• 제목/요약/키워드: Azoarcus

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인디고 생산능을 가진 Azoarcus sp. TSPY31과 TSNA42의 유전체 분석 (Complete genome sequences of Azoarcus sp. TSPY31 and TSNA42 potentially having biosynthetic ability to produce indigo)

  • 김해선;차선호;석호영;박년호;우정희
    • 미생물학회지
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    • 제54권3호
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    • pp.283-285
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    • 2018
  • 유류 오염된 해양 갯벌에서 분리한 다환방향수소족(PAHs)을 분해하는 균주들로부터 인디고로 생물전환 활성을 가진 것으로 예측되는 Azoarcus sp. TSPY31과 TSNA42 균주를 동정하였다. 이 두 균주의 유전체 분석을 실시한 결과, 모두 하나의 완전한 chromosome으로 구성되며, TSPY31은 총 4,572,082 bp에 G + C 함량은 63.2%로 이루어져 있고, TSNA42는 4,886,934 bp에 G + C 함량은 62.8%이었다. 이 두 균주 모두 인돌을 인디고로 전환하는 효소인 styrene monooxygenase를 각각 2 copy씩 보유하고 있는 것으로 확인되었다.

Analysis of a Microbial Community Denitrying Nitrate to Nitrogen Gas in a Nitrate-Contaminated Aquifer

  • Jin-Hun, Kim;Bong-Ho, Son;Su-Yeol, Gwon;Seong-Uk, Eo;Yeong, Kim
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.175-178
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    • 2004
  • Little study has been published specifically addressing the dynamics of nitrate reducing bacteria (NBR) during the bioremediation of nitrate-contaminated aquifer. In our previous study we successfully quantified fumarate-enhanced microbial nitrate reduction rate in a nitrate-contaminated aquifer by using a series of single-well push-pull tests (PPTs). In this study we analyzed the suspended population during PPTs. To monitor changes in the microbial community, PCR amplification of 16S rDNA genes and denaturing gradient gel electrophoresis (DGGE) were used to study the dynamics of the bacterial community in detail. Before the stimulation of NBR, the dominant DGGE bands obtained by PCR were affiliated with V-Proteobacteria consisting of Acinetobacter spp. and Pseudomonas fluorescens. However, as NBR biostimulation proceeded, the dominant patterns of DGGE bands changed, and they were affiliated with Azoarcus denitrificans Td-3 and Flavobacterium xanthum. Azoarcus denitrificans Td-3 is known to completely reduce nitrate to nitrogen gas. The series of single-well push-pull tests in this study should prove useful for conducting rapid, low-cost feasibility assessments for in situ denitrification and provide important information about which microorganisms play a key role in bioremediation of a nitrate contaminated aquifer.

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Bacterial Community and Biological Nitrate Removal: Comparisons of Autotrophic and Heterotrophic Reactors for Denitrification with Raw Sewage

  • Lee, Han-Woong;Park, Yong-Keun;Choi, Eui-So;Lee, Jin-Woo
    • Journal of Microbiology and Biotechnology
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    • 제18권11호
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    • pp.1826-1835
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    • 2008
  • An autotrophic denitrification reactor (ADR-l) and a heterotrophic denitrification reactor (HDR-2) were operated to remove nitrate and nitrite in an anoxic environment in raw sewage. The $NO_3$-N removal rate of ADR-l was shown to range from 52.8% to 78.7%, which was higher than the $NO_3$-N removal rate of HDR-2. Specific denitrification rates (SDNR) of ADR-l and HDR-2 were 3.0 to 4.0 and 1.1 to $1.2\;mgNO_3$-N/gVSS/h, respectively. From results of restriction fragment length polymorphism (RFLP) of the 16S rRNA gene, Aquaspirillum metamorphum, Alcaligenes defragrans, and Azoarcus sp. were $\beta$-Proteobacteria that are affiliated with denitritying bacteria in the ADR-l. Specifically, Thiobacillus denitrificans was detected as an autotrophic denitrification bacteria. In HDR-2, the $\beta$-Proteobacteria such as Denitritying-Fe-oxidizing bacteria, Alcaligenes defragrans, Acidovorax sp., Azoarcus denitrificans, and Aquaspirillum metamorphum were the main bacteria related to denitrifying bacteria. The $\beta$-and $\alpha$-Proteobacteria were the important bacterial groups in ADR-l, whereas the $\beta$-Proteobacteria were the main bacterial group in HDR-2 based on results of fluorescent in situ hybridization (FISH). The number of Thiobacillus denitrificans increased in ADR-l during the operation period but not in HRD-2. Overall, the data presented here demonstrate that many heterotrophic denitritying bacteria coexisted with autotrophic denitrifying bacteria such as Thiobacillus denitrificans for nitrate removal in ADR-l. On the other hand, only heterotrophic denitritying bacteria were identified as dominant bacterial groups in HDR-2. Our research may provide a foundation for the complete nitrate removal in raw sewage of low-COD concentration under anoxic condition without any external organic carbon or the requirement of post-treatment.

