toxicity Types and Ways of Prevention. Toxics 4: 1. https://doi.org/10.3390/toxics4010001 Search in Google Scholar

Das K., Tiwari R.K.S., Shrivastava D.K. (2010): Techniques for evaluation of medicinal plant products as antimicrobial agent: Current methods and future trends. Journal of Medicinal Plants Research 4: 104 – 111. Search in Google Scholar

Djeugap J.F., Fontem D.A., Tapondjou A.L. (2011): Efficacité in vitro et in vivo des extraits de plantes contre le mildiou (Phytophthora infestans) de la morelle noire. International Journal of Biological and Chemical Sciences 5: 2205 – 2213. Search in Google Scholar

Djeugap F.J., Bernier L., Dostaler D., Fontem D.A., Zena G.R.D. (2015): Chemical Control of Shoot Blight [Lasiodiplodia theobromae (Pat.) Griffon & Maubl.] Infecting Ricinodendron heudelotii seedlings in Cameroon. Inter national Journal of Current Research in Biosciences and Plant Biology 2: 82 – 87. Search in Google Scholar

Djeugap F.J., Tziemi T.C.M., Nkouankwi D.M., Sob D.L. (2016): Evaluation expérimentale de trois protocoles de traitement phytosanitaire et de l’effet de la fertilisation organo-minérale sur le mildiou et la rentabilité de la culture de tomate (Solanum lycopersicum L.) à l’Est- Cameroun. Revue Agriculture 11: 69–79. Search in Google Scholar

Djeugap F.J., Mbatkam B., Dida L.S.L., Sonkoue M.A., Galani Y.J.H., Mbi C., Lapa M.J., Yongabi A.K. (2023): Field efficacy of aqueous extracts of Artemisia annua, Commelina benghalensis, and Euphorbia hirta on rice growth, yield, and brown spot disease. Agriculture and Natural Resources 57: 417 – 426. Search in Google Scholar

FAOSTAT (2019): The state of food and agriculture. Moving forward on food loss and waste reduction. Rome, Italy, 182 p. Search in Google Scholar

Fontem D.A., Gumedzoe M.Y.D., Nono-Womdim R. (1998): Biological constraints in tomato production in the western highlands of Cameroun. Tropicultura 16: 89 – 92. Search in Google Scholar

Galani Y.J.H., Nguefack J., Dakole D.C., Fotio D., Petchayo T.S. Fouelefack F.R., Amvam Z.P.H. (2013): Antifungal potential and phytochemical analysis of extracts for seven Cameroonian plants against late blight pathogen Phytophthora infestans. International Journal of Cur rent Microbiology & Applied Sciences 2: 140–154. Search in Google Scholar

Gamagae S.U., Sivakumar D., Wijeratnam R.S. Wilson L ., Wijesundera R.L .C. (2003): Use of sodium bicarbonate and Candida oleophila to control anthracnose in papaya during storage. Crop Protection 22: 775 – 779. Search in Google Scholar

Gaucher D., Duvauchelle S., Andrivon D. (1998): Dossier: mildiou de la pomme de terre. Le champignon évolue, la lutte aussi. Perspectives Agricoles, 236 p. Search in Google Scholar

Govindappa M., Sravya N.S., Poojashri M.N., Sadananda T.S., Chandrappa C.P., Santoyo G., Sharanappa P., Kumar N.V. (2011): Antimicrobial, antioxidant and in vitro anti-inflammatory activity of ethanol extract and active phytochemical screening of Wedelia trilobata (L.) Hitchc. Journal of Medicinal Plants Research 5: 5718 – 5729. Search in Google Scholar

Gullino M.L., Tinivella F., Garibaldi A., Kemmitt G.M., Bacci L., Sheppard B. (2010): Mancozeb: Past, present, and future. Plant Disease 94: 1076 – 1087. Search in Google Scholar

