PubMed:14529272
Annnotations
Oryza-OGER
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l.obolibrary.org/obo/GO_0022809"},{"id":"T167","span":{"begin":1010,"end":1016},"obj":"RPP17"},{"id":"T168","span":{"begin":1010,"end":1016},"obj":"http://www.uniprot.org/uniprot/Q0JHU5"},{"id":"T169","span":{"begin":1017,"end":1025},"obj":"http://id.nlm.nih.gov/mesh/D011506"},{"id":"T170","span":{"begin":1017,"end":1025},"obj":"http://purl.obolibrary.org/obo/CHEBI_36080"},{"id":"T171","span":{"begin":1039,"end":1045},"obj":"http://purl.obolibrary.org/obo/SO_0000984"},{"id":"T172","span":{"begin":1047,"end":1048},"obj":"AMT1;3"},{"id":"T173","span":{"begin":1049,"end":1055},"obj":"http://purl.obolibrary.org/obo/SO_0000417"},{"id":"T174","span":{"begin":1056,"end":1059},"obj":"http://purl.obolibrary.org/obo/SO_0001180"},{"id":"T175","span":{"begin":1056,"end":1059},"obj":"http://purl.obolibrary.org/obo/SO_0001853"},{"id":"T176","span":{"begin":1072,"end":1077},"obj":"http://id.nlm.nih.gov/mesh/D010944"},{"id":"T177","span":{"begin":1086,"end":1095},"obj":"http://purl.obolibrary.org/obo/GO_0023052"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
21k_plant_trait_mention
{"project":"21k_plant_trait_mention","denotations":[{"id":"M_0","span":{"begin":1072,"end":1095},"obj":"funRiceGene:417, xzyao:12344"},{"id":"M_1","span":{"begin":1078,"end":1085},"obj":"funRiceGene:307"},{"id":"M_2","span":{"begin":886,"end":901},"obj":"funRiceGene:329, xzyao:14501"},{"id":"M_3","span":{"begin":0,"end":23},"obj":"hunflair:NA:Gene"},{"id":"M_4","span":{"begin":386,"end":393},"obj":"hunflair:NA:Gene"},{"id":"M_5","span":{"begin":713,"end":731},"obj":"hunflair:NA:Species"},{"id":"M_6","span":{"begin":509,"end":513},"obj":"hunflair:NA:Species"},{"id":"M_7","span":{"begin":374,"end":381},"obj":"hunflair:NA:Gene"},{"id":"M_8","span":{"begin":0,"end":4},"obj":"hunflair:NA:Species"},{"id":"M_9","span":{"begin":326,"end":332},"obj":"hunflair:NA:Species"},{"id":"M_10","span":{"begin":93,"end":99},"obj":"hunflair:NA:Species"},{"id":"M_11","span":{"begin":485,"end":491},"obj":"hunflair:NA:Species"},{"id":"M_12","span":{"begin":683,"end":689},"obj":"hunflair:NA:Species"},{"id":"M_13","span":{"begin":944,"end":950},"obj":"hunflair:NA:Species"},{"id":"M_14","span":{"begin":640,"end":646},"obj":"hunflair:NA:Gene"},{"id":"M_15","span":{"begin":755,"end":761},"obj":"hunflair:NA:Gene"},{"id":"M_16","span":{"begin":1010,"end":1016},"obj":"hunflair:NA:Gene"},{"id":"M_17","span":{"begin":782,"end":798},"obj":"hunflair:NA:Species"},{"id":"M_18","span":{"begin":713,"end":731},"obj":"pubtator:148305:Species"},{"id":"M_19","span":{"begin":782,"end":798},"obj":"pubtator:562:Species"},{"id":"M_20","span":{"begin":509,"end":513},"obj":"pubtator:4530:Species"},{"id":"M_21","span":{"begin":447,"end":462},"obj":"pubtator:MESH:C059592:Chemical"},{"id":"M_22","span":{"begin":0,"end":4},"obj":"pubtator:4530:Species"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
OryzaGP_2021
