グロムス門 (Japanese Wikipedia)

Analysis of information sources in references of the Wikipedia article "グロムス門" in Japanese language version.

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100nen-kankyo.jp

ecologia.100nen-kankyo.jp

bsj.or.jp

cambridge.org

journals.cambridge.org

cybertruffle.org.uk

doi.org

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  • 坂本一憲 (2014). “アーバスキュラー菌根菌:研究の深化と農業分野への貢献”. 土と微生物 68 (2): 65-68. doi:10.18946/jssm.68.2_65_2. 
  • Figueiredo, A. F., Boy, J. & Guggenberger, G. (2021). “Common mycorrhizae network: a review of the theories and mechanisms behind underground interactions”. Frontiers in Fungal Biology 2: 48. doi:10.3389/ffunb.2021.735299. 
  • Schüßler, A. & Walker, C. (2011). “7 Evolution of the ‘Plant-Symbiotic’ Fungal Phylum, Glomeromycota”. In Pöggeler, S. & Wöstemeyer, J.. Evolution of Fungi and Fungal-Like Organisms. The Mycota, vol 14. Springer. pp. 163–185. doi:10.1007/978-3-642-19974-5_7 
  • 小八重善裕 (2017). “アーバスキュラー菌根菌の遺伝的異質性”. 日本土壌肥料学雑誌 88 (5): 478-487. doi:10.20710/dojo.88.5_478. 
  • 小八重善裕 (2016). “アーバスキュラー菌根共生のライフサイクルと機能”. 日本土壌肥料学雑誌 87 (6): 479-483. doi:10.20710/dojo.87.6_479. 
  • Tang, N., San Clemente, H., Roy, S., Bécard, G., Zhao, B. & Roux, C. (2016). “A survey of the gene repertoire of Gigaspora rosea unravels conserved features among Glomeromycota for obligate biotrophy”. Frontiers in Microbiology 7: 233. doi:10.3389/fmicb.2016.00233. 
  • Krüger, M., Krüger, C., Wang, Y., Stajich, J. E., Keller, J., Chen, E. C., ... & Corradi, N. (2021). “The genome of Geosiphon pyriformis reveals ancestral traits linked to the emergence of the arbuscular mycorrhizal symbiosis”. Current Biology 31 (7): 1570-1577. doi:10.1016/j.cub.2021.01.058. 
  • Brundrett, M. C. & Tedersoo, L. (2018). “Evolutionary history of mycorrhizal symbioses and global host plant diversity”. New Phytologist 220 (4): 1108-1115. doi:10.1111/nph.14976. 
  • Rimington, W. R., Duckett, J. G., Field, K. J., Bidartondo, M. I. & Pressel, S. (2020). “The distribution and evolution of fungal symbioses in ancient lineages of land plants”. Mycorrhiza 30 (1): 23-49. doi:10.1007/s00572-020-00938-y. 
  • Hempel, S., Renker, C. & Buscot, F. (2007). “Differences in the species composition of arbuscular mycorrhizal fungi in spore, root and soil communities in a grassland ecosystem”. Environmental Microbiology 9 (8): 1930-1938. doi:10.1111/j.1462-2920.2007.01309.x. PMID 17635540. 
  • Wang, B. & Qiu, Y. L. (2006). “Phylogenetic distribution and evolution of mycorrhizas in land plants”. Mycorrhiza 16 (5): 299-363. doi:10.1007/s00572-005-0033-6. 
  • Wang, B., Yeun, L. H., Xue, J. Y., Liu, Y., Ané, J. M. & Qiu, Y. L. (2010). “Presence of three mycorrhizal genes in the common ancestor of land plants suggests a key role of mycorrhizas in the colonization of land by plants”. New Phytologist 186 (2): 514-525. doi:10.1111/j.1469-8137.2009.03137.x. 
  • Delaux, P. M., Radhakrishnan, G. V., Jayaraman, D., Cheema, J., Malbreil, M., Volkening, J. D., ... & Ané, J. M. (2015). “Algal ancestor of land plants was preadapted for symbiosis”. Proceedings of the National Academy of Sciences 112 (43): 13390-13395. doi:10.1073/pnas.151542611. 
  • Hoysted, G. A., Kowal, J., Jacob, A., Rimington, W. R., Duckett, J. G., Pressel, S., ... & Bidartondo, M. I. (2018). “A mycorrhizal revolution”. Current Opinion in Plant Biology 44: 1-6. doi:10.1016/j.pbi.2017.12.004. 
  • Taylor, T. N., Remy, W., Hass, H. & Kerp, H. (1995). “Fossil arbuscular mycorrhizae from the Early Devonian”. Mycologia 87 (4): 560-573. doi:10.2307/3760776. 
  • Simon, L., Bousquet, J., Levesque, C., Lalonde, M. (1993). “Origin and diversification of endomycorrhizal fungi and coincidence with vascular land plants”. Nature 363 (6424): 67-69. Bibcode1993Natur.363...67S. doi:10.1038/363067a0. 
  • 江沢辰広 (2017). “土壌微生物が創る共生の世界―その先端的研究事例と農業への応用的研究展開 2. 第二, 第三次技術革新が開くアーバスキュラー菌根共生研究―栄養共生機構・生態・ビジネス展望―”. 日本土壌肥料学雑誌 87 (1): 64-69. doi:10.20710/dojo.87.1_64. 
  • Thaxter, R. (1922). “A revision of the Endogonaceae”. Proc. Am. Acad. Arts Sci. 57 (12): 291-341. doi:10.2307/20025921. JSTOR 20025921. 
  • Walker, C. (1992). “Systematics and taxonomy of the arbuscular mycorrhizal fungi (Glomales) - a possible way forward”. Agronomie 12 (10): 887-897. doi:10.1051/agro:19921026. 
  • Schüßler, A., Gehrig, H., Schwarzott, D. & Walker, C. (2001). “Analysis of partial Glomales SSU rRNA gene sequences: implications for primer design and phylogeny”. Mycological Research 105 (1): 5-15. doi:10.1017/S0953756200003725. 
  • Redeker, D. (2002). “Molecular identification and phylogeny of arbuscular mycorrhizal fungi”. Plant and Soil 244: 67-73. doi:10.1023/A:1020283832275. 
  • Schüßler, A. (2002). “Molecular phylogeny, taxonomy, and evolution of Geosiphon pyriformis and arbuscular mycorrhizal fungi”. Plant and Soil 224: 75-83. doi:10.1023/A:1020238728910. 
  • Hibbett, D. S., Binder, M., Bischoff, J. F., Blackwell, M., Cannon, P. F., Eriksson, O. E., ... & Zhang, N. (2007). “A higher level phylogenetic classification of the Fungi”. Mycological Research 111 (5): 509-547. doi:10.1016/j.mycres.2007.03.004. PMID 17572334. 
  • Spatafora, J. W., Chang, Y., Benny, G. L., Lazarus, K., Smith, M. E., Berbee, M. L., ... & Stajich, J. E. (2016). “A phylum-level phylogenetic classification of zygomycete fungi based on genome-scale data”. Mycologia 108 (5): 1028-1046. doi:10.3852/16-042. 
  • Wijayawardene, N. N., Hyde, K. D., Dai, D. Q., Sánchez-García, M., Goto, B. T., & Magurno, F. (2022). “Outline of Fungi and fungus-like taxa–2021”. Mycosphere 13 (1): 53-453. doi:10.5943/mycosphere/13/1/2. 
  • Błaszkowski, J., Sanchez-Garcia, M., Niezgoda, P., Zubek, S., Fernandez, F., Vila, A., ... & Magurno, F. (2022). “A new order, Entrophosporales, and three new Entrophospora species in Glomeromycota”. Frontiers in Microbiology 13: 4615. doi:10.3389/fmicb.2022.962856. 
  • Błaszkowski, J., Niezgoda, P., Meller, E., Milczarski, P., Zubek, S., Malicka, M., ... & Magurno, F. (2021). “New taxa in Glomeromycota: Polonosporaceae fam. nov., Polonospora gen. nov., and P. polonica comb. nov.”. Mycological Progress 20: 941-951. doi:10.1007/s11557-021-01726-4. 
  • Symanczik, S., Al-Yahya’ei, M. N., Kozłowska, A., Ryszka, P. & Błaszkowski, J. (2018). “A new genus, Desertispora, and a new species, Diversispora sabulosa, in the family Diversisporaceae (order Diversisporales, subphylum Glomeromycotina)”. Mycological Progress 17: 437-449. doi:10.1007/s11557-017-1369-y. 
  • Cavalier-Smith, T. (1998). “A revised six-kingdom system of Life”. Biological Reviews of the Cambridge Philosophical Society 73 (3): 203-266. doi:10.1017/S0006323198005167.  (as "Glomomycetes")

