• Search Research Projects
  • Search Researchers
  • How to Use
  1. Back to previous page

Enhanced biodegradation of sulfonated compounds that pollute the environment

Research Project

Project/Area Number 17K00606
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeMulti-year Fund
Section一般
Research Field Environmental engineering and reduction of environmental burden
Research InstitutionNiihama National College of Technology

Principal Investigator

HAYASE Nobuki  新居浜工業高等専門学校, 生物応用化学科, 教授 (00311100)

Project Period (FY) 2017-04-01 – 2021-03-31
Project Status Completed (Fiscal Year 2020)
Budget Amount *help
¥4,680,000 (Direct Cost: ¥3,600,000、Indirect Cost: ¥1,080,000)
Fiscal Year 2020: ¥1,040,000 (Direct Cost: ¥800,000、Indirect Cost: ¥240,000)
Fiscal Year 2019: ¥650,000 (Direct Cost: ¥500,000、Indirect Cost: ¥150,000)
Fiscal Year 2018: ¥780,000 (Direct Cost: ¥600,000、Indirect Cost: ¥180,000)
Fiscal Year 2017: ¥2,210,000 (Direct Cost: ¥1,700,000、Indirect Cost: ¥510,000)
Keywordsスルファニル酸 / スルホン化芳香族アミン化合物 / 亜硫酸 / 微生物分解 / 芳香族アミン化合物 / スルホン化芳香族アミン / 亜硫酸イオン / 水質汚濁・土壌汚染防止・浄化 / 応用微生物
Outline of Final Research Achievements

Two strains, Afipia sp. 624S and Diaphorobacter sp. 624L, were isolated from the enrichment culture with sulfanilic acid. Strain 624S had the ability to utilize sulfanilic acid as the only carbon source. Strain 624S degraded sulfanilic acid and released a small amount of sulfate ion. On the other hand, strain 624L did not utilize sulfanilic acid. In addition, a co-culture of strains 624S and 624L resulted in an enhanced degradation of sulfanilic acid, and no sulfite was accumulated. Strain 624S exhibited no oxidation of sulfite; however, strain 624L totally oxidized sulfite. Furthermore, when manganase (Mn) having the ability to oxidize sulfite was added to the medium, the degradation rate of sulfanilic acid was increased in comparison with non-addition control. These results indicate that the sulfite oxidation might stimulates the degradation of sulfanilic acid by strain 624S, that is, the syntrophic interaction between strains 624S and 624L based on the oxidation of sulfite.

Academic Significance and Societal Importance of the Research Achievements

難分解性で発がん性及び毒性の懸念されるスルホン化芳香族アミン化合物や環境中に多量に放出されているアルキルベンゼンスルホン酸等のスルホン化化合物を分解すると亜硫酸イオンが副生する。この亜硫酸イオンは微生物等の増殖阻害活性を有することより、この亜硫酸イオンを硫酸イオンに酸化除去し、スルホン化化合物の微生物分解を促進し、環境汚染を改善することに学術的、社会的意義がある。

Report

(5 results)
  • 2020 Annual Research Report   Final Research Report ( PDF )
  • 2019 Research-status Report
  • 2018 Research-status Report
  • 2017 Research-status Report
  • Research Products

    (5 results)

All 2020 2019 2018 2017

All Presentation (5 results)

  • [Presentation] 微生物によるスルホン化芳香族アミン化合物分解への金属イオンの影響2020

    • Author(s)
      植松大翔、喜多晃久、中川克彦、早瀬伸樹
    • Organizer
      第25回高専シンポジウム in Kurume
    • Related Report
      2019 Research-status Report
  • [Presentation] スルファニル酸分解微生物への亜硫酸イオンの影響2019

    • Author(s)
      東山明広、喜多晃久、中川克彦、早瀬伸樹
    • Organizer
      第71回日本生物工学会大会
    • Related Report
      2019 Research-status Report
  • [Presentation] 亜硫酸イオンの酸化によるスルホン化芳香族化合物の微生物分解促進2019

    • Author(s)
      早瀬伸樹, 近藤美咲, 喜多晃久, 中川克彦
    • Organizer
      2019年度日本農芸化学会大会
    • Related Report
      2018 Research-status Report
  • [Presentation] スルファニル酸分解微生物への亜硫酸イオンの影響2018

    • Author(s)
      東山明広, 喜多晃久, 中川克彦, 早瀬伸樹
    • Organizer
      第70回日本生物工学会大会
    • Related Report
      2018 Research-status Report
  • [Presentation] 亜硫酸イオン除去によるスルファニル酸の微生物分解促進2017

    • Author(s)
      近藤美咲, 牛尾一利, 中川克彦, 早瀬伸樹
    • Organizer
      環境微生物系学会合同大会2017
    • Related Report
      2017 Research-status Report

URL: 

Published: 2017-04-28   Modified: 2022-01-27  

Information User Guide FAQ News Terms of Use Attribution of KAKENHI

Powered by NII kakenhi