• Title/Summary/Keyword: simazine

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Effect of simazine on nitrogen assimilation of rhodopseudomonas sphaeroides (Rhodopseudomonas sphaeroides의 질소 동화작용에 미치는 simazine의 영향)

  • 이혜주;이진애;박인호;선우양일
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.304-309
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    • 1989
  • The effects of simazine [2-chloro-4, 6-bis(methylamino)-s-triazine] on in vivo nitrogenase, glutamine synthetase, glutamate synthase, and glutamate dehydrogenase which are important in nitrogen assimilation of Rhodopseudomonas sphaeroides were investigated. Simazine inhibited the synthesis of nitrogenase and glutamine synthetase. The activity of glutamine synthetase in crude extracts of Rhodopseudomonas sphaeroides is less inhibited by simazine than that of glutamate synthase and glutamate dehydrogenase. These results suggest the possibility that simazine inhibits photosynthetic activity and so inhibits the synthesis of nitrogenase and glutamine synthetase in Rhodopseudomonas sphaeroides.

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Immunosuppressive Activity of Simazine (Simazine의 면역억제작용)

  • 김경란;조대현;표석능
    • Biomolecules & Therapeutics
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    • v.7 no.2
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    • pp.127-132
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    • 1999
  • Triazine herbicide has been reported to directly suppress the immune response. In the present study, the effect of simazine on the immune response was investigated. Splenic lymphocytes were treated withmitogen (lipopolysaccaride, concanavalin A) in the presence of simazine. When simazine(300 mg/kg, 600 mg/kg) was administrated every day for 3 weeks or 4 weeks, respectively, the number of plaque forming cells (PFC) was decreased. Antibody production of IgM and IgG class was significantly decreased in splenic cells from simazine-treated animals. In addition, when animals were exposed to simazine, the susceptibility of virus infection as well as the growth of tumor cells was increased. These data suggest that simazine affected the immune function and humoral immunity impaired by simazine treatment contributed to pathological process.

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Inhibitory Effect of Simazine on Photosynthetic Electron Transport Activity in Anabaena inequalis (Anabaena의 광합성 전자전달 활성에 미치는 Simazine의 억제효과)

  • 권벽동
    • Journal of Plant Biology
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    • v.31 no.3
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    • pp.217-226
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    • 1988
  • Effects of simazine [2-chloro-4,6-bis(methylamino)-s-triazine] on the photochemical reactions of isolaed spinach chloroplasts and crude thylakoids of Anabaena inequalis UTEX B-381 were compared. Simazine inhibited photosynthetic O2 evolution and increased the chlorophyll fluorescence in whole cells of Anabaena. The electron transfer from diphenylcarbazide to 2,6-dichlorophenolindophenol was inhibited by simazine treatment in spinach chloroplasts, but not in crude thylakoids of Anabaena. In spinach chloroplasts, the chlorophyll fluorescence was increased by simazine treatment in the presence of diphenylcarbazide and ferricyanide, but not in the presence of diphenylcarbazide and silicomolybdate. In crude thylakoids of Anabaena, simazine treatment did not increase the chlorophyll fluorescence in the presence of either diphenylcarbazide and silicomolybdate, or diphenylcarbazide and ferricyanide. There results suggest that the inhibitory site of simazine on photosynthetic electron transport chain of anabaena is different from that of spinach chloroplasts. And there may be a possiblity that the inhibition site of simazine in Anabaena lies on the donor side of photosystem II, before the site of electron donation by diphenylcarbazide.

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Microbial Decomposition of s-Triazine Herbicides, Atrazine and Simazine by a TNT-degrading Bacterium (TNT-분해세균에 의한 s-Triazine계 제초제인 Atrazine과 Simazine의 미생물학적 분해)

