Difference between revisions of "Os03g0224700"
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==Annotated Information== | ==Annotated Information== | ||
===Function=== | ===Function=== | ||
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| + | It belongs to Heat stress transcription factors (Hsfs),Heat stress transcription factors (Hsfs) are the central regulators of defense response to heat stress.Hsfs diversify in their biological functions (Kotak etal., 2007b; von Koskull-Döring et al., 2007). HsfA members are capable of transcriptional activation,while HsfB members act as repressors or as co-activators (e.g., HsfB1) of HsfA members (Bharti et al., 2004; Czarnecka-Verner et al., 2004). However,AtHsfA4 activity was reported to be repressed by AtHsf5, which belongs to class A Hsfs (Baniwal etal., 2007). Overexpression of Hsf genes in transgenic | ||
| + | plants resulted in an up-regulation of heatstress-associated genes and an enhancement of thermotolerance, whereas the down-regulation of Hsf genes leads to a reduction in the thermotolerance(Charng et al., 2007; Mishra et al., 2002; Schramm et al., 2008). | ||
| + | AtHsfA9 is involved in seed development and controlled by seed-specific transcription factor abscisic acid-insensitive 3 (ABI3) (Kotak etal.,2007a).Further studies to elucidate the functions of the other members in the subfamily may also have potential for the development of transgenic plants with improved stress tolerance. | ||
===Expression=== | ===Expression=== | ||
Revision as of 15:16, 9 June 2014
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Contents
Annotated Information
Function
It belongs to Heat stress transcription factors (Hsfs),Heat stress transcription factors (Hsfs) are the central regulators of defense response to heat stress.Hsfs diversify in their biological functions (Kotak etal., 2007b; von Koskull-Döring et al., 2007). HsfA members are capable of transcriptional activation,while HsfB members act as repressors or as co-activators (e.g., HsfB1) of HsfA members (Bharti et al., 2004; Czarnecka-Verner et al., 2004). However,AtHsfA4 activity was reported to be repressed by AtHsf5, which belongs to class A Hsfs (Baniwal etal., 2007). Overexpression of Hsf genes in transgenic
plants resulted in an up-regulation of heatstress-associated genes and an enhancement of thermotolerance, whereas the down-regulation of Hsf genes leads to a reduction in the thermotolerance(Charng et al., 2007; Mishra et al., 2002; Schramm et al., 2008).
AtHsfA9 is involved in seed development and controlled by seed-specific transcription factor abscisic acid-insensitive 3 (ABI3) (Kotak etal.,2007a).Further studies to elucidate the functions of the other members in the subfamily may also have potential for the development of transgenic plants with improved stress tolerance.
Expression
Please input expression information here.
Evolution
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Labs working on this gene
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References
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Structured Information
| Gene Name |
Os03g0224700 |
|---|---|
| Description |
Similar to HSP protein (Fragment) |
| Version |
NM_001055964.1 GI:115451656 GeneID:4332113 |
| Length |
3809 bp |
| Definition |
Oryza sativa Japonica Group Os03g0224700, complete gene. |
| Source |
Oryza sativa Japonica Group ORGANISM Oryza sativa Japonica Group
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
clade; Ehrhartoideae; Oryzeae; Oryza.
