Accès libre

The anti-acetylcholinesterase, insecticidal and antifungal activities of the entophytic fungus Trichoderma sp. isolated from Ricinus communis L. against Locusta migratoria L. and Botrytis cinerea Pers.: Fr.

À propos de cet article

Citez

[1].Rahman, S.F.S.A; Singh, E; Pieterse, C.M.J; Schenk, P.M, Emerging microbial biocontrol strategies for plant pathogens, Plant Science, 2018, 267, 102-111.10.1016/j.plantsci.2017.11.012Search in Google Scholar

[2].Popov, G.B.; Launois-Luong, M.H.; Van der veel, J.J, Les oothèques des criquets du Sahel. Ed. Cirad/Prifas, ‘Collection Acridologie Opérationnelle 7emme édition, Montpellier, 1990, p. 153.Search in Google Scholar

[3].Lecoq M, Les criquets du sahel. Ed. Cirad/Prifas, ‘Collection Acridologie Opérationnelle 1ere édition, Montpellier, 1988, p. 125.Search in Google Scholar

[4].Latchininsky, A.V, Locusts and remote sensing: a review. Journal of Applied Remote Sensing, 2013, 7, 075-099.10.1117/1.JRS.7.075099Search in Google Scholar

[5].Sangbaramou, R.; Camara, I.; Xin-zheng, H.; Shen, J.; Tan, S.; Shi, W, Behavioral thermoregulation in Locusta migratoria manilensis (Orthoptera: Acrididae) in response to the entomopathogenic fungus Beauveria bassiana. Plos One,2018, 13 (11), 1-19.10.1371/journal.pone.0206816626154530485309Search in Google Scholar

[6].Williamson B.; Tudzynski B.; Tudzynsk. P.; Van kan A. A. L, Botrytis cinerea: the cause of grey mould disease. Molecular plant pathology, 2007, 8 (5), 561-580.10.1111/j.1364-3703.2007.00417.x20507522Search in Google Scholar

[7].Bolívar-Anillo, H.J; Garrido, C.; Collado, I.G, Endophytic microorganisms for biocontrol of the phytopathogenic fungus Botrytis cinerea, Phytochemistry Reviews,2019, 1-20.10.1007/s11101-019-09603-5Search in Google Scholar

[8].Zhang, L.; Hunter, D, Management of locusts and grasshoppers in China. Journal of Orthoptera Research,2017, 26, 155.10.3897/jor.26.20119Search in Google Scholar

[9].Ali, A.; Ahmad, F.; Biondi, A.; Wang, Y.; Desneux, N, Potential for using Datura alba leaf extracts against two major stored grain pests, the khapra beetle Trogoderma granarium and the rice weevil Sitophilus oryzae, Journal of Pest Science, 2012,85, 359-366.10.1007/s10340-012-0426-1Search in Google Scholar

[10].Pavela, R, Possibilities of botanical insecticide exploitation in plant protection, Pest Technology,2007, 1, 47-52.Search in Google Scholar

[11].Vega, F.E.; Goettel, M.S.; Blackwell, M.; Chandler, D.; Jackson, M.A.; Keller, S.; Koike, M.; Maniania, N.K.; Monzon, A.; Ownley, B.H.; Pell, J.K.; Rangel, D.E.N.; Roy, H.E, Fungal entomopathogens: new insights on their ecology, Fungal Ecology, 2009, 2, 149-159.10.1016/j.funeco.2009.05.001Search in Google Scholar

[12].Yan, D.H.; Song, X.; Li, H.; Luo, T.; Dou, G.; Strobel, G, Antifungal Activities of Volatile Secondary Metabolites of Four Diaporthe Strains Isolated from Catharanthus roseus. Journal of Fungi,2018,4, 65.10.3390/jof4020065602350629848985Search in Google Scholar

[13].Aly, A.H.; Debbab, A.; Proksch, P, Fungal endophytes: unique plant inhabitants with great promises. Applied Microbiology and Biotechnology, 2011,90 (6), 1829–1845.10.1007/s00253-011-3270-y21523479Search in Google Scholar

[14].Ghorbanpour, M.; Omidvari, M.; Abbaszadeh-Dahaji, P.; Omidvar, R.; Kariman, K, Mechanisms underlying the protective effects of beneficial fungi against plant diseases. Biological Control, 2018, 117, 147-157.10.1016/j.biocontrol.2017.11.006Search in Google Scholar

