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Research Article

Fodder radish aqueous extracts and associated rhizobacteria as bio-stimulants on tomato growth

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References

  • Abbamondi, G.R., G. Tommonaro, N. Weyens, S. Thijs, W. Sillen, P. Gkorezis, C. Iodice, W. de Melo Rangel, B. Nicolaus, and J. Vangronsveld. 2016. Plant growth-promoting effects of rhizospheric and endophytic bacteria associated with different tomato cultivars and new tomato hybrids. Chem. Biol. Technol. Agric 3(1):1˗10. doi: 10.1186/s40538-015-0051-3.
  • Adesemoye, A.O., and D. Egamberdieva. 2013. Beneficial effects of plant growth-promoting rhizobacteria on improved crop production: Prospects for developing economies, In: p. 45˗63. In: D. Maheshwari, M. Saraf, and A. Aeron (eds.). Bacteria in agrobiology: Crop productivity. Springer-Verlag Berlin/Heidelberg, Germany. doi: 10.1007/978-3-642-37241-4_2.
  • Agerbirk, N., and C.E. Olsen. 2012. Glucosinolate structures in evolution. Phytochem. 77:16˗45. doi: 10.1016/j.phytochem.2012.02.005.
  • Ahmad, E., A. Zaidi, and M.S. Khan. 2016. Effects of plant growth promoting rhizobacteria on the performance of greengram under field conditions. Jordan J. Biol.Sci 9:79–88.
  • Ahmed, B., A. Zaidi, M.S. Khan, A. Rizvi, S. Saif, and M. Shahid. 2017. Perspectives of plant growth promoting rhizobacteria in growth enhancement and sustainable production of tomato, In: p. 125˗149. In: A. Zaidi and M.S. Khan (eds.). Microbial strategies for vegetable production. Springer International Publishing AG, New York. doi: 10.1007/978-3-319-54401-4_6.
  • Al-Sherif, E., A.K. Hegazy, N.H. Gomaa, and M.O. Hassan. 2013. Allelopathic effect of black mustard tissues and root exudates on some crops and weeds. Planta. Daninha 31:11˗19. doi: 10.1590/S0100-83582013000100002.
  • Ambrosini, A., and L.M.P. Passaglia. 2017. Plant Growth–Promoting Bacteria (PGPB): Isolation and Screening of PGP Activities. Current Protoc. in Plant Biol. 2(3):190–209. doi: 10.1002/pb20054.
  • Aydi Ben Abdallah, R., C. Stedel, C. Garagounis, A. Nefzi, H. Jabnoun-Khiareddine, K.K. Papadopoulou, and M. Daami-Remadi. 2017. Involvement of lipopeptide antibiotics and chitinase genes and induction of host defense in suppression of Fusarium wilt by endophytic Bacillus spp. in tomato. Crop Prot. 99:45˗58. doi: 10.1016/j.cropro.2017.05.008.
  • Basu, A., P. Prasad, S.N. Das, S. Kalam, R.Z. Sayyed, M.S. Reddy, and H. El Enshasy. 2021. Plant growth promoting rhizobacteria (PGPR) as green bioinoculants: Recent developments, constraints, and prospects. Sustainability 13:1140–1160. doi: 10.3390/su13031140.
  • Békro, Y.A., M.J.A. Békro, B.B. Boua, F.H. Trabi, and E.E. Ehile. 2007. Étude ethnobotanique et screening phytochimique de Caesalpinia benthamiana (Baill.) Herend. et Zarucchi (Caesalpiniaceae). Sci. Nat. 4(2):217˗225. doi: 10.4314/scinat.v4i2.42146.
  • Ben Zineb, A., D. Trabelsi, I. Ayachi, F. Barhoumi, R. Aroca, and R. Mhamdi. 2020. Inoculation with elite strains of phosphate-solubilizing bacteria enhances the effectiveness of fertilization with rock phosphates. Geomicrobiol. J. 37(1):22–30. doi: 10.1080/01490451.2019.1658826.
