こちらは2023年度筑駒文化祭「廻天」の、
筑駒中高生物部公式ホームページです。
川上和人, & 江田真毅. (2018). 鳥類の起源としての恐竜と, 恐竜の子孫としての鳥類. 日本鳥学会誌, 67(1), 7-23.
Ruggiero, M. A., Gordon, D. P., Orrell, T. M., Bailly, N., Bourgoin, T., Brusca, R. C., ... & Kirk, P. M. (2015). A higher level classification of all living organisms. PloS one, 10(4), e0119248.
池内ほか監訳、丸善出版、キャンベル生物学 原書11版、2018年
吉澤和徳. (2016). 昆虫学概論・各目解説 (1) 咀顎目 (カジリムシ目) の系統的位置と高次体系. 昆蟲. ニューシリーズ, 19(3), 112-120.
真下雄太. (2014). Developmental Studies of a Ground Louse, Zorotypus caudelli Karny, 1927 (Insecta: Zoraptera, Zorotypidae) (Doctoral dissertation, 筑波大学 (University of Tsukuba)).
Schwentner, M., Combosch, D. J., Nelson, J. P., & Giribet, G. (2017). A phylogenomic solution to the origin of insects by resolving crustacean-hexapod relationships. Current Biology, 27(12), 1818-1824.
Schwentner, M., Richter, S., Rogers, D. C., & Giribet, G. (2018). Tetraconatan phylogeny with special focus on Malacostraca and Branchiopoda: highlighting the strength of taxon-specific matrices in phylogenomics. Proceedings of the Royal Society B, 285(1885), 20181524.
Lozano-Fernandez, J., Giacomelli, M., Fleming, J. F., Chen, A., Vinther, J., Thomsen, P. F., ... & Olesen, J. (2019). Pancrustacean evolution illuminated by taxon-rich genomic-scale data sets with an expanded remipede sampling. Genome Biology and Evolution, 11(8), 2055-2070.
Giribet, G., & Edgecombe, G. D. (2019). The phylogeny and evolutionary history of arthropods. Current Biology, 29(12), R592-R602.
大塚攻, & 田中隼人. (2020). 顎脚類 (甲殻類) の分類と系統に関する研究の最近の動向. タクサ: 日本動物分類学会誌, 48, 49-62.
大塚攻, & 田中隼人. (2021). カイアシ類の高次分類群の系統に関するコメント: Khodami et al.(2017) の分子系統に関する論文取り下げを受けて. タクサ: 日本動物分類学会誌, 51, 42-44.
Birgit Lang, CC BY 3.0, https://beta.phylopic.org/images/9fee972c-672c-44f3-b812-88d208cfe40a
Maxime Dahirel, CC BY 3.0, https://beta.phylopic.org/images/8d3b12ff-02f6-4b7d-8387-2b3374f9d393
Giribet, G., & Edgecombe, G. D. (2020). The invertebrate tree of life. Princeton University Press.
Sperling, E. A., & Stockey, R. G. (2018). The temporal and environmental context of early animal evolution: Considering all the ingredients of an “explosion”. Integrative and Comparative Biology, 58(4), 605-622.
Cohen, K. M., Finney, S. C., Gibbard, P. L., & Fan, J. X. (2013; updated). The ICS international chronostratigraphic chart. Episodes Journal of International Geoscience, 36(3), 199-204.
Laumer, C. E., Fernández, R., Lemer, S., Combosch, D., Kocot, K. M., Riesgo, A., ... & Giribet, G. (2019). Revisiting metazoan phylogeny with genomic sampling of all phyla. Proceedings of the royal society B, 286(1906), 20190831.
Laumer, C. E., Fernández, R., Lemer, S., Combosch, D., Kocot, K., Riesgo, A., ... & Giribet, G. (2019). Correction to ‘Revisiting metazoan phylogeny with genomic sampling of all phyla’. Proceedings of the Royal Society B, 286(1914), 20191941.
Marlétaz, F., Peijnenburg, K. T., Goto, T., Satoh, N., & Rokhsar, D. S. (2019). A new spiralian phylogeny places the enigmatic arrow worms among gnathiferans. Current Biology, 29(2), 312-318.
Howard, R. J., Giacomelli, M., Lozano-Fernandez, J., Edgecombe, G. D., Fleming, J. F., Kristensen, R. M., ... & Pisani, D. (2022). The Ediacaran origin of Ecdysozoa: integrating fossil and phylogenomic data. Journal of the Geological Society, 179(4).
Drábková, M., Kocot, K. M., Halanych, K. M., Oakley, T. H., Moroz, L. L., Cannon, J. T., ... & Zrzavý, J. (2022). Different phylogenomic methods support monophyly of enigmatic ‘Mesozoa’(Dicyemida+ Orthonectida, Lophotrochozoa). Proceedings of the Royal Society B, 289(1978), 20220683.
Mali'o Kodis, image by Rebecca Ritger, CC BY-NC 3.0, https://beta.phylopic.org/images/1ae2caed-ef2a-4151-a023-17b8c601d671
B. Duygu Özpolat, CC BY-NC-SA, https://beta.phylopic.org/images/18ec7d79-cf30-4393-8186-74be8627967f
Michelle Site, CC BY-NC 3.0, https://beta.phylopic.org/images/23c6cb9b-855e-4dd2-8f24-d8882a24db30
Mali'o Kodis, photograph by "Wildcat Dunny" (http://www.flickr.com/people/wildcat_dunny/), CC BY 3.0, https://beta.phylopic.org/images/0adc540a-d1c1-4dd8-bc4d-e258077c5dbd
Noah Schlottman, photo by Casey Dunn, CC BY-SA 3.0, https://beta.phylopic.org/images/6dec6424-7511-49b2-aac6-3da79d45c7f2
Mali'o Kodis, photograph by Melissa Frey, CC BY-NC 3.0, https://beta.phylopic.org/images/e00a360c-991a-4f1e-85b9-9d0aba3e4bc1
参考文献
Poel, B. V. D., Cooper, E. D., Delwiche, C. F., & Chang, C. (2015). An evolutionary perspective on the plant hormone ethylene. In Ethylene in Plants (pp. 109-134). Springer, Dordrecht.
