• 제목/요약/키워드: carotovorum

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Bis(2-ethylhexyl) phthalate가 in vitro에서 식물 토양병원성 세균 Pectobacterium carotovorum에 미치는 영향 (Effects of bis(2-ethylhexyl) phthalate(DEHP) on plant soil-borne pathogenic bacterium Pectobacterium carotovorum in vitro)

  • 김유리;김상태;상미경
    • 환경생물
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    • 제40권4호
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    • pp.398-404
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    • 2022
  • 본 연구는 플라스틱 가소제인 DEHP가 식물 병원균 중 하나인 P. carotovorum SCC1 균주에 미치는 영향을 조사하였다. DEHP가 균주 생장과 대사에 미치는 영향을 조사한 결과, 개체군 변화에 유의한 영향을 주지 않았으며, 세포막 투과성, ATPase 활성에 유의한 변화가 없었지만 TCA cycle 에서 DEHP 첨가에 따라 Succinyl-CoA synthase 활성이 유의적으로 감소하였다. 병원성 관련 유전자 발현량을 관찰한 결과 pectate lyase 유전자 발현량이 상대적으로 증가한 반면, pectinase 유전자는 상대적으로 발현량이 감소하였다. 따라서 DEHP는 P. carotovorum SCC1의 개체군 변화나 대사에는 유의미한 영향을 미치지 않지만 병원성 관련 유전자 발현에 영향을 미치므로 본 연구 결과는 향후 실제 식물 재배 조건에서 DEHP가 존재할 때 P. carotovorum의 특성에 관한 기초연구 자료로 활용할 수 있을 것이라 사료된다.

Genetic Diversity of Pectobacterium carotovorum subsp. brasiliensis Isolated in Korea

  • Lee, Dong Hwan;Kim, Jin-Beom;Lim, Jeong-A;Han, Sang-Wook;Heu, Sunggi
    • The Plant Pathology Journal
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    • 제30권2호
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    • pp.117-124
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    • 2014
  • The plant pathogenic bacterial genus Pectobacteirum consists of heterogeneous strains. The P. carotovorum species is a complex strain showing divergent characteristics, and a new subspecies named P. carotovorum subsp. brasiliensis has been identified recently. In this paper, we re-identified the P. carotovorum subsp. brasiliensis isolates from those classified under the subspecies carotovorum and newly isolated P. carotovorum subsp. brasiliensis strains. All isolates were able to produce plant cell-wall degrading enzymes such as pectate lyase, polygalacturonase, cellulase and protease. We used genetic and biochemical methods to examine the diversity of P. carotovorum subsp. brasiliensis isolates, and found genetic diversity within the brasiliensis subsp. isolates in Korea. The restriction fragment length polymorphism analysis based on the recA gene revealed a unique pattern for the brasiliensis subspecies. The Korean brasiliensis subsp. isolates were divided into four clades based on pulsed-field gel electrophoresis. However, correlations between clades and isolated hosts or year could not be found, suggesting that diverse brasiliensis subsp. isolates existed.

Pectobacterium carotovorum subsp. carotovorum LY34에서 Lsoamylase 유전자 클로닝 및 효소 활성의 필수 잔기 확인 (Cloning of Isoamylase Gene of Pectobacterium carotovorum subsp. carotovorum LY34 and Identification of Essential Residues of Enzyme)

  • 조계만;김은주;레누카라디아마스;샤모허마드아스라풀;홍선주;김종옥;신기재;이영한;김훈;윤한대
    • 생명과학회지
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    • 제17권9호통권89호
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    • pp.1182-1190
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    • 2007
  • 연부균인 Pectobacterium carotovorum subsp. carotovorum LY34로부터 이소아밀라제 유전자 (glgX)를 클로닝한 후 대장균 숙주에서 발현시켰다. 이 효소는 ${\alpha}-1$,6-글루코시드 결합을 가수분해하였으나 ${\alpha}-1$,4-글루코시드 결합은 가수분해 하지 못하였다. 유전자는 658개의 아미노산을 암호화하는 1,977개의 DNA 염기서열로 이루어져 있었고 이 유전자에 의해 암호화되는 아미노산 서열을 다른 아밀라제 효소들과 비교한 결과 이소아밀라제 유전자와 유사하였으며 4개의 보존 지역을 확인하였다. SDS-PAGE에 의해 확인된 단백질의 크기는 약 74 kDa 이었다. 효소 활성은 pH 7.0, $40^{\circ}C$에서 가장 높은 활성을 나타났으며 $Ca^{2+}$ 첨가로 활성이 증가되었다. 이 효소의 보존되어 있는 아미노산 중에 글루탐산 370번, 아스파르트산 335번 및 442번 잔기를 알라닌으로 치환시킨 결과 활성이 약해졌다. 이 결과로부터 이들 잔기들이 효소활성에 중요한 역할을 하는 것으로 추정된다.

