^Kornmann, P. (1989). “Sahlingia nov. gen. based on Erythrocladia subintegra (Erythropeltidales, Rhodophyta)”. British Phycological Journal24: 223-228. doi:10.1080/00071618900650241.
^ abcdeNelson, W. A., Broom, J. E. & Farr, T. J. (2003). “Pyrophyllon and Chlidophyllon (Erythropeltidales, Rhodophyta): two new genera for obligate epiphytic species previously placed in Porphyra, and a discussion of the orders Erythropeltidales and Bangiales”. Phycologia42: 308-315. doi:10.2216/i0031-8884-42-3-308.1.
^ abWest, J. A., Zuccarello, G. C., Scott, J. L., West, K. A. & de Goer, S. L. (2007). “Pulvinus veneticus gen. et sp. nov.(Compsopogonales, Rhodophyta) from Vanuatu”. Phycologia46: 237-246. doi:10.2216/06-66.1.
^ abKikuchi, N., & Shin, J. A. (2011). “Porphyrostromium japonicum (Tokida) Kikuchi comb. nov. (Erythropeltidales, Rhodophyta) from Japan”. Phycologia50: 122-131. doi:10.2216/10-06.1.
^Soares, L. P., de Beauclair Guimarães, S. M., Fujii, M. T., Yoneshigue-Valentin, Y., Batista, M. G. S. & Yokoya, N. S. (2019). “Thallus ontogeny, morphology and molecular phylogeny of Madagascaria atlantica sp. nov.(Compsopogonophyceae, Rhodophyta), a diminutive crustose species uncovered in the Atlantic Ocean”. Aquatic Botany: 103152. doi:10.1016/j.aquabot.2019.103152.
^Zuccarello, G. C., Yoon, H. S., Kim, H., Sun, L., de Goër, S. L. & West, J. A. (2011). “Molecular phylogeny of the upright Erythropeltidales (Compsopogonophyceae, Rhodophyta): multiple cryptic lineages of Erythrotrichia carnea”. Journal of Phycology47: 627-637. doi:10.1111/j.1529-8817.2011.00985.x.
^Zuccarello, G. C., Kikuchi, N. & West, J. A. (2010). “Molecular phylogeny of the crustose Erythropeltidales (Compsopogonophyceae, Rhodophyta): New genera Pseudoerythrocladia and Madagascaria and the evolution of the upright habit”. Journal of Phycology46: 363-373. doi:10.1111/j.1529-8817.2010.00810.x.
^Boillot, A. (1978). “Les ponctuations intercellulaires du Rhodochaete parvula Thuret (Rhodophycees, Bangiophycidees)”. Revue Algologique. N. S.13: 251-258.
^Pueshel, C. M. & Magne, F. (1987). “Pit plugs and other ultrastructural features of systematic value in Rhodochaete parvulu (Rhodophyta, Rhodochaetales)”. Cryptogamie, Algologie8: 201-209.
^Scott, J., Thomas, J. & Saunders, B. (1988). “Primary pit connections in Compsopogon coeruleus (Balbis) Montagne (Compsopogonales, Rhodophyta)”. Phycologia27: 327-333. doi:10.2216/i0031-8884-27-3-327.1.
^ abcScott, J. L., Orlova, E. & West, J. A. (2010). “Ultrastructural observations of vegetative cells of two new genera in the Erythropeltidales (Compsopogonophyceae, Rhodophyta): Pseudoerythrocladia and Madagascaria”. Algae25: 11-15. doi:10.4490/algae.2010.25.1.011.
^Takaichi, S., Yokoyama, A., Mochimaru, M., Uchida, H. & Murakami, A. (2016). “Carotenogenesis diversification in phylogenetic lineages of Rhodophyta”. Journal of Phycology52: 329-338. doi:10.1111/jpy.12411.
^Eggert, A. & Karsten, U. (2010). “Low molecular weight carbohydrates in red algae - an ecophysiological and biochemical perspective”. Red Algae in the Genomic Age. Springer Netherlands. pp. 443-456. ISBN978-90-481-3794-7
^ abMagne, F. (1960). “Le Rhodochaete parvula Thuret (Bangioidée) et sa reproduction sexuée”. Cah. Biol. Mar.1: 407-420.
