Literature DB >> 29589436

Biotoxin Tropolone Contamination Associated with Nationwide Occurrence of Pathogen Burkholderia plantarii in Agricultural Environments in China.

Xiaoyu Liu1, Xiaoyan Fan1, Haruna Matsumoto1, Yanxia Nie2, Zhimin Sha3, Kunpeng Yi4, Jiuyue Pan5, Yuan Qian1, Mengchao Cao6, Yihu Wang7, Guonian Zhu1, Mengcen Wang1.   

Abstract

Tropolone, a biotoxin produced by the agricultural pathogen Burkholderia plantarii, exerts cytotoxicity toward a wide array of biota. However, due to the lack of quantitative and qualitative approach, both B. plantarii occurrence and tropolone contamination in agricultural environments remain poorly understood. Here, we presented a sensitive and reliable method for detection of B. plantarii in artificial, plant, and environmental matrices by tropolone-targeted gas chromatography-triple-quadrupole tandem mass spectrometry analysis. Limits of detection for B. plantarii and tropolone were 10 colony-forming units (CFU)/mL and 0.017 μg/kg, respectively. In a series of simulation trials, we found that B. plantarii from 10 to 108 CFU/mL produced tropolone between 0.006 and 107.8 mg/kg in a cell-population-dependent manner, regardless of habitat. Correlation analysis clarified a reliable reflection of B. plantarii density by tropolone level with R2 values from 0.9201 to 0.9756 ( p < 0.01). Through a nationwide pilot study conducted in China, tropolone contamination was observed at 0.014-0.157 mg/kg in paddy soil and rice grains, and subsequent redundancy analysis revealed soil organic matter to be a dominant environmental factor, having a positive correlation with tropolone contamination. In this context, our results imply that potential ecological and dietary risks posed by long-term exposure to trace levels of tropolone contamination are of concern.

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Year:  2018        PMID: 29589436     DOI: 10.1021/acs.est.7b05915

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  Bacterial seed endophyte shapes disease resistance in rice.

Authors:  Haruna Matsumoto; Xiaoyan Fan; Yue Wang; Peter Kusstatscher; Jie Duan; Sanling Wu; Sunlu Chen; Kun Qiao; Yiling Wang; Bin Ma; Guonian Zhu; Yasuyuki Hashidoko; Gabriele Berg; Tomislav Cernava; Mengcen Wang
Journal:  Nat Plants       Date:  2021-01-04       Impact factor: 15.793

2.  Temporal metabolite responsiveness of microbiota in the tea plant phyllosphere promotes continuous suppression of fungal pathogens.

Authors:  Ping Xu; Xiaoyan Fan; Yuxiao Mao; Haiyan Cheng; Anan Xu; Wanyi Lai; Tianxing Lv; Yang Hu; Yanxia Nie; Xuxia Zheng; Qing Meng; Yuefei Wang; Tomislav Cernava; Mengcen Wang
Journal:  J Adv Res       Date:  2021-10-18       Impact factor: 12.822

  2 in total

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