199
Views
3
CrossRef citations to date
0
Altmetric
Articles

Control of bacterial soft rot disease of potato caused by Pectobacterium carotovorum subsp. carotovorum using different nanoparticles

, , ORCID Icon &
Pages 1638-1660 | Received 20 Jan 2022, Accepted 04 Aug 2022, Published online: 12 Aug 2022

References

  • Abbas A, Naz SS, Syed SA. 2015. Antimicrobial activity of silver nanoparticles (Ag NPs) against Erwinia carotovora pv. carotovora and Alternaria solani. Int J Biosci. 6(10):9–14.
  • Abbas A, Naz SS, Syed SA. 2019. Antimicrobial activity of silver nanoparticles (Ag NPs) against Erwinia carotovora subsp. atroseptica and Alternaria alternata. Pak J Agric Sci. 56(1):113–117.
  • Abdel-ghany WA, Abo-Elyousr KAM, Hussein MAM, Mohamedin AH. 2019. Activity assessment of Pectobacterium carotovorum subsp. carotovorum under certain metallic salts effect. Mans. J Biol. 41(1):1–16.
  • Abdel-Wahab DA, Othman N, Hamada AM. 2019. Effect of copper oxide nanoparticles to Solanum nigrum and its potential for phytoremediation. Plant Cell Tissue Organ Cult. 137(3):525–539.
  • Abo-Elyousr KAM, Sallam MA, Hassan MA, Allam AD. 2010. Role of certain potato tubers constituents in their resistance to bacterial soft rot caused by Erwinia carotovora pv. Carotovora Arch Phytopathol. 43(12):1190–1197.
  • Ávalos A, Haza A, Mateao D, Morales P. 2013. Nanopartículas de plata: Aplicaciones y riesgos tóxicos para la salud y el medio ambiente. Rev Complutense Cienc Vet. 7(2):1–23.
  • Azam A, Ahmed AS, Oves M, Khan MS, Memic A. 2012. Size-dependent antimicrobial properties of CuO nanoparticles against gram-positive and negative bacterial strains. Int J Nanomed. 7(9):3527–3535.
  • Baskar G, Chandhuru J, Sheraz FK, Praveen AS. 2013. Mycological synthesis, characterization and antifungal activity of zinc oxide nanoparticles. Asian J Pharm Technol. 3(4):142–146.
  • Bereika M, Sallam NM, Alamri SA, Abo-Elyousr KAM, Hashem M, Mostafa YS. 2020. Approving the biocontrol strategy of potato wilt caused by Ralstonia solanacearum on field scale using Enterobacter cloacae PS14 and Trichoderma asperellum T34. Egypt J Biol Pest Control. 30(1):61.
  • da Costa CH, Perreault F, Oukarroum A, Melegari S, Popovic R, Matias WG. 2016. Effect of chromium oxide (III) nanoparticles on the production of reactive oxygen species and photosystem II activity in the green alga Chlamydomonas reinhardtii. Sci Total Environ. 565:951–960.
  • De Boer SH, Kelman A. 1978. Influence of oxygen concentration and storage factories on susceptibility of potato tubers to bacterial soft rot (Erwinia carotovora). Potato Res. 21(1):65–80.
  • Dowson WJ. 1957. Plant disease due to bacteria, second edition. Cambridge University Press.
  • Duffy LL, McLeod MJO, Judy J, King T. 2018. Investigation into the antibacterial activity of silver, zinc oxide and copper oxide nanoparticles against poultry-relevant isolates of Salmonella and Campylobacter. Food Control. 92:293–300.
  • Elfarash AE, Abo Elyousr KA, Morsy Zynab S, Amein KA. 2021. Quantification of Pathogenicity Genes Expression in Pectobacterium carotovorum by qRT-PCR. J Agri Chem Biotechnol. Mansoura Univ. 12(3):55–59.
  • El-Mahdy MTK, Radi AA, Shaaban MM. 2019. Impacts of exposure of banana to silver nanoparticles and sliver ions in vitro. Middle East J Appl Sci. 9(3):727–740.
  • Farghaly FA, Nafady NA. 2015. Green synthesis of silver nanoparticles using leaf extract of Rosmarinus officinalis and its effect on tomato and wheat plants. J Agric Sci. 7(11):277–287.
