[1] |
Maheswari NU, Komalavalli RJIJCMA. 2013. Diversity of soil fungi from Thiruvarur district, Tamil Nadu, India. International Journal of Current Microbiology and Applied Science 2:135−41 |
[2] |
Rebecca LJ, Dhanalakshmi V, Sharmila S, Susithra G, Kumar S, et al. 2012. Isolation, identification and characterization of fungi from rhizosphere soil of Barleria cristata. International Journal of Horticultural & Crop Science Research 2:1−6 |
[3] |
Reyes RG, Eguchi F, Kalaw SP, Kikukawa T. 2009. Mushroom growing in the tropics: a practical guide. Nueva Ecija, Philippines: Science City of Munoz, Central Luzon State University Press |
[4] |
Sartori FG, Leandro LF, Montanari LB, de Souza MGM, Pires RH, et al. 2013. Isolation and identification of environmental mycobacteria in the waters of a hemodialysis center. Current Microbiology 67:107−11 doi: 10.1007/s00284-013-0341-6 |
[5] |
Mueller GM, Schmit JP, Leacock PR, Buyck B, Cifuentes J, et al. 2007. Global diversity and distribution of macrofungi. Biodiversity and Conservation 16:37−48 doi: 10.1007/s10531-006-9108-8 |
[6] |
Tang X, Mi F, Zhang Y, He X, Cao Y, et al. 2015. Diversity, population genetics, and evolution of macrofungi associated with animals. Mycology 6:94−109 doi: 10.1080/21501203.2015.1043968 |
[7] |
Zotti M, Persiani AM, Ambrosio E, Vizzini A, Venturella G, et al. 2013. Macrofungi as ecosystem resources: conservation versus exploitation. Plant Biosystems - an International Journal Dealing with All Aspects of Plant Biology 147:219−25 doi: 10.1080/11263504.2012.753133 |
[8] |
Lopez ABV, Aquino JDC, Undan JQ, Waing KG, Undan JR. 2016. Molecular identification and phylogeny of some wild microscopic fungi from selected areas of Jaen, Nueva Ecija, Philippines. Advances in Environmental Biology 10(12):153−58 |
[9] |
Thakur M. 2020. Fungi as a biological tool for sustainable agriculture. In Agriculturally Important Fungi for Sustainable Agriculture: Perspective for Diversity and Crop Productivity, eds. Yadav A, Mishra S, Kour D, Yadav N, Kumar A. Volume 1. Cham: Springer. pp. 255−73. doi: 10.1007/978-3-030-45971-0_11 |
[10] |
Svoboda L, Kalač P. 2003. Contamination of two edible Agaricus spp. mushrooms growing in a town with cadmium, lead, and mercury. Bulletin of Environmental Contamination and Toxicology 71:123−30 doi: 10.1007/s00128-003-0138-6 |
[11] |
Barros L, Cruz T, Baptista P, Estevinho LM, Ferreira ICFR. 2008. Wild and commercial mushrooms as source of nutrients and nutraceuticals. Food and Chemical Toxicology 46:2742−47 doi: 10.1016/j.fct.2008.04.030 |
[12] |
Dulay RM, Carandang JS, Kalaw S, Reyes R. 2020. Distribution and species listing of wild macrofungi in Sitio Canding, Barangay Maasin, San Clemente, Tarlac Province, Philippines. Journal of Applied Biology & Biotechnology 8(5):7−15 doi: 10.7324/jabb.2020.80502 |
[13] |
Khatun S, Aminul I, Ugur C, Chatterjee N. 2012. Research on mushroom as a potential source of nutraceuticals: a review on Indian perspective. American Journal of Experimental Agriculture 2:47−73 doi: 10.9734/ajea/2012/492 |
[14] |
Reyes RG, Nair MG. 2016. Ligninolytic and leaf litter degrading mushrooms from the Philippines with antioxidant activities. International Journal of Pharmaceutical Research & Allied Sciences 5(4):67−74 |
[15] |
Karaman M, Novakovic M, Matavuly M. 2012. Fundamental fungal strategies in restoration of natural environment. In Fungi: types, environmental impact and role in disease, eds. Silva AP, Sol M. New York, USA: Nova Science Publishers. pp. 167−214. |
