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| − | OsAREB1,an ABRE-binding protein responding to ABA and glucosemay, may function as a positive regulator in drought/heat stresses response,
| + | The rice '''''Os06g0211200''''' was reported as '''''OsbZIP46''''' in 2012 <ref name="ref1" /> by researchers from China. |
| − | but a negative regulator in flowering time in Arabidopsis[[[1]]].
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| | | | |
| | ==Annotated Information== | | ==Annotated Information== |
| | ===Function=== | | ===Function=== |
| − | Firstly, overexpression of ''OsAREB1'' alters seedling sensitivity to ABA and glucose and OsAREB1 might have a crucial role in these two
| + | * '''''OsbZIP46''''' is one member of the third subfamily of bZIP transcription factors in rice (Oryza sativa) |
| − | signaling pathways. Roots of transgenic plants were hypersensitive to ABA. Also,transgenic seeds were hypersensitive to glucose in germination period.
| + | * '''''OsbZIP46''''' is a positive regulator of ABA signaling and drought stress tolerance of rice depending on its activation. |
| − | Secondly, 35S-OsAREB1 plants enhanced the resistance to drought and heat.Transgenic seeds can hold more water to stand against drought condition and up-regulate stress-related genes, such as ''RD29A'', ''RD29B''.
| + | * The stress-related genes activated by '''''OsbZIP46CA1''''' are largely different from those activated by the other rice ABF/AREB homologs (such as OsbZIP23), further implying the value of '''''OsbZIP46CA1''''' in genetic engineering of drought tolerance. |
| − | Thirdly, OsAREB1 delay the flowering time.by down-regulating the expression of flowering-related genes, such
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| − | as ''FT'', [[SOC1]], ''LFY''and ''AP1''.
| + | ===Phenotypic analysis=== |
| − | [[File:1213232.jpg]]
| + | * Overexpression of the native '''''OsbZIP46''''' gene increased ABA sensitivity but had no positive effect on drought resistance. |
| | + | * The activation domain of '''''OsbZIP46''''' was defined by a series of deletions, and a region (domain D) was identified as having a negative effect on the activation. We produced a constitutive active form of '''''OsbZIP46''''' (OsbZIP46CA1) with a deletion of domain D. Overexpression of '''''OsbZIP46CA1''''' in rice significantly increased tolerance to drought and osmotic stresses. |
| | + | * Gene chip analysis of the two overexpressors (native '''''OsbZIP46''''' and the constitutive active form '''''OsbZIP46CA'''''1) revealed that a large number of stress-related genes, many of them predicted to be downstream genes of ABF/ AREBs, were activated in the '''''OsbZIP46CA1 '''''overexpressor but not (even down-regulated) in the '''''OsbZIP46''''' overexpressor. |
| | + | * '''''OsbZIP46''''' can interact with homologs of SnRK2 protein kinases that phosphorylate ABFs in Arabidopsis. |
| | | | |
| | ===Expression=== | | ===Expression=== |
| − | Expression patterns of the ''OsAREB1'' gene under various environmental stresses and hormones were analyzed by RT-PCR. | + | * Expression of '''''OsbZIP46''''' was strongly induced by drought, heat, hydrogen peroxide, and abscisic acid (ABA) treatment; however, it was not induced by salt and cold stresses. |
| − | OsAREB1 gene was induced within 1 or 2 h under 100 μM ABA and 15% PEG 6,000 treatments, and maintained the expression level for at least 8 hours. It’s expression was induced by heat within 1 h, and rapidly reached the top expression level within 2 h, then declined to initial level.
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| − | OsAREB1 was not induced by KT, MeJA, NaCl and cold .These results indicated that OsAREB1was induced by exogenous ABA, water stress and heat. This result
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| − | was consistent with the report of Lu et al.[2].
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| − | [http://www.example.com link title]
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| | | | |
| | ===Evolution=== | | ===Evolution=== |
| − | Please input evolution information here.
| + | * '''''OsbZIP46''''' has high sequence similarity to ABA-responsive element binding factor (ABF/AREB) transcription factors ABI5 and OsbZIP23, two transcriptional activators positively regulating stress tolerance in Arabidopsis (Arabidopsis thaliana) and rice, respectively. |
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| − | Extending Knowledge
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| − | ===Binding activity===
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| − | OsAREB1 has ABRE-binding activity in yeast
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| − | Blast result indicated that OsAREB1 belongs to ABF subfamily.
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| − | Most members of this subfamily can bind to the ABRE cis-element
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| − | with a core sequence ACGTGCC. Yeast one-hybrid system was
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| − | used to determine the DNA-binding activity of OsAREB1 with
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| − | ABRE element. The entire coding region of OsAREB1 was fused
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| − | to the GAL4 transcription active domain (TA). The construct
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| − | was transformed into yeast (EGY48) harboring ABRE sequence
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| − | fused upstream of a lacZreporter gene, and the growth status of
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| − | transformants was observed. Yeast cells harboring pPC86 and
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| − | G222 could grow on SD medium lacking Trp, while cells only
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| − | with G222 could not grow on the selection medium (Fig. 1A).
