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Articles

Growth promotion effect of Fusarium spp. PPF1 from bermudagrass (Cynodon dactylon) rhizosphere on Indian spinach (Basella alba) seedlings are linked to root colonisation

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Pages 2319-2331 | Received 03 Dec 2013, Accepted 13 Dec 2013, Published online: 05 Feb 2014

References

  • Abdul-Baki AA, Anderson JD. 1973. Vigor determination in soybean seed by multiple criteria1. Crop Sci. 13:630–633.10.2135/cropsci1973.0011183X001300060013x
  • Ahmed M. 2011. Management of Fusarium wilt of tomato by soil amendment with Trichoderma koningii and a white sterile fungus. Indian J Res. 5:35–38.
  • Ashrafuzzaman M, Hossen FA, Ismail MR, Hoque MA, Islam MZ, Shahidullah SM, Meon S. 2009. Efficiency of plant growth-promoting rhizobacteria for the enhancement of rice growth. Afr J Biotechnol. 8:1247–1252.
  • Booth C. 1977. Fusarium – laboratory guide to the identification of the major species. 1st ed. Kew: Commonwealth Mycological Institute; p. 58.
  • Burgess LW. 1981. General ecology of the Fusaria. In: Nelson PE, Toussoun TA, Cook RJ, editors. Fusarium disease, biology, and taxonomy. London: Pennsylvania University Press; pp. 225–235.
  • Burgess LW, Summerell BA, Bullock S, Gott KP, Backhouse D. 1994. Laboratory manual for Fusarium research. Sydney: Fusarium Research Laboratory Department of Crop Sciences, University of Sydney and Royal Botanic Gardens; p. 133.
  • Christakopoulos P, Kekos D, Macris BJ, Claeyssens M, Bhat MK. 1995. Purification and mode of action of a low molecular mass endo-1,4-β-d-glucanase from Fusarium oxysporum. J Biotechnol. 39:85–93.10.1016/0168-1656(94)00147-5
  • Christakopoulos P, Nerinckx W, Kekos D, Macris B, Claeyssens M. 1996. Purification and characterization of two low molecular mass alkaline xylanases from Fusarium oxysporum F3. J Biotechnol. 51:181–189.10.1016/0168-1656(96)01619-7
  • Compant S, Duffy B, Nowak J, Clement C, Barka E. 2005. Use of plant growth promoting bacteria for biocontrol of plant diseases: principles, mechanisms of action, and future prospects. Appl Environ Microbiol. 71:4951–4959.10.1128/AEM.71.9.4951-4959.2005
  • Elsharkawy MM, Shimizu M, Takahashi H, Hyakumachi M. 2012. The plant growth-promoting fungus Fusarium equiseti and the arbuscular mycorrhizal fungus Glomus mosseae induce systemic resistance against Cucumber mosaic virus in cucumber plants. Plant Soil. 361:397–409.10.1007/s11104-012-1255-y
  • Gordon TR, Okamoto D, Jacobson DJ. 1989. Colonization of muskmelon and nonsusceptible crops by Fusarium oxysporum f. sp. melonis and other species of Fusarium. Phytopathology. 79:1095–1100.10.1094/Phyto-79-1095
  • Hamayun M, Khan SA, Ahmad N, Tang DS, Kang SM, Na CI, Sohn EY, Hwang YH, Shin DH, Lee BH, et al.2009. Cladosporium sphaerospermum as a new plant growth promoting endophyte from the roots of Glycine max (L.) Merr. World J Microbiol Biotechnol. 25:627–632.10.1007/s11274-009-9982-9
  • Hamayun M, Khan SA, Khan AL, Rehman G, Kim Y, Iqbal I, Hussain J, Sohn E, Lee IJ. 2010. Gibberellin production and plant growth promotion from pure cultures of Cladosporium sp. MH-6 isolated from cucumber (Cucumis sativus L.). Mycologia. 102:989–995.10.3852/09-261
  • Hamayun M, Khan SA, Kim HY, Chaudhary MF, Hwang YH, Shin DH, Kim IK, Lee BH, Lee IJ. 2009. Gibberellin production and plant growth enhancement by newly isolated strain of Scolecobasidium tshawytschae. J Microbiol Biotechnol. 19:560–565.
  • Horinouchi H, Katsuyama N, Taguchi Y, Hyakumachi M. 2008. Control of Fusarium crown and root rot of tomato in a soil system by combination of a plant growth-promoting fungus, Fusarium equiseti, and biodegradable pots. Crop Prot. 27:859–864.10.1016/j.cropro.2007.08.009
  • Horinouchi H, Muslim A, Hyakumachi M. 2010. Biological control of Fusarium wilt of spinach by the growth promoting fungus Fusarium equiseti GF 183. J Plant Pathol. 92:249–254.