Liu, G. Q., Lian, L., & Wang, W. (2022). The Molecular Phylogeny of Land Plants: Progress and Future Prospects. Diversity, 14(10), 782.
松江の花図鑑「オオイヌノフグリ」https://matsue-hana.com/hana/ooinunohuguri.html(10/24閲覧)
門田ほか、小学館、小学館の図鑑NEO 植物、2002年、p.15
Cole, Theodor & Hilger, Hartmut & Stevens, Peter & Iwamoto, Akitoshi. (2020). 被子植物の系統 (APP 2019/4, All-Japanese version). https://www.researchgate.net/publication/315378187_beizizhiwunoxitong_APP_20194_All-Japanese_version
Burki, F., Roger, A. J., Brown, M. W., & Simpson, A. G. (2020). The new tree of eukaryotes. Trends in ecology & evolution, 35(1), 43-55.
Yazaki, E., Yabuki, A., Imaizumi, A., Kume, K., Hashimoto, T., & Inagaki, Y. (2022). The closest lineage of Archaeplastida is revealed by phylogenomics analyses that include Microheliella maris. Open Biology, 12(4), 210376.
Adl, S. M., Bass, D., Lane, C. E., Lukeš, J., Schoch, C. L., Smirnov, A., ... & Zhang, Q. (2019). Revisions to the classification, nomenclature, and diversity of eukaryotes. Journal of Eukaryotic Microbiology, 66(1), 4-119.
Tikhonenkov, D. V., Mikhailov, K. V., Hehenberger, E., Karpov, S. A., Prokina, K. I., Esaulov, A. S., ... & Keeling, P. J. (2020). New lineage of microbial predators adds complexity to reconstructing the evolutionary origin of animals. Current Biology, 30(22), 4500-4509.
Harold N Eyster, CC BY 3.0, https://beta.phylopic.org/images/9acf11fa-89dd-4a56-b3da-8665c406c6f5
Harold N Eyster, CC BY 3.0, https://beta.phylopic.org/images/fb39c911-2440-4271-a8b6-a318c0acc749
T. Michael Keesey and Tanetahi, CC BY 3.0, https://beta.phylopic.org/images/ff1605b5-9243-4723-8c15-df83b541cd38
Gareth Monger, CC BY 3.0, https://beta.phylopic.org/images/83b732d5-5534-4d68-8dcd-e07eec765e11
Spang, A., Mahendrarajah, T. A., Offre, P., & Stairs, C. W. (2022). Evolving perspective on the origin and diversification of cellular life and the virosphere. Genome Biology and Evolution, 14(6), evac034.
生きもの好きの語る自然誌「色素体/葉緑体の成立と多様性」https://tonysharks.com/Algae_review/Symbiosis/Symbiosis.html(10/24閲覧)
Harold N Eyster, CC BY 3.0, https://beta.phylopic.org/images/9acf11fa-89dd-4a56-b3da-8665c406c6f5
Harold N Eyster, CC BY 3.0, https://beta.phylopic.org/images/fb39c911-2440-4271-a8b6-a318c0acc749
T. Michael Keesey and Tanetahi, CC BY 3.0, https://beta.phylopic.org/images/ff1605b5-9243-4723-8c15-df83b541cd38
Gareth Monger, CC BY 3.0, https://beta.phylopic.org/images/83b732d5-5534-4d68-8dcd-e07eec765e11
Matt Crook, CC BY-SA 3.0, https://beta.phylopic.org/images/110ee36d-bdac-4e69-aacc-b4845df0c761
Matt Crook, CC BY-SA 3.0, https://beta.phylopic.org/images/f04e96a5-8c19-4caf-af64-ee51e69431fd
参考文献
国立環境研究所 侵入生物DB「ヒバカリ」https://www.nies.go.jp/biodiversity/invasive/DB/detail/30180.html(10/24閲覧)
広島大学デジタル博物館「ヒバカリ」https://www.digital-museum.hiroshima-u.ac.jp/~main/index.php/%E3%83%92%E3%83%90%E3%82%AB%E3%83%AA(10/24閲覧)
しぜんもん「半数以上の府県で1000分の1に減少!? 全国で激減するアキアカネ」 https://nacsj.net/magazine/post_936.html(10/24閲覧)
土屋健、ブックマン社、アノマロカリス解体新書、2020年
Junnn11, CC BY-SA 4.0, https://ja.wikipedia.org/wiki/%E3%83%95%E3%82%A1%E3%82%A4%E3%83%AB:20191203_Anomalocaris_canadensis.png
Liu, G. Q., Lian, L., & Wang, W. (2022). The Molecular Phylogeny of Land Plants: Progress and Future Prospects. Diversity, 14(10), 782.
松茂良美穂, & 渡邉重義. (2017). 水草の適応と進化-系統に着目した維管束の比較. 日本科学教育学会研究会研究報告, 32(2), 1-6.
NHK for School「シャジクモの原形質流動-中学」https://www2.nhk.or.jp/school/movie/clip.cgi?das_id=D0005401383_00000(10/24閲覧)