Parfrey, Laura Wegener (2011. augusztus 16.). „Estimating the timing of early eukaryotic diversification with multigene molecular clocks”. Proceedings of the National Academy of Sciences of the United States of America108 (33), 13624–13629. o. DOI:10.1073/pnas.1110633108. PMID21810989. PMC3158185.
Hoef-Emden, Kerstin (2003). „Revision of the Genus Cryptomonas (Cryptophyceae): a Combination of Molecular Phylogeny and Morphology Provides Insights into a Long-Hidden Dimorphism” (angol nyelven). Protist154 (3–4), 371–409. o. DOI:10.1078/143446103322454130. PMID14658496.
Rani V, Horváth Zs, Nejstgaard JC, Fierpasz Á, Pálffy K, Vad CF (2024. április 1.). „Food density drives diet shift of the invasive mysid shrimp, Limnomysis benedeni”. Ecol Evol14 (4), e11202. o. DOI:10.1002/ece3.11202. PMID38571798. PMC10985375.
Kim JI, Tanifuji G, Jeong M, Shin W, Archibald JM (2022. október 8.). „Gene loss, pseudogenization, and independent genome reduction in non-photosynthetic species of Cryptomonas (Cryptophyceae) revealed by comparative nucleomorph genomics”. BMC Biol20 (1), 227. o. DOI:10.1186/s12915-022-01429-6. PMID36209116. PMC9548191.
Roberts, Keith R. (1984. december 1.). „Structure and Significance of the Cryptomonad Flagellar Apparatus” (angol nyelven). Journal of Phycology20 (4), 590–599. o. DOI:10.1111/j.0022-3646.1984.00590.x. ISSN1529-8817.
Chapman, David J. (1967. november 1.). „Structure of phycoerythrobilin”. Journal of the American Chemical Society89 (23), 5976–5977. o. DOI:10.1021/ja00999a058. ISSN0002-7863.
Definition of CRYPTO (angol nyelven). www.merriam-webster.com . (Hozzáférés: 2017. április 28.)
nih.gov
pubmed.ncbi.nlm.nih.gov
Parfrey, Laura Wegener (2011. augusztus 16.). „Estimating the timing of early eukaryotic diversification with multigene molecular clocks”. Proceedings of the National Academy of Sciences of the United States of America108 (33), 13624–13629. o. DOI:10.1073/pnas.1110633108. PMID21810989. PMC3158185.
Hoef-Emden, Kerstin (2003). „Revision of the Genus Cryptomonas (Cryptophyceae): a Combination of Molecular Phylogeny and Morphology Provides Insights into a Long-Hidden Dimorphism” (angol nyelven). Protist154 (3–4), 371–409. o. DOI:10.1078/143446103322454130. PMID14658496.
Rani V, Horváth Zs, Nejstgaard JC, Fierpasz Á, Pálffy K, Vad CF (2024. április 1.). „Food density drives diet shift of the invasive mysid shrimp, Limnomysis benedeni”. Ecol Evol14 (4), e11202. o. DOI:10.1002/ece3.11202. PMID38571798. PMC10985375.
Kim JI, Tanifuji G, Jeong M, Shin W, Archibald JM (2022. október 8.). „Gene loss, pseudogenization, and independent genome reduction in non-photosynthetic species of Cryptomonas (Cryptophyceae) revealed by comparative nucleomorph genomics”. BMC Biol20 (1), 227. o. DOI:10.1186/s12915-022-01429-6. PMID36209116. PMC9548191.
Parfrey, Laura Wegener (2011. augusztus 16.). „Estimating the timing of early eukaryotic diversification with multigene molecular clocks”. Proceedings of the National Academy of Sciences of the United States of America108 (33), 13624–13629. o. DOI:10.1073/pnas.1110633108. PMID21810989. PMC3158185.
Rani V, Horváth Zs, Nejstgaard JC, Fierpasz Á, Pálffy K, Vad CF (2024. április 1.). „Food density drives diet shift of the invasive mysid shrimp, Limnomysis benedeni”. Ecol Evol14 (4), e11202. o. DOI:10.1002/ece3.11202. PMID38571798. PMC10985375.
Kim JI, Tanifuji G, Jeong M, Shin W, Archibald JM (2022. október 8.). „Gene loss, pseudogenization, and independent genome reduction in non-photosynthetic species of Cryptomonas (Cryptophyceae) revealed by comparative nucleomorph genomics”. BMC Biol20 (1), 227. o. DOI:10.1186/s12915-022-01429-6. PMID36209116. PMC9548191.
Roberts, Keith R. (1984. december 1.). „Structure and Significance of the Cryptomonad Flagellar Apparatus” (angol nyelven). Journal of Phycology20 (4), 590–599. o. DOI:10.1111/j.0022-3646.1984.00590.x. ISSN1529-8817.
Chapman, David J. (1967. november 1.). „Structure of phycoerythrobilin”. Journal of the American Chemical Society89 (23), 5976–5977. o. DOI:10.1021/ja00999a058. ISSN0002-7863.