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Plos Genetics|April 16, 2021
Tempo and mode in karyotype evolution revealed by a probabilistic model incorporating both chromosome number and morphologyKohta Yoshida, Jun KitanoCurrent Opinion in Genetics & Development|June 24, 2023
Do sex-linked male meiotic drivers contribute to intrinsic hybrid incompatibilities? Recent empirical studies from flies and rodentsJun Kitano, Kohta YoshidaEvolution; International Journal of Organic Evolution|October 3, 2012
The contribution of female meiotic drive to the evolution of neo-sex chromosomesKohta Yoshida, Jun KitanoThe Journal of Heredity|September 11, 2016
Accumulation of Deleterious Mutations on the Neo-Y Chromosome of Japan Sea Stickleback (Gasterosteus nipponicus)Kohta Yoshida, Takashi Makino, Jun KitanoJournal of Theoretical Biology|August 8, 2017
Contribution of gene flow to the evolution of recombination suppression in sex chromosomesTomotaka Matsumoto, Kohta Yoshida, Jun KitanoJournal of Nematology|June 23, 2025
Genome Announcement: Further Improved Genome Assembly of Parapristionchus giblindavisiWaltraud Röseler, Kohta Yoshida, Christian RödelspergerBMC Genomics|April 4, 2013
RNA sequencing reveals small RNAs differentially expressed between incipient Japanese threespine sticklebacksJun Kitano, Kohta Yoshida, Yutaka SuzukiMolecular Ecology|November 28, 2023
Repositioning of centromere-associated repeats during karyotype evolution in Oryzias fishesSatoshi Ansai, Atsushi Toyoda, Kohta Yoshida, et al.G3 (Bethesda, Md.)|October 30, 2015
Genetic Architecture of the Variation in Male-Specific Ossified Processes on the Anal Fins of Japanese MedakaMaiko Kawajiri, Shingo Fujimoto, Kohta Yoshida, et al.Current Biology : CB|September 17, 2013
Genetic and neural modularity underlie the evolution of schooling behavior in threespine sticklebacksAnna K Greenwood, Abigail R Wark, Kohta Yoshida, et al.Pageof 3