• 제목/요약/키워드: pathogen-related gene

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유통 수산물에서 분리한 Vibrio parahaemolyticus의 항생제 내성 및 전장 유전체 분석을 통한 유전적 특성 분석 (Whole-Genome Sequencing-based Antimicrobial Resistance and Genetic Profile Analysis of Vibrio parahaemolyticus Isolated from Seafood in Korea)

  • 송경규;조현우;김연아;장범순;이미루;박건택
    • 한국식품위생안전성학회지
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    • 제39권3호
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    • pp.231-238
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    • 2024
  • 국내에서 V. parahaemolyticus로 인한 식중독 사고가 지속적으로 보고되고 있으며, 최근 국내 수산물 판매량 및 수산물 양식에 사용되는 항생제 판매량은 증가하는 추세이다. 따라서 본 연구는 국내에 유통되는 수산물에서 분리한 V. parahaemolyticus의 분포, 항생제 감수성, 유전적 특성 및 유전학적 통계를 조사하였다. 79건의 유통 수산물로부터 47건(59.5%)에서 V. parahaemolyticus가 분리되었다. 항생제 내성 양상의 경우, 총 47균주의 분리 균주에서는 ampicillin에 2균주(4.3%)가 내성을 보였으며, 이외 균주는 모든 항생제에 대해 감수성을 보였다. 항생제 내성 유전자의 경우, 모든 균주(100%)로부터 blaCAR family gene, tet(35), catC가 확인되었으며, 1균주(2.1%)에서는 fos가 확인되었다. 병원성 유전자 여부의 경우, 모든 분리 균주에서 tdh, trh 유전자는 확인되지 않았으나, T3SS1은 모든 균주(100%), T3SS2는 1균주(2.1%)에서 확인되었다. MLST의 경우, 17균주로부터 15가지의 ST가 확인되었으며, ST 658가 3균주, 이외 14가지 ST는 1균주씩 확인되었다. 확인된 ST는 대부분 중국, 태국 등의 환경 분리주로 확인되었으며, ST 396, ST 3042는 중국 임상 분리주로부터 확인되었다. 이로써, 최근 국내에 수산물과 관련한 식중독, 유통량, 항생제 판매량 등의 추세에 따른 위험성에 V. parahaemolyticus에 대한 지속적인 연구가 필요할 것으로 사료되며, 본 연구는 그에 대한 도움이 될 것이라 사료된다.

RNA-seq Profiles of Immune Related Genes in the Spleen of Necrotic Enteritis-afflicted Chicken Lines

  • Truong, Anh Duc;Hong, Yeong Ho;Lillehoj, Hyun S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권10호
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    • pp.1496-1511
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    • 2015
  • The study aimed to compare the necrotic enteritis (NE)-induced transcriptome differences between the spleens of Marek's disease resistant chicken line 6.3 and susceptible line 7.2 co-infected with Eimeria maxima/Clostridium perfringens using RNA-Seq. Total RNA from the spleens of two chicken lines were used to make libraries, generating 42,736,296 and 42,617,720 usable reads, which were assembled into groups of 29,897 and 29,833 mRNA genes, respectively. The transcriptome changes were investigated using the differentially expressed genes (DEGs) package, which indicated 3,255, 2,468 and 2,234 DEGs of line 6.3, line 7.2, and comparison between two lines, respectively (fold change ${\geq}2$, p<0.01). The transcription levels of 14 genes identified were further examined using qRT-PCR. The results of qRT-PCR were consistent with the RNA-seq data. All of the DEGs were analysed using gene ontology terms, the Kyoto Encyclopedia of Genes and Genomes (KEGG) database and the DEGs in each term were found to be more highly expressed in line 6.3 than in line 7.2. RNA-seq analysis indicated 139 immune related genes, 44 CD molecular genes and 150 cytokines genes which were differentially expressed among chicken lines 6.3 and 7.2 (fold change ${\geq}2$, p<0.01). Novel mRNA analysis indicated 15,518 novel genes, for which the expression was shown to be higher in line 6.3 than in line 7.2 including some immune-related targets. These findings will help to understand host-pathogen interaction in the spleen and elucidate the mechanism of host genetic control of NE, and provide basis for future studies that can lead to the development of marker-based selection of highly disease-resistant chickens.

