This is an outdated version published on 28-09-2024. Read the most recent version.
Forthcoming

Evaluation of the efficacy of some organic substances to induce resistance in cucumber against root knot nematode, Meloidogyne spp.

Authors

DOI:

https://doi.org/10.14719/pst.3633

Keywords:

Biofertilizers, earthworm, cucumber, nematode infestation, growth enhancement

Abstract

The study aimed to evaluate the impact of certain biofertilizers on some growth parameters, total chlorophyll content and the concentrations of enzymes phenylalanine amino-lyase (PAL) and peroxidase (POX) pre and post infestation of cucumber with root-knot nematodes (Meloidogyne spp.). The results demonstrate that supplementing substances before or after nematode infection resulted in enhanced growth parameters of cucumbers, including shoot growth, fresh and dry weight of root, total chlorophyll content and the concentrations of the enzymes PAL and POX, with significant differences compared to non-infected plants. Among those that showed a positive effect were ascorbic acid, K2HPO4, liquid earthworms, crushed fertilizer and compost. Among the test biofertilizers evaluated, the liquid vermicompost proved to be the standout performer compared to the other treatments, demonstrating the most substantial growth improvements such as the highest increase in both shoot fresh weight (44.67 g per plant) and dry weight (5.93 g per plant). Additionally, this treatment resulted in a remarkable 83.00 % increase in total chlorophyll content and a significant increase in PAL and POX enzyme activity (18.25 and 25.29 IU g-1 respectively).

Downloads

Download data is not yet available.

References

Chomicki G, Schaefer H, Renner SS. Origin and domestication of Cucurbitaceae crops: Insights from phylogenies, genomics and archaeology. New Phytologist. 2019;226:1240-55. https://doi.org/10.1111/nph.16015

Daneshvar M. Growing vegetables. Shahid-Chamran University Press; 2001. (In Persian).

Farhoudi R, Saeedipour S, Mohammadreza D. The effect of NaCl seed priming on salt tolerance, antioxidant enzyme activity and proline and carbohydrate accumulation of Muskmelon (Cucumis melo L.) under saline condition. African Journal of Agricultural Research. 2011;6(6):1363-70.

The central statistical organization, Ministry of planning. 2022 Crop and Vegetable Production Report for the year 2022.

Gharabadiyan F, Jamali S, Komeili RH. Determining of root-knot nematode (Meloidogyne javanica) damage function for tomato cultivars. Journal of Agricultural Sciences (Belgrade). 2013;58(2):147-57. https://doi.org/10.2298/JAS1302147G

Sharma HK, Pankaj, Singh B. Protected cultivation and nematode problem. J Nematol. 2009;39:1-8.

Schleker ASS, RiSt M, MAterA C, dAMiJonAitiS A, Collienne U, MAtSuokA K, grundler FM. Mode of action of fluopyram in plant-parasitic nematodes. Sci Rep. 2022;12(1):1-14. DOI: 10.1038/s41598-.

Feyisa B. Review on root knot nematodes (Rkns): Impact and methods for control. J Plant Pathol Microbiol. 2021;12(4):547. DOI: 10.35248/2157-7471.21.12.547

Hallmann J, Meressa BH. Nematode parasites of vegetables. In: Sikora RA, Coyne D, Hallmann J, Timper P, editors. Plant parasitic nematodes in subtropical and tropical agriculture. CABI Books, CABI International. 2018;pp.346-410. DOI: 10.1079/9781786391247.0346

Pal KK, Gardener BM. Biological control of plant pathogens. Plant Health Instructor. 2006;2:1-25. https://doi.org/10.1094/PHI-A-2006-1117-02

Aboutorabi M. A review on the biological control of plant diseases using various microorganisms. J Res Medical Dental Sci. 2018;6:30-36.

Aljuboori FK, Ibrahim B, Mohamed A. Biological control of the complex disease of Rhizoctonia solani and root-knot nematode Meloidogyne javanica on chickpea by Glomus spp. and Pseudomonas sp. Iraqi Journal of Agricultural Sciences. 2022;53(3):669-76. https://doi.org/10.36103/ijas.v53i3.1577

Jabir Al-Awabid AK, Abdulmalek Yass ST. Evaluation the activity of Hirsutella sp. fungus and the nematicide verox to control root knots nematode Meloidogyne spp. on fig seedlings. Iraq Journal of Market Research and Consumer Protection. 2023;15(1). http://dx.doi.org/10.28936/jmracpc15.1.2023.(13)

Al-Agidi FJ, al-Mashhdani AIH. Efficacy of some biological and chemical agents to control root knot nematodes (Meloidogyne spp.) on eggplant. Iraqi Journal of Agricultural Sciences. 2013;44(3):28-37.