  • Horinouchi H, Muslim A, Suzuki T, Hyakumachi M. 2007. Fusarium equiseti GF191 as an effective biocontrol agent against Fusarium crown and root rot of tomato in rock wool systems. Crop Prot. 26:1514–1523.10.1016/j.cropro.2006.12.018
  • Horinouchi H, Watanabe H, Taguchi Y, Muslim A, Hyakumachi M. 2011. Biological control of Fusarium wilt of tomato Fusarium equiseti GF 191 in both rock wool and soil systems. Bio Control. 56:915–923.
  • Hossain MM, Hossain N, Sultana F, Islam SMN, Islam MS, Bhuiyan MKA. 2013. Integrated management of Fusarium wilt of chickpea (Cicer arietinum L.) caused by Fusarium oxysporum f. sp. ciceris with microbial antagonist, botanical extract and fungicide. Afr J Biotechnol. 12:4699–4706.
  • Hossain MM, Sultana F, Kubota M, Hyakumachi M. 2008. Differential inducible defense mechanisms against bacterial speck pathogen in Arabidopsis thaliana by plant-growth-promoting-fungus Penicillium sp. GP16-2 and its cell free filtrate. Plant Soil. 304:227–239.10.1007/s11104-008-9542-3
  • Hossain MM, Sultana F, Kubota M, Koyama H, Hyakumachi M. 2007. The plant growthpromoting fungus Penicillium simplicissimum GP17-2 induces resistance in Arabidopsis thaliana by activation of multiple defense signals. Plant Cell Physiol. 48:1724–1736.10.1093/pcp/pcm144
  • Hossain MM, Sultana F, Kubota M, Koyama H, Hyakumachi M. 2008. Systemic resistance to bacterial leaf speck pathogen in Arabidopsis thaliana induced by the culture filtrate of a plant growth-promoting fungus (PGPF) Phoma sp. GS8-1. J Gen Plant Pathol. 74:213–221.10.1007/s10327-008-0093-5
  • Hussain MZ, Rahman MA, Islam MN, Latif MA, Bashar MA. 2012. Morphological and molecular identification of Fusarium oxysporum Schlecht. isolated from guava wilt in Bangladesh. Bangladesh J Bot. 41:49–54.
  • Hyakumachi M. 1994. Plant-growth-promoting fungi from turf grass rhizosphere with potentials for disease suppression. Soil Microorganisms. 44:53–68.
  • Hyakumachi M, Kubota M. 2004. Fungi as plant growth promoter and disease suppressor. In: Arora DK, editor. Fungal biotechnology in agricultural, food, and environmental applications. New York (NY): Marcel Dekker; pp. 101–110.
  • Ishiba C, Tani T, Murata M. 1981. Protection of cucumber against anthracnose by a hypovilurent strain of Fusarium oxysporum f. sp. cucumerinum. Jpn J Phytopathol. 47:352–359.10.3186/jjphytopath.47.352
  • Islam S, Abdul Mannan Akanda AM, Sultana F, Hossain MM. 2013. Chilli rhizosphere fungus Aspergillus spp. PPA1 promotes vegetative growth of cucumber (Cucumis sativus) plants upon root colonisation. Arch Phytopathol Plant Prot. doi:10.1080/03235408.2013.837633.
  • Kashem MA, Hossain I, Hasna MK. 2011. Use of Trichoderma in biological control of foot and root rot of lentil (Lens culinaris Medic.). Int J Sustain Crop Prod. 6:29–35.
  • Katan J. 1971. Symptomless carriers of the tomato Fusarium wilt pathogen. Phytopathology. 61:1213–1217.10.1094/Phyto-61-1213
  • Katsube K, Akasaka Y. 1997. Control of Fusarium wilt of spinach by transplanting seedlings pretreated with nonpathogenic Fusarium oxysporum. Jpn J Phytopathol. 63:389–394.10.3186/jjphytopath.63.389
  • Khan SA, Hamayun M, Khan AL, Lee IJ, Shinwari ZK, Kim JG. 2012. Isolation of plant growth promoting endophytic fungi from dicots inhabiting coastal sand dunes of Korea. Pak J Bot. 44:1453–1460.