키위 나무에서 분리한 Pectobacterium carotovorum subsp. actinidiae KKH3 균주의 유전체 분석 및 이를 통한 생물전환 소재로서의 가능성 연구 (The draft genome sequence of Pectobacterium carotovorum subsp. actinidiae KKH3 that infects kiwi plant and potential bioconversion applications)

  • 이동환;임정아;고영진;허성기;노은정
    • 미생물학회지
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    • 제53권4호
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    • pp.323-325
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    • 2017
  • Pectobacterium carotovorum subsp. actinidiae KKH3는 Enterobacteriaceae에 속하는 세균으로서, 키위 나무에 동고병과 같은 병을 일으키는 병원성 균주이다. 이 균주는 목본에서 분리되었으며 다양한 식물 세포벽 분해 효소를 가지고 있다. 따라서, 본 연구에서 제공하는 유전체 정보는 KKH3 균주의 병원성 기작을 이해하는 것뿐만 아니라 bioconversion 연구를 위한 토대로 활용될 수 있다.

Genome Wide Analysis of the Potato Soft Rot Pathogen Pectobacterium carotovorum Strain ICMP 5702 to Predict Novel Insights into Its Genetic Features

  • Mallick, Tista;Mishra, Rukmini;Mohanty, Sasmita;Joshi, Raj Kumar
    • The Plant Pathology Journal
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    • 제38권2호
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    • pp.102-114
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    • 2022
  • Pectobacterium carotovorum subsp. carotovorum (Pcc) is a gram-negative, broad host range bacterial pathogen which causes soft rot disease in potatoes as well as other vegetables worldwide. While Pectobacterium infection relies on the production of major cell wall degrading enzymes, other virulence factors and the mechanism of genetic adaptation of this pathogen is not yet clear. In the present study, we have performed an in-depth genome-wide characterization of Pcc strain ICMP5702 isolated from potato and compared it with other pathogenic bacteria from the Pectobacterium genus to identify key virulent determinants. The draft genome of Pcc ICMP5702 contains 4,774,457 bp with a G + C content of 51.90% and 4,520 open reading frames. Genome annotation revealed prominent genes encoding key virulence factors such as plant cell wall degrading enzymes, flagella-based motility, phage proteins, cell membrane structures, and secretion systems. Whereas, a majority of determinants were conserved among the Pectobacterium strains, few notable genes encoding AvrE-family type III secretion system effectors, pectate lyase and metalloprotease in addition to the CRISPR-Cas based adaptive immune system were uniquely represented. Overall, the information generated through this study will contribute to decipher the mechanism of infection and adaptive immunity in Pcc.

Virulence Attenuation of Pectobacterium carotovorum Using N-Acyl-homoserine Lactone Degrading Bacteria Isolated from Potato Rhizosphere

  • Mahmoudi, Esmaeil;Tabatabaei, Badraldin Ebrahim Sayed;Venturi, Vittorio
    • The Plant Pathology Journal
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    • 제27권3호
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    • pp.242-248
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    • 2011
  • Several soil bacteria were found to degrade N-Acylhomoserine lactones (NAHLs), thereby interfering with the bacterial quorum sensing system. In this research, fifteen strains of NAHL degrading rhizobacteria were isolated from potato rhizosphere. Based on phenotypic characteristics and 16S rDNA sequence analyses, the strains were identified as members of genera Bacillus, Streptomyces, Arthrobacter, Pseudomonas and Mesorhizobium. All tested isolates were capable to degrade both synthetic and natural NAHL produced by Pectobacterium carotovorum subsp. carotovorum (Pcc) strain EMPCC. In quorum quenching experiments selected isolates, especially Mesorhizobium sp., were markedly reduced the pathogenicity of Pcc strain EMPCC in potato tubers and totally suppressed tissue maceration on potato tubers. These led to consider the latter as a useful biocontrol agent against Pectobacterium spp.

Screening the Antibacterial Activities of Streptomyces Extracts against Phytopathogens Xanthomonas oryzae pathovar oryzae, Xanthomonas campestris pathovar vesicatoria, and Pectobacterium carotovorum pathovar carotovorum

