Serveur d'exploration sur le peuplier

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The cationic cell-wall-peroxidase having oxidation ability for polymeric substrate participates in the late stage of lignification of Populus alba L.

Identifieur interne : 003D08 ( Main/Exploration ); précédent : 003D07; suivant : 003D09

The cationic cell-wall-peroxidase having oxidation ability for polymeric substrate participates in the late stage of lignification of Populus alba L.

Auteurs : Shinya Sasaki [Japon] ; Kei'Ichi Baba ; Tomoaki Nishida ; Yuji Tsutsumi ; Ryuichiro Kondo

Source :

RBID : pubmed:17004015

Descripteurs français

English descriptors

Abstract

Previously we reported that purified Cell Wall Peroxidase-Cationic (CWPO-C) from poplar callus (Populus alba L.) oxidizes sinapyl alcohol and polymeric substrate unlike other plant peroxidases and proposed that this isoenzyme is a conceivable lignification specific peroxidase. In this study, we cloned full-length cDNA of CWPO-C and investigated the transcription of CWPO-C gene in various organs and the localization of CWPO-C protein in the differentiating xylem of poplar stem.Real-time PCR analyses indicated that CWPO-C gene is constitutively expressed in the developing xylem, leaf, and shoot but not affected by many stress treatments. Immunohistochemical analysis showed that CWPO-C locates in the middle lamellae, cell corners, and secondary cell walls of the fiber cells during the lignification. The intensity of the CWPO-C labeling increased gradually from the cell wall thickening stage to mature stage of fiber cells, which is very consistent with the increase of lignin content in the developing xylem. These results strongly support that CWPO-C is responsible for the lignification of the secondary xylem. Interestingly, immuno-labeling of CWPO-C was also observed inside of the ray parenchyma cells instead no signals were detected within the developing fiber cells. This suggests that CWPO-C is biosynthesized in the parenchyma cells and provided to the middle lamellae, the cell corners, and the cell walls to achieve lignin polymerization.

DOI: 10.1007/s11103-006-9057-3
PubMed: 17004015


Affiliations:


Links toward previous steps (curation, corpus...)


