Shoyo Sato
Affiliations: | 2017- | OEB | Harvard University, Cambridge, MA, United States |
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"Shoyo Sato"
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Publications
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Lord A, Cunha TJ, de Medeiros BAS, et al. (2023) Expanding on our knowledge of ecdysozoan genomes, a contiguous assembly of the meiofaunal priapulan Tubiluchus corallicola. Genome Biology and Evolution |
Sato S, Cunha TJ, de Medeiros BAS, et al. (2023) Sizing up the onychophoran genome: repeats, introns, and gene family expansion contribute to genome gigantism in Epiperipatus broadwayi. Genome Biology and Evolution |
Kudryavtseva N, Ermolaev A, Karlov G, et al. (2021) A Dual-Color Tyr-FISH Method for Visualizing Genes/Markers on Plant Chromosomes to Create Integrated Genetic and Cytogenetic Maps. International Journal of Molecular Sciences. 22 |
Bamba M, Aoki S, Kajita T, et al. (2020) Massive rhizobial genomic variation associated with partner quality in Lotus-Mesorhizobium symbiosis. Fems Microbiology Ecology |
Kamal N, Mun T, Reid D, et al. (2020) Insights into the evolution of symbiosis gene copy number and distribution from a chromosome-scale Lotus japonicus Gifu genome sequence. Dna Research : An International Journal For Rapid Publication of Reports On Genes and Genomes |
Shah N, Wakabayashi T, Kawamura Y, et al. (2020) Extreme genetic signatures of local adaptation during Lotus japonicus colonization of Japan. Nature Communications. 11: 253 |
Bamba M, Aoki S, Kajita T, et al. (2019) Exploring Genetic Diversity and Signatures of Horizontal Gene Transfer in Nodule Bacteria Associated with Lotus japonicus in Natural Environments. Molecular Plant-Microbe Interactions : Mpmi |
Tajima N, Kanesaki Y, Sato S, et al. (2018) Complete Genome Sequence of the Nonheterocystous Cyanobacteriumsp. ABRG5-3. Genome Announcements. 6 |
Sato S, Buckman-Young RS, Harvey MS, et al. (2018) Cryptic speciation in a biodiversity hotspot: multilocus molecular data reveal new velvet worm species from Western Australia (Onychophora : Peripatopsidae : Kumbadjena) Invertebrate Systematics. 32: 1249 |
Nakamura N, Hirakawa H, Sato S, et al. (2017) Genome structure of Rosa multiflora, a wild ancestor of cultivated roses. Dna Research : An International Journal For Rapid Publication of Reports On Genes and Genomes |