[16] |
Rakić M, Marković M, Galić Z, Galović V, Karaman M. 2022. Diversity and distribution of macrofungi in protected mountain forest habitats in Serbia and its relation to abiotic factors. Journal of Fungi 8:1074 doi: 10.3390/jof8101074 |
[17] |
Ebibila J, Onuoha Ebibila J, Onuoha CI, Oyibo G. 2009. Cultivation of straw mushroom (Volvariella volvacea) using some agro-waste material. Journal of American Science 5(5):135−38 |
[18] |
Kalaw SP, Albinto RF. 2014. Functional activities of Philippine wild strain of Coprinus comatus (O. F. Müll. : Fr.) Pers and Pleurotus cystidiosus O. K. Miller grown on rice straw based substrate formulation. Mycosphere 5(5):646−55 doi: 10.5943/mycosphere/5/5/5 |
[19] |
Musngi RB, Abella EA, Lalap AL, Reyes RG. 2005. Four species of wild Auricularia in Central Luzon, Philippines as sources of cell lines for researchers and mushroom growers. Journal of Agricultural Technology 1(2):279−99 |
[20] |
Reyes RG, Eguchi F, Iijima T, Higaki M. 1997. Collybia reinakeana, a wild edible mushroom from the forests of puncan, nueva ecija, Philippines. Mushroom Science and Biotechnology 5:99−102 |
[21] |
Jacob JKS, Romorosa ES, Kalaw SP. 2017. Species listing of macroscopic fungi in Isabela State University, Isabela as baseline information. International Journal of Agricultural Technology 13:1199−203 |
[22] |
De Castro MEG, Dulay RMR. 2015. Macrofungi in multistorey agroforestry systems in Mt. Makiling Forest Reserve, Los Baños, Laguna, Philippines. Journal of Chemical, Biological and Physical Sciences, Section B 5:1646−55 |
[23] |
Dulay RMR, Flores KS, Tiniola RC, Kalaw SP, Reyes RG, et al. 2015. Mycelial biomass production and antioxidant activity of Lentinus tigrinus and Lentinus sajor-caju in indigenous liquid culture. Mycosphere 6(6):659−66 doi: 10.5943/mycosphere/6/6/2 |
[24] |
Cababan MAL, Jaranilla AKO, Bastatas MC, Salvane CFC, Toldo UC. 2021. Diversity and distribution of bracket fungi in Mt. kilakiron, bukidnon, Philippines. Biosaintifika: Journal of Biology & Biology Education 13:41−50 doi: 10.15294/biosaintifika.v13i1.24064 |
[25] |
Dagamac NHA, Stephenson SL, Dela Cruz TEE. 2014. The occurrence of litter Myxomycetes at different elevations in Mt. Arayat National Park, Pampanga, Philippines. Nova Hedwigia 98:187−96 doi: 10.1127/0029-5035/2013/0142 |
[26] |
Department of Environment and Natural Resources/United Nations Environment Program (DENR/UNEP). 1997. Philippine biodiversity: an assessment and action plan. Makati City, Philippines: Bookmark Inc. |
[27] |
Dagamac NHA, Stephenson SL, Dela Cruz TEE. 2012. Occurrence, distribution and diversity of myxomycetes (plasmodial slime moulds) along two transects in Mt. Arayat National Park, Pampanga, Philippines. Mycology 3(2):119−26 doi: 10.1080/21501203.2011.637088 |
[28] |
Arenas MC, Tadiosa ER, Reyes RG. 2018. Taxonomic inventory based on physical distribution of macrofungi in Mt. maculot, cuenca, batangas, Philippines. International Journal of Biology, Pharmacy and Allied Sciences 7(5):672−87 doi: 10.31032/ijbpas/2018/7.5.4420 |
[29] |
De Leon AM, Luangsa-Ard JJD, Karunarathna SC, Hyde KD, Reyes RG, et al. 2013. Species listing, distribution, and molecular identification of macrofungi in six Aeta tribal communities in Central Luzon, Philippines. Mycosphere 4(3):478−94 doi: 10.5943/mycosphere/4/3/4 |
[30] |
