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Keitaro Kume

Showing results (1-10 of 24) with videos related to

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Frontiers in Microbiology|January 26, 2026
Molecular evolution of the Wood-Ljungdahl pathway and the reductive glycine pathway in <i>Desulfobacterota</i>Tomoyuki Wakashima, Keitaro Kume, Yoko Chiba
Evolutionary Bioinformatics Online|January 11, 2019
NommPred: Prediction of Mitochondrial and Mitochondrion-Related Organelle Proteins of Nonmodel OrganismsKeitaro Kume, Toshiyuki Amagasa, Tetsuo Hashimoto, et al.
Parasitology International|November 15, 2021
Progress in understanding the phylogeny of the Plasmodium vivax lineageNobuko Arisue, Hajime Honma, Keitaro Kume, et al.
Microbiology Resource Announcements|January 25, 2023
Draft Genome Sequence of Aduncisulcus paluster, a Free-Living Microaerophilic Eukaryote Belonging to the FornicataIkuko Yuyama, Keitaro Kume, Takumi Tamura, et al.
Open Biology|April 13, 2022
The closest lineage of Archaeplastida is revealed by phylogenomics analyses that include <i>Microheliella maris</i>Euki Yazaki, Akinori Yabuki, Ayaka Imaizumi, et al.
Scientific Reports|May 16, 2019
Apicoplast phylogeny reveals the position of Plasmodium vivax basal to the Asian primate malaria parasite cladeNobuko Arisue, Tetsuo Hashimoto, Satoru Kawai, et al.
Plos One|December 5, 2024
Machine-learning-based identification of patients with IgA nephropathy using a computerized medical billing databaseRyoya Tsunoda, Keitaro Kume, Rina Kagawa, et al.
Plos One|March 29, 2018
The draft genome of Kipferlia bialata reveals reductive genome evolution in fornicate parasitesGoro Tanifuji, Shun Takabayashi, Keitaro Kume, et al.
Genes & Genetic Systems|February 21, 2017
Global Kinetoplastea phylogeny inferred from a large-scale multigene alignment including parasitic species for better understanding transitions from a free-living to a parasitic lifestyleEuki Yazaki, Sohta A Ishikawa, Keitaro Kume, et al.
Microbiology Resource Announcements|November 1, 2023
Transcriptome data sets of free-living diplomonads, <i>Trepomonas</i> sp. and <i>Hexamita</i> spKeitaro Kume, Tsubasa Gen, Kazutaka Abe, et al.
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
Frontiers in Microbiology|January 26, 2026
Molecular evolution of the Wood-Ljungdahl pathway and the reductive glycine pathway in <i>Desulfobacterota</i>Tomoyuki Wakashima, Keitaro Kume, Yoko Chiba
Evolutionary Bioinformatics Online|January 11, 2019
NommPred: Prediction of Mitochondrial and Mitochondrion-Related Organelle Proteins of Nonmodel OrganismsKeitaro Kume, Toshiyuki Amagasa, Tetsuo Hashimoto, et al.
Parasitology International|November 15, 2021
Progress in understanding the phylogeny of the Plasmodium vivax lineageNobuko Arisue, Hajime Honma, Keitaro Kume, et al.
Microbiology Resource Announcements|January 25, 2023
Draft Genome Sequence of Aduncisulcus paluster, a Free-Living Microaerophilic Eukaryote Belonging to the FornicataIkuko Yuyama, Keitaro Kume, Takumi Tamura, et al.
Open Biology|April 13, 2022
The closest lineage of Archaeplastida is revealed by phylogenomics analyses that include <i>Microheliella maris</i>Euki Yazaki, Akinori Yabuki, Ayaka Imaizumi, et al.
Scientific Reports|May 16, 2019
Apicoplast phylogeny reveals the position of Plasmodium vivax basal to the Asian primate malaria parasite cladeNobuko Arisue, Tetsuo Hashimoto, Satoru Kawai, et al.
Plos One|December 5, 2024
Machine-learning-based identification of patients with IgA nephropathy using a computerized medical billing databaseRyoya Tsunoda, Keitaro Kume, Rina Kagawa, et al.
Plos One|March 29, 2018
The draft genome of Kipferlia bialata reveals reductive genome evolution in fornicate parasitesGoro Tanifuji, Shun Takabayashi, Keitaro Kume, et al.
Genes & Genetic Systems|February 21, 2017
Global Kinetoplastea phylogeny inferred from a large-scale multigene alignment including parasitic species for better understanding transitions from a free-living to a parasitic lifestyleEuki Yazaki, Sohta A Ishikawa, Keitaro Kume, et al.
Microbiology Resource Announcements|November 1, 2023
Transcriptome data sets of free-living diplomonads, <i>Trepomonas</i> sp. and <i>Hexamita</i> spKeitaro Kume, Tsubasa Gen, Kazutaka Abe, et al.
Pageof 3