Le document en format XML

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<term>Amino Acid Sequence (MeSH)</term>
<term>Base Sequence (MeSH)</term>
<term>Cations (MeSH)</term>
<term>Cell Wall (enzymology)</term>
<term>Cloning, Molecular (MeSH)</term>
<term>DNA, Complementary (chemistry)</term>
<term>DNA, Complementary (genetics)</term>
<term>Gene Expression Regulation, Enzymologic (drug effects)</term>
<term>Gene Expression Regulation, Plant (drug effects)</term>
<term>Hydrogen Peroxide (pharmacology)</term>
<term>Immunohistochemistry (MeSH)</term>
<term>Lignin (metabolism)</term>
<term>Molecular Sequence Data (MeSH)</term>
<term>Oxidation-Reduction (MeSH)</term>
<term>Peroxidase (genetics)</term>
<term>Peroxidase (metabolism)</term>
<term>Polymers (metabolism)</term>
<term>Populus (enzymology)</term>
<term>Populus (genetics)</term>
<term>Populus (metabolism)</term>
<term>Sequence Alignment (MeSH)</term>
<term>Sequence Analysis, DNA (MeSH)</term>
<term>Sequence Homology, Amino Acid (MeSH)</term>
<term>Stress, Mechanical (MeSH)</term>
<term>Substrate Specificity (MeSH)</term>
<term>Time Factors (MeSH)</term>
<term>Transcription, Genetic (drug effects)</term>
<term>Water (pharmacology)</term>
<term>Xylem (enzymology)</term>
<term>Xylem (genetics)</term>
<term>Xylem (metabolism)</term>
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<term>ADN complémentaire (composition chimique)</term>
<term>ADN complémentaire (génétique)</term>
<term>Alignement de séquences (MeSH)</term>
<term>Analyse de séquence d'ADN (MeSH)</term>
<term>Cations (MeSH)</term>
<term>Clonage moléculaire (MeSH)</term>
<term>Contrainte mécanique (MeSH)</term>
<term>Données de séquences moléculaires (MeSH)</term>
<term>Eau (pharmacologie)</term>
<term>Facteurs temps (MeSH)</term>
<term>Immunohistochimie (MeSH)</term>
<term>Lignine (métabolisme)</term>
<term>Myeloperoxidase (génétique)</term>
<term>Myeloperoxidase (métabolisme)</term>
<term>Oxydoréduction (MeSH)</term>
<term>Paroi cellulaire (enzymologie)</term>
<term>Peroxyde d'hydrogène (pharmacologie)</term>
<term>Polymères (métabolisme)</term>
<term>Populus (enzymologie)</term>
<term>Populus (génétique)</term>
<term>Populus (métabolisme)</term>
<term>Régulation de l'expression des gènes codant pour des enzymes (effets des médicaments et des substances chimiques)</term>
<term>Régulation de l'expression des gènes végétaux (effets des médicaments et des substances chimiques)</term>
<term>Similitude de séquences d'acides aminés (MeSH)</term>
<term>Spécificité du substrat (MeSH)</term>
<term>Séquence d'acides aminés (MeSH)</term>
<term>Séquence nucléotidique (MeSH)</term>
<term>Transcription génétique (effets des médicaments et des substances chimiques)</term>
<term>Xylème (enzymologie)</term>
<term>Xylème (génétique)</term>
<term>Xylème (métabolisme)</term>
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<keywords scheme="MESH" type="chemical" qualifier="chemistry" xml:lang="en">
<term>DNA, Complementary</term>
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<keywords scheme="MESH" type="chemical" qualifier="genetics" xml:lang="en">
<term>DNA, Complementary</term>
<term>Peroxidase</term>
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<keywords scheme="MESH" type="chemical" qualifier="metabolism" xml:lang="en">
<term>Lignin</term>
<term>Peroxidase</term>
<term>Polymers</term>
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<keywords scheme="MESH" type="chemical" qualifier="pharmacology" xml:lang="en">
<term>Hydrogen Peroxide</term>
<term>Water</term>
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<keywords scheme="MESH" type="chemical" xml:lang="en">
<term>Cations</term>
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<keywords scheme="MESH" qualifier="composition chimique" xml:lang="fr">
<term>ADN complémentaire</term>
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<keywords scheme="MESH" qualifier="drug effects" xml:lang="en">
<term>Gene Expression Regulation, Enzymologic</term>
<term>Gene Expression Regulation, Plant</term>
<term>Transcription, Genetic</term>
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<term>Régulation de l'expression des gènes codant pour des enzymes</term>
<term>Régulation de l'expression des gènes végétaux</term>
<term>Transcription génétique</term>
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<keywords scheme="MESH" qualifier="enzymologie" xml:lang="fr">
<term>Paroi cellulaire</term>
<term>Populus</term>
<term>Xylème</term>
</keywords>
<keywords scheme="MESH" qualifier="enzymology" xml:lang="en">
<term>Cell Wall</term>
<term>Populus</term>
<term>Xylem</term>
</keywords>
<keywords scheme="MESH" qualifier="genetics" xml:lang="en">
<term>Populus</term>
<term>Xylem</term>
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<keywords scheme="MESH" qualifier="génétique" xml:lang="fr">
<term>ADN complémentaire</term>
<term>Myeloperoxidase</term>
<term>Populus</term>
<term>Xylème</term>
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<keywords scheme="MESH" qualifier="metabolism" xml:lang="en">
<term>Populus</term>
<term>Xylem</term>
</keywords>
<keywords scheme="MESH" qualifier="métabolisme" xml:lang="fr">