The Expression Patterns of AtBSMT1 and AtSAGT1 Encoding a Salicylic Acid (SA) Methyltransferase and a SA Glucosyltransferase, Respectively, in Arabidopsis Plants with Altered Defense Responses

  • Song, Jong Tae;Koo, Yeon Jong;Park, Jong-Beum;Seo, Yean Joo;Cho, Yeon-Jeong;Seo, Hak Soo;Choi, Yang Do
    • Molecules and Cells
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    • 제28권2호
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    • pp.105-109
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    • 2009
  • We reported previously that overexpression of a salicylic acid (SA) methyltransferase1 gene from rice (OsBSMT1) or a SA glucosyltransferase1 gene from Arabidopsis thaliana (AtSAGT1) leads to increased susceptibility to Pseudomonas syringae due to reduced SA levels. To further examine their roles in the defense responses, we assayed the transcript levels of AtBSMT1 or AtSAGT1 in plants with altered levels of SA and/or other defense components. These data showed that AtSAGT1 expression is regulated partially by SA, or nonexpressor of pathogenesis related protein1, whereas AtBSMT1 expression was induced in SA-deficient mutant plants. In addition, we produced the transgenic Arabidopsis plants with RNAi-mediated inhibition of AtSAGT1 and isolated a null mutant of AtBSMT1, and then analyzed their phenotypes. A T-DNA insertion mutation in the AtBSMT1 resulted in reduced methyl salicylate (MeSA) levels upon P. syringae infection. However, accumulation of SA and glucosyl SA was similar in both the atbsmt1 and wild-type plants, indicating the presence of another SA methyltransferase or an alternative pathway for MeSA production. The AtSAGT1-RNAi line exhibited no altered phenotypes upon pathogen infection, compared to wild-type plants, suggesting that (an)other SA glucosyltransferase(s) in Arabidopsis plants may be important for the pathogenesis of P. syringae.

A Rice Gene Homologous to Arabidopsis AGD2-LIKE DEFENSE1 Participates in Disease Resistance Response against Infection with Magnaporthe oryzae

  • Jung, Ga Young;Park, Ju Yeon;Choi, Hyo Ju;Yoo, Sung-Je;Park, Jung-Kwon;Jung, Ho Won
    • The Plant Pathology Journal
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    • 제32권4호
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    • pp.357-362
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    • 2016
  • ALD1 (ABERRANT GROWTH AND DEATH2 [AGD2]-LIKE DEFENSE1) is one of the key defense regulators in Arabidopsis thaliana and Nicotiana benthamiana. In these model plants, ALD1 is responsible for triggering basal defense response and systemic resistance against bacterial infection. As well ALD1 is involved in the production of pipecolic acid and an unidentified compound(s) for systemic resistance and priming syndrome, respectively. These previous studies proposed that ALD1 is a potential candidate for developing genetically modified (GM) plants that may be resistant to pathogen infection. Here we introduce a role of ALD1-LIKE gene of Oryza sativa, named as OsALD1, during plant immunity. OsALD1 mRNA was strongly transcribed in the infected leaves of rice plants by Magnaporthe oryzae, the rice blast fungus. OsALD1 proteins predominantly localized at the chloroplast in the plant cells. GM rice plants over-expressing OsALD1 were resistant to the fungal infection. The stable expression of OsALD1 also triggered strong mRNA expression of PATHOGENESIS-RELATED PROTEIN1 genes in the leaves of rice plants during infection. Taken together, we conclude that OsALD1 plays a role in disease resistance response of rice against the infection with rice blast fungus.