Hadinoto K., Rao N.R.H., Astorga J.B., Zhou R., Biazik J., Zhang T., Masood H., Cullen P.J., Prescott S., Henderson R.K., Trujillo F.J. (2023): Hybrid plasma discharges for energy-efficient production of plasma-activated water. Chemical Engineering Journal 451: 138643. Search in Google Scholar

Harbone (1973): Phytochemical methods. London. Chapman and Hall, Ltd., pp. 49 – 188. Search in Google Scholar

Hasan M. M., Talukder M.R., Hossain Md. B., Roy H., Rai P. (2020): Management of blast of rice through decontamination of seeds with glow discharge plasma and plasma activated water. Bangladesh Journal of Agriculture and Life Science 1: 29 – 37. Search in Google Scholar

He M., Jahan M.S., Wang Y., Sun J., Shu S., Guo S. (2020): Compost Amendments Based on Vinegar Residue Promote Tomato Growth and Suppress Bacterial wilt Caused by Ralstonia solanacearum. Pathogens 9: 227. https://doi.org/10.3390/pathogens9030227 Search in Google Scholar

Hu X., Zhang Y., Wu R.A., Liao X., Liu D., Cullen P.J., Zhou R-W., Ding T. (2022): Diagnostic analysis of reactive species in plasma-activated water (PAW): current advances and outlooks. Journal of Applied Physics 55: 023002. Search in Google Scholar

INRA (2010): Légumes. Ephytia.inra.fr/tomate/importance économique. Avignon, France Search in Google Scholar

Isin S., Yildirim I. (2007): Fruit-growers’ perceptions on the harmful effects of pesticides and their reflection on practices: The case of Kemalpasa. Turkey. Crop Protection 26: 917 – 922. Search in Google Scholar

Jian G., Wang J., Xie H., Jiang J., Li C., Li W., Li L., Liu X., Lin F. (2022): Inactivation effects of plasma-activated water on Fusarium graminearum. Food Control 134: 108683. Search in Google Scholar

Jiang J., Li J., Dong Y. (2018): Effect of Cold Plasma Treatment on Seed ling Growth and Nutrient Absorption of Tomato. Plasma Science and Technology 20: 044007. DOI: 10.1088/2058-6272/aaa0bf Search in Google Scholar

Kiem P.V., Thu V.K., Yen P.H., Nhiem N.X., Tung N.H., Cuong N.X., Minh C.V., Huong H.T., Hyun J.H., Kang H.K., Kim Y.H. (2009): New triterpenoid saponins from Glochidion eriocarpum and their cytotoxic activity. Chemical and Pharmaceutical Bulletin 57: 102 – 105. DOI: 10.1248/cpb.57.102. Search in Google Scholar

Konje C.N., Abdulai A.N., Tange A.D., Nsobinenyui D., Tarla D.N., Tita M.A. (2019): Identification and management of pests and diseases of garden crops in Santa, Cameroon. Journal of Agriculture and Ecology Research International 18: 1 – 9. Search in Google Scholar

Konola J.T., Sargent K.E., Gow J.B. (2000): Efficient repair of hydrogen peroxide-induced DNA damage by Escherichia coli requires SOS induction of RecA and RuvA proteins. Mutation Research 459: 187 – 194. Search in Google Scholar

Kpatinvoh B., Adjou E.S., Dahouenon-Ahoussi E., Konfo T.R.C., Soumanou M.M., Sohounhloue D.C.K. (2017): Efficacité des huiles essentielles de trois plantes aromatiques contre la mycoflore d’altération du niébé (Vigna unguiculata L., Walp) collecté dans les magasins de vente du Sud-Bénin. Journal of Applied Biosciences 109: 10680 – 10687. https://doi.org/10.4314/jab.v109i1.12 Search in Google Scholar

Kuete V., Efferth T. (2010): Cameroonian medicinal plants: pharmacology and derived natural products. Frontiers in Pharmacology 1: 123. DOI: 10.3389/fphar.2010.00123 Search in Google Scholar