  • Foroutan L, Solouki M, Abdossi V, Fakheri BA. 2018. The effects of zinc oxide nanoparticles on enzymatic and osmoprotectant alternations in different Moringa peregrina populations under drought stress. Int J Basic Sci Med. 3(4):178–187.
  • Gomez KA, Gomez AA. 1984. Statically procedures for Agricultural Research. 2nd ed. New York (NY): John Wiley and Sons Inc; p. 680.
  • Hafez EE, Hassan HS, Elkady MF, Salama E. 2014. Assessment of antibacterial activity for synthesized zinc oxide nanorods against plant pathogenic strains. Int J Sci Technol Res. 3(9):318–324.
  • Haverkort AJ, Struik PC. 2015. Yield levels of potato crops: Recent achievements and future prospects. Field Crops Res. 182:76–85.
  • Hossain A, Abdallah Y, Ali MA, Masum MMI, Li B, Sun G, Meng Y, Wang Y, An Q. 2019. Lemon-fruit-based green synthesis of zinc oxide nanoparticles and Titanium dioxide nanoparticles against soft rot bacterial pathogen Dickeya dadantii. Biomolecules. 9(12):863–814.
  • Jaswal VS, Arora AK, Kinger M, Gupta VD, Singh J. 2014. Synthesis and characterization of chromium oxide nanoparticles. Orient J Chem. 30(2):559–566.
  • Khalil HMM. 2013. Influence of chromium nanoparticles on activity of Erwinia carotovora and Pseudomonas fluorescens. Int J Chem Environ Biol Sci. 1(3):492–495.
  • Khare P, Sonane M, Nagar Y, Moin N, Ali S, Gupta KC, Satish A. 2015. Size dependent toxicity of zinc oxide nano-particles in soil nematode Caenorhabditis elegans. Nanotoxicology. 9(4):423–432.
  • Kotb OM, Abd El-Latif FM, Atawia AR, Saleh SS, El-Gioushy SF. 2020. Green synthesis of chromium nanoparticles by aqueous extract of Melia azedarach, Artemisia herba-alba and bacteria fragments against Erwinia amylovora. Asian J Biotechnol Bioresour Technol. 6(2):22–30. 10.9734/ajb2t/2020/v6i230077
  • Losasso C, Belluco S, Cibin V, Zavagnin P, Mičetić I, Gallocchio F, Zanella M, Bregoli L, Biancotto G, Ricci A, et al. 2014. Antibacterial activity of silver nanoparticles: sensitivity of different Salmonella serovars. Front Microbiol. 5(227):227–229.
  • Madbouly AK, Abo-Elyousr KAM, Ismail, M, Ismail. 2020. Biocontrol of Monilinia fructigena the causal agent of brown rot of stored apple fruits using certain endophytic yeasts. Biol Control. 144:104239.
  • Mantsebo CC, Mazarura U, Goss M, Ngadze E. 2014. The epidemiology of Pectobacterium and Dickeya species and the role of calcium in postharvest soft rot infection of potato (Solanum tuberosum) caused by the pathogens. Afr J Agric Res. 9(19):1509–1515.
  • Martinez-Gutierrez F, Olive PL, Banuelos A, Orrantia E, Nino N, Sanchez EM, Ruiz F, Bach H, Av-Gay Y. 2010. Synthesis, characterization and evaluation of antimicrobial and cytotoxic effect of silver and titanium nanoparticles. Nanomedicine. 6(5):681–688.
  • McGuire RG, Kelman A. 1984. Reduced severity of Erwinia soft rot in potato tubers with increased calcium content. Phytopathology. 74(10):1250–1256.
  • Morones JR, Elechiguerra JL, Camacho A, Holt K, Kouri JB, Ramirez JT, Yacaman MJ. 2005. The bactericidal effect of silver nanoparticles. Nanotechnology. 16(10):2346–2353.
  • Nafady AN, Saad AM, Alamri EA, Hassan M, Hashem YS, Mostafa, Abo-Elyousr KAM. 2019. Application of ZnO-nanoparticles to manage Rhizopus soft rot of sweet potato and prolong shelf life. Folia Hort. 31(2):319–329.
  • Naumann M, Koch M, Thiel H, Gransee A, Pawelzik E. 2020. The importance of nutrient management for potato production part II: Plant nutrition and tuber quality. Potato Res. 63(1):121–137.
