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Publications
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Takahashi M, Konishi T, Yabe K, et al. (2025) A Breeding System Derived From Asexual Queen Succession in Termite Colonies From Cold Climate Regions. Molecular Ecology. e17724 |
Wu Y, Fujita T, Namba Y, et al. (2024) Inter-clonal competition over queen succession imposes a cost of parthenogenesis on termite colonies. Proceedings. Biological Sciences. 291: 20232711 |
Wu Y, Chen J, Takata M, et al. (2023) Maternal determination of soldier proportion and paternal determination of soldier sex ratio in hybrid Reticulitermes (Isoptera: Rhinotermitidae) termite colonies. Plos One. 18: e0293096 |
Takata M, Yabe K, Noro T, et al. (2023) A method for estimating colony size using queen fecundity in termites under field conditions. Die Naturwissenschaften. 110: 35 |
Tasaki E, Mitaka Y, Takahashi Y, et al. (2023) The royal food of termites shows king and queen specificity. Pnas Nexus. 2: pgad222 |
Ishibashi T, Waliullah ASM, Aramaki S, et al. (2023) Plastic brain structure changes associated with the division of labour and ageing in termites. Development, Growth & Differentiation |
Takata M, Konishi T, Nagai S, et al. (2023) Discovery of an underground chamber to protect kings and queens during winter in temperate termites. Scientific Reports. 13: 8809 |
Takata M, Nagai S, Inagaki T, et al. (2023) Heritable effects on caste determination and colony-level sex allocation in termites under field conditions. Iscience. 26: 106207 |
Konishi T, Tasaki E, Takata M, et al. (2023) King- and queen-specific degradation of uric acid contributes to reproduction in termites. Proceedings. Biological Sciences. 290: 20221942 |
Tamaki C, Takata M, Matsuura K. (2021) The lose-to-win strategy of the weak: intraspecific parasitism via egg abduction in a termite. Biology Letters. 17: 20210540 |