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安井康夫やすいやすお
プロフィール
| 所属 | 生物資源学部 |
|---|---|
| 職名 | 准教授 |
| 研究室 | あわらキャンパス 教員室22 (内線 ) |
| yasyas91 (末尾に「@g.fpu.ac.jp」をつけてください) | |
| ウェブサイト | |
| 最終学歴 | 京都大学農学研究科博士課程 |
| 学位 | 博士(農学) |
| 所属学会 | 日本育種学会 |
| 職歴 | 1997~2025 京都大学 農学研究科 助教 2026~ 福井県立大学 生物資源学部 准教授 |
研究活動
| 専門 | 植物遺伝育種学 |
|---|---|
| 研究活動の紹介 | ソバやキヌアなど地域に重要な作物の遺伝資源を調査し、ゲノム解読を利用した品種育成に取り組んでいます。世界で初めてモチ形質を持つソバを開発しました。 |
| キーワード | ソバ、キヌア、栽培起原学 |
著書・論文
1. Otsuka S, HaraT, Ishiguro K, Matsushima K, Yasui Y, Matsui K (2025) Pollen parent affects rutin content of seeds of buckwheat (Fagopyrum esculentum). Breed Sci 75: 179-186.
2. Kobayashi Y, Sugita R, Fujita M, Yasui Y, Murata Y, Ogata T, Nagatoshi Y, Fujita Y (2025) CqHKT1 and CqSOS1 mediate genotype-dependent Na+ exclusion under high salinity conditions in quinoa. Front Plant Sci 16:1597647.
3. Kobayashi Y, Hirakawa H, Shirasawa K, Nishimura K, Fujii K, Oros R, Almanza GR, Nagatoshi Y, Yasui Y, Fujita T. (2024) Chromosome-level genome assemblies for two quinoa inbred lines from northern and southern highlands of Altiplano where quinoa originated. Front Plant Sci 15:1434388.
4. Nishimura K, Kokaji H, Motoki K, Yamazaki A, Nagasaka K, Mori T, Takisawa R, Yasui Y, Kawai T, Ushijima K, Yamasaki M, Saito H, Nakano R, Nakazaki T (2024) Degenerate oligonucleotide primer MIG-seq: an effective PCR-based method for high-throughput genotyping. Plant J 118:2296-2317.
5. Nagatoshi Y, Ikazaki K, Kobayashi Y, Mizuno N, Sugita R, Takebayashi Y, Kojima M, Sakakibara H, Kobayashi NI, Tanoi K, Fujii K, Baba J, Ogiso-Tanaka E, Ishimoto M, Yasui Y, Oya T, Fujita Y. (2023) Phosphate starvation response precedes abscisic acid response under progressive mild drought in plants. Nat Commun 14:5047.
6. Fawcett JA, Takeshima R, Kikuchi S, Yazaki E, Katsube-Tanaka T, Dong Y, Li M, 7 , Hunt HV, Jones MK, Lister DL, Ohsako T, Ogiso-Tanaka E, Fujii K, Hara T, Matsui K, Mizuno, Nishimura K, Nakazaki T, Saito H, Takeuchi N, Ueno M, Matsumoto D, Norizuki M, Shirasawa K, Li C, Hirakawa H, Ota T, Yasui Y (2023) Genome sequencing reveals the genetic architecture of heterostyly and domestication history of common buckwheat. Nat Plants 9:1236-1251. Corresponding Author
7. Sugiyama M, Norizuki M, Kikuchi S, Yasui Y, Matsui K. (2023) Development and chromosomal characterization of interspecific hybrids between common buckwheat (Fagopyrum esculentum) and a related perennial species (F. cymosum). Breed Sci 73:230-236
8. Shirasawa K, Hosokawa M, Yasui Y, Toyoda A, Isobe S. (2023) Chromosome-scale genome assembly of a Japanese chili pepper landrace, Capsicum annuum 'Takanotsume'. DNA Res 30:dsac052.
9. Kazama Y, Kitoh M, Kobayashi T, Ishii K, Krasovec M, Yasui Y, Abe T, Kawano S, Filatov DA (2022) A CLAVATA3-like Gene Acts as a Gynoecium Suppression Function in White Campion. Mol Biol Evo 39:msac195.
10. Diway B, Yasui Y, Innan H, Takeuchi Y (2022) New locality and bud growth of the world biggest flower, Rafflesia tuan-mudae, in Naha Jaley, Sarawak, Malaysia. Tropics 30:71-82.
11. Nishimura K, Motoki K, Yamazaki A, Takisawa R, Yasui Y, Kawai T, Ushijima K, Nakano R, Nakazaki T (2022) MIG-seq is an effective method for high-throughput genotyping in wheat (Triticum spp.). DNA Res 29:dsac011.