Paguirigan JAG, David BAP, Elsisura RNMS, Gamboa AJR, Gardaya RF, et al. 2020. Species listing and distribution of macrofungi in Consocep Mountain Resort, Tigaon and Mount Isarog National Park, Goa, Camarines Sur. Philippine Journal of Systematic Biology 14(1):1−9 doi: 10.26757/pjsb2020a14005 |
[31] |
Quimio TH. 2001. Workbook on tropical fungi: collection, isolation and identification. Laguna, Philippines: The Mycological Society of the Philippines, Inc. |
[32] |
Tadiosa ER, Arenas MC, Reyes RG. 2015. Macroscopic Fungi of Mts. Banahaw-San Cristobal Protected Landscape Northwestern side, with a description of Nidula banahawensis sp. nov. (Basidiomycota). Asian Journal of Biodiversity 6(2):1−10 doi: 10.7828/ajob.v7i1.838 |
[33] |
Wijayawardene NN, Hyde KD, Al-Ani LKT, Tedersoo L, Haelewaters D, et al. 2020. Outline of Fungi and fungus-like taxa. Mycosphere 11(1):1060−456 doi: 10.5943/mycosphere/11/1/8 |
[34] |
Reyes RG, Lopez LLMA, Kumakura K, Kalaw SP, Kikukawa T, et al. 2009. Coprinus comatus, a newly domesticated wild nutriceutical mushroom in the Philippines. Journal of Agricultural Technology 5(2):299−316 |
[35] |
Mohammad A, Yee LS, Sawawi N. 2019. Macrofungi of Pulau Sibu, Johor: A preliminary study. Malayan Nature Journal 71(3):381−90 |
[36] |
Guerrero J, Banares EN, General MA, Imperal JT. 2020. Rapid survey of macrofungi within an urban forest fragment in Bicol, eastern Philippines. Osterr. Z. Pilzk 28:37−43 |
[37] |
Mustapha NAL, Zawawi AZM. 2022. Diversity of macrofungi in UiTM Forest Reserve, Kuala Pilah, Negeri Sembilan. Journal of Academia 10(1):11−21 |
[38] |
Bustillos RG, Dulay RMR, Kalaw SP, Reyes RG. 2014. Optimization of culture conditions for mycelial growth and basidiocarp production of Philippine strains of Panaeolus antillarium and Panaeolus cyanescens. Mycosphere 5(3):398−404 doi: 10.5943/mycosphere/5/3/1 |
[39] |
O'Hanlon R, Harrington TJ. 2012. Macrofungal diversity and ecology in four Irish forest types. Fungal Ecology 5:499−508 doi: 10.1016/j.funeco.2011.12.008 |
[40] |
Tuo Y, Rong N, Hu J, Zhao G, Wang Y, et al. 2022. Exploring the relationships between macrofungi diversity and major environmental factors in Wunvfeng national forest park in Northeast China. Journal of Fungi 8:98 doi: 10.3390/jof8020098 |
[41] |
Ujházy K, Ujházyová M, Bučinová K, Čiliak M, Glejdura S, et al. 2018. Response of fungal and plant communities to management-induced overstorey changes in montane forests of the Western Carpathians. European Journal of Forest Research 137:169−83 doi: 10.1007/s10342-017-1096-6 |
[42] |
Hu JJ, Zhao GP, Tuo YL, Qi ZX, Yue L, et al. 2022. Ecological factors influencing the occurrence of macrofungi from eastern mountainous areas to the central Plains of Jilin Province, China. Journal of Fungi 8(8):871 doi: 10.3390/jof8080871 |
[43] |
Shen C, Gunina A, Luo Y, Wang J, He JZ, et al. 2020. Contrasting patterns and drivers of soil bacterial and fungal diversity across a mountain gradient. Environmental Microbiology 22:3287−301 doi: 10.1111/1462-2920.15090 |
[44] |
Enow E, Kinge TR, Tabi EM, Thiobal N, Mih AM. 2013. Diversity and distribution of macrofungi (mushrooms) in the Mount Cameroon Region. Journal of Ecology and the Natural Environment 5(10):318−34 doi: 10.5897/jene2013.0397 |
[45] |
Jang SK, Hur TC. 2014. Relationship between climatic factors and the distribution of higher fungi in byeonsanbando National Park, Korea. Mycobiology 42:27−33 doi: 10.5941/MYCO.2014.42.1.27 |
