• Title/Summary/Keyword: protein elicitor activity

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A Novel Protein Elicitor PeBL2, from Brevibacillus laterosporus A60, Induces Systemic Resistance against Botrytis cinerea in Tobacco Plant

  • Jatoi, Ghulam Hussain;Lihua, Guo;Xiufen, Yang;Gadhi, Muswar Ali;Keerio, Azhar Uddin;Abdulle, Yusuf Ali;Qiu, Dewen
    • The Plant Pathology Journal
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    • v.35 no.3
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    • pp.208-218
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    • 2019
  • Here, we reported a novel secreted protein elicitor PeBL2 from Brevibacillus laterosporus A60, which can induce hypersensitive response in tobacco (Nicotiana benthamiana). The ion-exchange chromatography, high-performance liquid chromatography (HPLC) and mass spectrometry were performed for identification of protein elicitor. The 471 bp PeBL2 gene produces a 17.22 kDa protein with 156 amino acids containing an 84-residue signal peptide. Consistent with endogenous protein, the recombinant protein expressed in Escherichia coli induced the typical hypersensitive response (HR) and necrosis in tobacco leaves. Additionally, PeBL2 also triggered early defensive response of generation of reactive oxygen species ($H_2O_2$ and $O_2{^-}$) and systemic resistance against of B. cinerea. Our findings shed new light on a novel strategy for biocontrol using B. laterosporus A60.

Profiling of Metabolites and Proteins from Eschscholtzia californica induced by Yeast Extract (Yeast Extract로 처리된 Eschscholtzia californica의 Metabolite와 Protein의 변화)

  • Cho Hwa-Young;Park Jeong-Jin;Yoon Sung-Yong;Part Jong Moon
    • KSBB Journal
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    • v.20 no.4
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    • pp.285-290
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    • 2005
  • Benzophenanthridine alkaloids - sanguinarine, chelirubine, macarpine, and chelerythrine are produced from Eschscholtzia californica (Californica Poppy, used as a sedative by Native Americans) and most of them are derived from dihydrosanguinarine. The properties of sanguinarine are the basis of its antimicrobial activity and its use in chemosurgery and skin cancer excision. For overproduction of sanguinarine from E. californica, yeast extract was used as elicitor and the elicited cell's metabolites were checked. Sanguinarine production was increased intracelluarly about 8 times in the cell and 5 times extracelluarly. We have peformed proteomic analysis of proteins sequentially extracted from E. califormica suspended cells which were cultured with elicitor, an increase of spot intensity was seen at 24 hours following elicitation. These proteins were separated by two-dimensional electrophoresis (2-DE). We found several spots that were expected to be related to benzophenanthridine alkaloids production by comparing the production profiles of metabolites such as sanguinarine. These results demonstrate the use of metabolite analysis as a tool for detecting target proteins related to metabolites production pathway.

Purification of Phospholipase $A_2$ from Scutellaria baicalensis Suspension Cells (황금 배양 세포로부터 Phospholipase $A_2$의 분리)

  • Ma, Choong-Je;Kim, Dae-Kyung
    • Korean Journal of Pharmacognosy
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    • v.40 no.1
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    • pp.13-17
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    • 2009
  • It was previously reported that yeast elicitor transiently increased oleanolic acid and ursolic acid in Scutellaria baicalensis suspension cultures and also doubled phospholipase $A_2$ ($PLA_2$) activity. Thus, $PLA_2$ was purified from the soluble fractions of S. baicalensis suspension cultures and the characters of the purified $PLA_2$ were identified. The $PLA_2$ was purified about 160 times compared with the starting soluble-protein extract from S. baicalensis suspension culture cells. The purified protein showed a molecular mass of about 43 kDa by SDS-PAGE. The purified plant $PLA_2$ had a neutral pH optimum (pH 7.0) and required $Ca^{2+}$ for activity. The $PLA_2$ activity was inhibited by mammalian $PLA_2$ inhibitors such as 5,8,11,14-eicosatetraynoic acid(ETYA) and arachidonyl trifluoromethyl ketone ($AACOCF_3$).

Role of ${\alpha}$-tocopherol in cellular signaling: ${\alpha}$-tocopherol inhibits stress-induced mitogen-activated protein kinase activation

