Osaka Kyoiku University Researcher Information
日本語 | English
Division of Math, Sciences, and Information Techno
基本情報
- 所属
- 大阪教育大学 理事・副学長
- 学位
- 修士(農学)(東北大学)Ph. Doctor(Agriculture)(Tohoku University)博士(農学)(東北大学)
- 研究者番号
- 10314444
- J-GLOBAL ID
- 200901081252736172
- researchmap会員ID
- 1000248485
- 外部リンク
経歴
8-
2020年4月 - 2024年3月
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2022年4月
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2008年4月 - 2016年3月
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2014年4月
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2007年4月 - 2014年3月
学歴
2-
1996年4月 - 1999年3月
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- 1994年
委員歴
1-
2007年
受賞
3-
2005年8月
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2001年
論文
91-
Scientific Reports 14(1) 9656 2024年4月26日 査読有りAbstract Weedy rice is a major problem in paddy fields around the world. It is well known that weedy rice appears to grow faster and mature earlier than cultivated rice. It is possible that differences in the root microbial genetics are correlated with this characteristic. This study incorporated 16S rRNA amplicon sequencing to study the microbial composition in the rhizosphere and endosphere of rice root. No significant difference was found between the microbiota associated with weedy and cultivated rice lines grown in the same field. It was found that the endosphere had less microbial diversity compared to the rhizosphere. The major groups of bacteria found in the endosphere are from the phylum Proteobacteria, Myxococcota, Chloroflexota, and Actinobacteria. In addition, by analyzing the microbiome of japonica rice grown in the field in a temperate climate, we found that despite differences in genotype and location, some bacterial taxa were found to be common and these members of the putative rice core microbiome can also be detected by in situ hybridization. The delineation of a core microbiome in the endosphere of rice suggests that these bacterial taxa might be important in the life cycle of a wide range of rice types.
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Plant Reproduction 2023年4月26日Abstract Key message S29 haplotype does not require the MLPK function for self-incompatibility in Brassica rapa. Abstract Self-incompatibility (SI) in Brassicaceae is regulated by the self-recognition mechanism, which is based on the S-haplotype-specific direct interaction of the pollen-derived ligand, SP11/SCR, and the stigma-side receptor, SRK. M locus protein kinase (MLPK) is known to be one of the positive effectors of the SI response. MLPK directly interacts with SRK, and is phosphorylated by SRK in Brassica rapa. In Brassicaceae, MLPK was demonstrated to be essential for SI in B. rapa and Brassica napus, whereas it is not essential for SI in Arabidopsis thaliana (with introduced SRK and SP11/SCR from related SI species). Little is known about what determines the need for MLPK in SI of Brassicaceae. In this study, we investigated the relationship between S-haplotype diversity and MLPK function by analyzing the SI phenotypes of different S haplotypes in a mlpk/mlpk mutant background. The results have clarified that in B. rapa, all the S haplotypes except the S29 we tested need the MLPK function, but the S29 haplotype does not require MLPK for the SI. Comparative analysis of MLPK-dependent and MLPK-independent S haplotype might provide new insight into the evolution of S-haplotype diversity and the molecular mechanism of SI in Brassicaceae.
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Plants (Basel) 10 2467 2021年11月15日 査読有り
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Genes and Genetic Systems 96 129-139 2021年6月18日 査読有り
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Nature Communications 11(1) 4916 2020年10月1日 査読有り
MISC
31書籍等出版物
6-
Springer-Verlag 2008年 (ISBN: 9783540684862)
共同研究・競争的資金等の研究課題
25-
日本学術振興会 科学研究費助成事業 2020年4月 - 2023年3月
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日本学術振興会 科学研究費助成事業 2016年6月 - 2021年3月
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日本学術振興会 科学研究費助成事業 2014年4月 - 2017年3月
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日本学術振興会 科学研究費助成事業 2013年4月 - 2017年3月
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2013年 - 2017年