[15]. Harwoko, H.; Daletos, G.; Stuhldreier, F.; Lee, J, Wesselborg, S, Feldbrügge, M.; Müller, W.E.G; Kalscheuer, R; Ancheeva, E; Proksch, P, Dithiodiketopiperazine derivatives from endophytic fungi Trichoderma harzianum and Epicoccum nigrum. Natural product research, 2019, 18, 1-9.10.1080/14786419.2019.1627348Search in Google Scholar

[16].Ouedraogo, R.M.; Kamp, A.; Goettel, M.S.; Brodeur, J.; Bidochka, M.J, Attenuation of fungal infection in thermoregulating Locusta migratoria is accompanied by changes in hemolymph proteins. Journal of Invertebrate Pathology, 2002, 81, 19-24.10.1016/S0022-2011(02)00117-9Search in Google Scholar

[17].Li, Y.L.; Xin, X.M.; Chang, Z.Y.; Shi, R.J.; Miao Z.M.; Ding J.; Hao G.P., The endophytic fungi of Salvia miltiorrhiza BGE. f. alba are a potential source of natural antioxidants. Bot. Studies, 2015, 56(1), 5.10.1186/s40529-015-0086-6543030728510814Search in Google Scholar

[18].Dolatabad, H.K.; Nikkhah, M.J.; Shier, W.T, Evaluation of antifungal, phosphate solubilisation, and siderophore and chitinase release activities of endophytic fungi from Pistacia vera. Mycology Progress, 2017, 16(8), 777-790.10.1007/s11557-017-1315-zSearch in Google Scholar

[19].Lopez-llorca, L.V.; Carbonell, T.; Vidal, S.G., Degradation of insect cuticle by Paecilomyces farinosus proteases. Mycological Progress, 2002, 1(3), 249-256.10.1007/s11557-006-0022-ySearch in Google Scholar

[20].Harborne, J.B., Phytochemical Methods. Chapman Hall, London, 1998, 60-66.Search in Google Scholar

[21].Ellman, G.L.; Courtney, K.D.; Andres,V.; Featherston, R.M., A new and rapid colorimetric determination of acetylcholinesterase activity. Biochemical Pharmacology, 1961, 7, 88-95.10.1016/0006-2952(61)90145-9Search in Google Scholar

[22].Abdellatif, S.; Abdelrahman, S.M.; Deraz S.F., Promising antifungal effect of some folkloric medicinal plants collected from el-hammam habitat, Egypt against dangerous pathogenic and toxicogenic fungi. ARPN Journal of Agricultural and Biological Science, 2011, 6 (9), 26-32.Search in Google Scholar

[23].Porras Alfaro, A., Bayman, P., Hidden fungi, emergent proprieties: endophytes and microbiomes. Annual Review of Phytopathology, 2011, 49, 291-315.10.1146/annurev-phyto-080508-081831Search in Google Scholar

[24].Zhang, Z.B.; Zeng, Q.G.; Yan, R.M.; Wang, Y.; Zou, Z.R.; Zhu, D., Endophytic fungus Cladosporium cladosporioides LF70 from Huperzia serrata produces Huperzine A. World Journal of Microbiology Biotechnology, 2011, 27, 479-486.10.1007/s11274-010-0476-6Search in Google Scholar

[25].Breen, J.P, Enhanced resistance to fall armyworm (Lepidoptera: Noctuidae) in Acremonium endophyteinfected turfgrasses. Journal of Economic Entomology,1993, 86, 621-629.10.1093/jee/86.2.621Search in Google Scholar

[26].Clement, S. L.; Elberson, L. R.; Bosque-Perez, N. A.; Schotzko, D. J., Detrimental and neutral effects of wild barley – Neotyphodium fungal endophyte associations on insect survival. Entomologia Experimentalis et Applicata,2005, 114, 119-125.10.1111/j.1570-7458.2005.00236.xSearch in Google Scholar

[27].Reinhold-Hurek, B., Hurek T., Living inside plants:bacterial endophytes. Current Opinion in Plant Biology, 2011, 14, 435-44.10.1016/j.pbi.2011.04.004Search in Google Scholar