  • Hyun, Tae-Kyung;Kumar, Kundan;Rao, Kudupudi Prabhakara;Sinha, Alok Krishna;Roitsch, Thomas
    • Plant Biotechnology Reports
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    • v.5 no.1
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    • pp.19-25
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    • 2011
  • Tocopherols belong to the plant-derived poly phenolic compounds known for antioxidant functions in plants and animals. Activation of mitogen-activated protein kinases (MAPK) is a common reaction of plant cells in defense-related signal transduction pathways. We report a novel non-antioxidant function of ${\alpha}$-tocopherol in higher plants linking the physiological role of tocopherol with stress signalling pathways. Pre-incubation of a low concentration of $50{\mu}M$ ${\alpha}$-tocopherol negatively interferes with MAPK activation in elicitor-treated tobacco BY2 suspension culture cells and wounded tobacco leaves, whereas pre-incubated BY2 cells with ${\alpha}$-tocopherol phosphate did not show the inhibitory effect on stimuli-induced MAPK activation. The decreased MAPK activity was neither due to a direct inhibitory effect of ${\alpha}$-tocopherol nor due to the induction of an inhibitory or inactivating activity directly affecting MAPK activity. The data support that the target of ${\alpha}$-tocopherol negatively regulates an upstream component of the signaling pathways that leads to stress dependent MAPK activation.

Induction of chitinase in rice cell suspension culture treated with chitooligosaccharides mixture (벼 세포 현탁배양중 chitooligosaccharides 처리에 의해 유도되는 chitinase)

  • Park, Hee-Young;Kim, Su-Il
    • Applied Biological Chemistry
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    • v.36 no.1
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    • pp.1-6
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    • 1993
  • Chitinase was induced in rice cell suspension culture with treatment of chitooligosaccharides mixture. Among eleven isozymes found in 10% polysacrylamide gel electropherogram, four isozymes were identified as induced enzymes. Acidic chitinase fraction separated in DEAE-cellulose column chromatography, includes three induced chitinase, while basic fraction contains only one induced isozyme. Treatment of chitooligosaccharides mixture enhanced the contents in both protein and chitinase activity in cell suspension culture media, but increase in chitinase activity was much higher than in protein.

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The coat protein of Turnip crinkle virus is required a full-length to maintain suppressing activity to RNA silencing but no relation with eliciting resistance by N-terminal region in Arabidopsis.

  • Park, Chang-Won;Feng Qu;Tao Ren;T. Jack Morris
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 2003.10a
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    • pp.76.1-76
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    • 2003
  • The coat protein (CP) of Turnip crinkle virus (TCV) is organized into 3 distinct domains, R domain (RNA-binding) connected by an arm, 5 domain and P domain. We have previously shown that the CP of TCV strongly suppresses RNA silencing, and have mapped N-terminal R domain of which is also the elicitor of resistance response in the Arabidopsis ecotype Di-17 carrying the HRT resistance gene. In order to map the region in the TCV CP that is responsible for silencing suppression, a series of CP mutants were constructed, transformed into Agrobacterium, coinfiltrated either with HC-Pro (the helper component proteinase of tobacco etch potyvirus) known as a suppressor of PTGS or GFP constructs into leaves of Nicotiana benthmiana expressing GFP transgenically. In the presence of HC-Pro, all CP mutants were well protected, accumulating mutant CP mRNAs and their proteins even 5 days post-infiltration (DPI). In the presence of GFP, some mutant constructs which showed the accumulation of CP mutants and GFP mRNAs at early stage but eventually degraded at 5 DPI. Only a mutant which carrying 4 amino acid deletion of R domain was tolerable to maintain suppressing activity, suggesting that the suppressing activity is not directly related with the eliciting activity. A transient assay also revealed that the mutants synthesized their proteins, suggesting that a full length of CP sequences and its intact structure are required to stabilize CP, which suppresses the RNA silencing.

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Molecular Cloning and Characterization of Wound-inducible Beta-amyrin Synthase from Soybean (콩으로부터 상처 유도 beta-amyrin synthase 유전자의 동정 및 발현분석)

  • Park, Seong-Whan;Lee, Jai-Heon
    • Journal of Plant Biotechnology
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    • v.29 no.2
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    • pp.79-84
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    • 2002
  • Suppression subtractive hybridization (SSH) was used to isolate wound-induced cDNAs from wounded soybean. One of wound-induced cDNA, gmwi33 showed high homology with genes encoding $\beta$-amyrin synthase. The full length cDNA of gmwi33, designated GmAMS1, is 2416 bp long and contains an open reading frame consisted of 739 amino acids. GmAMS1 protein showed 89% identity with licorice GgbAS1 and 86% identity with pea OSCPSY. In 5 day-old, dark-grown seedlings, the expression of GmAMS1 was most strongly induced by light and weakly induced by methyl jasmonate and by low temperature. However, GmAMS1 was not induced by elicitor or UV-B treatment. Such expression pattern might be closely related with the oxygen-radical scavenging activity of soyasaponin.