12. Ogata T, Toyoshima M, Yamamizo-Oda C, Kobayashi Y, Fujii K, Tanaka K, Tanaka T, Mizukoshi H, Yasui Y, Nagatoshi Y, Yoshikawa N, Fujita Y (2021) Virus-Mediated Transient Expression Techniques Enable Functional Genomics Studies and Modulations of Betalain Biosynthesis and Plant Height in Quinoa. Front Plant Sci 12:643499.
13. Takeshima R, Ogiso-Tanaka E, Yasui Y, Matsui K. (2021) Targeted amplicon sequencing + next-generation sequencing-based bulked segregant analysis identified genetic loci associated with preharvest sprouting tolerance in common buckwheat (Fagopyrum esculentum). BMC Plant Biol 21:18.
14. Imamura T, Yasui Y, Koga H, Takagi H, Abe A, Nishizawa N, Mizuno N, Ohki S, Mizukoshi H, Mori M (2020) A novel WD40-repeat protein involved in formation of epidermal bladder cells in the halophyte quinoa. Commun Biol 3: 513.
15. Mizuno N, Toyoshima M, Fujita M, Fukuda S, Kobayashi Y, Ueno M, Tanaka K, Tanaka T, Nishihara E, Mizukoshi H, Yasui Y, Fujita (2020) The genotype-dependent phenotypic landscape of quinoa in salt tolerance and key growth traits. DNA Res 27:dsaa022. Corresponding Author
16. Matsui K, Mizuno N, Ueno M, Takeshima R, Yasui Y (2020) Development of co-dominant markers linked to a hemizygous region that is related to the self-compatibility locus (S) in buckwheat (Fagopyrum esculentum). Breed Sci 70:112-117.
17. Mizuno N, Yasui Y (2019) Gene flow signature in the S-allele region of cultivated buckwheat. BMC Plant Biol 19:125. Corresponding Author
18. 安井康夫、藤倉雄司、藤田康成(2018)「ボリビアのウユニ塩湖畔における劣悪環境下でのキヌア栽培」作物研究 63:25-29. (日本語原著論文, 査読者2名) Corresponding Author
19. Matsui K, Oshima Y, Mitsuda N, Sakamoto S, Nishiba Y, Walker AR, Ohme-Takagi M, Robinson SP, Yasui Y, Mori M, Takami H (2018) Buckwheat R2R3 MYB transcription factor FeMYBF1 regulates flavonol biosynthesis. Plant Sci 274:466-475.
20. Yabe S, Hara T, Ueno M, Enoki H, Kimura T, Nishimura S, Yasui Y, Ohsawa R, Iwata H (2018) Potential of Genomic Selection in Mass Selection Breeding of an Allogamous Crop: An Empirical Study to Increase Yield of Common Buckwheat. Front Plant Sci 9: 276.
21. Katsu K, Suzuki R, Tsuchiya W, Inagaki N, Yamazaki T, Hisano T, Yasui Y, Komori T, Koshio, Seiji Kubota M, Walker AR, Furukawa K, Matsui K (2017) A new buckwheat dihydroflavonol 4-reductase (DFR), with a unique substrate binding structure, has altered substrate specificity. BMC Plant Biol 17: 239.
22. Yasui Y, Hirakawa H, Oikawa T, Toyoshima M, Matsuzaki C, Ueno M, Mizuno N, Nagatoshi Y, Imamura T, Miyago M, Tanaka K, Mise K, Tanaka T, Mizukoshi H, Mori M, Fujita Y (2016) Draft genome sequence of an inbred line of Chenopodium quinoa, an allotetraploid crop with great environmental adaptability and outstanding nutritional properties. DNA Res 23:535-546. First & corresponding Author
23. Yasui Y, Hirakawa H, Ueno M, Matsui K, Katsube-Tanaka T, Yang SJ, Aii J, Sato S, Mori M (2016) Assembly of the draft genome of buckwheat and its applications in identifying agronomically useful genes. DNA Res 23:215-224. First & corresponding Author
24. Yabe S, Hara T, Ueno M, Enoki H, Kimura T, Nishimura S, Yasui Y, Ohsawa R, Iwata H (2014) Rapid genotyping with DNA micro-arrays for high-density linkage mapping and QTL mapping in common buckwheat (Fagopyrum esculentum Moench). Breed Sci 64: 291–299.