  • Botta, A.L., A. Santacecilia, C. Ercole, P. Cacchio, and M. Del Gallo. 2013. In vitro and in vivo inoculation of four endophytic bacteria on Lycopersicon esculentum. N. Biotechnol. 30(6):666˗674. doi: 10.1016/j.nbt.2013.01.001.
  • Calvo, P., L. Nelson, and J.W. Kloepper. 2014. Agricultural uses of plant biostimulants. Plant Soil. 383(1–2):3–41. doi: 10.1007/s11104-014-2131-8.
  • Carr, P.M., M.A. Cavigelli, H. Darby, K. Delate, J.O. Eberly, H.K. Fryer, G.G. Gramig, J.R. Heckman, E.B. Mallory, J.R. Reeve, et al. 2020. Green and animal manure use in organic field crop systems. Agron. J 112(2):648–674. doi: 10.1002/agj2.20082.
  • Cesco, S., T. Mimmo, G. Tonon, N. Tomasi, R. Pinton, R. Terzano, G. Neumann, L. Weisskopf, G. Renella, L. Landi, et al. 2012. Plant-borne flavonoids released into the rhizosphere: Impact on soil bio-activities related to plant nutrition. Biol. Fertil. Soils 48(2):123–149. doi: 10.1007/s00374-011-0653-2.
  • Chandran, H., M. Meena, and P. Swapnil. 2021. Plant growth-promoting rhizobacteria as a green alternative for sustainable agriculture. Sustainability 13:10986–11016. doi: 10.3390/su131910986.
  • Choudhary, M., P.C. Ghasal, R.P. Yadav, V.S. Meena, T. Mondal, and J. Bisht. 2018. Towards plant-beneficiary rhizobacteria and agricultural sustainability, In: pp. 1–46. In: V.S. Meena (ed.). Role of rhizospheric microbes in soil. Springer Nature, Singapore Pte Ltd, Singapore. doi: 10.1007/978-981-13-0044-8_1.
  • Cochard, B., B. Giroud, J. Crovadore, R. Chablais, L. Arminjon, and F. Lefort. 2022. Endophytic PGPR from tomato roots: Isolation, in vitro characterization and in vivo evaluation of treated tomatoes (Solanum lycopersicum L.). Microorganisms 10:765–782. doi: 10.3390/microorganisms10040765.
  • Dashti, N.H., N.Y.A. Al-Sarraf, V.M. Cherian, and M.S. Montasser. 2021. Isolation and characterization of novel plant growth-promoting rhizobacteria (PGPR) isolates from tomato (Solanum lycopersicum L.) rhizospherical soil: A novel IAA producing bacteria. Kuwait J. Sci. 48(2):1–18. doi: 10.48129/kjs.v48i2.8427.
  • De Pascale, S., Y. Rouphael, and G. Colla. 2018. Plant biostimulants: Innovative tool for enhancing plant nutrition in organic farming. Eur. J. Hortic. Sci 82(6):277–285. doi: 10.17660/ejhs.2017/82.6.2.
  • Doheny-Adams, T., K. Redeker, V. Kittipol, I. Bancroft, and S.E. Hartley. 2017. Development of an efficient glucosinolate extraction method. Plant Methods. 13:17–31. doi: 10.1186/s13007-017-0164-8.
  • Elfstrand, S., B. Båth, and A. Mårtensson. 2007. Influence of various forms of green manure amendment on soil microbial community composition, enzyme activity and nutrient levels in leek. Appl. Soil Ecol. 36(1):70˗82. doi: 10.1016/j.apsoil.2006.11.001.
  • Finney, D.M., J.S. Buyer, and J.P. Kaye. 2017. Living cover crops have immediate impacts on soil microbial community structure and function. J. Soil Water Conserv. 72:361˗373. doi: 10.2489/jswc.72.4.361.
