Scott, J., Broadwater, S., Saunders, B. D., Thomas, J. P. & Gabrielson, P. W. (1992). “Ultrastructure of vegetative organization and cell division in the unicellular red alga Dixoniella grisea gen. nov.(Rhodophyta) and a consideration of the genus Rhodella”. J. Phycol.28: 649–660. doi:10.1111/j.0022-3646.1992.00649.x.
Scott, J. L., Yokoyama, A., Billard, C. et al. (2008). “Neorhodella cyanea, a new genus in the Rhodellophyceae (Rhodophyta)”. Phycologia47: 560–572. doi:10.2216/08-27.1.
Yokoyama, A., Scott, L. J., Zuccarello, C. G., Kajikawa, M., Hara, Y. & West, A. J. (2009). “Corynoplastis japonica gen. et sp. nov.and Dixoniellales ord. nov. (Rhodellophyceae, Rhodophyta) based on morphological and molecular evidence”. Phycol. Res.57: 278–289. doi:10.1111/j.1440-1835.2009.00547.x.
Kushibiki, A., Yokoyama, A., Iwataki, M., Yokoyama, J., West, J. A. & Hara, Y. (2012). “New unicellular red alga, Bulboplastis apyrenoidosa gen. et sp. nov.(Rhodellophyceae, Rhodophyta) from the mangroves of Japan: phylogenetic and ultrastructural observations”. Phycological Research60: 114-122. doi:10.1111/j.1440-1835.2012.00643.x.
Evans, L. V. (1970). “Electron microscopical observations on a new red algal unicell, Rhodella maculata gen. nov., sp. nov”. Br. Phycol. J.5: 1–13. doi:10.1080/00071617000650011.
Deason, T. R., Butler, G. L. & Rhyne, C. (1983). “Rhodella reticulata sp. nov., a new coccoid Rhodophytan alga (Porphyridiales)”. J. Phycol.19: 104–111. doi:10.1111/j.0022-3646.1983.00104.x.
Patrone, L. M., Broadwater, S. T. & Scott, J. L. (1991). “Ultrastructure of vegetative and dividing cells of the unicellular red algae Rhodella violacea and Rhodella maculata”. J. Phycol.27: 742–753. doi:10.1111/j.0022-3646.1991.00742.x.
Yokoyama, A., Sato, K. & Hara, Y. (2004). “The generic delimitation of Rhodella (Porphyridiales, Rhodophyta) with emphasis on ultrastructure and molecular phylogeny”. Hydrobiologia512: 177–183. doi:10.1007/978-94-007-0944-7_24.
Broadwater, S. T., Scott, J. L., Goss, S. P. A. & Saunders, B. D. (1995). “Ultrastructure of vegetative organization and cell division in Glaucosphaera vacuolata Korshikov (Porphyridiales, Rhodophyta)”. Phycologia34: 351–361. doi:10.2216/i0031-8884-34-5-351.1.
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.
Shimonaga, T., Konishi, M., Oyama, Y., Fujiwara, S., Satoh, A., Fujita, N., Colleoni, C., Buléon, A., Putaux, J., Ball, S.G., Yokoyama, A., Hara, Y., Nakamura, Y. & Tsuzuki, M. (2008). “Variation in storage α-glucans of the Porphyridiales (Rhodophyta)”. Plant and Cell Physiology49: 103-116. doi:10.1093/pcp/pcm172.
Karsten, U., West, J. A., Zuccarello, G. C., Nixdorf, O., Barrow, K. D. & King, R. J. (1999). “Low molecular weight carbo- hydrate patterns in the Bangiophyceae (Rhodophyta)”. J. Phycol.35: 967–976. doi:10.1046/j.1529-8817.1999.3550967.x.
Karsten, U., West, J. A., Zuccarello, G. C. et al. (2003). “Low molecular weight carbohydrates of the Bangiophycidae (Rhodophyta)”. J. Phycol.39: 584–589. doi:10.1046/j.1529-8817.2003.02192.x.
Pickett-Heaps, J. D., West, J. A., Wilson, S. M. & McBride, D. L. (2001). “Time-lapse videomicroscopy of cell (spore) movement in red algae”. European Journal of Phycology36: 9-22. doi:10.1017/S0967026201002992.
Scott, J., Yang, E. C., West, J. A., Yokoyama, A., Kim, H. J., De Goer, S. L., ... & Yoon, H. S. (2011). “On the genus Rhodella, the emended orders Dixoniellales and Rhodellales with a new order Glaucosphaerales (Rhodellophyceae, Rhodophyta)”. Algae26 (4): 277-288. doi:10.4490/algae.2011.26.4.277.
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.
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.