References
- Ahmad MU (2017) Fatty acids: chemistry, synthesis, and applications. Naturally occurring fatty acids: source, chemistry, and uses, 1st edn. Academic press and AOCS press, London, pp 24-71
- Brodey CL, Rainey PB, Tester M, Johnstone K (1991) Bacterial blotch disease of the cultivated mushroom is caused by an ion channel forming lipodepsipeptide toxin. Mol Plant Microbe Interact 4: 407-411 https://doi.org/10.1094/MPMI-4-407
- Chatterjee S, Zareena N, Gautam S, Soumyakanti A, Prasad SV, Arun S (2007) Antioxidant activity of some phenolic constituents from green pepper (Piper nigrum L.) and fresh nutmeg mace (Myristica fragrans). Food Chem 101: 515-523 https://doi.org/10.1016/j.foodchem.2006.02.008
- Cho KH, Park KS, Kim YK (2000) Hemolytic properties of tolaasin causing the brown blotch disease on oyster mushroom. J Korean Soc Agric Chem Biotech 43: 190-195
- Clement MV, Sivarajah S, Pervaiz S (2005) Production of intracellular superoxide mediates dithiothreitol-dependent inhibition of apoptotic cell death. Antioxid Redox Signal 7: 456-464 https://doi.org/10.1089/ars.2005.7.456
- Dolatabadian A, Jouneghani RS (2009) Impact of exogenous ascorbic acid on antioxidant activity and some physiological traits of common bean subjected to salinity stress. Not Bot Hort Agrobot Cluj 37: 165-172
- Emanuele MC, Scaloni A, Lavermicocca P, Jacobellis NS, Camoni L, Di Giorgio D, Pucci P, Paci M, Segre A, Ballio A (1998) Corpeptins, new bioactive lipodepsipeptides from cultures of Pseudomonas corrugata. FEBS Lett. 433: 317-320 https://doi.org/10.1016/S0014-5793(98)00933-8
- Fletcher JT, Gaze TH (2008) Mushroom: Pest and Disease Control, 2nd edn. Manson Publishing, London, pp 192
- Gunstone FD (1984) Reaction of oxygen and unsaturated fatty acids. J Am Oil Chem Soc 61: 441-447 https://doi.org/10.1007/BF02678811
- Hutchison MI, Johnstone K (1993) Evidence for the involvement of the surface active properties of the extracellular toxin tolaasin in the manifestation of brown blotch disease symptoms by Pseudomonas tolaasii on Agaricus bisporus. Physiol Mol Plant Pathol 42: 273-384
- Kim MH, Park SW, Kim YK (2011) Bacteriophages of Pseudomonas tolaasii for the biological control of brown blotch disease. J Korean Soc Appl Biol Chem 54: 99-104
- Lee MT, Sun TL, Hung WC, Huang HW (2013) Process of inducing pores in membranes by melittin. Proc Natl Acad Sci USA 110: 14243-14248 https://doi.org/10.1073/pnas.1307010110
- Li H (2010) Kinetics and mechanisms of the oxidation processes for unsaturated hydrocarbon modified scavengers. Dissertation, University of Toledo
- Munsch P, Alatossava T (2002) Several pseudomonads, associated with cultivated mushrooms Agaricus bisporus and Pleurotus sp., are hemolytic. Microbiol Res 157: 311-315 https://doi.org/10.1078/0944-5013-00159
- Oh SJ, Kim HK, Kim HK, Fermor TR (2000) Effect of sodium hypochlorite for controlling bacterial blotch on Pleurotus ostreatus. Mycobiol 28: 123-126 https://doi.org/10.1080/12298093.2000.12015736
- Park SJ, Han JH, Kim YK (2016) Isolation of bacteriophage-resistant Pseudomonas tolaasii strains and their pathogenic characters. J Appl Biol Chem 59: 351-356 https://doi.org/10.3839/jabc.2016.059
- Peng JT (1986) Resistance to disease in Agaricus bisporus (lange) Imbach. Dissertation, Department of Plant Science, University of Leeds, UK
- Raghuraman H, Chattopadhyay A (2007) Melittin: a membrane-active peptide with diverse functions. Biosci Rep 27: 189-223 https://doi.org/10.1007/s10540-006-9030-z
- Tajalipour S, Hassanzadeh N, Jolfaee HK, Heydari A, Ghasemi A (2014) Biological control of mushroom brown blotch disease using antagonistic bacteria. Biocontrol Sci Technol 24: 473-484 https://doi.org/10.1080/09583157.2013.873113
- Uddin MN, Yesmin S, Khan MA, Tania M, Moonmoon M, Ahmed S (2011) Production of oyster mushrooms in different seasonal conditions of Bangladesh. J Sci Res 3: 161-167
- van den Bogaart G, Guzman JV, Mika JT, Poolman B (2008) On the mechanism of pore formation by melittin. J Biol Chem 238: 33854-33857
- Yun YB, Kim MH, Han JH, Kim YK (2017) Suppression of brown blotch disease by tolaasin inhibitory factors. J Appl Biol Chem 60: 179-184 https://doi.org/10.3839/jabc.2017.029