• Title/Summary/Keyword: MPK3

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NPR1 is Instrumental in Priming for the Enhanced flg22-induced MPK3 and MPK6 Activation

  • Yi, So Young;Min, Sung Ran;Kwon, Suk-Yoon
    • The Plant Pathology Journal
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    • v.31 no.2
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    • pp.192-194
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    • 2015
  • Pathogen-associated molecular patterns (PAMPs) activate mitogen-activated protein kinases (MAPKs), essential components of plant defense signaling. Salicylic acid (SA) is also central to plant resistance responses, but its specific role in regulation of MAPK activation is not completely defined. We have investigated the role of SA in PAMP-triggered MAPKs pathways in Arabidopsis SA-related mutants, specifically in the flg22-triggered activation of MPK3 and MPK6. cim6, sid2, and npr1 mutants exhibited wild-type-like flg22-triggered MAPKs activation, suggesting that impairment of SA signaling has no effect on the flg22-triggered MAPKs activation. Pretreatment with low concentrations of SA enhanced flg22-induced MPK3 and MPK6 activation in all seedlings except npr1, indicating that NPR1 is involved in SA-mediated priming that enhanced flg22-induced MAPKs activation.

Effect of Soil Microbial Fertilizers on Yield of Chinese Cabbage (Brassica campestris L.) (토양미생물제처리(土壤微生物劑處理)가 배추의 수량(收量)에 미치는 영향(影響))

  • Kim, Kyung-Je;Kim, Seog-Kyun
    • Horticultural Science & Technology
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    • v.16 no.3
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    • pp.341-343
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    • 1998
  • This study was carried out to investigate the effects of soil microbial fertilizers on yields of Chinese cabbage (Brassica campestris L.). Five microbial fertilizers, MPK+Husk+Palma, Husk+Palma, MPK+Compost, BLCS(Bio livestock cattle system) cattle dropping, and Tomi, were used. All of microbial fertilizers significantly increased yields of Chinese cabbage, except BLCS cattle dropping. MPK+Husk+Palma was the most effective than any other treatments. Chinese cabbage treated with Tomi showed higher concentrations of K, Ca, Mg, Fe, Mn, and Zn than Compost treatment. MPK+ Husk+Palma was high in concentrations of Mg and Mn. MPK+Compost was high in concentrations of K, Mg, and Na. In a chemical components of soil, concentrations of K and P was increased with Tomi treatment, however, the other concentrations of plant and soil chemical components were not different. In a microbial properties of soil, Tomi, Husk+Palma, and MPK+Husk+Palma treatments increased in the number of total bacteria and bacilli. Tomi treatment increased in the number of actinomycetes and fungi. The other microbial properties of soil showed no significant differences. It would be assumed that yield increase in Chinese cabbage might be due to the beneficial microbial properties, therefore, those would increase yields of Chinese cabbage.

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Preparation and Quality Characteristics of Kimchi Using Monascus purpureus Koji Paste (홍국 풀을 이용한 김치 제조 및 품질 특성)

  • 김현정;박정현;황보미향;이효주;이인선
    • Korean journal of food and cookery science
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    • v.19 no.6
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    • pp.701-707
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    • 2003
  • Kimchi was prepared with the addition of 2.5% and 5.0% Monascu purpureu koji(MPK) paste (20%) and were fermented at 20$^{\circ}C$ for 18 days. The quality and sensory characteristics of the kimchi were evaluated by analyzing the pH, acidity, number of viable cells, the concentration of reducing sugar, and sensory properties during fermentation. The pH and titratable acidity of the kimchiprepared with MPK(MPK kimchi) were higher and lower, respectively, than those of the control kimchi. The MPK kimchi showed high 'L' and 'b' values during storage, but the 'a' values were low. The contents of the reducing sugar of the MPK kimchi tended to increase during fermentation, particularly after six days. The number of total microbial cells, lactic acid bacteria and yeast in the MPK kimchi were lower than those of the control kimchi until 3 days of fermentation. However, the number of these bacteria in the MPK kimchi and the control kimchi after six days of fermentation was similar. The sensory score of the kimchi with 2.5% and 5.0% added MPK paste were significantly higher than the control groups in terms of the sweetness and overall acceptability.