Kumar J., Ramlal A., Mallick D., Mishra V. (2021): An overview of some biopesticides and their importance in plant protection for commercial acceptance. Plants 10: 1185. https://doi.org/10.3390/plants10061185 Search in Google Scholar

Lahlali R., El Hamss H., Mediouni-Ben J.J., Barka E.A. (2022): Editorial: The Use of Plant Extracts and Essential Oils as Biopesticides. Frontiers in Agronomy 4: 921965. https://doi.org/10.3389/fagro.2022.921965 Search in Google Scholar

Liu H., Kirchoff B.K., Wu G., Liao J. (2007): Microsporogenesis and male gametogenesis in Jatropha curcas L. (Euphorbiaceae). The Journal of the Torrey Botanical Society 134: 335 – 343. Search in Google Scholar

Luh N.S., Suprapta D.N., Nazir N. (2020): A mixture of piper leaves extracts and rhizobacteria for sustainable plant growth promotion and bio-control of blast pat hogen of organic Balirice. Sustainability 12: 8490. doi.org/10.3390/su12208490. Search in Google Scholar

Mkindi A.G., Tembo Y.L.B., Mbega R.E., Smith K.A., Farrell W.I., Ndakidemi A.P., Stevenson C.P., Belmain R.S. (2020): Extracts of common pesticidal plants increase plant growth and yield in common bean plants. Plants 9: 149. doi.org/10.3390/plants9020149 Search in Google Scholar

Mogo J.P.K., Djeugap F.J., Sop-Tamo B., Mafouasson H.N.A., Ngwem M.C.N., Tebu M.J., Youbi G.K., Laminsi S. (2022): Effect of Gliding Arc Plasma Activated Water (GAPAW) on maize (Zea mays L.) seed germination and growth. Seeds 1: 230 – 243. https://doi.org/10.3390/seeds1040020 Search in Google Scholar

Moisan M., Barbeau J., Crevier M.-C., Pelletier J., Philip N., Saoudi B. (2002): Plasma sterilization. Methods and mechanisms. Pure Applied Chemistry 74: 349 – 358. Search in Google Scholar

Moreau M., Feuilloley M.G.J., Veron W., Meylheuc T., Chevalier S., Brisset J-L., Orange N. (2007): Gliding Arc Discharge in the potato pathogen Erwinia carotovora subsp. Applied Environmental Microbiology 73: 5904 – 5910. Search in Google Scholar

Nawab J., Khan S., Shah M.T., Qamar Z., Din I., Mahmood Q., Gul N., Huang Q. (2015): Contamination of soil, medicinal, and fodder plants with lead and cadmium present in mine-affected areas, Northern Pakistan. Environmental Monitoring and Assessment 187: 605. Search in Google Scholar

Ngene J-P, Ngoule C.C., Pouka K.C-M., Mvogo O.P.B., Ndjib R.C., Dibong S.D., Mpondo M.E. (2015): Importance dans la pharmacopée traditionnelle des plantes à flavonoïdes vendues dans les marchés de Douala-Est (Cameroun). Journal of Applied Biosciences 88: 8194 – 8210. Search in Google Scholar

Njopkou T.A.M. (2019): Effect of medicinal plant extracts, Agro complete flavonin and Plasma activated water on potato late blight in Dschang. MSc. Thesis, University of Dschang, Cameroon, 74 p. Search in Google Scholar

Oramahi H.A., Yoshimura T. (2013): Antifungal and antitermitic activities of wood vinegar from Vitex pubescens Vahl. Journal of Wood Sciences 59: 344 – 350. Search in Google Scholar

Percich J.A., Huot C.M. (1989): Comparison of propiconazole and mancozeb applied individually or sequentially for management of fungal brown spot of wild rice. Plant Disease 73: 257 – 259. Search in Google Scholar

Perez S.M., Biondi E., Laurita R., Proto M, Sarti F., Gherardi M., Bertaccini A., Colombo V. (2019): Plasma activated water as resistance inducer against bacterial leaf spot of tomato. PLoS ONE 14: e0217788. https://doi.org/10.1371/journal.pone.0217788 Search in Google Scholar

