Skip navigation
  • 中文
  • English

DSpace CRIS

  • DSpace logo
  • 首頁
  • 研究成果檢索
  • 研究人員
  • 單位
  • 計畫
  • 分類瀏覽
    • 研究成果檢索
    • 研究人員
    • 單位
    • 計畫
  • 機構典藏
  • SDGs
  • 登入
  • 中文
  • English
  1. National Taiwan Ocean University Research Hub
  2. 生命科學院
  3. 水產養殖學系
請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/26687
標題: Oxygen-driven metabolic coupling in the extensive catabolism of leucomalachite green by Sphingobium naphthae: Deciphering the biochemical pathways
作者: Cheng, Chia-Hong
Pan, Po-Kai
Nan, Fan-Hua 
Chen, Yin-Yu 
Wu, Yu-Sheng
關鍵字: Leucomalachite green (LMG);Sphingobium naphthae;Oxygen-supplied and oxygen-limited degradation;Metabolomic pathway analysis
公開日期: 2026
出版社: ELSEVIER SCI LTD
卷: 213
來源出版物: INTERNATIONAL BIODETERIORATION & BIODEGRADATION
摘要: 
Leucomalachite green (LMG) poses significant risks to aquatic food safety as a recalcitrant and toxic metabolite of malachite green. This study reports the first isolation of Sphingobium naphthae FC210-1 from white shrimp (Penaeus vannamei), demonstrating its robust capacity for extensive catabolism and deep biodegradation of LMG. The isolate exhibited broad physiological adaptability, including halotolerance and heavy metal resistance, achieving a 97.54% removal efficiency under oxygen-supplied conditions. Integrated metabolomic analyses proposed a novel oxygen-dependent metabolic bifurcation governing LMG transformation: oxygen-supplied degradation was characterized by efficient oxidative metabolism and elevated citric acid levels, suggesting that putative TCA cycle involvement provides critical energetic support for this extensive catabolism. Conversely, oxygen limitation triggered a metabolic bottleneck, reducing efficiency to similar to 65% and leading to the partial reoxidation of LMG to malachite green, alongside the enrichment of stress-associated metabolites such as deoxyinosine. A critical finding was the non-linear response to bioaugmentation frequency, where a 28-day dosing interval significantly outperformed frequent 7-day additions (61.56% vs. 48.87%), suggesting that excessive biomass triggers counterproductive intraspecific competition. Furthermore, the short-term safety and biocompatibility of the isolate were demonstrated in Nile tilapia (Oreochromis niloticus), as growth parameters showed no adverse deviations across all treatments (p > 0.05). Collectively, these findings identify oxygen availability as the primary determinant of redox routing and provide a proposed metabolic framework detailing the biological fate of LMG.
URI: http://scholars.ntou.edu.tw/handle/123456789/26687
ISSN: 0964-8305
DOI: 10.1016/j.ibiod.2026.106361
顯示於:水產養殖學系

顯示文件完整紀錄

Google ScholarTM

檢查

Altmetric

Altmetric

TAIR相關文章


在 IR 系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

瀏覽
  • 機構典藏
  • 研究成果檢索
  • 研究人員
  • 單位
  • 計畫
DSpace-CRIS Software Copyright © 2002-  Duraspace   4science - Extension maintained and optimized by NTU Library Logo 4SCIENCE 回饋