  • O’Donnell J, Mandel HC, Krauss M, Sofer W. 1977. Genetic and cytogenetic analysis of the Adh region in Drosophila melanogaster. Genetics 86(3):553–566.
  • Ocsoy I, Paret ML, Ocsoy MA, Kunwar S, Chen T, You M, Tan W. 2013. Nanotechnology in plant disease management: DNA-directed silver nanoparticles on graphene oxide as an antibacterial against Xanthomonas perforans. ACS Nano. 7(10):8972–8980.
  • Rakesh S, Ananda S, Gowda NM. 2013. Synthesis of chromium (III) oxide nanoparticles by electrochemical method and Mukia maderaspatana plant extract, characterization, KMnO4 decomposition and antibacterial study. Mod Res Catal. 02(04):127–135. https://doi.org/10.4236/mrc.2013.24018
  • Rashid A, Fahad MAB, Khan MA, Mateen A. 2012. Incidence of potato blackleg caused by Pectobacterium atrosepticum in district chiniot and its management through bio-products. Afr J Agric Res. 7(45):6035–6048.
  • Saleh OI, Huang PY, Huang JS. 1996. Bacterial vascular necrosis and root rot disease of sugar beet in Egypt. J Phytopathol. 144(5):225–230.
  • Sallam MAA, Abd El-Moneem KMH, Hassan MAE, Khalil HMM. 2010. Resistance induced in potato tubers to soft rot caused by Erwinia carotovora Subsp. carotovora by treatments with salicylic acid and acetylsalicylic acid. Assiut J of Agric Sci. 41(1):81–92.
  • Sallam NMA, Ali EF, Abo-Elyousr KAM, Mohamed FF, Bereika Mohamed, AA, Seleim. 2021. Thyme oil treatment controls the bacterial wilt disease symptoms by inducing antioxidant enzymes activity in Solanum tuberosum. J Plant Pathol. 103(2):563–572. https://doi.org/10.1007/s42161-021-00808-2.
  • Salman HD. 2017. Evaluation and comparison the antibacterial activity of silver nanoparticles (AgNPs) and silver nitrate (AgNO3) on some pathogenic bacteria. J Glob Pharma Technol. 10(9):238–248.
  • Sánchez-López E, Gomes D, Esteruelas G, Bonilla L, Lopez-Machado AL, Galindo R. 2020. Metal-Based nanoparticles as antimicrobial agents: an overview. Nanomater. 10(2):1–39.
  • SAS Institute Inc. 1996. SAS version 9.0. Cary, NC.
  • Shahryari F, Rabiei Z, Sadighian S. 2020. Antibacterial activity of synthesized silver nanoparticles by sumac aqueous extract and silver-chitosan nanocomposite against Pseudomonas syringae pv. syringae. J Plant Pathol. 102(2):469–475.
  • Shameli K, Ahmad MB, Jazayeri SD, Shabanzadeh P, Sangpour P, Jahangirian H, Gharayebi Y. 2012. Investigation of antibacterial properties silver nanoparticles prepared via green method. Chem Cent J. 6(1):73.
  • Spielman-Sun E, Avellan A, Bland GD, Tappero RV, Acerbo AS, Unrine JM, Giraldo JP, Lowry GV. 2019. Nanoparticle surface charge influences uptake, translocation, and leaf distribution in vascular plants with contrasting anatomy. Environ Sci: Nano. 6(8):2508–2519.
  • Thom C, Church MB. 1926. The Aspergilla. Baltimore, MD: Williams and Wilkins Co.; p. 1–272.
  • Tolessa ES. 2018. Importance, nutrient content and factors affecting nutrient content of potato. J Nutr Health. 3(3):37–41.
  • Yamamoto O. 2001. Influence of particle size on the antibacterial activity of zinc oxide. Int J Inorg Mater. 3(7):643–646.
  • Yu J, Zhang W, Li Y, Wang G, Yang L, Jin J, et al. 2015. Synthesis, characterization, antimicrobial activity and mechanism of a novel hydroxyapatite whisker/nano zinc oxide biomaterial. Biomed Mater. 10(1):15001.
  • Zhang S, Zhang F, Hua B. 2008. Enhancement of PAL, PPO and POD in cucumber seedlings by Bemisa tabaci (Gennadius) (Hemiptera: Aleyrodidae) infestation. Agric Sci China. 7(1):82–87.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.