  • 오계헌;이명석;장효원;소재성
    • Korean Journal of Microbiology
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    • v.36 no.3
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    • pp.209-215
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    • 2000
  • The purpose of U7is work was to iilvestigate the degradation of s-h~azine hel-hicidcs, ahilzine and simazine by TNT-degrader under several relevaut physicochemical environ~nental parameters. TNT-degrader showed effective degradability of atrazine and snnazine as well. Both atrazme (GO 1i1~11) and simazine ( 4 5 rng//) were completely degraded within 30 hrs and 4 days of incubation, respectively. As d ~ e concentrations of atrazine and sunazine increased in the media, the degradation ofthose compounds were delayed. Additional caubans were essential to degrade atrazine and simazule, and no degradation was achieved in the absence of additional carbons. The effect of supplemented nitrogens on the degradation of atrazine and sunazine was evalualed. Addition of a suppleinented nitrogen in he growth medium containing ah-azine or siinazine showed partial degr-adation olihose herbicides duriug the incubation period. However, complete degradation of atrazine and simazu~e was examined ul the absence or any supplemented nitrogens. Addltion of yeast extract in this study was inhibilory to atrazine aud siinazine degradations, respectively. TNT-degrader was a small Gram-negative cocco-bacillus. Physiological analysis using BIOLOG sysleln revealed that this strain was Ste~~ol~~opl~orno~~ns rrialtophilia.

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Tolerance Mechanism to Simazine in Coix lacryma-jobi (율무(Coix lacryma-jobi)의 제초제 Simazine에 대한 내성기구)

  • Ma, Sang-Yong;Kim, Jong-Seok;Chun, Jae-Chul
    • Korean Journal of Environmental Agriculture
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    • v.16 no.1
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    • pp.37-43
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    • 1997
  • Tolerance mechanism to simazine (6-chloro-N,N'-diethyl-1,3,5-triazine-2,4-diamine) in Coix lacryma-jobi was investigated with respect to herbicide detoxification via glutathione conjugation. Simazine was initially absorbed by seedlings of C. lacryma-jobi and corn, but after 12 hours of treatment, no significant difference in simazine absorption was found in both species. Simazine absorbed was rapidly metabolized to glutathione-simazine conjugate. One to six hours after treatment, metabolism was approximately 2-fold faster in C. lacryma-jobi than in corn. Glutathione content was found 1.5- and 2.3-fold higher in coleoptile and root of C. lacryma-jobi, respectively, compared with corn. In both species, the highest concentration of glutathione was found in coleoptile tissue. Glutathione S-transferase that exhibits activity with 1-chloro-2,4-dinitrobenzene was not significantly different between two species. However, glutathione S-transferase activity with simazine was approximately 2-fold greater in C. lacryma-jobi than in corn. The glutathione S-transferase activity was 20 to 30% greater in shoot of either species than in root. Fast protein liquid chromatography-anion exchange column was used to separate glutathione S-transferase isozymes in coleoptiles of C. lacryma-jobi and corn. A peak of glutathione S-transferase activity with 1-chloro-2,4-dinitrobenzene and two peaks of glutathione S-transferase activity with simazine from C. lacryma-jobi were coeluted with those from corn, but showed greater activity than in the case of corn. Another glutathione S-transferase isozyme that exhibits activity with simazine was detected in the elution of C. lacryma-jobi extract, but not in corn. Electron transport in chloroplast thylakoids isolated from leaves of both species was equally sensitive to simazine applied at 1 to 100 nM. These results indicate that the simazine tolerance in C. lacryma-jobi is due to its capacity to detoxify the herbicide via glutathione conjugation, which is positively correlated with the level of glutathione content and glutathione S-transferase activity.

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A Study on the Degradation and the Reduction of Acute Toxicity of Simazine Using Photolysis and Photocatalysis (광반응 및 광촉매 반응을 이용한 simazine의 분해 및 독서저감에 관한 연구)