25. Ueno M, Abe T, Hayashi Y, Yasui Y (2014) Constructing S-locus deletion mutant in common buckwheat by using heavy-ion-beam irradiation. RIKEN Accelerator Progress Report 47: 293. Corresponding Author
26. Sano M, Nakagawa M, Oishi A, Yasui Y, Katsube-Tanaka T (2014) Diversification of 13S globulins, allergenic seed storage proteins, of common buckwheat. Food Chem 155: 192–198.
27. Tomiyoshi M, Yasui Y, Ohsako T, Li C, Ohnishi O (2012) Phylogenetic analysis of AGAMOUS sequences reveals the origin of the diploid and tetraploid forms of self-pollinating wild buckwheat, Fagopyrum homotropicum Ohnishi. Breed Sci 62: 241–247. Corresponding Author
28. Yasui Y, Mori M, Aii J, Abe T, Matsumoto D, Sato S, Hayashi Y, Ohnishi O, Ota T (2012) S-LOCUS EARLY FLOWERING 3 is exclusively present in the genomes of short-styled buckwheat plants that exhibit heteromorphic self-Incompatibility. PLoS ONE 7: e31264. Corresponding Author
29. Yoshida Y, Ueno S, Honjo M, Kitamoto N, Nagai M, Washitani I, Tsumura Y, Yasui Y, Ohsawa R (2011) QTL analysis of heterostyly in Primula sieboldii and its application for morph identification in wild populations. Annals Bot 108: 133-142.
30. Yasui Y, Mori M, Ohnishi O, Campbell CG, Ota T (2008) Construction of a BAC library for buckwheat genome research – An application to positional cloning of agriculturally valuable traits – Genes Genet Syst 85: 393-401. Corresponding Author
31. Konishi T, Iwata H, Yashiro K, Tsumura Y, Ohsawa R, Yasui Y, Ohnishi O (2006) Development and characterization of microsatellite markers for common buckwheat. Breed Sci 56: 277-285.
32. Fawcett JA, Kawahara T, Watanabe H, Yasui Y (2006) A SINE family widely distributed in the plant kingdom and its evolutionary history. Plant Mol Biol 61: 505-514.
33. Konishi T, Yasui Y, Ohnishi O (2005) Original birthplace of cultivated common buckwheat inferred from genetic relationships among cultivated populations and natural populations of wild common buckwheat revealed by AFLP analysis. Genes Genet Syst 80: 113-119.
34. Yasui Y, Wang Y, Ohnishi O, Campbell CG (2004) Amplified fragment length polymorphism linkage analysis of common buckwheat (Fagopyrum esculentum) and its wild self-pollinated relative Fagopyrum homotropicum. Genome 47: 345-351. Corresponding Author
35. Yamane K, Yasui Y, Ohnishi O (2003) Intraspecific cpDNA variations of diploid and tetraploid perennial buckwheat, Fagopyrum cymosum (Polygonaceae). Am J Bot 90: 339-346.
36. Yasui Y, Nasuda S, Matsuoka Y, Kawahara T (2001) The Au family, a novel short interspersed element (SINE) from Aegilops umbellulata. Theor Appl Genet 102: 463–470.
37. Ohsako T, Fukuoka S, Bimb HP, Baniya BK, Yasui Y, Ohnishi O (2001) Phylogenetic analysis of the genus Fagopyrum (Polygonaceae), including the Nepali species F. megacarpum, based on nucleotide sequence of the rbcL-accD region in chloroplast DNA. Fagopyrum 18: 9-14.
38. Tsuji K, Yasui Y, Ohnishi O (1999) Search for Fagopyrum species in eastern Tibet. Fagopyrum 16: 1–6.
39. Ohnishi O, Yasui Y (1998) Search for wild buckwheat species in high mountain regions of Yunnan and Sichuan provinces of China. Fagopyrum 15: 8-17.
40. Yasui Y, Ohnishi O (1998) Interspecific relationships in Fagopyrum (Polygonaceae) revealed by the nucleotide sequences of the rbcL and accD genes and their intergenetic region. Am J Bot 85: 1134–1142.
41. Yasui Y, Ohnishi O (1998) Phylogenetic relationships among Fagopyrum species revealed by nucleotide sequences of the ITS region of the nuclear rRNA gene. Genes Genet Syst 73: 201–210.
42. Yasui Y, Ohnishi O (1996) Comparative study of rbcL gene sequences in Fagopyrum and related taxa. Genes Genet Syst 71: 219–224.
社会・地域活動
教育活動
| 担当科目 | 育種学I、食農環境・文化概論(分担)、総合農学(分担)、食農環境実習・演習I・II(分担) |
|---|---|
| オフィスアワー | |
| 相談・講演・共同研究等に応じられるテーマなど |