Fabrication and Installation of the MPK-EPU Vacuum System

  • Hong, Man-Su;Gwon, Hyeok-Chae;Han, Hong-Sik;Kim, Chang-Gyun;Ha, Tae-Gyun;Kim, Jae-Yeong;Park, Jong-Do
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.148.1-148.1
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    • 2014
  • 포항가속기연구소는 Dipole Magnet, Wiggler, Undulator 등 다양한 광원에서 발생되는 강한 방사광을 여러 연구에 이용하고 있다. Max-Planck POSTECH 분원용 타원편광 Undulator (이하, MPK-EPU)는 carbon의 흡수선을 포함하는 250 eV에서 시작하여, 1,500 eV~3,000 eV 에너지 영역의 방사광을 발생시켜 자성물질을 비롯한 다양한 이방성 물질의 연구를 수행하는데 활용할 예정이다. 현재, MPK-EPU용 진공용기의 기계가공, 화학세척, 용접 및 최종 초고진공 진공 달성을 위한 탈기체처리, NEG 활성화 작업등을 마무리하고 PLS-II 저장링 6A 구간에 설치 완료하였다. 이 논문에서는 MPK-EPU용 진공시스템의 제작 및 설치작업에 대한 전반적인 사항과 진공작업 및 그 결과를 발표하고자 한다.

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MtMKK5 inhibits nitrogen-fixing nodule development by enhancing defense signaling

  • Hojin Ryu
    • Journal of Plant Biotechnology
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    • v.49 no.4
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    • pp.300-306
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    • 2022
  • The mitogen-activated protein kinase (MAPK) signaling cascade is essential for a wide range of cellular responses in plants, including defense responses, responses to abiotic stress, hormone signaling, and developmental processes. Recent investigations have shown that the stress, ethylene, and MAPK signaling pathways negatively affect the formation of nitrogen-fixing nodules by directly modulating the symbiotic signaling components. However, the molecular mechanisms underlying the defense responses mediated by MAPK signaling in the organogenesis of nitrogen-fixing nodules remain unclear. In the present study, I demonstrate that the Medicago truncatula mitogen-activated protein kinase kinase 5 (MtMKK5)-Medicago truncatula mitogen-activated protein kinase 3/6 (MtMPK3/6) signaling module, expressed specifically in the symbiotic nodules, promotes defense signaling, but not ethylene signaling pathways, thereby inhibiting nodule development in M. truncatula. U0126 treatment resulted in increased cell division in the nodule meristem zone due to the inhibition of MAPK signaling. The phosphorylated TEY motif in the activation domain of MtMPK3/6 was the target domain associated with specific interactions with MtMKK5. I have confirmed the physical interactions between M. truncatula nodule inception (MtNIN) and MtMPK3/6. In the presence of high expression levels of the defense-related genes FRK1 and WRKY29, MtMKK5a overexpression significantly enhanced the defense responses of Arabidopsis against Pseudomonas syringae pv. tomato DC3000 (Pst DC3000). Overall, my data show that the negative regulation of symbiotic nitrogen-fixing nodule organogenesis by defense signaling pathways is mediated by the MtMKK5-MtMPK3/6 module.

Genetic Screening for Plant Cell Death Suppressors and Their Functional Analysis in Plants

