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난분해성(難分解性) 공해물질(公害物質) TCAB의 미생물(微生物)에 의(依)한 분해(分解) : (II) -분리(分離) 균주(菌株)에 의(依)한 TCAB의 분해(分解)-
이재구,임양빈,조용균,경기성,오경석,김학남,Lee, Jae-Koo,Ihm, Yang-Bin,Cho, Yong-Gyun,Kyung, Kee-Sung,Oh, Kyeong-Seok,Kim, Hak-Nam 한국응용생명화학회 1991 Applied Biological Chemistry Vol.34 No.4
$[U-^{14}C]\;TCAB$를 $MM_2$ 무기배지(無機培地)에 유일(唯一)한 탄소원(炭素源)으로 첨가(添加) 후(後) 분리(分離)한 균주(菌株)들을 순수배양(純粹培養)하였을 때 약간(若干)의 방사성(放射性) 분해산물(分解産物)이 autoradiography에 의(依)하여 검출(檢出)되었다. 또한 유기물(有機物)을 제거한 토양(土壤)에 $^{14}C-TCAB$를 첨가(添加)한 후(後) 각각의 분리균주(分離菌株)들을 접종(接種)하고 $MM_2$ 무기배지(無機培地)를 가(加)하여 일정(一定)한 습도(濕度)를 유지(維持)하면서 $30^{\circ}C$에서 배양(培養)하였을 때 $^{14}CO_2$가 발생(發生)되지 않았다. 이들 분리균주(分離菌株)의 하나인 Achromobacter group VD를 순수배양(純粹培養) 시(時) m/z 250인 분해산물(分解産物)이 GC/MS에 의(依)하여 확인(確認)되었다. 이 분해산물(分解産物)의 가능(可能)한 형성경로(形成經路)는 TCAB의 구조(構造)로부터 dechlorination, hydrorylation, 2개(個) benzene환(環)의 ortho 관열(關裂), 그리고 생성(生成)된 carboxyl group의 환원(還元) 등이 관련(關聯)된다고 생각된다. When $[U-^{14}C]$ 3,3', 4,4'-tetrachloroazobenzene$([U-^{14}C]\;TCAB)$ was added to the $MM_2$ medium as a sole carbon source for the isolated microorganisms and incubated, some radioactive metabolites were detected by autoradiography. No $^{14}CO_2$ was evolved from $[U-^{14}C]\;TCAB$ which was added as a sole carbon source to an organic matter-free soil inoculated by the isolates, wetted with the $MM_2$ salt medium, and incubated at $30^{\circ}C$. One of the metabolites in pure culture of Achromobacter group VD, which was isolated and identified, was tentatively identified as a compound of m/z 250 by means of GC/MS. The possible pathways for its formation are thought to include dechlorination from the TCAB structure, hydroxylation, ortho fission of the two benzene rings, and reduction of the resulting carboxyl group.


난분해성(難分解性) 공해물질(公害物質) TCAB의 미생물(微生物)에 의(依)한 분해(分解) : (I) TCAB 분해균(分解菌)의 분리(分離) 및 동정(同定)
이재구,임양빈,조용균,경기성,오경석,김학남,Lee, Jae-Koo,Ihm, Yang-Bin,Cho, Yong-Gyun,Kyung, Kee-Sung,Oh, Kyeong-Seok,Kim, Hak-Nam 한국응용생명화학회 1991 Applied Biological Chemistry Vol.34 No.3
In order to investigate the possibility of the microbial degradation of the persistent pollutant 3, 3', 4, 4'-tetrachloroazobenzene (TCAB) in our environment, four strains of microorganisms were isolated from industrial wastes by the enrichment technique. They were identified as Achromobacter group VD, Pseudomonas alcaligenes, Moraxella spp., and Alcaligenes faecalis, respectively. These microorganisms utilized TCAB as a sole carbon source in the $MM_2$ salt medium. 우리의 환경(環境) 중(中)에서 난분해성(難分解性) 공해물질(公害物質) TCAB의 미생물(微生物)에 의(依)한 분해(分解) 가능성(可能性)을 연구(硏究)하기 위하여 enrichment technique에 의하여 4종(種)의 미생물(微生物)을 분리(分離)하였다. 이들 균주(菌株)들은 Achromobactor group VD, Pseudomonas alcaligenes, Moraxella spp., 그리고 Alcaligenes faecalis로 각각 동정(同定)되었다. 또한 이들 미생물(微生物)들은 $MM_2$ 무기배지(無機培地)에서 TCAB를 유일(唯一)한 탄소원(炭素源)으로 이용(利用)하였다.

이재구,천삼영,경기성,오경석,임양빈 ( Jae Koo Lee,Sam Yeong Cheon,Kee Sung Kyung,Kyeong Seok Oh,Yang Bin Ihm ) 한국환경농학회 1993 한국환경농학회지 Vol.12 No.3
In order to clarify the possible contamination of rice straw used as a crude feed for livestock, Korean native cattle and cow, by pesticides, the samples collected from 21 sites in Korea were analyzed by a multiresidue method for 10 pesticides with GLC to obtain the following results. 1. Detection limits were 0.001ppm in butachlor, 0.002ppm in chlorpyrifos, 0.003ppm in BPMC, pirimiphos-methyl and diazinon, 0.004ppm in fenitrothion, 0.005ppm in phenthoate, 0.009ppm in IBP, 0.015ppm in carbofuran, and 0.03ppm in carbaryl. 2. In recovery tests, 73-101% of the pesticides applied were recovered, the recovery being low in carbofuran and chlorpyrifos. 3. Butachlor, 2-chloroacetanilide herbicide, and BPMC, carbaryl, and carbofuran, carbamate insecticides, were not detected in any sample. 4. In organophosphorus insecticides, the amounts of fenitrothion in sample No. 1, 2, 4, 5, 7, 12, 20 and 21 were in the range of 0.01-0.05ppm, those of phenthoate detected in sample No. 10 and 12 were 0.4 and 0.17ppm, respectively, and those of IBP in all samples, with the exception of sample No. 7, 12, 16, 17, 20, and 21, were in the range of 0.01-0.20ppm. The residues of chlorpyrifos, diazinon, and pirimiphos-methyl were not detected.