  • Glickmann, E., and Y. Dessaux. 1995. A critical examination of the specificity of the Salkowski reagent for indolic compounds produced by phytopathogenic bacteria. Appl. Environ. Microbiol. 61(2):793–796. doi: 10.1128/aem.61.2.793-796.1995.
  • Godlewska, K., A. Biesiada, I. Michalak, and P. Pacyga. 2020. The effect of botanical extracts obtained through ultrasound-assisted extraction on white head cabbage (Brassica oleracea L. var. capitata L.) seedlings grown under controlled conditions. Sustainability 12:1871˗1902. doi: 10.3390/su12051871.
  • Gouda, S., R.G. Kerry, G. Das, S. Paramithiotis, H.S. Shin, and J.K. Patra. 2018. Revitalization of plant growth promoting rhizobacteria for sustainable development in agriculture. Microbiol. Res. 206:131–140. doi: 10.1016/j.micres.2017.08.016.
  • Grover, M., S. Bodhankar, A. Sharma, P. Sharma, J. Singh, and L. Nain. 2021. PGPR mediated alterations in root traits: Way toward sustainable crop production. Front. Sustain. Food Syst 4:1–28. doi: 10.3389/fsufs.2020.618230.
  • Hasan, J., S. Megha, and H. Rahman. 2021. Clubroot in Brassica: Recent advances in genomics, breeding, and disease management. Genome. 64:735˗819. doi: 10.1139/gen-2020-0089.
  • Herman, R.P., K. Provencio, R. Torrez, and G. Seager. 1994. Seasonal and spatial population dynamics of the nitrogen-efficient guild in a desert bajada grassland. Appl. Environ. Microbiol. 60(4):1160–1165. doi: 10.1128/aem.60.4.1160-1165.1994.
  • Jabnoun-Khiareddine, H., R. Aydi Ben Abdallah, F. Ayed, M. Gueddes-Chahed, A. Hajlaoui, S. Ben Salem, W. Ben Dhia, and M. Daami-Remadi. 2016. Effect of fodder radish (Raphanus sativus L.) green manure on potato wilt, growth and yield parameters. Adv. Crop Sci. Technol. 4(02):211–218. doi: 10.4172/2329-8863.1000211.
  • Jahn, L., U. Hofmann, and J. Ludwig-Müller. 2021. Indole-3-acetic acid is synthesized by the endophyte Cyanodermella asteris via a tryptophan-dependent and -independent way and mediates the interaction with a non-host plant. Int. J. Mol. Sci. 22(5):2651–2670. doi: 10.3390/ijms22052651.
  • Kalozoumis, P., D. Savvas, K. Aliferis, G. Ntatsi, G. Marakis, E. Simou, A. Tampakaki, and I. Karapanos. 2021. Impact of plant growth-promoting rhizobacteria inoculation and grafting on tolerance of tomato to combined water and nutrient stress assessed via metabolomics analysis. Front. Plant Sci. 12:670˗236. doi: 10.3389/fpls.2021.670236.
  • Karkachi, N.E., S. Gharbi, M. Kihal, and J.E. Henni. 2010. Biological control of Fusaruimoxysporum f. sp. lycopersici isolated from Algerian tomato by Pseudomonas fluorescens, Bacillus cereus. Res. J. Agron. 4(2):31–34. doi: 10.3923/rjagr.2010.31.34.
  • Kimura, M. 1980. A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. J. Mol. Evol. 16(2):111–120. doi: 10.1007/BF01731581.
  • Lacava, P.T., M.E. Silva-Stenico, W.L. Araújo, A.V.C. Simionato, E. Carrilho, S.M. Tsai, and J.L. Azevedo. 2008. Detection of siderophores in endophytic bacteria Methylobacterium spp. associated with Xylella fastidiosa subsp pauca. Pesquisa Agropecuária Brasileira. 43(4):521–528. doi: 10.1590/S0100204X2008000400011.
