Alexopoulos CJ. 1953 – Myxomycetes developed in moist chamber culture on bark from living Florida trees, with notes on an undescribed species of Comatricha. Quarterly Journal of the Florida Academy of Science 16(4), 254–262.
|
Alexopoulos CJ. 1964 – The rapid sporulation of some myxomycetes in moist chamber culture. The Southwestern Naturalist 9(3), 155–159. doi: 10.2307/3669571
|
Campbell A, Dooley J. 2008 – Composition and ecology of Myxomycetes in a temperate deciduous forest of southeastern Ohio. Ohio Journal of Science 108(1), A21.
|
Cannon P, Sutton B. 2004 – Microfungi on wood and plant debris. In: Mueller G, Bills G, Foster M (eds), Biodiversity of Fungi: Inventory and Monitoring Methods. Burlington, Massachusetts: Elsevier Academic Press. pp 217–239.
|
Cavalcanti LH, Ferreira IN, Bezerra ACC, Costa AAA. 2015 – Microhabitats occupied by Myxomycetes in the Brazilian Atlantic forest: Heliconiaceae inflorescences. Brazilian Journal of Biology 75(4), 859–867. doi: 10.1590/1519-6984.01714
|
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, 187–196. doi: 10.1127/0029-5035/2013/0142
|
Gilbert HC, Martin GW. 1933 – Myxomycetes found on the bark of living trees. University of Iowa Studies in Natural History 15(3), 3–8.
|
Hammer Ø, Harper DAT, Ryan PD. 2001 – PAST: Paleontological statistics software package for education and data analysis. Palaeontologica Electrononica 4(1), 9.
|
Hosokawa A, Reid CR, Latty T. 2019 – Slimes in the city: The diversity of myxomycetes from inner-city and semi-urban parks in Sydney, Australia. Fungal Ecology 39, 37–44. doi: 10.1016/j.funeco.2018.11.004
|
Kryvomaz TI, Maximenko DV. 2016 – Modeling of environmental pollution by metals depending on their concentration in myxomycetes Fuligo septica. Environmental Safety and Sustainable Resources Management 2(14), 87–92.
|
Novozhilov YK, Rollins AW, Schnittler M. 2017 – Ecology and distribution of myxomycetes. In: Stephenson SL, Rojas C (eds), Myxomycetes: Biology, Systematics, Biogeography and Ecology. Academic Press, London. pp. 253–297.
|
Li M, Tao X, Li B, Du Q et al. 2021 – Spatiotemporal distribution and dynamic changes of myxomycetes in subtropical forests of China. Fungal Ecology 53, 101078. doi: 10.1016/j.funeco.2021.101078
|
Rollins AW, Stephenson SL. 2012 – Myxogastrid distribution within the leaf litter microhabitat. Mycosphere 3(5), 543–549. doi: 10.5943/mycosphere/3/5/2
|
Rojas C, Matarrita-Gutiérrez K, Rojas PA, Rollins AW. 2021 – Can the location of the isolation laboratory affect the generation of myxomycete data using moist chambers? An experiment in the Neotropics. Current Research in Environmental & Applied Mycology (Journal of Fungal Biology) 11(1), 67–75.
|
Rojas C. Stephenson SL. 2020 – Comparative analysis on datasets of myxomycetes associated with boreal, temperate and tropical regions of North America. Karstenia 58(2): 190–200.
|
Rojas C, Stephenson SL. 2021 – Phenology of myxomycetes in Turrialba, Costa Rica. Karstenia 59(1-2), 1–12.
|
Rojas C, Valverde R, Rollins AW, Murillo Roos M. 2016 – What can myxomycetes tell us about floricolous microbial systems. Nova Hedwigia 104 (1–3), 211–220.
|
Schnittler M, Stephenson SL. 2002 – Inflorescences of Neotropical herbs as a newly discovered microhabitat for myxomycetes. Mycologia 94(1), 6–20. doi: 10.2307/3761841
|
Stephenson SL, Stempen H. 1994 – Myxomycetes: A Handbook of Slime Molds. Timber Press, Oregon.
|
Stephenson SL, Schnittler M, Lado C. 2004 – Ecological characterization of a tropical myxomycete assemblage – Maquipucuna Cloud Forest Reserve, Ecuador. Mycologia 96(3), 488–497.
|
Stephenson SL, Marbaniang TM, Gupta P, Rojas C. 2020 – Assemblages of corticolous myxomycetes associated with species of Pinus (Pinaceae) in four different regions of the world. Nova Hedwigia 111(1–2), 199–217. doi: 10.1127/nova_hedwigia/2020/0585
|
Tucker G, Hill D, Fasham M. 2005 – Introduction to planning. In: Hill D, Fasham M, Tucker G, Shewry M, Shaw P (eds. ), Handbook of Biodiversity Methods: Survey, Evaluation and Monitoring. Cambridge University Press, Cambridge, UK. pp. 3–5.
|
Wellman P. 2020 – Australian corticolous myxomycetes: models of distribution and development. Australian Journal of Botany 67(8), 617–629.
|
Walker LM, Cedeño-Sanchez M, Carbonero F, Herre EA et al. 2019 – The response of litter-associated myxomycetes to long-term nutrient addition in a lowland tropical forest. Journal of Eukaryotic Microbiology, 66: 757–770. doi: 10.1111/jeu.12724
|
Wrigley de Basanta D, Estrada-Torres A. 2017 – Techniques for recording and isolating myxomycetes. In: Stephenson SL, Rojas C (eds), Myxomycetes: Biology, Systematics, Biogeography and Ecology. Academic Press, London. pp. 333–363.
|