• Title/Summary/Keyword: Plant cell wall

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The Biology of Phenolic Containing Vesicles

  • Schoenwaelder, Monica E.A.
    • ALGAE
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    • 제23권3호
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    • pp.163-175
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    • 2008
  • Phenolic compounds play a major role in the interaction of plants with their environment. They are thought to have been a feature of higher plants since early colonization of the land. Phenolics are crucial for many important aspects of plant life. They can play structural roles in different supporting or protective tissues, for example in cell walls, they can be involved in defence strategies, and signalling properties particularly in the interactions between plants and their environment. In brown algae, phenolic compounds are contained within membrane bound vesicles known as physodes, and their roles in algae are thought to be similar to those of higher plant phenolics. They can be stained using various histochemical stains, however, none of these stains are phenolic specific so care must be taken during interpretation of such results. Many, but not all phenolics are also autofluorescent under UV or violet light. Physodes are involved in cell wall construction, both in primary and secondary walls in brown algae. They bind together with other wall components to make a tough wall. They have also been found to play a role at fertilization, in blocking polyspermy in some species. Sperm are very quickly rendered immobile after phenolic release from newly fertilized zygotes seconds after fertilization. Phenolic compounds are thought to be important herbivore deterrents in some species due to their astringent nature. Phenolic compounds also offer effective UV protection in the early life stages and also the adults of many algal species. In the future, this factor may also make them an important player in the pharmaceutical and skincare industries.

The Cell Wall Integrity MAP Kinase Signaling Pathway Is Required for Development, Pathogenicity, and Stress Adaption of the Pepper Anthracnose Fungus Colletotrichum scovillei

  • Teng Fu;Sung Wook Kang;Yong-Won Song;Kyoung Su Kim
    • Mycobiology
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    • 제51권3호
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    • pp.178-185
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    • 2023
  • The cell wall integrity (CWI) signaling pathway plays important roles in the dissemination and infection of several plant pathogenic fungi. However, its roles in the pepper fruit anthracnose fungus Colletotrichum scovillei remain uninvestigated. In this study, the major components of the CWI signaling pathway-CsMCK1 (MAPKKK), CsMKK1 (MAPKK), and CsMPS1 (MAPK)-were functionally characterized in C. scovillei via homology-dependent gene replacement. The ΔCsmck1, DCsmkk1, and ΔCsmps1 mutants showed impairments in fungal growth, conidiation, and tolerance to CWI and salt stresses. Moreover, ΔCsmck1, ΔCsmkk1, and ΔCsmps1 failed to develop anthracnose disease on pepper fruits due to defects in appressorium formation and invasive hyphae growth. These results suggest that CsMCK1, CsMKK1, and CsMPS1 play important roles in mycelial growth, conidiation, appressorium formation, plant infection, and stress adaption of C. scovillei. These findings will contribute to a better understanding of the roles of the CWI signaling pathway in the development of pepper fruit anthracnose disease.

개보리뺑이속과 서양개보리뺑이속(국화과; 상치족)의 과피벽 구조 비교 연구 (Comparative study of fruit wall structure in Lapsana L. and Lapsanastrum J. H. Pak & K. Bremer (Asteraceae; Lactuceae))

  • 박재홍;최경
    • 식물분류학회지
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    • 제38권4호
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    • pp.359-369
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    • 2008
  • 국화과 상치족에 속하는 서양개보리뺑이(Lapsana communis) 내의 6아종과 개보리뺑이속 (Lapsanastrum) 4종에 대해 과피의 해부학적 구조를 조사하였다. 그 결과, 개보리뺑이속은 서양개보리뺑이와 외과피의 털의 유무, costa의 모양, 종피의 비후 등 몇 가지 형질에서 차이가 나타났다. 게다가 서양개보리뺑이속은 costae와 intercostae에 sclerenchymatous cell이 없는 반면에 개보리뺑이속은 sclerenchymatous cell로 이루어져 있다. 과실벽 구조에서의 차이는 명백하게 개보리뺑이속이 광의의 서양개보리뺑이속에서 분리됨을 지지한다.

Studies on Anti-inflammatory Activities of Extracts from Manglietia insignis and Tirpitzia sinensis

  • Oh, Hyun-Jee;Lee, Sang-Soo;Kim, June-Hyun
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2019년도 추계학술대회
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    • pp.79-79
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    • 2019
  • The aim of the study was to determine the antioxidant activities of the plants with origin of Vietnam. The Manglietia insignis (Wall.) Blume, which is a species of plant in the family Magnoliaceae and Tirpitzia sinensis (Hemsl.) Hallier f., which is a species of plant in the family Linaceae were tested for antioxidant activities. Samples were prepared using 95% ethanol using Nitric Oxide (NO) assay for assessing the anti-inflammatory activity. NO assay experiment showed that extracts of the Manglietia insignis (Wall.) Blume and Tirpitzia sinensis (Hemsl.) Hallier f. might have the 36.2% more anti-inflammatory activity and 59.5% more anti-inflammatory activity, respectively, compared to control. To determine the cell toxicity, MTT (3-(4,5-dimethylthiazol-2-yl) -2,5-diphenyltetrazolium bromide) assay was used. MTT assay experiment showed that the Manglietia insignis (Wall.) Blume and Tirpitzia sinensis (Hemsl.) Hallier f. might have the 31.0% less toxicity and 8.52% more toxicity, respectively, compared control. Taken together, these experiments showed that Manglietia insignis (Wall.) Blume extracts might have significantly higher anti-inflammatory activities and relatively lower toxicity, compared to control.