제주 연안의 괭생이모자반(Sargassum horneri)에서 분리된 세균의 계통학적 다양성 및 군집 구조 분석 (Phylogenetic Diversity and Community Structure of Microbiome Isolated from Sargassum Horneri off the Jeju Island Coast)

  • 문경미;박소현;허문수
    • 생명과학회지
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    • 제28권10호
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    • pp.1179-1185
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    • 2018
  • 최근 괭생이모자반(Sargassum horneri)은 제주의 해안가와 해변, 연근해 양식장 등 매년 대량으로 속출되어 인근 양식업자 및 주민에게 막대한 피해를 주고 있는 추세이다. 본 연구에서는 제주 인근 연안으로 흘러 들어온 괭생이 모자반에 서식하고 있는 미생물의 다양성을 탐색하고 동정을 통한 미생물의 기능을 파악함으로써 생태학적 문제에 관한 기초자료를 제공하고자 하였다. Proteobacteria는 분리 된 균주 중 88%를 차지한 우점문으로 ${\alpha}-proteobacteria$강은 6속 10종으로 Pseudorhodobacter속이 40%를 차지하고 Paracoccus속 20%, Rhizobium, Albirhodobacter, Skermanella 및 Novosphingobium 속은 각각 10%를 차지했다. ${\beta}-proteobactera$강은 5속 10종으로 Hydrogenophaga속이 50%, Azoarcus 20%, 나머지 Oxalicibacterium, Duganella, Xenophilus속은 각각 10%를 차지했다. ${\gamma}-proteobacteria$강은 13속 57종으로 Proteobacteria문에서 74%로 우점강을 차지했고, Shewanella는 23%, Pseudomonas속 12%, Cobetia 19%, Rahnella, Vibrio 및 Serratia속은 4%, 나머지 Rheinheimera, Raoultella, Pantoea, Acinetobacter, Moraxella 및 Psychrobacter속은 2%를 차지했다. Actinobacteria는 1속 2종으로 Gordonia와 Nocardioides속이 각각 50%를 나타냈다. Bacteroidetes문은 3속 5종으로 Lacihabitans, Mariniflexile속은 33%, 나머지 Dyadobacter, Cellulophaga와 Ferruginibacter속은 11%를 차지했다.

Effects of Long-Term Fertilizer Practices on Rhizosphere Soil Autotrophic CO2-Fixing Bacteria under Double Rice Ecosystem in Southern China

  • Tang, Haiming;Wen, Li;Shi, Lihong;Li, Chao;Cheng, Kaikai;Li, Weiyan;Xiao, Xiaoping
    • Journal of Microbiology and Biotechnology
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    • 제32권10호
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    • pp.1292-1298
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    • 2022
  • Soil autotrophic bacterial communities play a significant role in the soil carbon (C) cycle in paddy fields, but little is known about how rhizosphere soil microorganisms respond to different long-term (35 years) fertilization practices under double rice cropping ecosystems in southern China. Here, we investigated the variation characteristics of rhizosphere soil RubisCO gene cbbL in the double rice ecosystems of in southern China where such fertilization practices are used. For this experiment we set up the following fertilizer regime: without any fertilizer input as a control (CK), inorganic fertilizer (MF), straw returning (RF), and organic and inorganic fertilizer (OM). We found that abundances of cbbL, 16S rRNA genes and RubisCO activity in rhizosphere soil with OM, RF and MF treatments were significantly higher than that of CK treatment. The abundances of cbbL and 16S rRNA genes in rhizosphere soil with OM treatment were 5.46 and 3.64 times higher than that of CK treatment, respectively. Rhizosphere soil RubisCO activity with OM and RF treatments increased by 50.56 and 45.22%, compared to CK treatment. Shannon and Chao1 indices for rhizosphere soil cbbL libraries with RF and OM treatments increased by 44.28, 28.56, 29.60, and 23.13% compared to CK treatment. Rhizosphere soil cbbL sequences with MF, RF and OM treatments mainly belonged to Variovorax paradoxus, uncultured proteobacterium, Ralstonia pickettii, Thermononospora curvata, and Azoarcus sp.KH33C. Meanwhile, cbbL-carrying bacterial composition was obviously influenced by soil bulk density, rhizosphere soil dissolved organic C, soil organic C, and microbial biomass C contents. Fertilizer practices were the principal factor influencing rhizosphere soil cbbL-carrying bacterial communities. These results showed that rhizosphere soil autotrophic bacterial communities were significantly changed under conditions of different long-term fertilization practices Therefore, increasing rhizosphere soil autotrophic bacteria community with crop residue and organic manure practices was found to be beneficial for management of double rice ecosystems in southern China.