[28].Strobel, G.A., Endophytes as source of bioactive products. Microbes Infection, 2003, 5, 535-544.10.1016/S1286-4579(03)00073-XSearch in Google Scholar

[29].Mantzoukas, S.; Lagogiannis, I., Endophytic Colonization of Pepper (Capsicum annum) Controls Aphids (Myzus persicae Sulzer). Applied Sciences, 2019,9, 2239, 1-12.10.3390/app9112239Search in Google Scholar

[30].Nisa, H.; Kamili, AN.; Nawchoo, I.A.; Shafi, S.; Shameem, N.; Bandh S.A, Fungal endophytes as prolific source of phytochemicals and other bioactive natural products: a review. Microb.Pathogen., 2015, 82, 50-59.10.1016/j.micpath.2015.04.001Search in Google Scholar

[31].Pérez, L.D.S.; Florido, J.E.B.; Navarro, S.R.; Mayagoitia, J.F.C.; López, M.A.R., Enzymes of Entomopathogenic Fungi, Advances and Insights. Advances in Enzyme Research, 2014, 2, 65-76.10.4236/aer.2014.22007Search in Google Scholar

[32].Tiwari, P.; Kumar, B.; Kaur, M.; Kaur, G.; Kaur, H., Phytochemical screening and Extraction: A Review. Internationale pharmaceutica sciencia, 2011,1, 98-106.Search in Google Scholar

[33].Coutiño, L.R.; Marquez, J.E.; Peter, M.G.; Shirai, K., The effect of pH on the production of chitinolytic enzymes of Verticillium fungicola in submerged cultures. Bioresource Technology, 2010, 101, 9236-9240.10.1016/j.biortech.2010.06.160Search in Google Scholar

[34].Kitamura, E.; Kamei, Y., Molecular cloning, sequencing and expression of the gene encoding a novel chitinase A from marine bacterium, Pseudomonas sp. PE2, and its domain structure. Applied Microbiology and Biotechnology, 2003, 61, 140-149.10.1007/s00253-002-1154-xSearch in Google Scholar

[35].Binod, P.; Sukumaran, R.K.; Shirke, S.V.; Rajput, J.C.; Pandey, A., Evaluation of fungal culture filtrate containing chitinase as a biocontrol agent against Helicoverpa armigera. Journal of Applied Microbiology,2007, 103, 1845-1852.10.1111/j.1365-2672.2007.03428.xSearch in Google Scholar

[36].Agrawal, T.; Kotasthane, A.S., Chitinolytic assay of indigenous Trichoderma isolates collected from different geographical locations of Chhattisgarh in Central India. Springer Plus,2012, 1, 73.10.1186/2193-1801-1-73360261023526575Search in Google Scholar

[37].Sapna Bai, N.; Remadevi, O.K.; Sasidharan, T.O.; Balachander, M.; Dharmarajan, P., cuticle degrading enzyme production by some isolates of the entomopathogenic fungus, Metarhizium anisopliae (Metsch.). Journal of Biosciences, 2012, 20, 25-32.10.3329/jbs.v20i0.17648Search in Google Scholar

[38].Di Pietro, A.; Lorito, M.; Hayes, C.K.; Broadway, R.M.; Harman, G.E., Endochitinases from Gliocladium virens: isolation, characterization and synergistic antifungal activity in combination with gliotoxin. Phytopathology, 1993, 83, 308-313.10.1094/Phyto-83-308Search in Google Scholar

[39].Seidl, V., Chitinases of filamentous fungi: a large group of diverse proteins with multiple physiological functions. Fungal Biology Reviews, 2008, 22, 36-42.10.1016/j.fbr.2008.03.002Search in Google Scholar

[40].Tan, R.X; Zou, W.X., Endophytes: a rich source of functional metabolites. Natural Product Reports, 2001, 18, 448-459.10.1039/b100918oSearch in Google Scholar

[41].Yang, J.; Tian, B.; Liang, L.; Zhang, K.Q., Extracellular enzymes and the pathogenesis of nematophagous fungi. Applied Microbiology and Biotechnology, 2007, 75(1), 21-31.10.1007/s00253-007-0881-417318531Search in Google Scholar

[42].Howell, C.R, Mechanisms employed by Trichoderma species in the biological control of plant diseases: the history and evolution of current concepts. Plant Disease,2003, 87, 4-10.10.1094/PDIS.2003.87.1.430812698Search in Google Scholar