|
| Chromosome | |
| Location |
Chromosome 3:6564909..6568717 |
| Sequence Coding Region |
6565073..6565396,6566628..6567513,6567990..6568012 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008396:6564909..6568717 source=RiceChromosome03 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008396:6564909..6568717 source=RiceChromosome03 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atgggctctaagaagcggtcgcctcagcatccggccgccgcggcgccccctcccgccgtcggcggcggcggcggcggcgaggtctccggcgatggtggcgcctcgacggcgaacgggccggtggtgccgaagccgtcggaggtggcgccgttcctgacgaaggtgtacgacatggtctcggaccccgcgaccgacaacgttatctcgtgggccgagggcggcggcagcttcgtgatctgggactcgcacgccttcgagcgcgacctccacaggcacttcaagcacagcaatttcaccagcttcatacgccagctcaacacctatggatttcgtaaagttcaccctgatagatgggagtgggccaatgaaggttttattatgggccaaaaacatcttctgaagaccattaagaggaggaagaagtcttctcaggaatcacctagcgagatacagaaggcgcctgtcaaaactgcacctggtactgaaaatattgagataggaaaatatggtggccttgaaaaggaggttgaaacccttaagagggataaagctcttctcatgcagcagcttgtagatctcaggcactaccagcaaacatctaaccttgaagtgcagaatttaattgaacggcttcaagtaatggaacagaaccagcagcagatgatggcacttctagcaatcgttgtccagaatcctagttttctcaaccagcttgtgcagcaacagcagcagcagcgcagatccaactggtggagtcctgatggaagcaagaaaaggagatttcatgctcttgagcagggccctgtaactgatcaggagacctctggccgtggggcacatattgttgaatatctcccacctgtcccagaaacatcaggtcaagtaaatccagtggaaggagccatttgttcggccaactcacaaccagttccaagtcctgcagttgccacacccatggacatgcaaacgtctaacgttgctgatactctcggttcatctgaggagcctttcgctgataactctactctacatgaatgggatgataacgacatgcagcttctgtttgatgataacctagacccaatacttccaccatttgagaatgatggtcaaatgggccctcctttgagtgttcaagattatgattttccgcagttagagcaggattgtctgatggaagcacaatataactccaacaatcctcaatatgctgatgtcattaccgaagcttga</cdnaseq> |
| Protein Sequence |
<aaseq>MGSKKRSPQHPAAAAPPPAVGGGGGGEVSGDGGASTANGPVVPK PSEVAPFLTKVYDMVSDPATDNVISWAEGGGSFVIWDSHAFERDLHRHFKHSNFTSFI RQLNTYGFRKVHPDRWEWANEGFIMGQKHLLKTIKRRKKSSQESPSEIQKAPVKTAPG TENIEIGKYGGLEKEVETLKRDKALLMQQLVDLRHYQQTSNLEVQNLIERLQVMEQNQ QQMMALLAIVVQNPSFLNQLVQQQQQQRRSNWWSPDGSKKRRFHALEQGPVTDQETSG RGAHIVEYLPPVPETSGQVNPVEGAICSANSQPVPSPAVATPMDMQTSNVADTLGSSE EPFADNSTLHEWDDNDMQLLFDDNLDPILPPFENDGQMGPPLSVQDYDFPQLEQDCLM EAQYNSNNPQYADVITEA</aaseq> |
| Gene Sequence |
<dnaseqindica>165..488#1720..2605#3082..3104#ctagtacaccagacgacaacacacacacaaaaaaaaaaaagaagagaaaaaccgaacgaaaatcccctcgcgcagacgactactacatccttctcgtctcatcccgtcgacccgccgccgcctcaatctcgaagcctcggcgaggctagggtttctgcgtctccatgggctctaagaagcggtcgcctcagcatccggccgccgcggcgccccctcccgccgtcggcggcggcggcggcggcgaggtctccggcgatggtggcgcctcgacggcgaacgggccggtggtgccgaagccgtcggaggtggcgccgttcctgacgaaggtgtacgacatggtctcggaccccgcgaccgacaacgttatctcgtgggccgagggcggcggcagcttcgtgatctgggactcgcacgccttcgagcgcgacctccacaggcacttcaagcacagcaatttcaccagcttcatacgccagctcaacacctatgtgagattcccttgatccctgtgttcgtttgtttctgatgcgcgaattcggtgccatttccagttggttggacgaaatcggtagtgaaatctgagtttctgttcccaatttgttgtttattatcacggctagacagcaaatcttgcttgcaattataaattgggcagtagcttccgatgcactgcatatgaatttgtttgaatcgtgactgcgtgttatatgatgttactttcttctattttgtgccttttaagttgattgcgtgtattagggattatctgccattttggagttaatcacttattaaattttaactacgttggaagctgttggcgatatagttggatgcctttcttcttctagtcgaaagacacaatagaactagtttctgcggtggctttctattcaacaacaacttctagagttctagtacataaaacacgtcattgggggtggggactaatattgttaattttgagaccagtttctgttctcttaatgttttgtgaatttgatcgtatgaaagctggctgtagaaactatgccaaactcttggctttaaattacaggggaatgatatgtgttgcctatcactacttctaaaagtctatttcccccatatttgtatttagtgaacttcagaactagagaaagcatgatgttataacctaccatcatgctgtataagaagaatatgttccctcttgtttggctgaaagaaatgcatgtttggttgtgctgatattgtactgctattatcttcttctgtgtcatttgcctcaatacattgttttatttgaatttgaacttccttttcacaatcgaatttgtctgatgaaatataagattatgaatttgctcttttattgaactatatggacacttaattttgtgcttttggcaaatccatgtcctcattttgatttctggataaatcactggactcttgcacccaggatttcttctgatgtctaattacttaaatgcgaaaatcacctgacttttgctcactgggttgctttcctgtagttaggagtagttctatttaaccatctattagttgttcttggcttcatatactcagtaaaacttaaaaacaaagcctgaaaagtgaaatctccaatgggatcagtagaaacattactttatctgctttcattgatgttctctattcttttggagcatatgttttatattagctgaagttactcaagtttcctttcataatcagggatttcgtaaagttcaccctgatagatgggagtgggccaatgaaggttttattatgggccaaaaacatcttctgaagaccattaagaggaggaagaagtcttctcaggaatcacctagcgagatacagaaggcgcctgtcaaaactgcacctggtactgaaaatattgagataggaaaatatggtggccttgaaaaggaggttgaaacccttaagagggataaagctcttctcatgcagcagcttgtagatctcaggcactaccagcaaacatctaaccttgaagtgcagaatttaattgaacggcttcaagtaatggaacagaaccagcagcagatgatggcacttctagcaatcgttgtccagaatcctagttttctcaaccagcttgtgcagcaacagcagcagcagcgcagatccaactggtggagtcctgatggaagcaagaaaaggagatttcatgctcttgagcagggccctgtaactgatcaggagacctctggccgtggggcacatattgttgaatatctcccacctgtcccagaaacatcaggtcaagtaaatccagtggaaggagccatttgttcggccaactcacaaccagttccaagtcctgcagttgccacacccatggacatgcaaacgtctaacgttgctgatactctcggttcatctgaggagcctttcgctgataactctactctacatgaatgggatgataacgacatgcagcttctgtttgatgataacctagacccaatacttccaccatttgagaatgatggtcaaatgggccctcctttgagtgttcaagattatgattttccgcagttagagcaggattgtctgatggaagcacaatataactccaacaatcctcaatatggtaatgactaattactgtataccctatgtttttgttcatcattttgtggaaaacaagcgtgatgtcattttagttaactgtggagtttctatgtgcatgtttcatgccaaatgccaaacaatggatgtttacagaccacccttttagtctgttgtgctaggatttggcaaagatgacatggagccttattcaaagttcaatacttgcttctcaaatggctttgatatttccttctgttatttcacgaaagtagtgtttgacaactagagtgatatttttttttatatctggttaattggacaattttgatcacagccaaacctcttgatttagtttcctcaaccaaaacagatctaagctgtgcctgcgtcacattgattattttcccaatcagcctattctttgtttgatcatatcggtttcaattcactctgcagtacttctatacatgcctgacatcttccctttttcatcagctgatgtcattaccgaagcttgattggtggtccaggagcatacttgcagtaacattaggtgggtacagtccatttttaacatgaaaaaggaattattccttaatgtgctttgttaatggaatgcttactttgcgttgcaataccaaagtaccaaactgaaagacataccatccttgtttaattcctctagccgttgtttcttacagaactttaggctagtatttcgtgtcaggctaggactatatggtcaactaaccctgcaaccgcctccaaattgaaattcaatcgaaaaaatattgaacttaatggcttgaactgaatgcttactaaataaacatgattggtcgttaaaaaaatgccatcagccatttcttgtaaataaatacacgaagctatattttttttatttgtatgaccaatgtttgttccagtactgatccagtttcaacatctgcagttcttcggtgaccaacctccgggcgcatctgcaccattggcatcccgaaatggcgtcctcagggtgtaccgatgaattatgctaacacagaagaagatataactctaatctggttgaccatacagaactacctttcttgttcaaggcactttttggggacaggggacgccttttcgcagttctcgtcgtcttacactagcgatggttgctaccatcgaattcatttggtgtatatactgttgttcgtcttataaaacatgagcagttttgt</dnaseqindica> |
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