<term>Lignine</term>
<term>Myeloperoxidase</term>
<term>Polymères</term>
<term>Populus</term>
<term>Xylème</term>
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<keywords scheme="MESH" qualifier="pharmacologie" xml:lang="fr">
<term>Eau</term>
<term>Peroxyde d'hydrogène</term>
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<term>Amino Acid Sequence</term>
<term>Base Sequence</term>
<term>Cloning, Molecular</term>
<term>Immunohistochemistry</term>
<term>Molecular Sequence Data</term>
<term>Oxidation-Reduction</term>
<term>Sequence Alignment</term>
<term>Sequence Analysis, DNA</term>
<term>Sequence Homology, Amino Acid</term>
<term>Stress, Mechanical</term>
<term>Substrate Specificity</term>
<term>Time Factors</term>
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<term>Analyse de séquence d'ADN</term>
<term>Cations</term>
<term>Clonage moléculaire</term>
<term>Contrainte mécanique</term>
<term>Données de séquences moléculaires</term>
<term>Facteurs temps</term>
<term>Immunohistochimie</term>
<term>Oxydoréduction</term>
<term>Similitude de séquences d'acides aminés</term>
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<term>Séquence d'acides aminés</term>
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<div type="abstract" xml:lang="en">Previously we reported that purified Cell Wall Peroxidase-Cationic (CWPO-C) from poplar callus (Populus alba L.) oxidizes sinapyl alcohol and polymeric substrate unlike other plant peroxidases and proposed that this isoenzyme is a conceivable lignification specific peroxidase. In this study, we cloned full-length cDNA of CWPO-C and investigated the transcription of CWPO-C gene in various organs and the localization of CWPO-C protein in the differentiating xylem of poplar stem.Real-time PCR analyses indicated that CWPO-C gene is constitutively expressed in the developing xylem, leaf, and shoot but not affected by many stress treatments. Immunohistochemical analysis showed that CWPO-C locates in the middle lamellae, cell corners, and secondary cell walls of the fiber cells during the lignification. The intensity of the CWPO-C labeling increased gradually from the cell wall thickening stage to mature stage of fiber cells, which is very consistent with the increase of lignin content in the developing xylem. These results strongly support that CWPO-C is responsible for the lignification of the secondary xylem. Interestingly, immuno-labeling of CWPO-C was also observed inside of the ray parenchyma cells instead no signals were detected within the developing fiber cells. This suggests that CWPO-C is biosynthesized in the parenchyma cells and provided to the middle lamellae, the cell corners, and the cell walls to achieve lignin polymerization.</div>
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<AbstractText>Previously we reported that purified Cell Wall Peroxidase-Cationic (CWPO-C) from poplar callus (Populus alba L.) oxidizes sinapyl alcohol and polymeric substrate unlike other plant peroxidases and proposed that this isoenzyme is a conceivable lignification specific peroxidase. In this study, we cloned full-length cDNA of CWPO-C and investigated the transcription of CWPO-C gene in various organs and the localization of CWPO-C protein in the differentiating xylem of poplar stem.Real-time PCR analyses indicated that CWPO-C gene is constitutively expressed in the developing xylem, leaf, and shoot but not affected by many stress treatments. Immunohistochemical analysis showed that CWPO-C locates in the middle lamellae, cell corners, and secondary cell walls of the fiber cells during the lignification. The intensity of the CWPO-C labeling increased gradually from the cell wall thickening stage to mature stage of fiber cells, which is very consistent with the increase of lignin content in the developing xylem. These results strongly support that CWPO-C is responsible for the lignification of the secondary xylem. Interestingly, immuno-labeling of CWPO-C was also observed inside of the ray parenchyma cells instead no signals were detected within the developing fiber cells. This suggests that CWPO-C is biosynthesized in the parenchyma cells and provided to the middle lamellae, the cell corners, and the cell walls to achieve lignin polymerization.</AbstractText>
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<ForeName>Tomoaki</ForeName>
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<DescriptorName UI="D010084" MajorTopicYN="N">Oxidation-Reduction</DescriptorName>
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<DescriptorName UI="D014158" MajorTopicYN="N">Transcription, Genetic</DescriptorName>
<QualifierName UI="Q000187" MajorTopicYN="N">drug effects</QualifierName>
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<DescriptorName UI="D014867" MajorTopicYN="N">Water</DescriptorName>
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<QualifierName UI="Q000201" MajorTopicYN="N">enzymology</QualifierName>
<QualifierName UI="Q000235" MajorTopicYN="N">genetics</QualifierName>
<QualifierName UI="Q000378" MajorTopicYN="N">metabolism</QualifierName>
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