Review Article

The Possible Biotechnological Use of Edible Mushroom Bioproducts for Controlling Plant and Animal Parasitic Nematodes

Table 3

Edible mushrooms reported with nematocidal activity against nematodes belonging to different taxa.

Mushroom speciesBlank nematodeStageBioactive moleculeAuthor

P. cornucopiae, P. cystidiosus, P. ostreatus, P. strigosus, P. subareolatusRhabditoidLarvaeNot reportedThorn and Barron, 1984 [18]
P. ostreatus, P. strigosus, P. subareolatus, and P. cornucopiaeRhabditoidLarvaeNot reportedBarron and Thorn, 1987 [16]
P. pulmonariusOstertagia ostertagi, Cooperia oncophora, Oesophagostomum quadrispinulatum Cyathostoma sp.Preinfective larvaeNot reportedLarsen and Nansen, 1991 [34]
P. ostreatusPanagrellus sp.LarvaeTrans-2-decenedioic acidKwok et al., 1992 [78]
P. pulmonariusCaenorhabditis elegansLarvaeS-coriolic acid (1), linoleic acid (2), p-anisaldehyde (3), p-anisyl alcohol (4), 1-(4-methoxyphenyl)-1,2-propanediol (5), and 2-hydroxy-(4-methoxy)-propiophenone (6)Stadler et al., 1994 [19]
Coprinus comatusMeloidogyne arenariaJuveniles (J2)Not reportedLuo et al., 2004 [26]
P. ostreatus, P. sajor-caju, P. cornucopiae, P. florida, and P. eryngiiM. javanicaJuveniles (J2)Not reportedHeydari et al., 2006
P. ferulaeBursaphelenchus xylophilusNot identifiedCheimonophyllon E; 5α,8α-epidioxyergosta-6,22-dien-3β-ol; 5-hydroxymethyl-furancarbaldehydeLi et al., 2007 [28]
P. cystidiosusBursaphelenchus xylophilusNot reportedTruong et al., 2007 [27]
Stropharia sp.Panagrellus redivivusLarvaeNot reportedChuixu et al., 2013 [20]
Stropharia sp.Meloidogyne incognitaLarvaeNot reportedChuixu et al., 2013 [20]
P. ostreatus, P. eryngii, P. cornucopiae, Coprinus comatus, Panus sp., Lentinula edodes, and L. boryanusHaemonchus contortusLarvaeNot reportedComans-Pérez et al., 2014 [30]
P. ostreatusPanagrellus sp.LarvaeNot reportedHugo et al., 2015 [21]
P. ostreatusH. contortusEggsNot reportedDíaz, 2015 [31]
P. ostreatusH. contortusLarvae and eggsXylitol, hexadecanoic acid, octadecanoic acid, 2-butoxy phosphate ethanol, 2-butoxy phosphate ethanol (3 : 1), and a xylitol sugarCedillo, 2016 [35]
P. djamorH. contortusLarvae and eggsFraction E1: (i) pentadecanoic, (ii) hexadecanoic, (iii) octadecadienoic, and (iv) octadecanoic acid and a terpene identified as β-sitosterolPineda-Alegría et al., 2017 [8]
Agaricus blazeiH. contortusEggsNot reportedVieira et al., 2017 [32]
P. eryngiiPanagrellus sp.LarvaeNot reportedSufiate et al., 2017 [22]
P. eryngiiMeloidogyne javanicaEggsProteases and chitinasesSufiate et al., 2017 [22]
P. eryngiiH. contortusEggs and larvaeFraction E5: trehalose, polyols (L-iditol, galactitol, D-mannitol, D-glucitol, and myoinositol), adipic acid, stearic acid, squalene, and β-sitosterolCruz-Arevalo et al., 2018 [33]
P. ostreatusP. redivivusLarvaeNot reportedAldaz-Merchán, 2018 [23]
P. ostreatusDitylenchus dipsaciLarvaeNot reportedAldaz-Merchán, 2018 [23]
P. ostreatusPassalurus sp.LarvaeNot reportedAlvear-Díaz, 2018 [36]
P. ostreatusMeloidogyne sp.LarvaeNot reportedAlvear-Díaz, 2018 [36]
P. ostreatus, Boletus sp., P. pulmonarius, P. citrinopileatus, A. muscaria, R. amethystina, L. deliciosus, Suillus sp., P. sajor-caju, and P. ostreatoroseusM. incognitaLarvae J2Not reportedWille et al., 2019 [29]
Hypsizygus marmoreusP. redivivusLarvaeProteasesSoares et al., 2019 [24]
Hypsizygus marmoreusHaemonchus spp., Cooperia spp., and Oesophagostomum spp.LarvaeProteasesSoares et al., 2019 [24]
Flammulina velutipesPanagrellus sp.LarvaeEnzymes and metabolitesFerreira et al., 2019 [25]
Pleurotus djamorH. contortusLarvae and eggPentadecanoic acid, palmitic acid, β-sitosterol, stearic acid, and linoleic acidPineda-Alegría et al., 2020 [37]