The Arabidopsis AtLEC Gene Encoding a Lectin-like Protein Is Up-Regulated by Multiple Stimuli Including Developmental Signal, Wounding, Jasmonate, Ethylene, and Chitin Elicitor

  • Lyou, Seoung Hyun;Park, Hyon Jin;Jung, Choonkyun;Sohn, Hwang Bae;Lee, Garam;Kim, Chung Ho;Kim, Minkyun;Choi, Yang Do;Cheong, Jong-Joo
    • Molecules and Cells
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    • v.27 no.1
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    • pp.75-81
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    • 2009
  • The Arabidopsis gene AtLEC (At3g15356) gene encodes a putative 30-kDa protein with a legume lectin-like domain. Likely to classic legume lectin family of genes, AtLEC is expressed in rosette leaves, primary inflorescences, and roots, as observed in Northern blot analysis. The accumulation of AtLEC transcript is induced very rapidly, within 30 min, by chitin, a fungal wall-derived oligosaccharide elictor of the plant defense response. Transgenic Arabidopsis carrying an AtLEC promoter-driven ${\beta}$-glucuronidase (GUS) construct exhibited GUS activity in the leaf veins, secondary inflorescences, carpel heads, and silique receptacles, in which no expression could be seen in Northern blot analysis. This observation suggests that AtLEC expression is induced transiently and locally during developmental processes in the absence of an external signal such as chitin. In addition, mechanically wounded sites showed strong GUS activity, indicating that the AtLEC promoter responds to jasmonate. Indeed, methyl jasmonate and ethylene exposure induced AtLEC expression within 3-6 h. Thus, the gene appears to play a role in the jasmonate-/ethylene-responsive, in addition to the chitin-elicited, defense responses. However, chitin-induced AtLEC expression was also observed in jasmonate-insensitive (coi1) and ethylene-insensitive (etr1-1) Arabidopsis mutants. Thus, it appears that chitin promotes AtLEC expression via a jasmonate- and/or ethylene-independent pathway.

Antioxidant Enzyme Responses against Abiotic and Biotic Stresses in Rehmannia glutinosa L. and Glycine max L.

  • Moon, Yu-Ran;Lim, Jeong-Hyun;Park, Myoung-Ryoul;Yu, Chang-Yeon;Chung, Ill-Min;Yang, Deok-Chun;Yun, Song-Joong
    • Korean Journal of Medicinal Crop Science
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    • v.12 no.5
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    • pp.360-365
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    • 2004
  • Rehmannia glutinosa shows a high level of resistance to the non-selective herbicide paraquat. To characterize the antioxidant enzyme system of R. glutinosa, we comparatively examined the responses of antioxidant enzymes to UV, wounding and a general elicitor yeast extract in R. glutinosa and soybean. The levels of enzyme activities of the two plant species were drastically different between those per fresh weight (general activity) and per protein (specific activity) bases. The general activities of superoxide dismutase (SOD), peroxidase (POX), catalase (CAT), and glutathione reductase (GR) were lower, but that of ascorbate peroxidase (APX) was higher in R. glutinosa than in soybean. The specific activities of the enzymes, however, were about two- to seven-fold higher in R. glutinosa than in soybean, except that of CAT, which was about 12-fold higher in soybean. The general and specific enzyme activities of R. glutinosa relative to those of soybean showed a consistent increase in responses to the stresses only in SOD. The specific activities of SOD and APX were higher in R. glutinosa in all stress treatments. The results might suggest a relatively higher contribution of SOD and APX to the stress tolerance.

The Danger-Associated Peptide PEP1 Directs Cellular Reprogramming in the Arabidopsis Root Vascular System

  • Dhar, Souvik;Kim, Hyoujin;Segonzac, Cecile;Lee, Ji-Young
    • Molecules and Cells
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    • v.44 no.11
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    • pp.830-842
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    • 2021
  • When perceiving microbe-associated molecular patterns (MAMPs) or plant-derived damage-associated molecular patterns (DAMPs), plants alter their root growth and development by displaying a reduction in the root length and the formation of root hairs and lateral roots. The exogenous application of a MAMP peptide, flg22, was shown to affect root growth by suppressing meristem activity. In addition to MAMPs, the DAMP peptide PEP1 suppresses root growth while also promoting root hair formation. However, the question of whether and how these elicitor peptides affect the development of the vascular system in the root has not been explored. The cellular receptors of PEP1, PEPR1 and PEPR2 are highly expressed in the root vascular system, while the receptors of flg22 (FLS2) and elf18 (EFR) are not. Consistent with the expression patterns of PEP1 receptors, we found that exogenously applied PEP1 has a strong impact on the division of stele cells, leading to a reduction of these cells. We also observed the alteration in the number and organization of cells that differentiate into xylem vessels. These PEP1-mediated developmental changes appear to be linked to the blockage of symplastic connections triggered by PEP1. PEP1 dramatically disrupts the symplastic movement of free green fluorescence protein (GFP) from phloem sieve elements to neighboring cells in the root meristem, leading to the deposition of a high level of callose between cells. Taken together, our first survey of PEP1-mediated vascular tissue development provides new insights into the PEP1 function as a regulator of cellular reprogramming in the Arabidopsis root vascular system.