Fikadu Z. Pesticides use, practice and its effect on honeybee in Ethiopia: A review. International Journal of Tropical Insect Science. 2020;40:473-81. https://doi.org/10.1007/s42690-020-00114-x

Arthurs S, Dara SK. Microbial biopesticides for invertebrate pests and their markets in the United States. J Invertebr Pathol. 2018;165:13-21. https://doi.org/10.1016/j.jip.2018.01.008

Prasannat K. Plant defense-related enzymes against pathogens: A review. AGRIEAST: Journal of Agricultural Sciences. 2017;11(1):38-48. https://doi.org/10.4038/agrieast.v11i1.33

Hussey RS, Barker KR. A comparison of methods of collecting inoculum of Meloidogyne spp., including a new technique. Plant Disease. 1973;57:1025-28.

Sakani MJJ. Biological effects of Withania somnifera L. plant extracts and some environmental factors on Culex quinquefasciatus say mosquito [Master's thesis]. College of Agricultural Engineering Sciences, University of Baghdad, Iraq; 2019.

Sahi SN. Study of the effect of ethyl alcohol and petroleum ether extracts of Sesbania sesban L. leaves and seeds on different stages of the Khapra beetle (Trogoderma granarium Everts) [Master's thesis]. College of Agricultural Engineering Sciences, University of Baghdad, Iraq; 2019.

Yass STA. Interference between Trichoderma harzianum and glyphosate herbicide and its impact on the pathogenic complex between Fusarium oxysporum sp. lycopersici and root knot nematodes Meloidogyne spp. on tomato [Doctoral thesis]. College of Agriculture, University of Baghdad, Iraq; 2015.

Shahin RR, Al-Radiman KN. Scientific Publishing and Printing – King Saud University, Saudi Arabia. 2001.

Al-Zahawi SMA. The impact of organic fertilizers and soil covering on the growth and yield of potatoes (Solanum tuberosum L.). A Master's Thesis at the College of Agriculture, University of Baghdad; 2007.

Hammerschmidt R, Nuckles EM, Ku? J. Association of enhanced peroxidase activity with induced systemic resistance of cucumber to Colletotrichum lagenarium. Physiological Plant Pathology. 1982;20(1):73-82. https://doi.org/10.1016/0048-4059(82)90025-X

Dickerson DP, Pascholati SF, Hagerman AE, Butler LG, Nicholson RL. Phenylalanine ammonia-lyase and hydroxycinnamate: CoA ligase in maize mesocotyls inoculated with Helminthosporium maydis or Helminthosporium carbonum. Physiological Plant Pathology. 1984;25(2):111-23. https://doi.org/10.1016/0048-4059(84)90050-X

Melakeberhan H, Bird GW, Gore R. Impact of plant nutrition on Pratylenchus penetrans infection of Prunus avium root stocks. Journal of Nematology. 1997;29:381-88.

Liu D, Han W, Zhang Y, Jiang Y. Evaluation of vermicompost and extracts on tomato root-knot nematode. Bangladesh J Bot. 2019;48(3):845-51.

Kostecka J, Garczy?ska M, Podolak M, P?czka G, Kaniuczak J. Kitchen organic waste as material for vermiculture and source of nutrients for plants. Journal of Ecological Engineering. 2018;19(6):267-74. https://doi.org/10.12911/22998993/99691

Adhikary S. Vermicompost, the story of organic gold: A review. Agricultural Sciences. 2012;3:905-17. https://doi.org/10.4236/as.2012.37110

Karagöz PF, Dursun A, Kotan R, Ekinci M, Yildirim E, Mohammadi P. Assessment of the effects of some bacterial isolates and hormones on corm formation and some plant properties in saffron (Crocus sativus L.). Ankara University Journal of Agricultural Sciences. 2016;22(4):500-11. https://doi.org/10.1501/Tarimbil_0000001408

Nogales R, Cifuentes C, Benitez E. Vermicomposting of winery wastes: A laboratory study. Journal of Environmental Science and Health. 2005;40:573-659. https://doi.org/10.1081/PFC-200061595

Eghball B. Leaching of phosphorus fractions following manure or compost application. Communications in Soil Science and Plant Analysis. 2003;34:2803-15. https://doi.org/10.1081/CSS-120025207

Chauvin C, Dorel M, Villenave C, Roger-Estrade J, Thuries L, Risède JM. Biochemical characteristics of cover crop litter affect the soil food web, organic matter decomposition and regulation of plant-parasitic nematodes in a banana field soil. Applied Soil Ecology. 2015;96:131-40. https://doi.org/10.1016/j.apsoil.2015.07.013

Xiao H, Smeekens M, Wu R. Quantification of tunicamycin-induced protein expression and N-glycosylation changes in yeast. Analyst. 2016;141(12):3737-45. https://doi.org/10.1039/C6AN00144K

Al-Mafrajee WM, El-Rubaee FA. Effect of spraying organic emulsion (appetizer) and nano NPK with urea on some growth characteristics of three synthetic cultivars of maize. Iraqi Journal of Market Research and Consumer Protection. 2022;14(1):108-17. https://doi.org/10.28936/jmracpc14.1.2022.(12)

Abdul Majeed THA, Yusuf MHA, Yusuf AMA. The effect of foliar application of iron and manganese and potassium fertilization on the nutrient balance of NPK elements for wheat crop. Iraqi Journal of Agricultural Sciences. 2005;36(5):23-28.