  • Yun, Dae-Jin
    • Proceedings of the Korean Society of Life Science Conference
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    • 2005.04a
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    • pp.23-36
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    • 2005
  • Bax, a mammalian pro-apoptotic member of the Bcl-2 family, induces cell death when expressed In yeast. To investigate whether .Bax expression can induce cell death in plant, we produced transgenic Arabidopsis plants that contained murine Bax cDNA under control of a glucocorticoid-inducible promoter. Transgenic plants treated with dexamethasone, a strong synthetic glucocorticoid, induced Bax accumulation and cell death, suggesting that some elements of cell death mechanism by Bax may be conserved among various orgarusms. Therefore, we developed novel yeast genetic system, and cloned several Plant Bax Inhibitors (PBIs). Here, we report the function of two PBIs In detail. PBIl is ascorbate peroxidase (sAPX). Fluorescence method of dihydrorhodamine123 oxidation revealed that expression of Bax in yeast cells generated reactive oxygen species (ROS), and which was greatly reduced by co-expression with sAPX. These results suggest that sAPX inhibits the generation of ROS by Bax, which in turn suppresses Bax-induced cell death in yeast. PBI2 encodes nucleoside diphosphate kinase (NDPK). ROS stress strongly induces the expression of the NDPK2 gene in Arabidopsis thaliana (AtNDPK2). Transgenic plants overexpressing AtNDPK2 have lower lovels of ROS than wildtype plants. Mutants lacking AtNDPK2 had higher levels of ROS than wildtype. H$_{2O2}$ treatment induced the phosphorylation of two endogenous proteins whose molecular weights suggested they are AtMPK3 and AtMPK6. In the absence of H2O2 treatment, phosphorylation of these proteins was slightly elevated in plants overexpressing AtNDPK2 but markedly decreased In the AtNDPK2 deletion mutant. Yeast two-hybrid and in vitro protein pull-down assays revealed that AtNDPK2 specifically interacts with AtMPK3 and AtMPK6. Furthermore, AtNDPK2 also enhances the MBP phosphorylation activity of AtMPK3 i'n vitro. Finally, constitutive overexpression of AtNDPK2 in Arabidopsis plants conferred an enhanced tolerance to multiple environmental stresses that elicit ROS accumulation In situ. Thus, AtNDPK2 appears to play a novel regulatory role in H2O2-mediated MAPK signaling in plants.

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Effect of Microbial Fertilizers on Yield of Young Radish(Raphanus sativus L.)

  • 김경제;김수정
    • Korean Journal of Organic Agriculture
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    • v.9 no.3
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    • pp.103-117
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    • 2001
  • This study was inducted to investigate the effects of microbial fertilizers on the fields of young radish(Raphanus sativus L.), chemical components of plant and soil, and the microbial floras. Six microbial fertilizers, MPK+Husk+Palma, Husk+Palma, MPK+Compost, Compost, BIO Livestock Clean System(BLCS) cattle dropping, and Tomi were used. The yields of young radish were increased in six microbial fertilizer treatments. The fresh matter weight, the number of leaves, and the dry matter weight of young radish in BLCS cattle dropping treatment, the leaf length in MPK+Husk+Palma treatment, the sugar content in Husk+Palma treatment, arid the leaf width in Tomi treatment showed the highest amount, respectively. The effects of microbial fertilizers on chemical characteristics of young radish and soil were examined. Phosphoric acid amount of young radish in Tomi treatment was much higher than other treatments. Potassium amount of young radish showed high significance in all microbial fertilizer treatments compared with control, and shoved the highest in Compost treatment . Two components, phosphoric acid find potassium, in soil inoculated by microbial fertilizers showed significant. Phosphoric acid in the Tomi treatment and Potassium in Husk+Palma treatment were increased. The microorganic populations in soil inoculated with microbial fertilizers were examined. While the number of Bacillus in ceil was increased in MPK+Husk+Palma treatment, the numbers of total bacteria, actinomycetes, and fungi were increased in Tomi treatment.

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Antibacterial and Anticancer Effects of Kimchi Extracts Prepared with Monascus purpureus Koji Paste (홍국첨가 김치추출물의 항균활성 및 암세포 증식억제 활성)

  • Kim, Hyun-Jeong;HwangBo, Mi-Hyang;Lee, Hyo-Joo;Yu, Tae-Shick;Lee, In-Seon
    • Korean Journal of Food Science and Technology
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    • v.37 no.4
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    • pp.618-623
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    • 2005
  • Kimchi was prepared with 2.5% and 5% Monascus purpureus Koji(MPK) paste(20%), fermented at $10^{\circ}C$ for 15 days, and sampled at 3-day intervals during storage. Samples were extracted using 80% ethanol. Ethanol extracts of kimchi prepared with MPK paste (MPK kimchi extracts) and control kimchi extracts at 1mg/mL showed 40% decrease in proliferation of cancer cells, such as AGS, KATOIII, HepG2, and Hela. MPK kimchi extracts showed highest cytotoxic effect against cancer cells compared with control at 2mg/mL. Antibacterial effect of MPK kimchi extracts decreased during fermentation, and was higher than that of control kimchi extracts during fermentation, particularly after six days. The 5% MPK kimchi extracts showed higher antibacterial activity against Escherichia coli O157:H7 and Vibrio parahaemolyticus than other groups. Results indicate kimchi added with M. purpureus Koji paste has stronger antibacterial and anticancer effects in vitro than control kimchi.