{"project":"OryzaGP_2021","denotations":[{"id":"T1","span":{"begin":246,"end":251},"obj":"http://identifiers.org/oryzabase.gene/11165"},{"id":"T2","span":{"begin":374,"end":381},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T3","span":{"begin":386,"end":393},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T4","span":{"begin":411,"end":416},"obj":"http://identifiers.org/oryzabase.gene/11165"},{"id":"T5","span":{"begin":640,"end":646},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T6","span":{"begin":755,"end":761},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T7","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T64291","span":{"begin":246,"end":251},"obj":"http://identifiers.org/ricegap/LOC_Os02g34850"},{"id":"T41766","span":{"begin":374,"end":381},"obj":"http://identifiers.org/ricegap/LOC_Os01g62430"},{"id":"T57712","span":{"begin":386,"end":393},"obj":"http://identifiers.org/ricegap/LOC_Os01g62430"},{"id":"T20377","span":{"begin":411,"end":416},"obj":"http://identifiers.org/ricegap/LOC_Os02g34850"},{"id":"T24775","span":{"begin":640,"end":646},"obj":"http://identifiers.org/ricegap/LOC_Os01g62430"},{"id":"T28449","span":{"begin":755,"end":761},"obj":"http://identifiers.org/ricegap/LOC_Os01g62430"},{"id":"T2070","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/ricegap/LOC_Os01g62430"},{"id":"T49008","span":{"begin":246,"end":251},"obj":"http://identifiers.org/rapdb.locus/Os02g0554000"},{"id":"T68035","span":{"begin":374,"end":381},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T16047","span":{"begin":386,"end":393},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T14560","span":{"begin":411,"end":416},"obj":"http://identifiers.org/rapdb.locus/Os02g0554000"},{"id":"T52449","span":{"begin":640,"end":646},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T62089","span":{"begin":755,"end":761},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T40914","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T33808","span":{"begin":374,"end":381},"obj":"http://identifiers.org/uniprot/Q0JHU5-2"},{"id":"T59525","span":{"begin":386,"end":393},"obj":"http://identifiers.org/uniprot/Q0JHU5-2"},{"id":"T83711","span":{"begin":640,"end":646},"obj":"http://identifiers.org/uniprot/Q0JHU5-2"},{"id":"T18645","span":{"begin":755,"end":761},"obj":"http://identifiers.org/uniprot/Q0JHU5-2"},{"id":"T52502","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/uniprot/Q0JHU5-2"},{"id":"M_0","span":{"begin":374,"end":381},"obj":"hunflair:NA:Gene"},{"id":"M_1","span":{"begin":713,"end":731},"obj":"hunflair:NA:Species"},{"id":"M_2","span":{"begin":386,"end":393},"obj":"hunflair:NA:Gene"},{"id":"M_3","span":{"begin":0,"end":4},"obj":"hunflair:NA:Species"},{"id":"M_4","span":{"begin":172,"end":178},"obj":"hunflair:NA:Chemical"},{"id":"M_5","span":{"begin":738,"end":744},"obj":"hunflair:NA:Chemical"},{"id":"M_6","span":{"begin":835,"end":841},"obj":"hunflair:NA:Chemical"},{"id":"M_7","span":{"begin":965,"end":971},"obj":"hunflair:NA:Chemical"},{"id":"M_8","span":{"begin":326,"end":332},"obj":"hunflair:NA:Species"},{"id":"M_9","span":{"begin":0,"end":23},"obj":"hunflair:NA:Gene"},{"id":"M_10","span":{"begin":640,"end":646},"obj":"hunflair:NA:Gene"},{"id":"M_11","span":{"begin":755,"end":761},"obj":"hunflair:NA:Gene"},{"id":"M_12","span":{"begin":1010,"end":1016},"obj":"hunflair:NA:Gene"},{"id":"M_13","span":{"begin":509,"end":513},"obj":"hunflair:NA:Species"},{"id":"M_14","span":{"begin":782,"end":798},"obj":"hunflair:NA:Species"},{"id":"M_15","span":{"begin":93,"end":99},"obj":"hunflair:NA:Species"},{"id":"M_16","span":{"begin":485,"end":491},"obj":"hunflair:NA:Species"},{"id":"M_17","span":{"begin":683,"end":689},"obj":"hunflair:NA:Species"},{"id":"M_18","span":{"begin":944,"end":950},"obj":"hunflair:NA:Species"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
