Rchr
J-GLOBAL ID:202301005268065717
Update date: Aug. 25, 2024
Kono Mieko
Kono Mieko
Research theme for competitive and other funds (2):
- 2024 - 2027 A novel taxonomic approach for lichens through the use of whole-genome information and symbiotic experiments
- 2022 - 2025 ハコネサルオガセ再合成系を用いた地衣類の新たな共生メンバーと共生遺伝子の解明
Papers (3):
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Philipp Resl, Adina R Bujold, Gulnara Tagirdzhanova, Peter Meidl, Sandra Freire Rallo, Mieko Kono, Samantha Fernández-Brime, Hörður Guðmundsson, Ólafur Sigmar Andrésson, Lucia Muggia, et al. Large differences in carbohydrate degradation and transport potential among lichen fungal symbionts. Nature communications. 2022. 13. 1. 2634-2634
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Mieko Kono, Yoshiaki Kon, Yoshihito Ohmura, Yoko Satta, Yohey Terai. In vitro resynthesis of lichenization reveals the genetic background of symbiosis-specific fungal-algal interaction in Usnea hakonensis. BMC genomics. 2020. 21. 1. 671-671
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Mieko Kono, Hideyuki Tanabe, Yoshihito Ohmura, Yoko Satta, Yohey Terai. Physical contact and carbon transfer between a lichen-forming Trebouxia alga and a novel Alphaproteobacterium. Microbiology (Reading, England). 2017. 163. 5. 678-691
MISC (1):
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Mieko Kono, Yoshihito Ohmura, Yoko Satta. Elucidating the evolution of lichens by comparing gene expression in wet and dry environments. GENES & GENETIC SYSTEMS. 2013. 88. 6. 384-384
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