  • Lachisa, L., and A. Dabassa. 2015. Synergetic effect of rhizosphere bacteria isolates and composted manure on Fusarium wilt disease of tomato plants. Res. J. Microbiol. 11(1):20–27. doi: 10.3923/jm.2016.20.27.
  • Lahlali, R., S. Ezrari, N. Radouane, J. Kenfaoui, Q. Esmaeel, H. El Hamss, Z. Belabess, and E.A. Barka. 2022. Biological control of plant pathogens: A global perspective. Microorganisms 10:596–629. doi: 10.3390/microorganisms10030596.
  • Larkin, R.P., and C.W. Honeycutt. 2006. Effect of different 3-year cropping systems on soil microbial communities and Rhizoctonia diseases of potato. Phytopathology® 96(1):69–79. doi: 10.1094/PHYTO-96-0068.
  • Lazzeri, L., G. Riva, L. D’Avino, and E.F. Pedretti. 2015. Short introduction to the valso and extravalore project activities. Indust. Crops Prod. 75:1–7. doi: 10.1016/j.indcrop.2014.07.014.
  • Majeed, A., Z. Muhammad, and H. Ahmad. 2018. Plant growth promoting bacteria: Role in soil improvement, abiotic and biotic stress management of crops. Plant Cell Rep. 37(12):1599˗1609. doi: 10.1007/s00299-018-2341-2.
  • Meena, G., S.G. Borkar, and M.L. Nisha. 2015. Population dynamics of plant growth promoting microbes on root surface and rhizosphere of tomato crop and their beneficial effect as bioinoculants on tomato and chilli crop. Int. J. Adv. Res 3:990–996.
  • Mei, C., R.L. Chretien, B.S. Amaradasa, Y. He, A. Turner, and S. Lowman. 2021. Characterization of phosphate solubilizing bacterial endophytes and plant growth promotion in vitro and in Greenhouse. Microorganisms 9:1935–1946. doi: 10.3390/microorganisms9091935.
  • Mekonnen, H., and M. Kibret. 2021. Review: The roles of plant growth promoting rhizobacteria in sustainable vegetable production in Ethiopia. Chem. Biol. Technol. Agric 8(1):15–25. doi: 10.1186/s40538-021-00213-y.
  • Méndez-Bravo, A., E.M. Cortazar-Murillo, E. Guevara-Avendaňo, O. Ceballos-Luna, B. Rodríguez-Haas, A.L. Kiel-Martínez, O. Hernández-Cristóbal, J.A. Guerrero-Analco, F. Reverchon, and S. Jogaiah. 2018. Plant growth-promoting rhizobacteria associated with avocado display antagonistic activity against Phytophthora cinnamomi through volatile emissions. PLoS ONE. 13(3):e0194665. doi: 10.1371/journal.pone.0194665.
  • Mierziak, J., K. Kostyn, and A. Kulma. 2014. Flavonoids as important molecules of plant interactions with the environment. Molecules 19:16240–16265. doi: 10.3390/molecules191016240.
  • Mota, M.S., C.B. Gomes, I.T.S. Júnior, and A.B. Moura. 2017. Bacterial selection for biological control of plant disease: Criterion determination and validation. Braz. J. Microbiol. 48(1):62–70. doi: 10.1016/j.bjm.2016.09.003.
  • Nasir, S. 2016. Review on major potato disease and their management in Ethiopia. Int. J. Hort. Flor 4:239–246.
  • Nefzi, A., R. Aydi Ben Abdallah, H. Jabnoun-Khiareddine, N. Ammar, S. Medimagh-Saïdana, S. Reguez, R. Haouala, and M. Daami-Remadi. 2018. Management of Fusarium Crown and Root Rot of tomato by Solanum linnaeanum L. extracts. Sci. Hortic. 238:204˗214. doi: 10.1016/j.scienta.2018.04.050.