  • Khan SA, Hamayun M, Kim HY, Yoon HJ, Lee IJ, Kim JG. 2009. Gibberellin production and plant growth promotion by a newly isolated strain of Gliomastix murorum. World J Microbiol Biotechnol. 25:829–833.10.1007/s11274-009-9981-x
  • Khan AL, Hamayun M, Kim YH, Kang SM, Lee IJ. 2011. Ameliorative symbiosis of endophyte (Penicillium funiculosum sp. LHL06) under salt stress elevated plant growth of Glycine max L. Plant Physiol Biochem. 49:852–861.10.1016/j.plaphy.2011.03.005
  • Khan AL, Hamayun M, Kim YH, Kang SM, Lee JH, Lee IJ. 2011. Gibberellins producing endophytic Aspergillus fumigatus sp. LH02 influenced endogenous phytohormonal levels, plant growth and isoflavone biosynthesis in soybean under salt stress. Process Biochem. 46:440–447.10.1016/j.procbio.2010.09.013
  • Khan SA, Hamayun M, Kim HY, Yoon HJ, Seo JC, Choo YS, Lee IJ, Kim SD, Rhee IK, Kim JG. 2009. A new strain of Arthrinium phaeospermum isolated from Carex kobomugi Ohwi is capable of gibberellin production. Biotechnol Lett. 31:283–287.10.1007/s10529-008-9862-7
  • Koike N, Hyakumachi M, Kageyama K, Tsuyumu S, Doke N. 2001. Induction of systemic resistance in cucumber against several diseases by plant growth-promoting fungi: lignification and superoxide generation. Eur J Plant Pathol. 107:523–533.10.1023/A:1011203826805
  • Kojima H, Hossain MM, Kubota M, Hyakumachi M. 2013. Involvement of the salicylic acid mediated pathway in the systemic resistance induced in Arabidopsis by plant-growth promoting fungi Fusarium equiseti GF 19-1. J Oleo Sci. 62:415–426.10.5650/jos.62.415
  • Kosiak EB, Holst-Jensen A, Rundberget T, Gonzalez Jaen MT, Torp M. 2005. Morphological, chemical and molecular differentiation of Fusarium equiseti isolated from Norwegian cereals. Int J Food Microbiol. 99:195–206.10.1016/j.ijfoodmicro.2004.08.015
  • Larkin RP, Hopkins DL, Martin FN. 1993. Effect of successive watermelon plantings on Fusarium oxysporum and other microorganisms in soils suppressive and conducive to Fusarium wilt of watermelon. Phytopathology. 83:1097–1105.10.1094/Phyto-83-1097
  • Lemanceau P, Bakker PAHM, De Kogel WJ, Alabouvette C, Schippers B. 1993. Antagonistic effect of nonpathogenic Fusarium oxysporum Fo47 and Pseudobactin 358 upon pathogen Fusarium oxysporum f. sp. dianthi. Appl Environ Microbiol. 59:74–82.
  • Meera MS, Shivanna MB, Kageyama K, Hyakumachi M. 1994. Plant growth promoting fungi from zoysia grass rhizosphere as potential inducers of systemic resistance in cucumbers. Phytopathology. 84:1399–1406.10.1094/Phyto-84-1399
  • Murali M, Amruthesh KN, Sudisha J, Niranjana SR, Shetty HS. 2012. Screening for plant growth promoting fungi and their ability for growth promotion and induction of resistance in pearl millet against downy mildew disease. J Phytol. 4:30–36.
  • Muslim A, Horinouchi H, Hyakumachi M. 2003. Suppression of Fusarium wilt of spinach with hypovirulent binucleate Rhizoctonia. J Gen Plant Pathol. 69:143–150.10.1007/s10327-002-0024-9
  • Nelson BD, Hansen JM. 1997. Reaction of soybean cultivars to isolates of Fusarium solani from the Red River Valley. Plant Dis. 81:664–668.10.1094/PDIS.1997.81.6.664
  • Nitao JK, Meyer SLF, Schmidt WF, Fettinger JC, Chitwood DJ. 2001. Nematode-antagonistic trichothecenes from Fusarium equiseti. J Chem Ecol. 27:859–869.10.1023/A:1010390200571
  • Pandya U, Saraf M. 2010. Application of fungi as a biocontrol agent and their biofertilizer potential in agriculture. J Adv Dev Res. 1:90–99.
  • Ram CSV. 1959. Production of growth-promoting substances by Fusarium and their action on root elongation in Oryza sativa L. Proc Indian Acad Sci. 49:167–182.
  • Ramachandran P, Summanwar AS, Lal SP. 1982. Cowpea top necrosis – caused by Fusarium equiseti (Corda) Sacc. Curr Sci. 51:475–477.