한국 여성의 Lactadherin 유전자 Cloning과 발현 연구 (Cloning and Expression of Lactadherin Gene from Korean Women)

  • 염행철
    • 한국발생생물학회지:발생과생식
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    • 제11권3호
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    • pp.253-261
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    • 2007
  • Lactadherin은 모유의 유지방구막의 당단백질의 하나로 mucin, butyrophilin과 결합된 복합체이다. 특히 모유중의 mucin과 lactadherin은 출생 직후 면역력이 약한 유아를 병균의 침입으로부터 효율적으로 방어하여 초기 유아의 생존과 성장 및 발달에 매우 중요한 역할을 수행한다. Lactadherin은 유아 설사의 원인이 되는 rotavirus의 번식과 성장을 억제한다. 아울러 이 단백질은 새로운 혈관의 형성을 촉진하는 주요한 단백질로 알려져 있으며, 이 단백질의 결핍이 치매의 발생과 관련되는 것으로 보고되고 있다. 본 연구는 이처럼 중요성이 강조되는 lactadherin에 대한 생화학적 및 생리학적인 연구를 하기 위한 기초연구를 진행하였다. 한국 여성의 유선조직에서 mRNA를 분리하였고, 1.2 kb lactadherin cDNA 유전자를 cloning하여 염기서열과 아미노산 배열을 결정하였다. 이 cDNA를 pET vector에 삽입하여 E. coli에서 43 kD 단백질을 발현시켰으며 Western blot으로 확인하였으며, 이 단백질을 정제하여 토끼에서 항체를 생산하여, 한국 여성의 모유에서 발현되는 70, 55, 46, 30 kD의 band를 확인하였다. 아울러 백인 여성의 lactadherin 유전자와 한국 여성의 정상 및 유방암 조직의 유전자 비교에서 다양한 SNP가 관찰되었고 변이의 다형성이 관찰되었다.

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Whole genome sequence analyses of thermotolerant Bacillus sp. isolates from food

  • Phornphan Sornchuer;Kritsakorn Saninjuk;Pholawat Tingpej
    • Genomics & Informatics
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    • 제21권3호
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    • pp.35.1-35.12
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    • 2023
  • The Bacillus cereus group, also known as B. cereus sensu lato (B. cereus s.l.), is composed of various Bacillus species, some of which can cause diarrheal or emetic food poisoning. Several emerging highly heat-resistant Bacillus species have been identified, these include B. thermoamylovorans, B. sporothermodurans, and B. cytotoxicus NVH 391-98. Herein, we performed whole genome analysis of two thermotolerant Bacillus sp. isolates, Bacillus sp. B48 and Bacillus sp. B140, from an omelet with acacia leaves and fried rice, respectively. Phylogenomic analysis suggested that Bacillus sp. B48 and Bacillus sp. B140 are closely related to B. cereus and B. thuringiensis, respectively. Whole genome alignment of Bacillus sp. B48, Bacillus sp. B140, mesophilic strain B. cereus ATCC14579, and thermophilic strain B. cytotoxicus NVH 391-98 using the Mauve program revealed the presence of numerous homologous regions including genes responsible for heat shock in the dnaK gene cluster. However, the presence of a DUF4253 domain-containing protein was observed only in the genome of B. cereus ATCC14579 while the intracellular protease PfpI family was present only in the chromosome of B. cytotoxicus NVH 391-98. In addition, prophage Clp protease-like proteins were found in the genomes of both Bacillus sp. B48 and Bacillus sp. B140 but not in the genome of B. cereus ATCC14579. The genomic profiles of Bacillus sp. isolates were identified by using whole genome analysis especially those relating to heat-responsive gene clusters. The findings presented in this study lay the foundations for subsequent studies to reveal further insights into the molecular mechanisms of Bacillus species in terms of heat resistance mechanisms.

