研究者業績

高垣 美智子

タカガキ ミチコ  (Michiko Takagaki)

基本情報

所属
千葉大学 大学院園芸学研究院ランドスケープ・経済学講座 千葉大学 (教授)
学位
農学修士(京都大学)
農学博士(京都大学)
MS(京都大学)
Doctor(京都大学)

J-GLOBAL ID
200901033078280780
researchmap会員ID
1000010056

研究キーワード

 2

学歴

 2

受賞

 6

論文

 91
  • Dannisa Fathiya Rachma, Maitree Munyanont, Kazuya Maeda, Na Lu, Michiko Takagaki
    Agronomy 14(12) 3074-3074 2024年12月23日  
    Harvest time is one of the key factors for obtaining high-quality cherry tomatoes. This parameter depends on environmental conditions and tomato variety. In plant factories with artificial lighting (PFALs), it is possible to control environmental conditions to enhance tomato production and quality. Since the ripening status of tomato fruit is correlated with cumulative temperature (CT), and the temperature inside PFALs can be easily controlled, CT could be used as an alternative method to predict tomato harvest time. In this study, three experiments were conducted to determine the optimal CT for harvesting high-quality cherry tomatoes in a PFAL. The experiments aimed to (1) evaluate the yield and quality of cherry tomatoes as affected by different harvest times based on CT (ranging from 900 to 1400 °C), (2) comparatively evaluate the yield and quality of cherry tomatoes that were still on the plant and off the plant (in storage) based on the same CT levels (i.e., 1100, 1200, and 1300 °C), and (3) investigate the fruit-cracking percentage during the ripening stage based on CT levels. The results showed that the fruit harvested at lower CTs exhibited higher hardness values, while those harvested at higher CTs had a higher sugar content. The on-the-plan treatment resulted in a higher yield and sugar content compared with the off-the-plan treatment, indicating that harvesting tomatoes early would come at the expense of a certain yield and sweetness. Moreover, the fruit-cracking percentage tended to increase with increasing CT, possibly due to the fast fruit growth rate and increased internal turgor pressure. These results indicated that producers can use CT as an index to predict the harvest time, thereby optimizing profits in cherry tomato production.
  • Maitree Munyanont, Na Lu, Dannisa Fathiya Rachma, Thanit Ruangsangaram, Michiko Takagaki
    Agriculture 14(12) 2208-2208 2024年12月3日  
    Calendula is an edible flower with highly beneficial bioactive compounds for human health. Environmental factors such as light influence flower yield and quality. Calendula is cultivated under controlled environments in plant factories with artificial lighting (PFALs), which enhance its productivity. However, electricity is the main operating cost, with fees based on the time of use in some countries. This study aimed to investigate the effects of lighting patterns on calendula growth and yield. Two varieties of calendula seedlings were cultivated in a PFAL and subjected to six different lighting patterns, i.e., 6 h/6 h, 12 h/12 h, 6 h/2 h, and 18 h/6 h (light/dark) and two continuous lighting patterns with varying light intensities (24 h-200 and 24 h-400). The results indicated that plants cultivated under the 6 h/2 h, 18 h/6 h, 24 h-200, and 24 h-400 conditions showed a more rapid appearance of the first flower bud than those cultivated under the 6 h/6 h and 12 h/12 h conditions. The number of flowers and the fresh and dried weights tended to increase with a longer photoperiod. Interestingly, the total carotenoid content (TCC) of “Citrus Orange” increased under 6 h/6 h and 12 h/12 h conditions compared with the others. For “Orange Gem”, continuous lighting (24 h) increased the total phenolic content (TPC) and 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activity in flowers compared with the 6 h/6 h 12 h/12 h, and 6 h/2 h treatments. The energy use efficiency (EUE) under the 24 h-200 condition was the highest in terms of flower yield and secondary metabolite production. These results suggest that lighting patterns can be used to modulate the growth and flowering of calendula and to maximize EUE.
  • Tomoka Endoh, Michiko Takagaki, Prapaipit Suwitchayanon, Charturong Chanseetis, Na Lu
    Crops 4(4) 502-513 2024年10月25日  
    This study explores organic hydroponic cultivation as a sustainable alternative to chemical fertilizers amid global supply challenges. With rising costs and the depletion of conventional nitrogen sources, organic liquid fertilizers are gaining attention for their microbial enrichment processes (MEP) that convert organic matter into plant-accessible nutrients. This experiment focuses on lettuce cultivation using two organic liquid fertilizers, Power Fish and POF vol. 2, in controlled environments. The results show that there are significant differences in plant growth parameters such as leaf number, fresh weight, chlorophyll content, and root length across different fertilizer treatments. Key findings include that effective management practices, including pH control and regular nutrient application, are crucial for maintaining microbial activity and optimizing nutrient uptake efficiency. Additionally, Bacillus sp. and Xanthomonas sp. were isolated from these fertilizers and dual-cultured with rot fungi, Pythium sp. and Fusarium sp. This dual cultivation demonstrated inhibitory activity against these pathogens, showcasing the potential of these microorganisms in promoting biofilm-mediated disease resistance in organic hydroponic systems. The study also emphasizes the phosphate solubilization capabilities of isolated bacteria, essential for sustainable nutrient cycling. Overall, organic hydroponic systems present a promising strategy for sustainable agriculture, reducing dependency on chemical inputs while enhancing crop productivity and resilience to environmental stressors.
  • Yunfei Zhuang, Na Lu, Masao Kikuchi, Michiko Takagaki, Tetsu Tamashiro
    Journal of Cleaner Production 470 143171-143171 2024年9月  
  • Yoko Nishimoto, Na Lu, Yuki Ichikawa, Aoi Watanabe, Masao Kikuchi, Michiko Takagaki
    Technology in Horticulture 3(1) 2023年9月  査読有り最終著者

