PubMed:23390526
Annnotations
Inflammaging
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 0-112 | Sentence | denotes | Resistance to a rhabdovirus (VHSV) in rainbow trout: identification of a major QTL related to innate mechanisms. |
T2 | 113-275 | Sentence | denotes | Health control is a major issue in animal breeding and a better knowledge of the genetic bases of resistance to diseases is needed in farm animals including fish. |
T3 | 276-458 | Sentence | denotes | The detection of quantitative trait loci (QTL) will help uncovering the genetic architecture of important traits and understanding the mechanisms involved in resistance to pathogens. |
T4 | 459-607 | Sentence | denotes | We report here the detection of QTL for resistance to Viral Haemorrhagic Septicaemia Virus (VHSV), a major threat for European aquaculture industry. |
T5 | 608-710 | Sentence | denotes | Two induced mitogynogenetic doubled haploid F2 rainbow trout (Oncorhynchus mykiss) families were used. |
T6 | 711-835 | Sentence | denotes | These families combined the genome of susceptible and resistant F0 breeders and contained only fully homozygous individuals. |
T7 | 836-979 | Sentence | denotes | For phenotyping, fish survival after an immersion challenge with the virus was recorded, as well as in vitro virus replication on fin explants. |
T8 | 980-1070 | Sentence | denotes | A bidirectional selective genotyping strategy identified seven QTL associated to survival. |
T9 | 1071-1309 | Sentence | denotes | One of those QTL was significant at the genome-wide level and largely explained both survival and viral replication in fin explants in the different families of the design (up to 65% and 49% of phenotypic variance explained respectively). |
T10 | 1310-1473 | Sentence | denotes | These results evidence the key role of innate defence in resistance to the virus and pave the way for the identification of the gene(s) responsible for resistance. |
T11 | 1474-1598 | Sentence | denotes | The identification of a major QTL also opens appealing perspectives for selective breeding of fish with improved resistance. |
T1 | 0-112 | Sentence | denotes | Resistance to a rhabdovirus (VHSV) in rainbow trout: identification of a major QTL related to innate mechanisms. |
T2 | 113-275 | Sentence | denotes | Health control is a major issue in animal breeding and a better knowledge of the genetic bases of resistance to diseases is needed in farm animals including fish. |
T3 | 276-458 | Sentence | denotes | The detection of quantitative trait loci (QTL) will help uncovering the genetic architecture of important traits and understanding the mechanisms involved in resistance to pathogens. |
T4 | 459-607 | Sentence | denotes | We report here the detection of QTL for resistance to Viral Haemorrhagic Septicaemia Virus (VHSV), a major threat for European aquaculture industry. |
T5 | 608-710 | Sentence | denotes | Two induced mitogynogenetic doubled haploid F2 rainbow trout (Oncorhynchus mykiss) families were used. |
T6 | 711-835 | Sentence | denotes | These families combined the genome of susceptible and resistant F0 breeders and contained only fully homozygous individuals. |
T7 | 836-979 | Sentence | denotes | For phenotyping, fish survival after an immersion challenge with the virus was recorded, as well as in vitro virus replication on fin explants. |
T8 | 980-1070 | Sentence | denotes | A bidirectional selective genotyping strategy identified seven QTL associated to survival. |
T9 | 1071-1309 | Sentence | denotes | One of those QTL was significant at the genome-wide level and largely explained both survival and viral replication in fin explants in the different families of the design (up to 65% and 49% of phenotypic variance explained respectively). |
T10 | 1310-1473 | Sentence | denotes | These results evidence the key role of innate defence in resistance to the virus and pave the way for the identification of the gene(s) responsible for resistance. |
T11 | 1474-1598 | Sentence | denotes | The identification of a major QTL also opens appealing perspectives for selective breeding of fish with improved resistance. |
PubMed_ArguminSci
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 113-275 | DRI_Background | denotes | Health control is a major issue in animal breeding and a better knowledge of the genetic bases of resistance to diseases is needed in farm animals including fish. |
T2 | 276-458 | DRI_Background | denotes | The detection of quantitative trait loci (QTL) will help uncovering the genetic architecture of important traits and understanding the mechanisms involved in resistance to pathogens. |
T3 | 459-607 | DRI_Challenge | denotes | We report here the detection of QTL for resistance to Viral Haemorrhagic Septicaemia Virus (VHSV), a major threat for European aquaculture industry. |
T4 | 608-710 | DRI_Approach | denotes | Two induced mitogynogenetic doubled haploid F2 rainbow trout (Oncorhynchus mykiss) families were used. |
T5 | 711-835 | DRI_Background | denotes | These families combined the genome of susceptible and resistant F0 breeders and contained only fully homozygous individuals. |
T6 | 836-979 | DRI_Background | denotes | For phenotyping, fish survival after an immersion challenge with the virus was recorded, as well as in vitro virus replication on fin explants. |