MAP Kinase-Mediated Negative Regulation of Symbiotic Nodule Formation in Medicago truncatula

  • Ryu, Hojin;Laffont, Carole;Frugier, Florian;Hwang, Ildoo
    • Molecules and Cells
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    • v.40 no.1
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    • pp.17-23
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    • 2017
  • Mitogen-activated protein kinase (MAPK) signaling cascades play critical roles in various cellular events in plants, including stress responses, innate immunity, hormone signaling, and cell specificity. MAPK-mediated stress signaling is also known to negatively regulate nitrogen-fixing symbiotic interactions, but the molecular mechanism of the MAPK signaling cascades underlying the symbiotic nodule development remains largely unknown. We show that the MtMKK5-MtMPK3/6 signaling module negatively regulates the early symbiotic nodule formation, probably upstream of ERN1 (ERF Required for Nodulation 1) and NSP1 (Nod factor Signaling Pathway 1) in Medicago truncatula. The overexpression of MtMKK5 stimulated stress and defense signaling pathways but also reduced nodule formation in M. truncatula roots. Conversely, a MAPK specific inhibitor, U0126, enhanced nodule formation and the expression of an early nodulation marker gene, MtNIN. We found that MtMKK5 directly activates MtMPK3/6 by phosphorylating the TEY motif within the activation loop and that the MtMPK3/6 proteins physically interact with the early nodulation-related transcription factors ERN1 and NSP1. These data suggest that the stress signaling-mediated MtMKK5/MtMPK3/6 module suppresses symbiotic nodule development via the action of early nodulation transcription factors.

Functional Screening for Cell Death Suppressors and Development of Multiple Stress-Tolerant Plants

  • Moon Hae-Jeong;Baek Dong-Won;Lee Ji-Young;Nam Jae-Sung;Yun Dae-Jin
    • Journal of Plant Biotechnology
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    • v.5 no.3
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    • pp.143-148
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    • 2003
  • Bax, a mammalian pro-apoptotic member of the Bcl-2 family induces cell death when expressed in yeast. To investigate whether Bax expression can induce cell death in plant, we produced transgenic Arabidopsis plants that contained murine Bax cDNA under control of a glucocorticoid-inducible promoter. Transgenic plants treated with dexamethasone, a strong synthetic glucocorticoid, induced Bax accumulation and cell death, suggesting that some elements of cell death mechanism by Bax may be conserved among various organisms. Therefore, we developed novel yeast genetic system, and cloned several Plant Bax Inhibitors (PBIs). Here, we report the function of two PBIs in detail. PBI1 is ascorbate peroxidase (sAPX). Fluorescence method of dihydrorhodamine123 oxidation revealed that expression of Bax in yeast cells generated reactive oxygen species (ROS), and which was greatly reduced by co-expression with sAPX. These results suggest that sAPX inhibits the generation of ROS by Bax, which in turn suppresses Baxinduced cell death in yeast. PBI2 encodes nucleoside diphosphate kinase (NDPK). ROS stress strongly induces the expression of the NDPK2 gene in Arabidopsis thaliana (AtNDPK2). Transgenic plants overexpressing AtNDPK2 have lower levels of ROS than wildtype plants. Mutants lacking AtNDPK2 had higher levels of ROS than wildtype. $H_2O_2$ treatment induced the phosphorylation of two endogenous proteins whose molecular weights suggested they are AtMPK3 and AtMPK6. In the absence of $H_2O_2$ treatment, phosphorylation of these proteins was slightly elevated in plants overexpressing AtNDPK2 but markedly decreased in the AtNDPK2 deletion mutant. Yeast two-hybrid and in vitro protein pull-down assays revealed that AtNDPK2 specifically interacts with AtMPK3 and AtMPK6. Furthermore, AtNDPK2 also enhances the MSP phosphorylation activity of AtMPK3 in vitro. Finally, constitutive overexpression of AtNDPK2 in Arabidopsis plants conferred an enhanced tolerance to multiple environmental stresses that elicit ROS accumulation in situ. Thus, AtNDPK2 appears to playa novel regulatory role in $H_2O_2$-mediated MAPK signaling in plants.