Transformation of methylthio-s-triazines via sulfur oxidation by strain JUN7, a Bacillus cereus species

蜡样芽孢杆菌 拉伤 化学 西马嗪 阿特拉津 亚砜 细菌 三嗪 硫黄 转化(遗传学) 生物降解 有机化学 立体化学
作者
Naoki Harada,Kazuhiro Takagi,Kunihiko Fujii,Akio Iwasaki
出处
期刊:Soil Biology & Biochemistry [Elsevier BV]
卷期号:38 (9): 2952-2957 被引量:10
标识
DOI:10.1016/j.soilbio.2006.03.018
摘要

It is known that methylthio-s-triazines can be transformed to the corresponding 2-hydroxy derivatives through sulfoxides and sulfones in aerobic and flooded soil; however, production of sulfoxides and/or sulfones from methylthio-s-triazines by isolated s-triazine-degrading bacteria has not been reported yet. In the present study, a new bacterial strain, JUN7, was obtained from Japanese soil; the bacterium is capable of transforming simetryn to 2-methylsulfinyl 4,6-bis(ethylamino)-s-triazine (sulfoxide simetryn) and 2-hydroxy-4,6-bis(ethylamino)-s-triazine (2-hydroxy simetryn) in a Luria-Bertani (LB) medium. This is the first isolation of the specific microorganism that mediates sulfur oxidation of methylthio-s-triazines, as far as we know. Strain JUN7 could decrease other methylthio-s-triazines such as dimethametryn and prometryn, but not chlorinated s-triazines (atrazine, simazine, and terbuthylazine) and methoxy-s-triazine (atraton) in 1/10 LB medium. Strain JUN7 did not possessed gene atzA or trzN encoding triazine-degrading enzymes, suggesting that the strain may have another metabolic system. Characterizations of strain JUN7 based on comparative morphology, physiological classification, and comparison of the partial 16S rRNA sequence indicated that it is assigned as a Bacillus cereus species.
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