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Articles

Efficacy of the combination tebuconazole-Bacillus in the control of the Fusarium culmorum responsible for Fusarium crown rot in durum wheat

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Pages 1841-1858 | Received 21 Apr 2022, Accepted 29 Aug 2022, Published online: 28 Sep 2022

References

  • Abdallah-Nekache N, Laraba I, Ducos C, Barreau C, Bouznad Z, Boureghda H. 2019. Occurrence of Fusarium head blight and Fusarium crown rot in Algerian wheat: identification of associated species and assessment of aggressiveness. Eur J Plant Pathol. 154(3):499–512.
  • Adeniji AA, Aremu OS, Babalola OO. 2019. Selecting lipopeptide-producing, Fusarium suppressing Bacillus spp: metabolomic and genomic probing of Bacillus velezensis NWUMFkBS10.5. MicrobiologyOpen. 8(6):e742.
  • Bai GH, Shaner GE. 1994. Scab of wheat: prospects for control. Plant Dis. 78:760–766.
  • Bensemane L, Bouzerzour H, Benmahammed A, Mimouni H. 2011. Assessment of the phenotypic variation within two- and six rowed barley (Hordeum vulgare L.) breeding lines under semiarid condition. Adv Environ Biol. 5:1454–1460.
  • Bouanaka H, Bellil I, Harrat W, Boussaha S, Benbelkacem A, Khelifi D. 2021. On the biocontrol by Trichoderma afroharzianum against Fusarium culmorum responsible of fusarium head blight and crown rot of wheat in Algeria. Egypt J Biol Pest Control. 31(1):68.
  • Brzezinska MS, Kalwasińska A, Świątczak J, Żero K, Jankiewicz U. 2020. Exploring the properties of chitinolytic Bacillus isolates for the pathogens biological control. Microb Pathog. 148:104462.
  • Chakraborty S, Liu CJ, Mitter V, Scott J, Akinsanmi OA, Ali S, Dill-Macky R, Nicol J, Back house D, Simpfendorfer S. 2006. Pathogen population structure and epidemiology are keys to wheat crown rot and Fusarium head blight management. Austral Plant Pathol. 35(6):643–655.
  • Chourghal N, Lhomme P, Huard F, Aidaoui A. 2016. Climate change in Algeria and its impact on durum wheat. Reg Environ Change. 16(6):1623–1634.
  • Chrpová J, Šíp V, Štočková L, Stehno Z, Capouchová I. 2013. Evaluation of resistance to Fusarium head blight in spring wheat genotypes belonging to various Triticum species. Czech J Genet Plant Breed. 49( 4):149–156.
  • Colby SR. 1967. Calculating synergistic and antagonistic responses of Herbicide combinations. Weeds. 15(1):20–22.
  • Demirci E, Dane, E. 2003. Identification and pathogenicity of Fusarium spp. from stem bases of winter wheat in Erzurum, Turkey. Phytoparasitica. 31(2):170–173.
  • Erginbaş Orakçı G, Morgounov A, Dababat, A, A. 2018. Determination of resistance in winter wheat genotypes to the dryland root rots caused by Fusarium culmorum in Turkey. Int J Agric Wild Sci. 4(2):193–202.
  • Fira D, Dimkić I, Berić T, Lozo J, Stanković S. 2018. Biological control of plant pathogens by Bacillus species. J Biotechnol. 285:44–55.
  • Fishel FM, Dewdney MM. 2012. Fungicide resistance action committees (FRAC) classification scheme of fungicidees according to mode of action. PI94. University of Florida. 7p
  • Gargouri-Kammoun L, Gargouri S, Barreau C, Richard-Forget F, Hajlaoui MR. 2010. Trichothecene chemotypes of Fusarium culmorum infecting wheat in Tunisia. Int J Food Microbiol. 140(1):84–89.
  • Goral T, Walentyn-Góral D. 2014. Resistance of spring wheat cultivars and lines to Fusarium head blight caused by Fusarium culmorum. Biuletyn Instytutu Hodowli i Aklimatyzacji Roślin. 271:3–16.
  • Gupta CD, Dubey RC, Kang S, C, Maheshwari DK. 2001. Antibiotic mediated necrotrophic effect of Pseudomonas GRC2 against two fungal plant pathogens. Curr. Sci. 81:91–94.
  • Hartwig T, Corvalan C, Best NB, Budka JS, Zhu JY, Choe S, Schulz B. 2012. Propiconazole is a specific and accessible brassinosteroid (BR) biosynthesis inhibitor for Arabidopsis and maize. PLoS One. 7(5):e36625.
  • Hefnawy MA, Omima AE, Nora ME. 2014. Impact of the fungicide Rizolix T50% on the antagonistic activity of Trichoderma harzianum and Trichoderma koningii. Int J Sci Res. 3(9):1767–1773.
  • Hellin P, King R, Urban M, Hammond-Kosack KE, Legrève A. 2018. The adaptation of Fusarium culmorum to DMI fungicides is mediated by major transcriptome modifications in response to azole fungicide, including the overexpression of a PDR transporter (FcABC1). Front Microbiol. 9(1385):1385.[29997598].
