Accesso libero

Response of Daucus carota Plants Under Meloidogyne incognita Infection to Blumea aurita Compost, Powder, and Essential Oil

  
10 set 2024
INFORMAZIONI SU QUESTO ARTICOLO

Cita
Scarica la copertina

Abdel-Bary N.A., Hendy H.H., Ashoub A.H., Yassin M.Y., Abdel-Razek G.M. 2014. Evaluation of compost and compost tea as promising method for Meloidogyne incognita management. Egyptian Journal of Agronematology 13(2): 50–66. DOI: 10.21608/ejaj.2014.63617. Search in Google Scholar

Abdulla M.A., Lutfi M.F., Baket A.O., Mohamed A.H. 2013. Evaluation of the anti-inflammatory effects of Blumea aurita. Global Journal of Medical Research 13(B4): 23–29. Search in Google Scholar

Abou El Atta D.A.M., Mostafa F.A.M., Taha H.A. 2012. Effectiveness of certain botanical and city waste composts on Meloidogne incognita infecting eggplant. Egyptian Journal of Agronematology 11(1): 90–105. Search in Google Scholar

Ali M.A, Abbas A, Azeem F, Javed N, Bohlmann H 2015. Plant-nematode interactions: from genomics to metabolomics. International Journal of Agricultural Biology 7: 1071–1082. DOI: 10.17957/ijab/15.0037. Search in Google Scholar

Andrews F.W. 1956. The flowering plants of the Sudan, vol. 3. T. Buncle, Arbroath, Scotland, 579 p. Atungwu J., Lawal O., Afolami S., Adejuyigbe C. 2012. Appraisal of compost for suppression of Meloidogyne species and enrichment of micro-arthropods in soybean fields. Biological Agriculture and Horticulture 28(2): 101–110. DOI: 10.1080/01448765.2012.681348. Search in Google Scholar

Baker K.R. 1985. Sampling nematode communities. In: Baker K.R., Carter C.C., Sasser J.N. (Eds.), An advanced treatise on Meloidogyne, vol. 2. Methodology. North Carolina State University, USAID, Raleigh, USA, pp. 3–17. Search in Google Scholar

Bridge J., Page S.L.J. 1980. Estimation of root-knot nematodes infestation levels on roots using a rating chart. Tropical Pest Management 26(3): 296–298. DOI: 10.1080/09670878009414416. Search in Google Scholar

Burkill H.M. 1985. The Useful Plants of West Tropical Africa. Royal Botanical Gardens, Kew, UK, pp. 452–453. Search in Google Scholar

Cayuela M.I., Millner P.D., Meyer S.L.F., Roig A. 2008. Potential of olive mill waste and compost as biobased pesticides against weeds, fungi, and nematodes. Science of the Total Environment 399(1–3): 11–18. DOI: 10.1016/j.scitotenv.2008.03.031. Search in Google Scholar

Decraemer W., Hunt D.J. 2006. Structure and classification. In: Perry R.N., Moens M. (Eds.), Plant nematology, vol. 32. CABI, Wallingford, UK, p. 3–40. DOI: 10.1079/9781845930561.0003. Search in Google Scholar

El-Habashy D.E., Adss I.A., Abdelrasoul M.A., Abdelgaleil S.A.M. 2022. Efficacy of six essential oils for the management of Meloidogyne incognita in eggplant and their effect on the expression of plant defense genes. International Journal of Pest Management, 10 p. DOI: 10.1080/09670874.2022.2145520. Search in Google Scholar

Fabiyi O.A., Atolani O., Olatunji G.A. 2020. Toxicity effect of Eucalyptus globulus to Pratylenchus spp. of Zea mays. Sarhad Journal of Agriculture 36(4): 1244–1253. DOI: 10.17582/journal.sja/2020/36.4.1244.1253. Search in Google Scholar

Fabiyi O.A., Olatunji G.A. 2021. Environmental sustainability: bioactivity of Leucaena leucocephala leaves and pesticide residue analysis in tomato fruits. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 69(4): 473–480. DOI: 10.11118/actaun.2021.042. Search in Google Scholar

Fabiyi O.A. 2021. Evaluation of Terminalia glaucescens chromatographic fractions on Meloidogyne incognita infecting chili pepper (Capsicum chinense). Journal of Horticulture Research 29(1): 67–74. DOI: 10.2478/johr-2021-0006. Search in Google Scholar