  • Kim, Moon-Kyung;Oh, Ji-Yoon;Son, Hyun-Seok;Zoh, Kyung-Duk
    • Journal of Environmental Health Sciences
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    • v.35 no.2
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    • pp.124-129
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    • 2009
  • The photocatalysis degradation of simazine, s-triazine type herbicide was carried out using circulating photo reactor systems. In order to search for the effective method to mineralize this compound into environmentally compatible products, this study compared the removal efficiencies of simazine by changing various parameters. First, under the photocatalytic condition, simazine was more effectively degraded than by photolysis and $TiO_2$ only condition. With photocatalysis, 5 mg/l simazine was degraded to approximately 90% within 30 min, and completely degraded after 150 min. Ionic byproducts such as ${NO_2}^-$, ${NO_3}^-$, and $Cl^-$ were detected from the photocatalysis of simazine, however, the recoveries were poor, indicating the presence of organic intermediates rather than the mineralization of simazine during photocatalysis. Two bioassays using V. fischeri and D. magna were employed to measure the toxicity reduction in the reaction solutions treated by both photocatalysis and photolysis. Simazine and its photocatalysis treated water did not exert any significant toxicity to V. fischeri, marine bacterium. However, the acute toxicity test using D. magna indicates that initial acute toxicity ($EC_{50}$ = 57.30%) was completely reduced ($EC_{50}$ = 100%) after 150 min under both photocatalysis and photoysis of simazine. This results indicates that photocatalysis and photolysis of simazine reduced the acute toxicity through mineralization.

Simazine-induced Alteration of the Expression Levels of Apoptosis- and Steroidogenesis-regulating Genes in Testicular Cells (Simazine이 정소세포에서 Apoptosis와 Steroidogenesis 조절 유전자들의 발현에 미치는 영향)

  • Park, Ho-Oak;Ko, Jeong-Jae;Bae, Jee-Hyeon
    • Development and Reproduction
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    • v.15 no.2
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    • pp.159-166
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    • 2011
  • Simazine (6-chloro-N,N'-diethyl-1,3,5-triazine-2,4-diamine) is a triazine herbicide that has been applied worldwide including Korea for agricultural purposes. Simazine is the second most commonly detected pesticide in surfaceand ground-water in the United States, Europe and Australia. It has been shown that simazine is a potent endocrine disruptor in wildlife and laboratory animals. Although many endocrine disruptors can induce apoptosis in various types of cells, the effects of simazine on apoptosis and on the expression of Bcl-2 family genes are not known. Also it is unknown the effect of simazine on the expression of steroidogenesis-regulating genes in testicular cells. In this study, we investigated the effect of simazine on the expression levels of apoptosis- and steroidogenesis-regulating genes in testicular cells. We found that a low concentration of simazine can alter the mRNA expression levels of steroidogenesis-related genes and Bcl-2 family genes in mouse Sertoli cells and rat Leydig cells. Thus, our results suggest that simazine can disturb normal testicular development and reproductive function by altering the expression of genes that are critical for the regulation of apoptosis and steroidogenesis.

Inhibitory Effects of Simazine on Various Functions of Peritoneal Macrophages (Simazine이 복강 대식세포의 기능에 미치는 영향)

  • 김경란;손은화;이동권;표석능
    • Biomolecules & Therapeutics
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    • v.10 no.4
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    • pp.224-229
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    • 2002
  • Triazine herbicide has been reported to directly suppress the immune response. In the present study, we examined various functions of murine peritoneal macrophages that were isolated and stimulated with LPS after simazine (300 and 600 mg/kg body weight), a triazine herbicide, was administered every day for 4 weeks. Simazine decreased the capacity of phagocytosis, compared to those of carboxymethylcellulose (CMC)-treated control group. In addition, the production of NO and TNF-$\alpha$ was decrcased in macrophages of simazinetreated mice. However, the production of hydrogen peroxide ($H_{2}O_{2}$) was not altered. In vitro tumoricidal activity of in vivo simazine-treated macrophages was reduced against target cell. B 16 melanoma. Taken together, these results suggested that simazine might have the immunosuppressive effect on macrophages after in vivo exposure, which was related to the reduction of tumoricidal activity.

파종량과 제초제 처리가 수단그라스계 잡종의 수량과 잡초억제에 미치는 영향 ( Effect of Seeding Rate and Herbicides on the Yield and Weed Control of Sorghum-Sudangrass Hybrid ( Sorghum bicolr ( L. ) Moench ) )