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| − | The colony-lift filter assay suggested that OsAREB1 can bind to
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| − | the ABRE cis-element. Shown as Fig. 1B, when the colony grew
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| − | on X-gal containing plate, only cells with pPC86-OsAREB1 and
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| − | G222 turned blue, cells only with G222 or with both G222 and
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| − | pPC86 did not turn blue. This result indicated that only
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| − | OsAREB1 can bind to the ABRE cis-element and then active the
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| − | expression of lacZ gene. Further, quantificational analysis for
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| − | β-galactosidase activity was performed. Compared to the negative control, the relative β-galactosidase activity of the transformants was about four (Fig. 1C), which revealed there’s a distinct enhancement for β-galactosidase activity.
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| | You can also add sub-section(s) at will. | | You can also add sub-section(s) at will. |
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| | ==Labs working on this gene== | | ==Labs working on this gene== |
| − | 1
| + | * National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan 430070, China |
| − | Biotechnology Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai,
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| − | 2
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| − | College of Life Science and Technology,
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| − | Yangzhou University, Jiangsu, PR China
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| | ==References== | | ==References== |
| − | [[1]]. Lu, G. J., Gao, C. X., Zheng, X. N. and Han, B. (2009) Identification of OsbZIP72 as a positive regulator of ABA response and drought tolerance in rice. Planta 229, 605-615.
| + | <references> |
| − | | + | * <ref name="ref1"> |
| − | 2.Jin XF1, Xiong AS, Peng RH, Liu JG, Gao F, Chen JM, Yao QH. (2010) OsAREB1, an ABRE-binding protein responding to ABA and glucose, has multiple functions in Arabidopsis.BMB Rep 43(1):34-9.
| + | Tang N, Zhang H, Li X, Xiao J, Xiong L. Constitutive activation of |
| | + | transcription factor OsbZIP46 improves drought tolerance in rice. Plant Physiol. |
| | + | 2012 Apr;158(4):1755-68. doi: 10.1104/pp.111.190389. Epub 2012 Feb 1. PubMed |
| | + | PMID: 22301130; PubMed Central PMCID: PMC3320183. |
| | + | </ref> |
| | + | </references> |
| | | | |
| | ==Structured Information== | | ==Structured Information== |
| − | {{JaponicaGene|
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| − | GeneName = Os06g0211200|
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| − | Description = Similar to Abscisic acid responsive elements-binding factor (ABA-responsive element binding protein 1) (AREB1)|
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| − | Version = NM_001063653.1 GI:115467037 GeneID:4340462|
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| − | Length = 4829 bp|
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| − | Definition = Oryza sativa Japonica Group Os06g0211200, complete gene.|
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| − | Source = Oryza sativa Japonica Group
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| − | ORGANISM Oryza sativa Japonica Group
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| − | Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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| − | Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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| − | clade; Ehrhartoideae; Oryzeae; Oryza.
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| − | |