  • Ngouajio, M., D.R. Mutch, and W.K. Kellogg. 2004. Oilseed radish: A new cover crop for Michigan, p. 4. In: Bethel, M. A. (ed). Extension Bulletin 2907. Department of Horticulture, Michigan State University, East Lansing, MI.
  • Nshimiyimana, D.S., and Q. He. 2010. Radical scavenging capacity of Rwandan CTC tea polyphenols extracted using microwave assisted extraction. Pak. J. Nutr. 9(6):589–593. doi: 10.3923/pjn.2010.589.593.
  • Ordookhani, K., K. Khavazi, A. Moezzi, and F. Rejali. 2022. Influence of PGPR and AMF on antioxidant activity, lycopene and potassium contents in tomato. Afr. J. Agri. Res 5:1108–1116.
  • Ouhaibi-Ben Abdeljalil, N., J. Vallance, J. Gerbore, A. Yacoub, M. Daami-Remadi, and P. Rey. 2021. Combining potential oomycete and bacterial biocontrol agents as a tool to fight tomato Rhizoctonia Root Rot. Biol. Control 155:104521–104546. doi: 10.1016/j.biocontrol.2020.104521.
  • Özaktan, H., M.C. Malkoclu, Y. Tüzel, G.B. Öztekin, and L. Yolageldi. 2017. Effects of plant growth-promoting rhizobacteria on organic tomato seedling production. Acta Hortic. 1164:63˗68. doi: 10.17660/ActaHortic.2017.1164.8.
  • Pacifico, D., C. Lanzanova, E. Pagnotta, L. Bassolino, A.M. Mastrangelo, D. Marone, R. Matteo, R.L. Scalzo, and C. Balconi. 2021. Sustainable Use of Bioactive Compounds from Solanum Tuberosum and Brassicaceae Wastes and by-Products for Crop Protection—A Review. Mol. 26(8):2174–2213. doi: 10.3390/molecules26082174.
  • Parasuraman, P., S.S. Pattnaik, S. Busi, N. Marraiki, A.M. Elgorban, and A. Syed. 2020. Isolation and characterization of plant growth promoting rhizobacteria and their biocontrol efficacy against phytopathogens of tomato (Solanum lycopersicuml.). Plant Biosyst. - Int. J. Dealing Aspects Plant Biosyst. 156(1):164–170. doi: 10.1080/11263504.2020.1845842.
  • Patel, H.A., R.K. Patel, S.K. Khristi, K. Parikh, and G. Rajendran. 2012. Isolation and Characterization of Bacterial Endophytes from Lycopersicon esculentum Plant and their Plant Growth Promoting Characteristics. Nepal J. Biotechnol. 2(1):37˗52. doi: 10.3126/njb.v2i1.5679.
  • Podile, A.R., and G.K. Kishore. 2006. Plant growth-promoting rhizobacteria, In: pp. 195–230. In: S.S. Gnanamanickam (ed.). Plant-associated bacteria. Springer, Amsterdam, The Netherlands.
  • Radhakrishnan, R., A. Hashem, and E.F. Abdallah. 2017. Bacillus: A biological tool for crop improvement through bio-molecular changes in adverse environments. Front. Physiol. 8:667–681. doi: 10.3389/fphys.2017.00667.
  • Rai, A., and E. Nabti. 2017. Plant growth-promoting bacteria: Importance in vegetable production, In: pp. 23–48. In: A. Zaidi and M.S. Khan (eds.). Microbial strategies for vegetable production. Springer, New York.
  • Rasul, S.A., and K.A. Ali. 2020. Effect of radish aqueous extract on germination and seedling growth of wheat, wild oat and wild barley. J. Adv. Pharm. Educ. Res 10:183˗189.
  • Reetha, A.K., S.L. Pavani, and S. Mohan. 2014. Hydrogen cyanide production ability by bacterial antagonist and their antibiotics inhibition potential on Macrophomina phaseolina (Tassi.) Goid. Int. J. Curr. Microbiol. App. Sci 3:172–178.