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Differential Subcellular Responses in Resistance Soybeans Infected with Soybean Cyst Nematode Races

  • Kim, Young-Ho;Kim, Kyung-Soo;Riggs, Robert D.
    • The Plant Pathology Journal
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    • 제26권2호
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    • pp.154-158
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    • 2010
  • Early nematode development and subcellular responses in resistant soybean lines PI 88788 and PI 437654 infected with races 3 (R3) and 14 (R14) of soybean cyst nematode (SCN), Heterodera glycines Ichinohe, were compared. SCN R14 nematodes penetrated and developed significantly more than R3 at 5-6 days after inoculation. Both races also penetrated and developed more in PI 88788 than in PI 437654. Syncytia, characterized by cell wall dissolution and cellular hypertrophy, were developed more in PI 88788 than in PI 437654 and more by R14 than R3, for which less necrotic responses occurred in the former than the latter. This suggests that the latter two may be more resistant and less virulent than the former two, respectively. A common structural feature found in each of PI 437654 and PI 88788 in relation to SCN-resistance was the formation of prominent cell wall appositions and nuclear degeneration prior to cytoplasmic degradation in syncytial cells, respectively. Necrosis and cell wall apposition are types of hypersensitive responses occurring at early stages of the nematode infection so that these structural modifications indicate the inhibition of initial syncytial development related to the early nematode development. As soybean cultivars and lines with identical or similar genotypes have the same types of structural features related to SCN-resistance, the structural modifications induced by SCN infection may result from the expression of inheritable resistance genes, of which the information can be used for breeding soybean cultivars and lines specifically resistant to SCN races.

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.

Fibrobacter succinogenes, a Dominant Fibrolytic Ruminal Bacterium: Transition to the Post Genomic Era

  • Jun, H.S.;Qi, M.;Ha, J.K.;Forsberg, C.W.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권5호
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    • pp.802-810
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    • 2007
  • Fibrobacter succinogenes, a Gram-negative, anaerobic ruminal bacterium is a major fibre digesting species in the rumen. It intensively degrades plant cell walls by an erosion type of mechanism, burrowing its way through the complex matrix of cellulose and hemicellulose with the release of digestible and undigested cell wall fragments. The enzymes involved in this process include a combination of glucanases, xylanases, arabinofuranosidase(s) and esterases. The genome of the bacterium has been sequenced and this has revealed in excess of 100 putative glycosyl hydrolase, pectate lyase and carbohydrate esterase genes, which is greater than the numbers reported present in other major cellulolytic organisms for which genomes have been sequenced. Modelling of the amino acid sequences of two glycanases, CedA and EGB, by reference to crystallized homologs has enabled prediction of the major features of their tertiary structures. Two dimensional gel electrophoresis in conjunction with mass spectroscopy has permitted the documentation of proteins over expressed in F. succinogenes grown on cellulose, and analysis of the cell surfaces of mutant strains unable to bind to cellulose has enabled the identification of candidate proteins with roles in adhesion to the plant cell wall substrate, the precursor to cellulose biodegradation.

Ultrastructure of Compatible and Incompatible Interactions of Pumpkin Stems Infected with Phytophthora capsici

  • Lee, Byung-Kook;Hong, Jeum-Kyu;Hwang, Byung-Kook
    • The Plant Pathology Journal
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    • 제17권1호
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    • pp.29-35
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    • 2001
  • Early infection process of Phytophthora capsici in pumpkin stems was similar in the compatible and incompatible interactions 24 h after inoculation. Intercellularly growing hyphae penetrated host parenchyma cells by growing hyphae penetrated host parenchyma cells by forming haustoria. An extrahaustorial matrix was found around the haustoria in both compatible and incompatible interactions. No wall appositions were observed at the infection sites in the parenchyma cells. In the compatible interaction, infecting hyphae grew well in the intercellular spaces between xylem vessels in stem tissues. Degraded host cell wall, plasmolysis of plasma membrane, and degenerated chloroplasts were pathological features of pumpkin stem tissues in both compatible and incompatible interactions. A characteristic host response in the resistant pumkin cultivar Danmatmaetdol was rapid cytoplasmic movement of host cells toward the oomycete haustoria.

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NaCl Stress에 따른 보리 유묘의 생육특성 및 세포학적 반응 (Growth and Histological Characteristics of Barley (Hordium vulgare L.) Seedling to NaCl Stress)

  • 조진웅;김충수;이석영;박기선
    • 한국환경농학회지
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    • 제17권4호
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    • pp.335-340
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    • 1998
  • This study was conducted to determine the morphological responses of barley seedlings to NaCl stress and to investigate histological changes of cells with transmission electron microscope(TEM) after NaCl stress. Plant height and root length of 10-day old barley seedlings with NaCl stress were reduced and inhibition level was found to be more severe in the plant height than in the root length. The leaf length, leaf width and leaf area were shorter as well with NaCl stress than without NaCl stress. However, there was no difference in the number of roots between NaCl treatments. The weight of dry matter decreased at higher NaCl concentrations, especially at 100mM NaCl. The water content of shoots tend to decrease at higher NaCl concentrations, but there was no difference in the water content of roots, The reduced sugar content was greatly increase than starch. Cellulose content was higher in NaCl stressed-plant than control, and tended to decreased at higher NaCl concentrations. Lignin content also decreased NaCl stressed-plant but there was no tendency at NaCl stress concentrations. Electric conductivity of cell sap with seedlings was high with NaCl stressed-plant. Amount of cell sap gradually increased with time in the roots than in the shoots, The grana of chloroplasts was changed by 150mM NaCl concentration. The christe of mitochondria in root meristematic sells ruined in structure and cell wall of leaf and root was also ruined by NaCl stress.

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