pqqtest_sentence
{"project":"pqqtest_sentence","denotations":[{"id":"M_0","span":{"begin":60,"end":75},"obj":"funRiceGene:329, xzyao:23356"},{"id":"M_1","span":{"begin":886,"end":901},"obj":"funRiceGene:329, xzyao:23356"},{"id":"M_2","span":{"begin":713,"end":731},"obj":"xzyao:33703"},{"id":"M_3","span":{"begin":509,"end":526},"obj":"xzyao:17591"},{"id":"M_4","span":{"begin":1072,"end":1085},"obj":"xzyao:45016"},{"id":"M_5","span":{"begin":451,"end":462},"obj":"xzyao:8656"},{"id":"M_6","span":{"begin":1078,"end":1095},"obj":"xzyao:23010"},{"id":"M_7","span":{"begin":1072,"end":1095},"obj":"funRiceGene:417"},{"id":"M_8","span":{"begin":1078,"end":1085},"obj":"funRiceGene:307"},{"id":"M_9","span":{"begin":143,"end":161},"obj":"xzyao:37924"},{"id":"M_10","span":{"begin":905,"end":916},"obj":"xzyao:38499"},{"id":"M_11","span":{"begin":93,"end":99},"obj":"hunflair:NA:Species"},{"id":"M_12","span":{"begin":485,"end":491},"obj":"hunflair:NA:Species"},{"id":"M_13","span":{"begin":683,"end":689},"obj":"hunflair:NA:Species"},{"id":"M_14","span":{"begin":944,"end":950},"obj":"hunflair:NA:Species"},{"id":"M_15","span":{"begin":713,"end":731},"obj":"hunflair:NA:Species"},{"id":"M_16","span":{"begin":640,"end":646},"obj":"hunflair:NA:Gene"},{"id":"M_17","span":{"begin":755,"end":761},"obj":"hunflair:NA:Gene"},{"id":"M_18","span":{"begin":1010,"end":1016},"obj":"hunflair:NA:Gene"},{"id":"M_19","span":{"begin":782,"end":798},"obj":"hunflair:NA:Species"},{"id":"M_20","span":{"begin":386,"end":393},"obj":"hunflair:NA:Gene"},{"id":"M_21","span":{"begin":509,"end":513},"obj":"hunflair:NA:Species"},{"id":"M_22","span":{"begin":0,"end":4},"obj":"hunflair:NA:Species"},{"id":"M_23","span":{"begin":374,"end":381},"obj":"hunflair:NA:Gene"},{"id":"M_24","span":{"begin":326,"end":332},"obj":"hunflair:NA:Species"},{"id":"M_25","span":{"begin":0,"end":23},"obj":"hunflair:NA:Gene"},{"id":"M_26","span":{"begin":447,"end":462},"obj":"pubtator:MESH:C059592:Chemical"},{"id":"M_27","span":{"begin":782,"end":798},"obj":"pubtator:562:Species"},{"id":"M_28","span":{"begin":0,"end":4},"obj":"pubtator:4530:Species"},{"id":"M_29","span":{"begin":713,"end":731},"obj":"pubtator:148305:Species"},{"id":"M_30","span":{"begin":509,"end":513},"obj":"pubtator:4530:Species"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
OryzaGP_2021_v2
{"project":"OryzaGP_2021_v2","denotations":[{"id":"T1","span":{"begin":374,"end":381},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T2","span":{"begin":386,"end":393},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T3","span":{"begin":640,"end":646},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T4","span":{"begin":755,"end":761},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T5","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/oryzabase.gene/2207"},{"id":"T28426","span":{"begin":374,"end":381},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T11972","span":{"begin":386,"end":393},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T94255","span":{"begin":640,"end":646},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T92759","span":{"begin":755,"end":761},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"},{"id":"T76146","span":{"begin":1010,"end":1016},"obj":"http://identifiers.org/rapdb.locus/Os01g0841700"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