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| − | Chromosome = [[:category:Japonica Chromosome 6|Chromosome 6]]|
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| − | AP = Chromosome 6:5676158..5680986|
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| − | CDS = 5676361..5677152,5677846..5677917,5678514..5678543,5680499..5680575,5680665..5680668<br>|
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| − | GCID = <gbrowseImage1>
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| − | name=NC_008399:5676158..5680986
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| − | source=RiceChromosome06
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| − | preset=GeneLocation
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| − | </gbrowseImage1>|
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| − | GSID = <gbrowseImage2>
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| − | name=NC_008399:5676158..5680986
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| − | source=RiceChromosome06
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| − | preset=GeneLocation
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| − | </gbrowseImage2>|
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| − | CDNA = <cdnaseq>atggagttgccggcggatgggagcgcgctggcgaggcaggggtcgatctactcgctgacgttcgacgagttccagagcgcgctgggaagcgccgagaaggatttcgggtcgatgaacatggatgagctgctgcgcaacatctggacggcggaggagtcgcaggccatagcgccggcggcggcggctgcttcggcggcggcggtggttggggacgcgcagcagcagcagcagccgatccagaggcaggggtcgctgacgctgccacgcacgctgagccagaagacggtggacgaggtgtggcgcgacatcatgggcttgggcggcagcgacgacgaagaccccgcggcggcggcggctgcggcggcgcccgcgcagcggcagccgacgctgggggagatgacgctggaggagttcctggtgcgggccggcgtcgtgcgggaggacatggggcagaccatcgtgctgccgccgcaggcgcaggcgttgttccccgggagcaatgtggtcgccccggccatgcagctcgccaacgggatgctgcctggtgtcgtcggcgtcgcccccggcgccgccgccgcgatgacggtggcggcgccggccacgccggtggtgctgaacgggctggggaaggtggagggcggggatctctcgtcgctctcgccggtgccttacccattcgacaccgcgctcagggtgaggaagggccctaccgtcgagaaggtggtggagaggcggcagaggcggatgatcaagaacagggagtccgctgctaggtctcgcgcgcggaagcaggcttatataatggagttggaagctgaggtggcaaaactgaaggaacagaaggctgaattgcagaaaaagcaggtggaaatgatacagaagcaaaatgatgaggtcatggagagaatcactcagcaacttggaccaaaggcaaagagattttgcctccgacgaacactgactggtccatgctga</cdnaseq>|
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| − | AA = <aaseq>MELPADGSALARQGSIYSLTFDEFQSALGSAEKDFGSMNMDELL RNIWTAEESQAIAPAAAAASAAAVVGDAQQQQQPIQRQGSLTLPRTLSQKTVDEVWRD IMGLGGSDDEDPAAAAAAAAPAQRQPTLGEMTLEEFLVRAGVVREDMGQTIVLPPQAQ ALFPGSNVVAPAMQLANGMLPGVVGVAPGAAAAMTVAAPATPVVLNGLGKVEGGDLSS LSPVPYPFDTALRVRKGPTVEKVVERRQRRMIKNRESAARSRARKQAYIMELEAEVAK LKEQKAELQKKQVEMIQKQNDEVMERITQQLGPKAKRFCLRRTLTGPC</aaseq>|
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| − | DNA = <dnaseqindica>204..995#1689..1760#2357..2386#4342..4418#4508..4511#gattaaacctgatttccccttgctaattcgggccatcgcatcactcccccaactaatcacactcctctcttctccgcttcctcttctcgtatatttataaccccacttcccttttcttcctctttcttctcatcttggtttcttcctagtttcgggagaggattttagtgagggatttgaaggattttgaggtgggagaggagatggagttgccggcggatgggagcgcgctggcgaggcaggggtcgatctactcgctgacgttcgacgagttccagagcgcgctgggaagcgccgagaaggatttcgggtcgatgaacatggatgagctgctgcgcaacatctggacggcggaggagtcgcaggccatagcgccggcggcggcggctgcttcggcggcggcggtggttggggacgcgcagcagcagcagcagccgatccagaggcaggggtcgctgacgctgccacgcacgctgagccagaagacggtggacgaggtgtggcgcgacatcatgggcttgggcggcagcgacgacgaagaccccgcggcggcggcggctgcggcggcgcccgcgcagcggcagccgacgctgggggagatgacgctggaggagttcctggtgcgggccggcgtcgtgcgggaggacatggggcagaccatcgtgctgccgccgcaggcgcaggcgttgttccccgggagcaatgtggtcgccccggccatgcagctcgccaacgggatgctgcctggtgtcgtcggcgtcgcccccggcgccgccgccgcgatgacggtggcggcgccggccacgccggtggtgctgaacgggctggggaaggtggagggcggggatctctcgtcgctctcgccggtgccttacccattcgacaccgcgctcagggtgaggaagggccctaccgtcgagaaggtggtggagaggcggcagaggcggatgatcaagaacagggagtccgctgctaggtctcgcgcgcggaagcaggtgaagcctctcttctcttcaactgcactaggatgtaggaatacgtagcaatcttatgtccatttgcttgattaattagttctgaaaattcgatggtgcctatatttggtatgcctctcgataatgctgtactttattcacatgatgtgatccccccacttctaattcagcttgtagatgttaatttatgcctaatagccactgcaaatagcaagttagcgtcgttaaatattgttcaaccacagaggataagaatctaaagtgaataagccatggttcaagttgatgctctcagattcagagagatgatgagtggctttgttcatttcgggacactggctgagcggtgtttttttttttttttggatcgactattgctgtgatagggatagcatgctcaccatgaagcttggaaggacaattgacaagaccaattcgagaaatagtaacttccgttgatcttttctttaaaaaaaaaacttgtgggggtaataggtcttttttatgtgcaagttgtgctgccatgatgcactcatacttctataaaagctagtatatacttttattgttctaacatagcaaggtcaagtctttctgatactctgattgacagagaatagttctagacagttatggttgtgttgcgaaacacaattttttaacattaaattttggctttctgatatacaacaggcttatataatggagttggaagctgaggtggcaaaactgaaggaacagaaggctgaattgcagaaaaagcaggtatacctgctgtcatataaaattgctttgatccatgcatactctttatttttttctgtttctcttaccaattcctgtaatcagttagtagtccttagataacctcttgactttggataattcctatgtttcttgcctcgattgtcatatttgtttggggatttgggcttaccaatggctgttgttttaatctacccccagcaatgcttgttgctggtattgcaatatgtaggtgaccacaaatagcattcaaatgtccttgttctatgtatttcctgtggaatttatctgagttcaaatctttaatggttgttggaggtttgcacttaaaaggtgtatccctttttaatttgaacattgatggggttacattaattttgtattactgtcctgcaaacttgtattgaaatcctatgccatctggtatcttcttgttcacacattttccatgtgcctactattgttatgccagtatgtcattgtatcatgattttgtaattgaataacttaacaaaagcaccaaaccttttcttcttccaaattcctgacaaaaaatccatgaagctttattcacttattatgcttctaatttgcaggtggaaatgatacagaagcaaaatgatgaggtaatgaccttacagttggtagtaaataccatggttctgaattcgcactatgtttgtcctcattgatgtggaagttgtctatacctctttttgatcataccatactttcttcttttttaaataaaaaacaagagtaagttcatttccacaaacttgctgattaagggatctttggatctgggtgaattttttggggcatttgcaagtttggactaaagttctgatgacttgaatccagataccctctatatccaaacagacccaaattggggcaaaacaacaagctaactctatcgaaccaattcgtttttcttgctgtgagcctttcctaaaactggcagacgccttagaatctccatggctgaagtttgtcaaagtgcacaacaacagtagcattaggtcatttattagagctgcatgacattcaaattctttttaatgagctgcacaacaacatgcacgatttcccaattctggctgtgaggtgtgtttgttattgcattttttgtggtcatgtcagaaaatatcttactacatatggtttaaattatgtttcagaaatcccttattctttaaccaactgccatcataaatgtatatgctggtgttggccatatatttcatgtcactgacactctggcctcttatcccttctcattttcattcatgtatcatgttatctatgtagggtcattgtgttacatccatcttcagttttttaacactttagtgccatccacttgtggttttttttttcataaaataaatttgaagaaactaacagagatatgcaatactggaactcctgccattgcaatagaaaattagcacatcatgattttcagctatcacagtgtggattactgtgatgtgttttttgttaaaaaaaaatgtacactactttgtcctacactcgtccctgctgtcaaataattgagtttgccatgtacagagtaaatgtccagatgtgcaccattctgaatatggtatcccattttgggcatgcatgcttgtaacaccaaaattctgttggagaacatactacccaataagctcaaggtttcattttcaaaatctagttatctgtaattcccatgtcattatagttaaagtatttaattttctaccttctgttttatttttaactaatcagttcaattttttaaccaaagaatgatactcttttaccagggagatctgaagtgacttattggacatacaatgctaaaacaacaaactaaaacaacaaaatggacattgggtaggtttgtctgggtggtatgctcaacccagtctgatctggagtattaaaaagaatcctgactctaaatttagtccaccgctactatagacgctatagtgagcctgtccagcattcaaattaaggacattagttgtgttcgtttctaatggttgggaaccttccccctctagcatgtaaaacggagcaacgatttagcacacgatcaattaagtattagctaaaaaaaacttgaaaaaatggattaatataattttttaaaccaacttttctatagaaagtttttctagaaaacacattgtttagcagttttggaagcgtgcgtgcggaaaacaagtgagtagaggtgggaaagtgtagggaagatgtcatgttggtttgaattttgaaagtctgcaaactcttactaatgttacataaatagttttggttgctactctgcggtttcaagcagtaaacctctgcctcaatcattctgaagtttaagcatttctttgattataatcagtacagttagaaggccttaactgggtgcatttttatgttccgacttctgacgatctcactgaaatctgacaagtgttttctagctgaagatagtacattttactagatgctttgcaatgttgagaaagttctcttcatagattcttctttccctaacaggagttttatctataaatggattttgcaggtcatggagagaatcactcagcaacttggaccaaaggcaaagagattttgcctccgacgaacactgactggtccatggtaagttgatcaagtttgcacagcattgaccaaagttaagatcgttggcttccttggatgtgaccaatcgccgcgtgtatatatatcagctgaagccagagtctccggtttcgccgtggcgctcagcttcagagttgcttctctccttgttggtgaatggtgatggctcagtctcttggacggtcgaatgctggcgtcgattactcactaggtttagctgcgagatcgttgcgtgagcaaaggcatactatctaatctgtttaactccttatttagggaaatctggcatggtgaaaacggggcatgccatctgtgtttgttgtttttgtgcagctgttgcatctgctctgtatgttgctgttgcgttgacatgtcatcccgtttacagttcagtgattctgttctgtaccc</dnaseqindica>|
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| − | Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001063653.1 RefSeq:Os06g0211200]|
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| − | }}
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| | [[Category:Genes]] | | [[Category:Genes]] |
| | [[Category:Japonica mRNA]] | | [[Category:Japonica mRNA]] |