^Gargiulo, G. M., Masi, F. D. & Tripodi, G. (1987). “Thallus morphology and spore formation in cultured Erythrocladia irregularis rosenvinge (Rhodophyta, Bangiophycidae)”. Journal of Phycology23: 351-359. doi:10.1111/j.1529-8817.1987.tb04144.x.
^堀輝三, ed (1993). 藻類の生活史集成. 褐藻・紅藻類. 内田老鶴圃. pp. 171–175, 190–197. ISBN978-4753640584
^Hawkes, M. W. (1988). “Evidence of sexual reproduction in Smithora naiadum (Erythropeltidales, Rhodophyta) and its evolutionary significance”. British Phycological Journal23: 327-336. doi:10.1080/00071618800650361.
^Magne, F. (1990). “Reproduction sexuée chez Erythrotrichia carnea (Rhodophyceae, Erythropeltidales)”. Cryptogamie Algologie11: 157–170.
^Camburn, K. E. & Warren Jr, M. L. (1983). “Epizoic occurrence of Compsopogon coeruleus (Rhodophyta) on Lernaea (Copepoda) from Kentucky fishes”. Canadian Journal of Botany61: 3545-3548. doi:10.1139/b83-402.
^Stock, M. S., Richardson, T. D., & Ward, A. K. (1987). “Distribution and primary productivity of the epizoic macroalga Boldia erythrosiphon (Rhodophyta) in a small Alabama stream”. Journal of the North American Benthological Society6: 168-174.
^West, J. A., Hansen, G. I., Hanyuda, T., & Zuccarello, G. C. (2016). “Flora of drift plastics: a new red algal genus, Tsunamia transpacifica (Stylonematophyceae) from Japanese tsunami debris in the northeast Pacific Ocean”. Algae31: 289-301. doi:10.4490/algae.2016.31.10.20.
^Garbary, D.J., Hansen, G.K. & Scagel, R.F. (1980). “A revised classification of the Bangiophyceae (Rhodophyta)”. Nova Hedwigia33: 145–166.
^Gabrielson, P.W. & Garbary, D.J. (1986). “Systematics of red algae (Rhodophyta)”. CRC Critical Reviews in Plant Sciences3: 325–366. doi:10.1080/07352688609382215.
^ abSaunders, G.W. & Hommersand, M.H. (2004). “Assessing red algal supraordinal diversity and taxonomy in the context of contemporary systematic data.”. Am. J. Bot.91: 1494-1507. doi:10.3732/ajb.91.10.1494.
^Yoon, H.S., Muller, K.M., Sheath, R.G., Ott, F.D. & Bhattacharya, D. (2006). “Defining the major lineages of red algae (Rhodophyta)”. J. Phycol.42: 482-492. doi:10.1111/j.1529-8817.2006.00210.x.
^Yoon, H.S., Zuccarello, G.C. & Bhattacharya, D. (2010). “Evolutionary history and taxonomy of red algae”. In Seckbach, J. & Chapman, D.J.. Red Algae in the Genomic Age. Springer, Netherlands. pp. 25-42. ISBN978-90-481-3794-7
^Müller, K.M., Lynch, M.D., & Sheath, R.G. (2010). “Bangiophytes: from one class to six; where do we go from here?”. In Seckbach, J. & Chapman, D.J.. Red Algae in the Genomic Age. Springer, Netherlands. pp. 241-259. ISBN978-90-481-3794-7
^Muñoz-Gómez, S. A., Mejía-Franco, F. G., Durnin, K., Colp, M., Grisdale, C. J., Archibald, J. M. & Slamovits, C. H. (2017). “The new red algal subphylum Proteorhodophytina comprises the largest and most divergent plastid genomes known”. Current Biology27: 1677-1684. doi:10.1016/j.cub.2017.04.054.
^Qiu, H., Yoon, H. S. & Bhattacharya, D. (2016). “Red algal phylogenomics provides a robust framework for inferring evolution of key metabolic pathways”. PLoS Currents8. doi:10.1371/currents.tol.7b037376e6d84a1be34af756a4d90846.
^ abKamiya, M., Lindstrom, S. C., Nakayama, T., Yokoyama, A., Lin, S. M., Guiry, M. D., ... & Cho, T. O. (2017) Syllabus of plant families ‐ A. Engler's Syllabus der Pflanzenfamilien Part 2/2: Photoautotrophic eukaryotic algae ‐ Rhodophyta. Borntraeger Science Publishers, Berlin. 171 pp. ISBN 978-3-443-01094-2