Updated on 2023/09/29


Institute of Transformative Bio-Molecules Designated lecturer
Designated lecturer

Degree 1

  1. 博士(理学) ( 2005.3   九州大学 ) 

Current Research Project and SDGs 3

  1. 科学コミュニケーション

  2. 科学とジェンダー

  3. 植物の繁殖様式の進化

Research History 1

  1. Nagoya University   Institute of Transformative Bio-Molecules   Designated lecturer


Professional Memberships 3

  1. 男女共同参画学協会連絡会

  2. 科学技術社会論学会

  3. 日本生態学会


Papers 8

  1. 「新型コロナウイルス感染拡大に伴う第一回緊急事態宣言が研究者・技術者へ与えた影響 ─弱い立場の研究者・技術者がさらなる困難に直面した」 Reviewed


    日本の科学者   Vol. 57 ( 3 )   2022.3

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    Language:Japanese   Publishing type:Research paper (scientific journal)  

  2. Sex-biased seed predation in gynodioecious Dianthus superbus var. longicalycinus (Capryophyllaceae) and differential influence of two seed predator species on the floral traits Reviewed

    T. Miyake, I. Satake and K. Miyake

    Plant Species Biology   ( 33 ) page: 42 - 50   2018

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    Authorship:Last author  

  3. 3F15 What is the science seminar that is plain for junior and senior high school students

    NAKANO Michika, MIYAKE Keiko

    Proceedings of Annual Conference of Japanese Society for Engineering Education   Vol. 2018 ( 0 ) page: 504 - 505   2018

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    Language:Japanese   Publisher:Japanese Society for Engineering Education  

    DOI: 10.20549/jseeja.2018.0_504

    CiNii Research

  4. 岐阜大学「女性大学院生による出前講義プロジェクト」取組の効果と実施方法の検討 Reviewed


    工学教育   ( 63 ) page: 3 - 9   2015

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    Authorship:Last author, Corresponding author  

  5. 新潟大学発「女性大学院生によるサイエンス・セミナー(出前授業)」の取組とその効果 Reviewed


    工学教育   ( 59 ) page: 88 - 92   2011

  6. Relative fitness of females and hermaphrodites in a natural gynodioecious population of wild radish, Raphanus sativus L. (Brassicaceae): comparison based on molecular genotyping Reviewed

    K. Miyake, T. Miyake, T. Terachi, and T. Yahara

    Journal of Evolutionary Biology   Vol. 22   page: 2012 - 2019   2009

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    Authorship:Lead author  

  7. Experimental evidence for frequency dependent self fertilization in the gynodioecious plant, Silene vulgaris Reviewed International coauthorship

    K. Miyake, and M. S. Olson

    Evolution   Vol. 63   page: 2459 - 2464   2009

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    Authorship:Lead author  

  8. Variation of female frequency and cytoplasmic male-sterility gene frequency among natural gynodioecious populations of wild radish (Raphanus sativus L.) Reviewed

    Molecular Ecology   Vol. 13   page: 2459 - 2464   2004

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Research Project for Joint Research, Competitive Funding, etc. 2

  1. The maintenance of cyto-nuclear gynodioecy in wild radish (Raphanus sativus): relative seed fitness between females and hermaphrodites based on molecular genotyping

    2005.4 - 2006.3

  2. 絶滅危惧水生植物オニバスの遺伝的変異に関する研究

    1997.4 - 1998.3



KAKENHI (Grants-in-Aid for Scientific Research) 3

  1. Verification of the effect that gender difference of non-verbal communication brings to science education

    Grant number:19K03114  2019.4 - 2022.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

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  2. Development of Science Communication Education Program for Graduate Students Incorporating Gender Perspective

    Grant number:26350228  2014.4 - 2019.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

    Murata Michika

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    In this study, the aim of the development of graduate education program to train scientists that can convey clearly the science, conducted the following two studies with particular attention to gender. 1) Survey on current status of science communication education of graduate students, 2) Survey of attention of students to behavior of lecturer in science lecture.
    In 1), the degree of recognition of scientific communication is low, but it has been suggested that the graduate students who have many practical experiences equivalent to scientific communication may be more aware of society. In 2), female students who have taken a science lecture by a graduate student are generally more evenly aware of the lecturer's behavior (voice size, intonation, tone, gestures, ways of asking questions, eyes) than male students.

  3. ダイコンの雄性不稔・稔性回復システムの分子機構とその多様性形成メカニズムの解明

    Grant number:22380008  2010.4 - 2012.3

    科学研究費助成事業 基盤研究(B)  基盤研究(B)