  • Rouphael, Y., and G. Colla. 2020. Toward a sustainable agriculture through plant biostimulants:From experimental data to practical applications. Agron. (10):1461–1470. doi: 10.3390/agronomy10101461.
  • Schaad, N.W., J.B. Jones, and W. Chun. 2001. Laboratory guide for identification of plant pathogenic bacteria. The American Phytopathological Society Press, St Paul, MN.
  • Shah, A.N., J. Iqbal, S. Fahad, M. Tanveer, G. Yang, E.A. Khan, B. Shahzad, M. Yousaf, W. Hassan, A. Ullah, et al. 2017. Allelopathic influence of sesame and green gram intercrops on cotton in a replacement series. CLEAN - Soil, Air, Water. 45(1):150–469. doi: 10.1002/clen.201500469.
  • Shah, A., and D.L. Smith. 2020. Flavonoids in agriculture: Chemistry and roles in biotic and abiotic stress responses, and microbial associations. Agron. 10(8):1209–1236. doi: 10.3390/agronomy10081209.
  • Shahzad, B., S.A. Cheema, M. Farooq, Z.A. Cheema, A. Rehman, and T. Abbas. 2018. Growth stimulating influence of foliage applied brassica water extracts on morphological and yield attributes of bread wheat under different fertilizer regimes. Planta. Daninha 36:1–12. doi: 10.1590/S0100-83582018360100117.
  • Shaikh, S.S., and R.Z. Sayyed. 2015. Role of plant growth-promoting rhizobacteria and their formulation in biocontrol of plant diseases, In: p. 337˗351. In: N. Arora (ed.). Plant microbes symbiosis: Applied facets. Springer, New Delhi, India. doi: 10.1007/978-81-322-2068-8_18.
  • Siddikee, M.A., P.S. Chauhan, R. Anandham, G.H. Han, and T. Sa. 2010. Isolation, characterization, and use for plant growth promotion under salt stress, of ACC deaminase producing halo tolerant bacteria derived from coastal soil. J. Microbiol. Biotechnol. 20(11):1577–1584. doi: 10.4014/jmb.1007.07011.
  • Singla, P., and N. Garg. 2017. Plant flavonoids: Key players in signaling, establishment, and regulation of rhizobial and mycorrhizal endosymbioses, p. 133-176. In: A. Verma, R. Prasad, and N. Tuteja (eds.). Mycorrhiza-function, diversity, state of the art. Springer, Berlin/Heidelberg, Germany.
  • Takahashi, S., J. Tomita, K. Nishioka, T. Hisada, and M. Nishijima. 2014. Development of a prokaryotic universal primer for simultaneous analysis of bacteria and archaea using next-generation sequencing. PLOS ONE. 9(8):e105592. doi: 10.1371/journal.pone.0105592.
  • Tallapragada, P., R. Dikshit, and S. Seshagir. 2015. Isolation and optimization of IAA producing Burkholderia seminalis and its effect on seedlings of tomato. Songklanakarin J. Sci. Technol 37:553–559.
  • Tariq, M., M. Noman, T. Ahmed, A. Hameed, N. Manzoor, and M. Zafar. 2017. Antagonistic features displayed by plant growth promoting rhizobacteria (PGPR). J. Plant Sci. Phytopathol. 1(1):38–43. doi: 10.29328/journal.jpsp.1001004.
  • van Soolingen, D., P.E.W. De Hass, P.W.M. Hermans, and J.D.A. van Embden. 1994. DNA fingerprinting of Mycobacterium tuberculosis. Meth. Enzymol. 235:196˗205. doi: 10.1016/0076-6879(94)35141-4.
  • Vethavalli, S., and S.S. Sudha. 2012. In vitro and in silico studies on biocontrol agent of bacterial strains against Fusarium oxysporum f. sp. Lycopersici. Res. Biotechnol. Res. Biotechnol 3:22˗31.

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