Fabiyi O.A. 2022. Evaluation of weeds against root-knot nematode (Meloidogyne incognita) in vegetables. Sarhad Journal of Agriculture 38(4): 1289–1299. DOI: 10.17582/journal.sja/2022/38.4.1289.1299. Search in Google Scholar

Fabiyi O.A. 2024. Management of Meloidogyne incognita damaging lettuce: potential of chromatographic fractions and extracts from Lawsonia inermis. Journal of Animal and Plant Science 34(3): 671–680. DOI: 10.36899/japs.2024.3.0753. Search in Google Scholar

Garcia N., Grenier E., Buisson A., Folcher L. 2022. Diversity of plant parasitic nematodes characterized from fields of the French national monitoring programme for the Columbia root-knot nematode. PLoS One 17(3); e0265070; 16 p. DOI: 10.1371/journal.pone.0265070. Search in Google Scholar

Hussey R.S., Janssen G.J.W. 2002. Root-knot nematodes: Meloidogyne species. In: Starr J.L., Cook R., Bridge J. (Eds.), Plant resistance to parasitic nematodes. CABI, London, UK, pp. 43–70. DOI: 10.1079/9780851994666.0043. Search in Google Scholar

Jenkins W.R. 1964. A rapid centrifugal-flotation technique for separating nematodes from soil. Plant Disease Reporter 48(9): 692. Search in Google Scholar

Kantor M., Handoo Z., Kantor C., Carta L. 2022. Top ten most important U.S.-regulated and emerging plant-parasitic nematodes. Horticulturae 8(3); 208; 26 p. DOI: 10.3390/horticulturae8030208. Search in Google Scholar

Khan M.R., Haque Z., Sharma R.K. 2023. Novel biotechnological interventions in plant nematode management technologies. In: Khan M.R. (Ed.), Novel Biological and Biotechnological Applications in Plant Nematode Management. Springer, pp. 167–186. DOI: 10.1007/978-981-99-2893-4_7. Search in Google Scholar

Leroy B.L.M.M., Bommele L., Reheul D., Moens M., De Neve S. 2007. The application of vegetable, fruit and garden waste (VFG) compost in addition to cattle slurry in a silage maize monoculture: Effects on soil fauna and yield. European Journal of Soil Biology 43(2): 91–100. DOI: 10.1016/j.ejsobi.2006.10.005. Search in Google Scholar

Moselhy M.A. 2009. Bioconversion of rice straw and certain agro-industrial wastes to fertilizers for organic farming systems. Ph.D. Thesis, Faculty of Agriculture, Cairo University, 221 p. Search in Google Scholar

Ntalli N., Zochios G., Nikolaou P., Winkiel M., Petrelli R., Bonacucina G. et al. 2023 Carlina acaulis essential oil nanoemulsion for managing Meloidogyne incognita. Industrial Crops and Products 193; 116180; 6 p. DOI: 10.1016/j.indcrop.2022.116180. Search in Google Scholar

Okafor J.C. 2002. Tropical plants in health care delivery in Nigeria: Contributions of some members of Compositae (Asteraceae). Journal of College of Medicine 7(2): 129–131. Search in Google Scholar

Olurishe T.O., Mati F.G. 2014. Anti hyperalgesic potentials of Laggera aurita in Swiss Albino mice. Pakistan Journal of Pharmaceutical Science 27(1): 169–172. Search in Google Scholar

Parsiaaref S., Cao A., Li Y., Ebadollahi A., Parmoon G., Wang Q. et al. 2023. Nematicidal and toxicity effects of Eupatorium adenophorum Spreng against the root-knot nematode Meloidogyne incognita in soil producing cucumber. Agriculture 13(6); 1109; 12 p. DOI: 10.3390/agriculture13061109. Search in Google Scholar

R Core Team 2013. R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. Search in Google Scholar

Singh S.K., Hodda M., Ash G.J. 2013. Plant-parasitic nematodes of potential phytosanitary importance, their main hosts and reported yield losses. EPPO Bulletin 43(2): 334–374. DOI: 10.1111/epp.12050. Search in Google Scholar

Singh S., Singh B., Singh A.P. 2015. Nematodes: a threat to sustainability of agriculture. Procedia Environmental Sciences 29: 215–216. DOI: 10.1016/j.proenv.2015.07.270. Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Scienze biologiche, Biotecnologia, Botanica, Ecologia, Scienze della vita, altro