  • Huang H, Zhao Y, Fan L, Jin Q, Yang G, Xu Z. 2020. Improvement of manganese phytoremediation by Broussonetia papyrifera with two plant growth promoting (PGP) Bacillus species. Chemosphere. 260:127614.
  • Imriz G, Özdemir F, Karaca MS, Taş MN, Topal İ, Ercan B. 2020. Biological control potential of rhizosphere bacteria with ACC-deaminase activity against Fusarium culmorum in wheat. Zemdirbyste-Agriculture. 107(2):105–112.
  • Jin J, Duan S, Qi Y, Yan S, Li W, Li B, Ma J. 2020. Identification of a novel genomic region associated with resistance to Fusarium crown rotin wheat. Theor Appl Genet. 133(7):2063–2073.
  • Kalam S, Basu A, Podile AR. 2020. Functional and molecular characterization of plant growth promoting Bacillus isolates from tomato rhizosphere. Heliyon. 6(8):e04734.
  • Leslie JF, Summerell AB. 2006. The Fusarium laboratory manual. Ames: Blackwell Publishing; p. 388.
  • Lugtenberg B, Kamilova F. 2009. Plant‐growth‐promoting rhizo‐bacteria. Annu Rev Microbiol. 63(1):541–556.
  • Matny ON. 2015. Fusarium head blight and crown rot on wheat and barley: losses and health risks. Adv plants agric res. 2(1):38–43.
  • Mielniczuk E, Skwaryło-Bednarz B. 2020. Fusarium head blight, mycotoxins and strategies for their reduction. Agronomy. 10(4):509.
  • Mnasri N, Chennaoui C, Gargouri S, Mhamdi R, Hessini K, Elkahoui S, Djebali N. 2017. Efficacy of some rhizospheric and endophytic bacteria in vitro and as seed coating for the control of Fusarium culmorum infecting durum wheat in Tunisia. Eur J Plant Pathol. 147(3):501–515.
  • Odds FC, Brown AJP, Gow NAR. 2003. Antifungal agents: mechanisms of action. Trends Microbiol. 11(6):272–279.
  • Pasquali M, Spanu F, Scherm B, Balmas V, Hoffmann L, Hammond-Kosack KE, Beyer M, Migheli Q. 2013. FcStuA from Fusarium culmorum controls wheat foot and root rot in a toxin dispensable manner. PLoS One. 8(2):e57429.
  • Paul PA, Lipps PE, Hershman DE, McMullen MP, Draper MA, Madden LV. 2007. A quantitative review of tebuconazole effect on Fusarium head blight and deoxynivalenol content in wheat. Phytopathology. 97(2):211–220.
  • Pierre L. 2003. Modes d‘action des produits phytosanitaires sur les organismes pathogènes des plantes. CR Biol. 326(1):9–21.
  • Sakil MM, Tahera J, Mohibul HM, Nur IT, Noor R. 2015. Survival of Bacillus spp. SUBB01 at high temperatures and a preliminary assessment of its ability to protect heat-stressed Escherichia coli cells. BMC Res Notes. 8:637.
  • Salem M, Behiry S, EL-Hefny M. 2019. Inhibition of Fusarium culmorum, Penicillium chrysogenum and Rhizoctonia solani by n-hexane extracts of three plant species as a wood-treated oil fungicide. J Appl Microbiol. 126(6):1683–1699.
  • Santoyo G, Orozco‐Mosqueda MDC, Govindappa M. 2012. Mechanisms of biocontrol and plant growth‐promoting activity in soil bacterial species of Bacillus and Pseudomonas: a review. Biocontrol Sci Technol. 22(8):855–872.
  • Scherm B, Balmas V, Spanu F, Pani G, Delogu G, Pasquali M, Migheli Q. 2013. Fusarium culmorum: causal agent of foot and root rot and head blight on wheat. Mol Plant Pathol. 14(4):323–341.
  • Shishatskaya E, Menzyanova N, Zhila N, Prudnikova S, Volova T, Thomas S. 2018. Toxic effects of the fungicide tebuconazole on the root system of fusarium-infected wheat plants. Plant Physiol Biochem. 132:400–407.[30286405].
  • Sumi CD, Yang BW, Yeo IC, Hahm YT. 2015. Antimicrobial peptides of the genus Bacillus: a new era for antibiotics. Can J Microbiol. 61(2):93–103.
  • Sun HY, Zhu YF, Liu YY, Deng YY, Li W, Zhang AX, Chen HG. 2014. Evaluation of tebuconazole for the management of Fusarium head blight in China. Australas Plant Pathol. 43(6):631–638.
  • Vincent JM. 1947. Distortions of fungal hyphae in the presence of certain inhibitors. Phytopathology. 48:268–270.
  • Yanti Y, Hamid H. 2021. Biochemical characterizations of selected indigenous endophytic bacteria potential as growth promoters and biocontrol agents on Tomato. IOP Conf. Ser.: Earth Environ. Sci. 757(1):12002.
  • Yuan J, Raza W, Shen Q, Huang Q. 2012. Antifungal activity of Bacillus amyloliquefaciens NJN-6 volatile compounds against Fusarium oxysporum f. sp. cubense. Appl Environ Microbiol. 78(16):5942–5944.

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