OryzaGP_2021_FLAIR
{"project":"OryzaGP_2021_FLAIR","denotations":[{"id":"M_0","span":{"begin":374,"end":381},"obj":"hunflair:NA:Gene"},{"id":"M_1","span":{"begin":713,"end":731},"obj":"hunflair:NA:Species"},{"id":"M_2","span":{"begin":386,"end":393},"obj":"hunflair:NA:Gene"},{"id":"M_3","span":{"begin":0,"end":4},"obj":"hunflair:NA:Species"},{"id":"M_4","span":{"begin":172,"end":178},"obj":"hunflair:NA:Chemical"},{"id":"M_5","span":{"begin":738,"end":744},"obj":"hunflair:NA:Chemical"},{"id":"M_6","span":{"begin":835,"end":841},"obj":"hunflair:NA:Chemical"},{"id":"M_7","span":{"begin":965,"end":971},"obj":"hunflair:NA:Chemical"},{"id":"M_8","span":{"begin":326,"end":332},"obj":"hunflair:NA:Species"},{"id":"M_9","span":{"begin":0,"end":23},"obj":"hunflair:NA:Gene"},{"id":"M_10","span":{"begin":640,"end":646},"obj":"hunflair:NA:Gene"},{"id":"M_11","span":{"begin":755,"end":761},"obj":"hunflair:NA:Gene"},{"id":"M_12","span":{"begin":1010,"end":1016},"obj":"hunflair:NA:Gene"},{"id":"M_13","span":{"begin":509,"end":513},"obj":"hunflair:NA:Species"},{"id":"M_14","span":{"begin":782,"end":798},"obj":"hunflair:NA:Species"},{"id":"M_15","span":{"begin":93,"end":99},"obj":"hunflair:NA:Species"},{"id":"M_16","span":{"begin":485,"end":491},"obj":"hunflair:NA:Species"},{"id":"M_17","span":{"begin":683,"end":689},"obj":"hunflair:NA:Species"},{"id":"M_18","span":{"begin":944,"end":950},"obj":"hunflair:NA:Species"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
OryzaGP
{"project":"OryzaGP","denotations":[{"id":"T1","span":{"begin":374,"end":381},"obj":"gene"},{"id":"T2","span":{"begin":386,"end":394},"obj":"gene"},{"id":"T3","span":{"begin":1010,"end":1016},"obj":"gene"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}
Oryza_sentences
{"project":"Oryza_sentences","blocks":[{"id":"T1","span":{"begin":0,"end":109},"obj":"Sentence"},{"id":"T2","span":{"begin":110,"end":233},"obj":"Sentence"},{"id":"T3","span":{"begin":234,"end":339},"obj":"Sentence"},{"id":"T4","span":{"begin":340,"end":527},"obj":"Sentence"},{"id":"T5","span":{"begin":528,"end":614},"obj":"Sentence"},{"id":"T6","span":{"begin":615,"end":750},"obj":"Sentence"},{"id":"T7","span":{"begin":751,"end":982},"obj":"Sentence"},{"id":"T8","span":{"begin":983,"end":1104},"obj":"Sentence"}],"text":"Rice C2-domain proteins are induced and translocated to the plasma membrane in response to a fungal elicitor.\nHundreds of proteins involved in signaling pathways contain a Ca(2+)-dependent membrane-binding motif called the C2-domain. However, no small C2-domain proteins consisting of a single C2-domain have been reported in animal cells. We have isolated two cDNA clones, OsERG1a and OsERG1b, that encode two small C2-domain proteins of 156 and 159 amino acids, respectively, from a fungal elicitor-treated rice cDNA library. The clones are believed to have originated from a single gene by alternative splicing. Transcript levels of the OsERG1 gene are dramatically elevated by a fungal elicitor prepared from Magnaporthe grisea or by Ca(2+) ions. The OsERG1 protein produced in Escherichia coli binds to phospholipid vesicles in a Ca(2+)-dependent manner and is translocated to the plasma membrane of plant cells by treatment with either a fungal elicitor or a Ca(2+) ionophore. These results suggest that OsERG1 proteins containing a single C2-domain are involved in plant defense signaling systems."}