[46] |
Hoa HT, Wang CL. 2015. The effects of temperature and nutritional conditions on Mycelium growth of two oyster mushrooms (Pleurotus ostreatus and Pleurotus cystidiosus). Mycobiology 43:14−23 doi: 10.5941/MYCO.2015.43.1.14 |
[47] |
Kauserud H, Stige LC, Vik JO, Okland RH, Høiland K, et al. 2008. Mushroom fruiting and climate change. Proceedings of the National Academy of Sciences of the United States of America 105:3811−14 doi: 10.1073/pnas.0709037105 |
[48] |
Neelam S, Chennupati S, Singh S. 2013. Comparative studies on growth parameters and physio-chemical analysis of Pleurotus ostreatus and Pleurotus florida. Asian Journal of Plant Science & Research 3:163−69 |
[49] |
Pinna S, Gévry MF, Côté M, Sirois L. 2010. Factors influencing fructification phenology of edible mushrooms in a boreal mixed forest of Eastern Canada. Forest Ecology and Management 260(3):294−301 doi: 10.1016/j.foreco.2010.04.024 |
[50] |
Straatsma G, Ayer F, Egli S. 2001. Species richness, abundance, and phenology of fungal fruit bodies over 21 years in a Swiss forest plot. Mycological Research 105(5):515−23 doi: 10.1017/s0953756201004154 |
[51] |
Priyamvada H, Akila M, Singh RK, Ravikrishna R, Verma RS, et al. 2017. Terrestrial macrofungal diversity from the tropical dry evergreen biome of southern India and its potential role in aerobiology. PLoS One 12:e0169333 doi: 10.1371/journal.pone.0169333 |
[52] |
Zeb M, Ullah A, Ullah F, Haq A, Ullah I, et al. 2023. Diversity and biological characteristics of macrofungi of district Bajaur, a remote area of Pakistan in the Hindu Kush range. Heliyon 9:e17818 doi: 10.1016/j.heliyon.2023.e17818 |
[53] |
Salerni E, LAGANà A, Perini C, Loppi S, De Dominicis V. 2002. Effects of temperature and rainfall on fruiting of macrofungi in oak forests of the Mediterranean area. Israel Journal of Plant Sciences 50(3):189−98 doi: 10.1092/gv8j-vpkl-uv98-wvu1 |
[54] |
Kuo M. 2011. Mushroom: The big picture. www.mushroomexpert.com/taxonomy. html (Retrieved December 09, 2013 |
[55] |
Ortega A, Lorite J, Valle F. 2010. Mycorrhizal macrofungi diversity (Agaricomycetes) from Mediterranean Quercus forests; a compilation for the Iberian Peninsula (Spain and Portugal). Nova Hedwigia 91:1−31 doi: 10.1127/0029-5035/2010/0091-0001 |
[56] |
Richard F, Moreau PA, Selosse MA, Gardes M. 2004. Diversity and fruiting patterns of ectomycorrhizal and saprobic fungi in an old-growth Mediterranean forest dominated by Quercus ilex L. Canadian Journal of Botany 82(12):1711−29 doi: 10.1139/b04-128 |
[57] |
Baral S, Thapa-Magar KB, Karki G, Devkota S, Shrestha BB. 2015. Macrofungal diversity in community-managed sal (Shorea robusta) forests in central Nepal. Mycology 6:151−57 doi: 10.1080/21501203.2015.1075232 |
[58] |
Ortega A, Lorite J. 2007. Macrofungi diversity in cork-oak and holm-oak forests in Andalusia (southern Spain); an efficient parameter for establishing priorities for its evaluation and conservation. Open Life Sciences 2:276−96 doi: 10.2478/s11535-007-0015-0 |
[59] |
Tadiosa ER, Arsenio JS. 2014. A taxonomic study of wood-rotting basidiomycetes at the molave forest of San Fernando city, La Union Province, Philippines. Asian Journal of Biodiversity 5:1−2 doi: 10.7828/ajob.v5i1.483 |
[60] |
Suba MD, Arriola AH, Alejandro GJD. 2019. A preliminary checklist of vascular plants of Mt. Arayat National Park, Pampanga, Philippines. Biodiversity Journal 10:37−46 doi: 10.31396/biodiv.jour.2019.10.1.37.46 |