国立大学法人東海国立大学機構 岐阜大学 応用生物科学部

植物病理学研究室

English page

STAFF

Masafumi SHIMIZU, Ph.D. (Associate Professor)

E-mail shimizma -at- gifu-u.ac.jp
Tel +81-58-293-2847

Postdoctoral researchers & Students

研究員(Postdoctoral Researcher)

  • Angelia Stephany (from Indonesia)

博士課程(Doctor course)

  • Juan Taboadela Hernanz (D1, MEXT scholarship student from Spain)
  • Rakibuzzaman MD (D1, from Bangladesh)
  • IMNANARO (D1, Joint Degree program student from IITG, India)

修士課程(Masater course)

  • Shoya Hasegawa(M2)
  • Rohyanti Yuliana(M2, MEXT scholarship student from Indonesia)
  • Anna Nunobiki(M1)
  • Park Jinyoung (M1, from Korea)
  • Nur Adliza Binti Baharom (M1, MEXT scholarship student from Malaysia)
  • Yu Min (M1, Double degree proguram student from Guangxi University, China)

学部(Undergraduate)

  • Saki Ikeda(B4)
  • Haruna Tadai(B4)
  • Kotaro Kuwahara (B3)
  • Mao Harada (B3)

研究生(Research student)

  • Li Tianqi (from China)

Research topics

Biological control of plant diseases using plant probiotics

Millions of beneficial microorganisms (designate plant probiotics) that have an ability to stimulate plant growth and protect plants from pathogens are living in the natural environment. In our laboratory, we explore the potential of various plant-assodiated symbiotic microbes for their ability to control plant diseases.The occurrence of agrochemical-resistant pathogens has become a major issue in recent years, and thus biological control of plant diseases using beneficial microbes has been attracting attention as alternatives to chemical agents.

RIMG2135.jpg

A novel biocontrol bacterial strain against tomato bacterial wilt

Creation of disease suppressive soil

Intercropping with Allium plants is an age-old practice used to suppress the incidence of Fusarium wilt disease of cucurbits, caused by Fusarium oxysporum. However, the mechanisms underlying the Fusarium wilt suppression by intercropping were not well understood. We investigated the significance of rhizosphere microorganisms in Fusarium wilt suppression by Allium cultivation. As a result, we found that specific antagonistic bacteria accumulate in the soil where Alliums plants are cultivated, and that they suppress the growth of Fusarium oxysporum in soil. We are currently investigating the mechanism by which Allium plants cause the accumulation of antagonistic bacteria. Eventually, we hope to use this mechanism as the basis for the development of technology to artificially create disease-suppressive soil.

Intercropping.jpg

Study on plant growth-promoting bacteria

In order to develop novel plant biostimulants, we have been isolating plant symbiotic bacteria which have an ability to promote the growth of host plants. Furthermore, we are analyzing their mode of actions.

download.png

Current research projects

  • Development of practical biocontrol stratgies for tomato bacterial wilt
  • Development of a novel method to create Fusarium wilt-suppressive soil
  • Identification of endophytic bacteria with biocontrol activity against leaf fall disease of rubber plants
  • Isolation and application of novel plant-growth promoting bacteria
  • Isolation of biocontrol bacteria against leaf fall disease of rubber tree
  • Analysis of mechanisms underlying the biocontrol effects of plant-symbiotic bacteria against tomato bacterial wilt
  • etc.