Zuhair RM, Abdel-Naieem I Al-Assiuty, Mohamed A Khalil, Salama WM. Efficacy of vermicompost amended and bacterial diversity on plant growth and pathogen control. International Journal of Recycling of Organic Waste in Agriculture. 2022;11:131-41.

Gajalakshmi S, Abbasi S. Effect of the application of water hyacinth compost/vermicompost on the growth and flowering of Crossandra undulaefolia and on several vegetables. Bioresource Technology. 2002;85:197-99. https://doi.org/10.1016/S0960-8524(02)00096-2

Abdel-Nasser AA, Abdel-Hafeez T, Abd El-Mageed A, Rady MM. Impact of ascorbic acid foliar spray and seed treatment with cyanobacteria on growth and yield component of sunflower plants under saline soil conditions. International Letters of Natural Sciences. 2019;76:136-46. https://doi.org/10.56431/p-3n3f6y

EL-Hadad ME, Mustafa MI, Selim SM, EL-Tayeb TS, Mahgoob AE, Abdel Aziz NH. The nematicidal effect of some bacterial biofertilizers on Meloidogyne incognita in sandy soil. Brazilian Journal of Microbiology. 2011;42(1):105-13. https://doi.org/10.1590/S1517-83822011000100014

Hemmati S, Saeedizadeh A. Root-knot nematode, Meloidogyne javanica, in response to soil fertilization. Brazilian Journal of Biology. 2020;80(3):621-30. https://doi.org/10.1590/1519-6984.218195

Wachira PM, Kimenju JW, Mibey RK. Stimulation of nematode-destroying fungi by organic amendments applied in management of plant parasitic nematodes. Asian Journal of Plant Sciences. 2009;8:153-59. https://doi.org/10.3923/ajps.2009.153.159

Andres AI, Jimenez-Diaz RM, Castillo P. Control of root-knot nematodes by composted agro-industrial wastes in potting mixtures. Crop Protection. 2004;23:581-87. https://doi.org/10.1016/j.cropro.2003.11.005

Zainuri J, Joyce DC, Wearing AH, Coates L, Terry L. Effect of phosphonate and salicylic acid treatments on anthracnose disease development and ripening of 'Kensington Pride' mango fruit. Australian Journal of Experimental Agriculture. 2001;41:805-13. https://doi.org/10.1071/EA99104

Al-Banna L, Albess MS, Al-Wahwah AA, Ghanem A. Antimicrobial activity of locally manufactured fertilizers [abstract]. The Sixth Jordanian Agricultural Scientific Conference. 2007.

Habash S, Al-Banna L. Phosphonate fertilizers suppressed root knot nematodes Meloidogyne javanica and M. incognita. Journal of Nematology. 2011;43(2):95-10.

Mohammed HJ, Abdul Malek YST. Activity of fulvic acid and magnesium oxide against root knots nematode Meloidogyne spp. development and disease incidence on tomato. Biochemical and Cellular Archives. 2020;20(1):397-401.

Yass ST, Aish AA, Al-Sandooq DL, Mostafa MM. Activity of humic acid against root knot nematodes on tomato. Plant Archives. 2020;20(1):1-3.

Manneh FJ, Kwoseh CK, Adjei-Gyapong T, Starr JL. Efficacy of sweet orange and cassava peel amendments for the management of root-knot nematodes on tomato. American Journal of Experimental Agriculture. 2016;12(5):1-15. https://doi.org/10.9734/AJEA/2016/24638

Amara MNA, Ali NDS, Al-Dulaimi HY. The effect of potassium application method and dosage on the concentration of essential nutrients in tomato plants. Iraqi Journal of Agricultural Sciences. 2005;36(5):11-22.

AL-Mayahi SH, Aalaa KH. Induction of systemic resistance in soybean using some eco-friendly materials against infection of F. solani and its effect on germination and biochemical characteristics. Plant Archives. 2021;21(1):1274-80. https://doi.org/10.51470/PLANTARCHIVES.2021.v21.S1.201

Published

28-09-2024

Versions

How to Cite

1.
K. Al_Gharawi H, T. A. Yaas S. Evaluation of the efficacy of some organic substances to induce resistance in cucumber against root knot nematode, Meloidogyne spp. Plant Sci. Today [Internet]. 2024 Sep. 28 [cited 2024 Nov. 23];. Available from: https://horizonepublishing.com/journals/index.php/PST/article/view/3633

Issue

Section

Research Articles