  • Rasul G, Thapa GB. 2004. Sustainability of ecological and conventional agricultural systems in Bangladesh: an assessment based on environmental, economic and social perspectives. Agric Syst. 79:327–351.10.1016/S0308-521X(03)00090-8
  • Rodrigues AAC, Menezes M. 2006. Identification and pathogenic characterization of endophytic Fusarium species from cowpea seeds. An Acad Pernamb Ciênc Agron. 3:203–215.
  • Rodriguez A, Perestelo F, Carnicero A, Regalado V, Perez R, De la Fuente G, Falcon MA. 1996. Degradation of natural lignins and lignocellulosic substrates by soil-inhabiting fungi imperfecti. FEMS Microbiol Ecol. 21:213–219.10.1111/fem.1996.21.issue-3
  • Rodriguez RJ, White Jr JF, Arnold AE, Redman RS. 2009. Fungal endophytes: diversity and functional roles. New Phytol. 182:314–330. doi:10.1111/j.1469-8137.2009.02773.x.
  • Saikkonen K, Faeth SH, Helander M, Sullivan TJ. 1998. Fungal endophytes: a continuum of interactions with host plants. Annu Rev Ecol Syst. 29:319–343.10.1146/ecolsys.1998.29.issue-1
  • Sayyed RZ, Reddy MS, Kumar KV, Yellareddygari SKR, Deshmukh AM, Patel PR, Gangurde NS. 2012. Potential of plant growth-promoting rhizobacteria for sustainable agriculture. In: Maheshwari DK, editor. Bacteria in agrobiology: plant probiotics. Berlin: Springer; pp. 287–313.10.1007/978-3-642-27515-9
  • Schneider RW. 1984. Effects of nonpathogenic strains of Fusarium oxysporum on celery root infection by F. oxysporum f. sp. apii and a novel use of the Lineweaver–Burk double reciprocal plate technique. Phytopathology. 74:646–653.10.1094/Phyto-74-646
  • Shivanna MB, Meera MS, Hyakumachi M. 1994. Sterile fungi from zoysia grass rhizosphere as plant growth promoters in spring wheat. Can J Microbiol. 40:637–644.10.1139/m94-101
  • Shivanna MB, Meera MS, Hyakumachi M. 1996. Role of root colonization ability of plant growth promoting fungi in the suppression of take-all and common root rot of wheat. Crop Prot. 15:497–504.10.1016/0261-2194(96)00004-X
  • Snyder WC, Hansen HN. 1940. The species concept in Fusarium. Am J Bot. 27:64–67.10.2307/2436688
  • Stoate C, Báldi A, Beja P, Boatman ND, Herzon I, van Doorn A, de Snoo GR, Rakosy L, Ramwell C. 2009. Ecological impacts of early 21st century agricultural change in Europe. J Environ Manage. 91:22–46.10.1016/j.jenvman.2009.07.005
  • Sutherland JB, Pometto AL III, Crawford DL. 1983. Lignocellulose degradation by Fusarium species. Can J Bot. 61:1194–1198.10.1139/b83-126
  • Sutton TB. 1996. Changing options for the control of deciduous fruit tree diseases. Annu Rev Phytopathol. 34:527–547.10.1146/annurev.phyto.34.1.527
  • Van Wyk PS, Scholtz DJ, Marasas WFO. 1988. Protection of maize seedlings by Fusarium moniliforme against infection by Fusarium graminearum in the soil. Plant Soil. 107:251–257.10.1007/BF02370554
  • Vrbnicanin S, Bozic D, Saric M, Pavlovic D, Raicevic V. 2011. Effect of plant growth promoting rhizobacteria on Ambrosia artemisiifolia L. seed germination. Pestic Phytomed. 26:141–146.10.2298/PIF1102141V
  • Wasira A. 2011. Integrated management on seedling mortality caused by Rhizoctonia solani and yield improvement of pea (MS thesis). Gazipur: Bangabandhu Sheikh Mujibur Rahman Agricultural University.
  • Yamagiwa Y, Toyoda K, Inagaki Y, Ichinose Y, Shiraishi T. 2013. Isolation and identification of a plant growth-promoting fungus from an agricultural field in okayama prefecture. 岡山大学農学部学術報告. 102:1–6. (In Japanese)
  • Yates IE, Bacon CW, Hinton DM. 1997. Effects of endophytic infection by Fusarium moniliforme on corn growth and cellular morphology. Plant Dis. 81:723–728.10.1094/PDIS.1997.81.7.723

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