  • Kim, Seung-Hwan;Cheng, Jinhua;Yang, Seung Hwan;Suh, Joo-Won;Song, Eun-Sung;Kang, Lin-Woo;Kim, Jeong-Gu
    • Journal of Applied Biological Chemistry
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    • 제58권3호
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    • pp.253-258
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    • 2015
  • Xanthomonas oryzae pv. oryzae (Xoo), X. campestris pv. vesicatoria (Xcv), and Pectobacterium carotovorum pv. carotovorum (Pcc) are the causative agents of bacterial blight in rice, bacterial spot in pepper, and bacterial soft rot in carrot and cabbage, respectively. To isolate novel microbial extracts with antimicrobial activities against these bacteria, approximately 5,300 different Streptomyces extracts were prepared and tested. Microbial cultures from various Streptomyces strains isolated from the Jeju Island, Baekam, Mankyoung river, Jiri mountain etc. in Korea were extracted into three different factions -secreted hydrophobic, secreted hydrophilic, and mycelia- using ethyl acetate, water, and methanol. Initially, 34, 29, and 10 extracts were selected as having antibacterial activities against Xoo, Xcv, and Pcc, respectively. Extracts 1169G4, 1172E9, and 1172E10 had the highest growth inhibition activities against both Xoo and Xcv, and extracts 1151H7 and 1152H7 showed the highest growth inhibition activities against Pcc.

곤충세포주에서 누에신 단백질의 발현 및 성상구명 (Characterization and Expression of Antibacterial Protein Gene, Nuecin)

  • 윤은영;구태원;황재삼;김상현;강석우;김근영;진병래
    • 한국잠사곤충학회지
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    • 제44권2호
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    • pp.64-68
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    • 2002
  • 본 연구는 곤충 유전자를 이용한 항세균성 펩타이드 생산 및 농업용 소재로서의 응용에 관한 연구로서 항세균성 단백질 누에신 유전자를 베큘로 바이러스 발현계(BEVS)를 이용하여 곤충세포주에서 발현한 후 누에신 단백질의 농업용 소재로서의 가능성을 모색하기 위해 농작물을 가해하는 감자 고추의 무름병을 일으키는 Pectobacterium carotovorum subsp. carotovorum, 가지 및 고추의 풋마름병을 일으키는 Ralstonia solanacearum, 양송이 버섯의 세균성 갈색 무늬 병을 일으키는 Pseudomonas tolaasii 및 무와 배추의 검은썩음병을 일으키는 Xanthomonas campestris pv. campestris 에 대해서 항세균 활성을 관찰하였다. 그 결과 Pectobacterium carotovorum subsp. carotovorum, Ralstonia solanacearum 및 Pseudomonas tolaasii에 대해 높은 활성을 나타내었으며 Xanthomonas campestris pv. campestris에는 활성을 나타내지 않았다. Ion exchange 및 gel filtration chromatography 를 수행하여 약 20 kDa의 성숙 누에신 단백질을 순수 분리하여 pH 및 온도에 대한 안정성을 조사한 결과, pH 2~12 완충액에서 30분간 처리하였을 때에도 항세균 활성이 그대로 유지되었고 10$0^{\circ}C$에서 2시간 처리시에는 활성이 안정되었으며 4시간 처리시에도 80% 정도로 유지됨을 확인함으로써 누에신 단백질은 pH 및 온도에 대한 안정성이 있음을 확인할 수 있었다.

Different Response Mechanisms of Rhizosphere Microbial Communities in Two Species of Amorphophallus to Pectobacterium carotovorum subsp. carotovorum Infection

  • Min Yang;Ying Qi;Jiani Liu;Penghua Gao;Feiyan Huang;Lei Yu;Hairu Chen
    • The Plant Pathology Journal
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    • 제39권2호
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    • pp.207-219
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    • 2023
  • Soft rot is a widespread, catastrophic disease caused by Pectobacterium carotovorum subsp. carotovorum (Pcc) that severely damages the production of Amorphophallus spp. This study evaluated the rhizosphere bacterial and fungal communities in Pcc-infected and uninfected plants of two species of Amorphophallus, A. muelleri and A. konjac. Principal component analysis showed that the samples formed different clusters according to the Pcc infection status, indicating that Pcc infection can cause a large number of changes in the bacterial and fungal communities in the Amorphophallus spp. rhizosphere soil. However, the response mechanisms of A. muelleri and A. konjac are different. There was little difference in the overall microbial species composition among the four treatments, but the relative abundances of core microbiome members were significantly different. The relative abundances of Actinobacteria, Chloroflexi, Acidobacteria, Firmicutes, Bacillus, and Lysobacter were lower in infected A. konjac plants than in healthy plants; in contrast, those of infected A. muelleri plants were higher than those in healthy plants. For fungi, the relative abundances of Ascomycota and Fusarium in the rhizosphere of infected A. konjac plants were significantly higher than those of healthy plants, but those of infected A. muelleri plants were lower than those of healthy plants. The relative abundance of beneficial Penicillium fungi was lower in infected A. konjac plants than in healthy plants, and that of infected A. muelleri plants was higher than that of healthy plants. These findings can provide theoretical references for further functional research and utilization of Amorphophallus spp. rhizosphere microbial communities in the future.