Pimenta R.S., Silva J.F.M., Coelho C.M., Morais P.B., Rosa C.A., Corrêa A.C.Jr. (2010): Integrated control of Penicillium digitatum by the predacious yeast Saccharomycopsis crataegensis and sodium bicarbonate on oranges. Brazilian Journal of Microbiology 41: 404 – 410. https://doi.org/10.1590/S1517-838220100002000022 Search in Google Scholar

Ragsdale N.N. (1992): Fungicides. In: Arntzen C.J. (Ed.) Encyclopedia of Agricultural Science. New York, USA, Academic Press. Search in Google Scholar

Rakshit A., Meena V.S., Abhilash P.C., Sarma B.K., Singh H.B., Fraceto L., Parihar M., Kumar A. (2021): Biopesticides: Advances in Bio-Inoculants. Cambridge, UK, Woodhead Publishing. Search in Google Scholar

Ramde-Tiendrebeogo R.A., Tibiri A., Hilou A., Lompo M., Millogo Kone H., Nacoulma O.G., Guissou I.P. (2012): Antioxidative and antibacterial activities of phenolic compounds from Ficus sur Forssk. and Ficus sycomorus L. (Moraceae): potential for sickle cell disease treatment in Burkina Faso International Journal of Biological and Chemical Sciences 6: 328 – 336. Doi: 10.4314/ijbcs.v6i1.2. Search in Google Scholar

R Core Team (2021): R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. https://www.R-project.org Search in Google Scholar

Sivaram A.K., Panneerselvan L., Mukunthan K., Megharaj M. (2022): Effect of pyroligneous acid on the microbial community composition and plant growth-promoting bacteria in soils. Soil Systems 6: 10. DOI: 10.3390/soilsystems6010010 Search in Google Scholar

Thirumdas R., Kothakota A., Annapure U.S., Siliveru T., Blundell R., Gatt R., Valdramidis V.P. (2018): Plasma Activated Water (PAW): Chemistry, physico-chemical proper ties, application in food and agriculture. Trends in Food Science & Technology 77: 21 – 31. Search in Google Scholar

Urzua A., Jara F., Tojo E., Wilkens M., Mendoza L., Rezende M.C. (20 06): A new antibacterial clerodane diterpenoid from the resinous exudate of Haplopappus uncinatus. Journal of Ethnophar macology 103: 297 – 301. Doi.org/10.1016/j.jep.2005.09.042. Search in Google Scholar

Willcox J.K., Catignani G.L., Lazarus S. (20 03): Tomatoes and cardiovascular health. Critical Reviews in Food Science and Nutrition 43: 1–18. http://dx.doi.org/10.1080/10408690390826437 Search in Google Scholar

Wong F., Wilcox W.F. (2001): Comparative physical modes of action of azoxystrobin, mancozeb, and Metalaxyl against Plasmopara viticola (Grape in downy mildew). Plant Disease 85: 649 – 656. DOI: 10.1094/PDIS.2001.85.6.649 Search in Google Scholar

Xia T., Zhang B., Duan W., Zhang J., Wang M. (2020): Nutrients and bioactive components from vinegar: A fermented and functional food. Journal of Functional Foods 64: 103681. Search in Google Scholar

Zambon Y., Contaldo N., Laurita R., Várallyay E., Canel A., Gherardi M., Colombo V., Bertaccini A. (2020): Plasma activated water triggers plant defense responses. Science Report 10: 19211. https://doi.org/10.1038/s41598-020-76247-3. Search in Google Scholar

Zhai Y., Liu S., Xiang Q., Lyu Y., Shen R. (2019): Effect of Plasma-Activated Water on the microbial decontamination and food quality of Thin Sheets of Bean Curd. Applied Sciences 9: 4223. DOI: 10.3390/app9204223 Search in Google Scholar

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