harvard.edu

ui.adsabs.harvard.edu

indexfungorum.org

jimdosite.com

geosiphon.jimdosite.com

jst.go.jp

jstage.jst.go.jp

jst.go.jp

jstor.org

ku.edu

invam.ku.edu

  • Sclerocystis sinuosum”. The International Collection of (Vesicular) Arbuscular Mycorrhizal Fungi. The University of Kansas. 2023年7月26日閲覧。

mycobank.org

  • The MycoBank”. Robert, V., Stegehuis, G. & Stalpers, J.. 2023年7月25日閲覧。

nih.gov

pubmed.ncbi.nlm.nih.gov

  • Hempel, S., Renker, C. & Buscot, F. (2007). “Differences in the species composition of arbuscular mycorrhizal fungi in spore, root and soil communities in a grassland ecosystem”. Environmental Microbiology 9 (8): 1930-1938. doi:10.1111/j.1462-2920.2007.01309.x. PMID 17635540. 
  • Hibbett, D. S., Binder, M., Bischoff, J. F., Blackwell, M., Cannon, P. F., Eriksson, O. E., ... & Zhang, N. (2007). “A higher level phylogenetic classification of the Fungi”. Mycological Research 111 (5): 509-547. doi:10.1016/j.mycres.2007.03.004. PMID 17572334. 

researchgate.net