The Calmodulin-Binding Transcription Factor OsCBT Suppresses Defense Responses to Pathogens in Rice

  • Koo, Sung Cheol;Choi, Man Soo;Chun, Hyun Jin;Shin, Dong Bum;Park, Bong Soo;Kim, Yul Ho;Park, Hyang-Mi;Seo, Hak Soo;Song, Jong Tae;Kang, Kyu Young;Yun, Dae-Jin;Chung, Woo Sik;Cho, Moo Je;Kim, Min Chul
    • Molecules and Cells
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    • 제27권5호
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    • pp.563-570
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    • 2009
  • We previously isolated the OsCBT gene, which encodes a calmodulin (CaM)-binding protein, from a rice expression library constructed from fungal elicitor-treated rice suspension cells. In order to understand the function of OsCBT in rice, we isolated and characterized a T-DNA insertion mutant allele named oscbt-1. The oscbt-1 mutant exhibits reduced levels of OsCBT transcripts and no significant morphological changes compared to wild-type plant although the growth of the mutant is stunted. However, oscbt-1 mutants showed significant resistance to two major rice pathogens. The growth of the rice blast fungus Magnaporthe grisea, as well as the bacterial pathogen Xanthomonas oryzae pv. oryzae was significantly suppressed in oscbt-1 plants. Histochemical analysis indicated that the hypersensitive-response was induced in the oscbt-1 mutant in response to compatible strains of fungal pathogens. OsCBT expression was induced upon challenge with fungal elicitor. We also observed significant increase in the level of pathogenesis-related genes in the oscbt-1 mutant even under pathogen-free condition. Taken together, the results support an idea that OsCBT might act as a negative regulator on plant defense.

애기장대 칼모듈린 결합 단백질 AtCBP63을 발현시킨 형질전환 감자의 무름병 저항성 증가 (AtCBP63, a Arabidopsis Calmodulin-binding Protein 63, Enhances Disease Resistance Against Soft Rot Disease in Potato)

  • 전현진;박형철;구영민;김태원;조광수;조현설;윤대진;정우식;이신우
    • Journal of Plant Biotechnology
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    • 제38권1호
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    • pp.62-68
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    • 2011
  • 원예작물의 생육을 저하시키는 각종 병충해로 인한 과도한 농약과 화학비료의 사용은 환경오염뿐만 아니라 작물의 생산량에도 큰 영향을 미치고 있다. 식물생명공학기술을 이용하여 농약이나 화학비료 사용량을 획기적으로 줄일 수 있는 식물체의 개발, 즉 형질전환을 이용한 분자 육종기술은 병충해 내성 농작물을 개발하여 과도한 화학비료의 사용에 따르는 여러가지 문제점들을 극복할 수 있는 대안으로 대두되고 있다. 본 연구에서는 모델식물인 애기장대에서 분리한 식물생체방어 신호전달에 관련된 AtCBP63 유전자를 감자에 과발현시켰고, 이러한 형질 전환 감자에서 병저항성에 관여하는 유전자인 PR-2, PR-3, PR-5 유전자들의 발현이 증가되어 지속적으로 식물 방어 기작이 활성화되어 있음을 확인하였다. 또한, 감자에서 무름병 (soft rot disease)을 일으켜 막대한 피해를 유발하는 병원성 세균인 Erwinia carotovora subsp. Carotovora (Ecc)를 이용하여 AtCBP63 유전자를 과발현한 감자에 감염시켰을 때, 병 저항성이 증가한다는 사실을 검증하였다. 앞으로, 다양한 곰팡이 균에 대응하여 AtCBP63 유전자를 과발현한 감자에 저항성을 검증하고자 한다.