T7 | 980-1070 | DRI_Approach | denotes | A bidirectional selective genotyping strategy identified seven QTL associated to survival. |
T8 | 1071-1309 | DRI_Background | denotes | One of those QTL was significant at the genome-wide level and largely explained both survival and viral replication in fin explants in the different families of the design (up to 65% and 49% of phenotypic variance explained respectively). |
T9 | 1310-1473 | DRI_Background | denotes | These results evidence the key role of innate defence in resistance to the virus and pave the way for the identification of the gene(s) responsible for resistance. |
T10 | 1474-1598 | DRI_Outcome | denotes | The identification of a major QTL also opens appealing perspectives for selective breeding of fish with improved resistance. |
Goldhamster2_Cellosaurus
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 14-15 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T2 | 38-51 | CVCL_WC95|Spontaneously_immortalized_cell_line|Oncorhynchus mykiss | denotes | rainbow trout |
T3 | 71-72 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T4 | 131-132 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T5 | 168-169 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T6 | 459-461 | CVCL_5M23|Cancer_cell_line|Mesocricetus auratus | denotes | We |
T7 | 558-559 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
T8 | 652-654 | CVCL_L875|Cancer_cell_line|Mus musculus | denotes | F2 |
T9 | 652-654 | CVCL_XK46|Transformed_cell_line|Mesocricetus auratus | denotes | F2 |
T10 | 655-668 | CVCL_WC95|Spontaneously_immortalized_cell_line|Oncorhynchus mykiss | denotes | rainbow trout |
T11 | 873-875 | CVCL_8754|Cancer_cell_line|Homo sapiens | denotes | an |
T12 | 873-875 | CVCL_H241|Cancer_cell_line|Homo sapiens | denotes | an |
T13 | 951-962 | CVCL_XY58|Transformed_cell_line|Mus musculus | denotes | replication |
T14 | 966-969 | CVCL_W752|Cancer_cell_line|Homo sapiens | denotes | fin |
T15 | 980-981 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | A |
T16 | 1071-1074 | CVCL_Z424|Spontaneously_immortalized_cell_line|Ostrinia nubilalis | denotes | One |
T17 | 1175-1186 | CVCL_XY58|Transformed_cell_line|Mus musculus | denotes | replication |
T18 | 1190-1193 | CVCL_W752|Cancer_cell_line|Homo sapiens | denotes | fin |
T19 | 1258-1260 | CVCL_UU95|Spontaneously_immortalized_cell_line|Cricetulus griseus | denotes | 49 |
T20 | 1496-1497 | CVCL_6479|Finite_cell_line|Mus musculus | denotes | a |
GoldHamster
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 0-10 | D060467 | denotes | Resistance |
T2 | 0-10 | D060467 | denotes | Resistance |
T4 | 16-27 | D012209 | denotes | rhabdovirus |
T5 | 29-33 | 11287 | denotes | VHSV |
T8 | 38-51 | CVCL_WC95 | denotes | rainbow trout |
T6 | 38-51 | D017686 | denotes | rainbow trout |
T7 | 38-51 | 8022 | denotes | rainbow trout |
T9 | 46-51 | 882482 | denotes | trout |
T11 | 79-82 | SO:0000771 | denotes | QTL |
T12 | 148-154 | UBERON:3010325 | denotes | animal |
T13 | 148-154 | UBERON:0000468 | denotes | animal |
T14 | 202-207 | CHEBI:22695 | denotes | bases |
T15 | 247-259 | D000829 | denotes | farm animals |
T16 | 270-274 | PR:Q24533 | denotes | fish |
T17 | 318-321 | SO:0000771 | denotes | QTL |
T18 | 382-388 | PR:Q96CJ1 | denotes | traits |
T19 | 382-388 | PR:000006862 | denotes | traits |
T20 | 382-388 | PR:Q91ZD6 | denotes | traits |
T21 | 382-388 | PR:Q811X5 | denotes | traits |
T22 | 491-494 | SO:0000771 | denotes | QTL |
T23 | 513-543 | D031941 | denotes | Viral Haemorrhagic Septicaemia |
T24 | 513-543 | D031941 | denotes | Viral Haemorrhagic Septicaemia |
T26 | 513-555 | 11287 | denotes | Viral Haemorrhagic Septicaemia Virus (VHSV |
T31 | 655-668 | D017686 | denotes | rainbow trout |
T32 | 655-668 | 8022 | denotes | rainbow trout |
T33 | 655-668 | CVCL_WC95 | denotes | rainbow trout |
T34 | 663-668 | 882482 | denotes | trout |
T37 | 670-689 | D017686 | denotes | Oncorhynchus mykiss |
T38 | 670-689 | 8022 | denotes | Oncorhynchus mykiss |
T39 | 739-745 | SO:0001026 | denotes | genome |
T40 | 853-857 | PR:Q24533 | denotes | fish |
T42 | 966-969 | CVCL_W752 | denotes | fin |
T41 | 966-969 | UBERON:0008897 | denotes | fin |
T43 | 1043-1046 | SO:0000771 | denotes | QTL |
T44 | 1084-1087 | SO:0000771 | denotes | QTL |
T45 | 1111-1117 | SO:0001026 | denotes | genome |
T46 | 1169-1186 | GO:0019058 | denotes | viral replication |
T47 | 1169-1186 | GO:0019079 | denotes | viral replication |
T48 | 1169-1186 | GO:0008166 | denotes | viral replication |
T50 | 1190-1193 | CVCL_W752 | denotes | fin |
T49 | 1190-1193 | UBERON:0008897 | denotes | fin |
T51 | 1438-1442 | SO:0000704 | denotes | gene |
T52 | 1504-1507 | SO:0000771 | denotes | QTL |
T53 | 1568-1572 | PR:Q24533 | denotes | fish |
Allie
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
SS1_23390526_2_0 | 293-316 | expanded | denotes | quantitative trait loci |
SS2_23390526_2_0 | 318-321 | abbr | denotes | QTL |
SS1_23390526_3_0 | 513-549 | expanded | denotes | Viral Haemorrhagic Septicaemia Virus |
SS2_23390526_3_0 | 551-555 | abbr | denotes | VHSV |
AE1_23390526_2_0 | SS1_23390526_2_0 | SS2_23390526_2_0 | abbreviatedTo | quantitative trait loci,QTL |
AE1_23390526_3_0 | SS1_23390526_3_0 | SS2_23390526_3_0 | abbreviatedTo | Viral Haemorrhagic Septicaemia Virus,VHSV |