  • 임상훈;김동암
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.4 no.1
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    • pp.62-69
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    • 1983
  • This experiment was carried out to find the effect of seeding rates and herbicides on the weed control, yield and crude protein of sorghum-sudangrass hybrid (Sorghum bicolor (L.) Moench). The variety used in the present study was Pioneer 988. Two different seeding rates were 25 kg/ha and 50 kg/ha and five weed control treatments were weedy check, hand weeded check, alachlor, alachlor+simazine, and simazine of preemergence application. The results of this study are summarized as follows: 1. Forage yield was not influenced by seeding rates. There was no significant difference between forage yield from 25 kg/ha and from 50 kg/ha of seeding rates. But weedy plots showed higher yield from the high seeding rate. Alachlor+simazine treatment showed the greatest yield among the weed control treatments. But there was no difference among the hand weeded treatment, simazine treatment, and alachlor+simazine treatment. 2. Seeding rates did not affect weed yield, but weedy plots showed the tendancy toward higher weed yield from the low seeding rate. Alachlor+simazing preemergence application showed the most effective weed control. But there was no significant difference in weed yield among the treatments of the hand weeded, alachlor+simazine and simazine. The weed yield in alachlor treatment was significantly higher than other three treatments. 3. The height of plant was shortest on the weedy plots and the longest height was obtained from the alachlor+simazine application. But in the first harvest the height was reduced by herbicides. Seeding rates did not affect the plant height. But the height was slightly taller under the low seeding rate than under the high seeding rate. 4. The percent crude protein of the forage did not affected by two seeding rates. Simazine treatments increased the percent crude protein and total crude protein yield. Simazine and alachlor+simazine application showed the significantly higher percent crude protein than hand weeded and alachlor treatments. Simazine increased the percent crude protein without reduction of forage yield. 5. Whereas the number of original stand was greater in the high seeding rate, the number of tillers per stand was higher in the low seeding rate. Weed reduced the number of stands and tillers. There was no significant indifference among the weed control treatments. It is concluded from above results that when sorghum-sudangrass hybrids are broadcasted for forage, 25 kg/ha rate of seeding is appropriate and alachlor+simazine treatment is most effective on weed control, maximum forage yield, and high percent crude protein.

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Tolerance of Corn, Sorghum, Sorghum-Sudangrass Hybrid, and Pearl Millet to Simazine and Alachlor (옥수수, 수수, 수수-수단그라스 교잡종 및 진주조의 Simazine과 Alachlor에 대한 저항성)

  • 이석순;최상집
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.34 no.2
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    • pp.113-119
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    • 1989
  • In 1988 the tolerance of corn, sorghum, sorghum-sudangrass. and pearl millet hybrids to simazine and alachlor was tested in field during the growing season and pots during the summer and fall. In field and summer pot experiments(Exp.) the above mentioned four crops were tested at the ratios of simazine WP (50% ai, g/10a) ; alachlor EC (43.7% ai. ml/10a) of 130: 0, 100: 0, 70: 200, 0: 300 and 0: 400 and a sorghum hybrid was tested at 0, 50, 100, 200, 300, and 400ml/10a of alachlor and 70g/10a of simazine+ 200ml/10a of alachlor in fall pot Exp. In corn emergence rate, percent stand, plant height of seedlings, and dry matter(DM) yield were not affected by simazine and alachlor in all Exps. In sorghum and sorghum-sudangrass early growth and DM yield were not affected by simazine and alachlor in field Exp. In contrast, simazine reduced height and dry weight of seedlings slightly without any deterimental effects on emergence and survival rates. but alachlor reduced survival rate, plant height, and dry weight of seedlings significantly in summer pot Exp. In fall Exp. alachlor did not affect emergence rate of a sorghum hybrid, but survival rate, plant height, and dry weight of seedlings reduced with increased levels of alachlor when applied higher than 100ml/10a. In pearl millet simazine did not affect emergence rate, plant height, and DM yield in field, but reduced survival rate, plant height, and dry weight of seedlings in summer pot Exp. However, alachlor reduced DM yield significantly due to a lower percent stand even in the field. In summer pot Exp. although emeregence rate was slightly reduced, all seedlings were dead after emergence. Simazine did not control grasses such as Digitaria sanguinalis, Setaria viridis, Echinochloa crusgalli effectively, but controlled broadleaf weeds. Alachlor controlled all grasses, Porluraca oleracea, and Amaranthus mangostanus, but did not control Acalypha australis and Chenopodium album. A combination of simazine and alachlor controlled weeds more effectively than either simazine or alachlor alone.

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