Pathogen Associated Molecular Pattern (PAMP)-Triggered Immunity Is Compromised under C-Limited Growth

  • Park, Hyeong Cheol;Lee, Shinyoung;Park, Bokyung;Choi, Wonkyun;Kim, Chanmin;Lee, Sanghun;Chung, Woo Sik;Lee, Sang Yeol;Sabir, Jamal;Bressan, Ray A.;Bohnert, Hans J.;Mengiste, Tesfaye;Yun, Dae-Jin
    • Molecules and Cells
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    • 제38권1호
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    • pp.40-50
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    • 2015
  • In the interaction between plants and pathogens, carbon (C) resources provide energy and C skeletons to maintain, among many functions, the plant immune system. However, variations in C availability on pathogen associated molecular pattern (PAMP) triggered immunity (PTI) have not been systematically examined. Here, three types of starch mutants with enhanced susceptibility to Pseudomonas syringae pv. tomato DC3000 hrcC were examined for PTI. In a dark period-dependent manner, the mutants showed compromised induction of a PTI marker, and callose accumulation in response to the bacterial PAMP flagellin, flg22. In combination with weakened PTI responses in wild type by inhibition of the TCA cycle, the experiments determined the necessity of C-derived energy in establishing PTI. Global gene expression analyses identified flg22 responsive genes displaying C supply-dependent patterns. Nutrient recycling-related genes were regulated similarly by C-limitation and flg22, indicating re-arrangements of expression programs to redirect resources that establish or strengthen PTI. Ethylene and NAC transcription factors appear to play roles in these processes. Under C-limitation, PTI appears compromised based on suppression of genes required for continued biosynthetic capacity and defenses through flg22. Our results provide a foundation for the intuitive perception of the interplay between plant nutrition status and pathogen defense.

Interaction between the Rice Pathogens, Fusarium graminearum and Burkholderia glumae

  • Lee, Jungkwan;Jung, Boknam;Park, Jungwook;Kim, Sungyoung;Youn, Kihun;Seo, Young-Su
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2014년도 추계학술대회 및 정기총회
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    • pp.13-13
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    • 2014
  • Species belonging to the genus Fusarium are widely distributed and cause diseases in many plants. Isolation of fungal strains from air or cereals is necessary for disease forecasting, disease diagnosis, and population genetics [1]. Previously we showed that Fusarium species are resistant to toxoflavin produced by the bacterial rice pathogen Burkholderia glumae while other fungal genera are sensitive to the toxin, resulting in the development of a selective medium for Fusarium species using toxoflavin [2]. In this study, we have tried to elucidate the resistant mechanism of F. graminearum against toxoflavin and interaction between the two pathogens in nature. To test whether B. glumae affects the development of F. graminearum, the wild-type F. graminearum strains were incubated with either the bacterial strain or supernatant of the bacterial culture. Both conditions increased the conidial production five times more than when the fungus was incubated alone. While co-incubation resulted in dramatic increase of conidial production, conidia germination delayed by either the bacterial strain or supernatant. These results suggest that certain factors produced by B. glumae induce conidial production and delay conidial germination in F. graminearum. To identify genes related to toxoflavin resistance in F. graminearum, we screened the transcriptional factor mutant library previously generated in F. graminearum [3] and identified one mutant that is sensitive to toxoflavin. We analyzed transcriptomes of the wild-type strain and the mutant strain under either absence or presence of toxoflavin through RNAseq. Expression level of total genes of 13,820 was measured by reads per kilobase per million mapped reads (RPKM). Under the criteria with more than two-fold changes, 1,440 genes were upregulated and 1,267 genes were down-regulated in wild-type strain than mutant strain in response to toxoflavin treatment. A comparison of gene expression profiling between the wild type and mutant through gene ontology analysis showed that genes related to metabolic process and oxidation-reduction process were highly enriched in the mutant strain. The data analyses will focus on elucidating the resistance mechanism of F. graminearum against toxoflavin and the interaction between the two pathogens in rice. Further evolutionary history will be traced through figuring out the gene function in populations and in other filamentous fungi.

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