[43].Johnson, R.D.; Akagi Y.; Fleetwood, D.J; Gardiner, D.M.; Kodama, M.; Young, C.; Voisey, C.R., Fungal Toxins of Agricultural Importance. In: Kempken, F. (Ed). Agricultural Applications. 2013, 75-99.10.1007/978-3-642-36821-9_4Search in Google Scholar

[44].Singh, B.; Thakur, A.; Kaur, S.; Chadha, B.S.; Kaur, A., Acetylcholinesterase Inhibitory Potential and Insecticidal Activity of an Endophytic Alternaria sp. from Ricinus communis. Applied Biochemistry and Biotechnology, 2012,168, 991-1002.10.1007/s12010-012-9835-0Search in Google Scholar

[45].Singh, B.; Bhagat, J.; Chadha, B.S.; Kaur, A., Cholinesterase inhibitory potential of different Alternaria spp. and their phylogenetic relationships. Biologia, 2014, 69(1), 10-14.10.2478/s11756-013-0294-zSearch in Google Scholar

[46].Champ P., Mode d'action et utilisation des organophosphorés. Mode d'action et utilisation des insecticides: Insectes, insecticides, santé. Paris, 1985, 207-223.Search in Google Scholar

[47].Demirci, E.; Dane, E.; Eken, C., In vitro antagonistic activity of fungi isolated from sclerotia on potato tubers against Rhizoctonia solani. Turkish Journal of Biology, 2011,35, 457-462.10.3906/biy-1004-98Search in Google Scholar

[48].Shentu, X.; Zhan, X.; Ma, Z.; Yu, X.; Zhang, C., Antifungal activity of metabolites of the endophytic fungus Trichoderma brevicompactum from garlic. Brazilain Journal of Microbiology, 2014, 45, 248-254.10.1590/S1517-83822014005000036Search in Google Scholar

[49].Liu, K.; Yang, Y.; Miao, C.P.; Zheng, Y.K.; Chen, J.L.; Chen, Y.W.; Xu, L.H.; Guang, H.L.; Ding, Z.T.; Zhao, L.X., Koningiopisins A-H, polyketides with synergistic antifungal activities from the endophytic fungus Trichoderma koningiopsis. Planta Medica, 2016, 82, 371-376.10.1055/s-0035-1558228Search in Google Scholar

[50].Li, W.; Xu, J.; Li, F.; Xu, L.; Li, C., A New antifungal isocoumarin from the endophytic fungus Trichoderma sp. 09 of Myoporum bontioides A. Gray. Pharmacognocy Magazine, 2016, 12, 259-261.Search in Google Scholar

[51].Hu, M.; Li, Q.L.; Yang, Y.B.; Liu, K.; Miao, C.P.; Zhao, L.X.; Ding, Z.T., Koninginins R-S from the endophytic fungus Trichoderma koningiopsis. Natural Products Resarch, 2017, 31, 835-839.10.1080/14786419.2016.1250086Search in Google Scholar

[52].Karaoglu, S.A.; Bozdeveci, A.; Pehlivan, N., Characterization of Local Trichoderma spp. as Potential Bio-Control Agents, Screening of in vitro Antagonistic Activities and Fungicide Tolerance. Hacettepe Journal of Biology & Chemistry, 2018, 46 (2), 247-261.10.15671/HJBC.2018.233Search in Google Scholar

[53].Pascale, A.; Vinale, F.; Manganiello, G.; Nigro, M.; Lanzuise, S.; Ruocco, M.; Marra, R.; Lombardi, N.; Woo, S.L.; Lorito, M., Trichoderma and its secondary metabolites improve yield and quality of grapes. Crop Protection, 2017, 92, 176-181.10.1016/j.cropro.2016.11.010Search in Google Scholar

[54].Sharma, R.; Magotra, A.; Manhasa, R.S.; Chaubey, A., Antagonistic potential of a psychrotrophic fungus: Trichoderma velutinum ACR-P1, Biological Control, 2017, 115, 12-17.10.1016/j.biocontrol.2017.08.024Search in Google Scholar

eISSN:
2367-5144
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Chemistry, other, Geosciences, Geography, Life Sciences, Physics