MISC

 57
  • 伊藤大世, 高井香綸, 平井静, 高垣美智子, 江頭祐嘉合
    日本栄養・食糧学会大会講演要旨集 77th 2023年  
  • Toyoki Kozai, Genhua Niu, Michiko Takagaki
    Plant Factory: An Indoor Vertical Farming System for Efficient Quality Food Production: Second Edition 1-487 2019年11月6日  
    Plant Factory: An Indoor Vertical Farming System for Efficient Quality Food Production, Second Edition presents a comprehensive look at the implementation of plant factory (PF) practices to yield food crops for both improved food security and environmental sustainability. Edited and authored by leading experts in PF and controlled environment agriculture (CEA), the book is divided into five sections, including an Overview and the Concept of Closed Plant Production Systems (CPPS), the Basics of Physics and Physiology - Environments and Their Effects, System Design, Construction, Cultivation and Management and Plant Factories in Operation. In addition to new coverage on the rapid advancement of LED technology and its application in indoor vertical farming, other revisions to the new edition include updated information on the status of business R&amp D and selected commercial PFALs (plant factory with artificial lighting). Additional updates include those focused on micro and mini-PFALs for improving the quality of life in urban areas, the physics and physiology of light, the impact of PFAL on the medicinal components of plants, and the system design, construction, cultivation and management issues related to transplant production within closed systems, photoautotrophic micro-propagation and education, training and intensive business forums on PFs.
  • 梅田良平, 川島亜利沙, 高垣美智子, 平井静, 江頭祐嘉合
    日本栄養・食糧学会大会講演要旨集 73rd 2019年  
  • 松本奈々, 中島徹夫, 高垣美智子, 平井静, 江頭祐嘉合
    日本アミノ酸学会学術大会講演要旨集 13th 2019年  
  • 加川夏子, 魯娜, 高垣美智子
    日本生薬学会年会講演要旨集 64th 100 2017年8月25日  

書籍等出版物

 18

講演・口頭発表等

 15

担当経験のある科目(授業)

 43

共同研究・競争的資金等の研究課題

 20