Difference between revisions of "Os06g0181700"

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(Evolution)
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===Evolution===
 
===Evolution===
Please input evolution information here.
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One of the rice WIN1-like genes, OsWR1(Os02g0202000), encodes a protein of 205 amino acids with a predicted protein molecular weight of 22.45 kDa.
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The amino acid of full length OsWR1 shows a high similarity to WIN1/SHN1 (68.8%), SHN2 (58%), SHN3(57.8%) and OsWR2 (Os06g0604000, 81%), but low
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similarity to OsWR3 (Os02g0797100, 41.4%).these all contain the conserved ERF domain , suggesting that OsWR1 is a homology of WIN1/SHN1.
  
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===References===
 
===References===
 
Youhua Wang;Liyun Wan;Lixia Zhang;Zhijin Zhang;Haiwen Zhang;Ruidang Quan;Shirong Zhou;Rongfeng Huang
 
Youhua Wang;Liyun Wan;Lixia Zhang;Zhijin Zhang;Haiwen Zhang;Ruidang Quan;Shirong Zhou;Rongfeng Huang

Revision as of 06:45, 6 June 2014

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Annotated Information

Function

ERF proteins, Arabidopsis WIN1/SHN1 and Medicago WXP1/2, have been shown to induce the production of epidermal waxes when overexpressed in plants.

The WIN1-like OsWR1 controls wax formation by direct or collaborative activation of wax synthesis genes, and this regulation, distinct from its homology regulator of WIN1/SHN1 in cutin synthesis, subsequently results in reduced water loss and enhanced drought tolerance.

To investigate the functional role of this region,Youhua Wang fused the coding regions of OsWR1 and its deletion of the predicted acidic activation region to the DNA-binding-domain expres- sion vector of GAL4 and examined the behavior of GAL4– OsWR1 and GAL4–OsWR1–DAD constructs as potential transcriptional activators in yeast. In the presence of the activation domain, the OsWR1 protein fused to the DNA- binding domain activated transcription of the lacZ reporter gene, whereas GAL4–OsWR1–DAD could not, indicating that the OsWR1 protein may act as a transcriptional activator.

Datas reveal that OsWR1 is responsive to drought, salt and ABA in rice.

OsWR1 is a positive regulator for drought response through affecting water loss.

OsWR1 might participate in the regulation of oxidative stress response and membrane stability, and this regulation might be a compensation for the modulation of OsWR1 in drought response.

OsWR1 mainly affects wax synthesis and composition in rice.

OsWR1 modulates the expression of wax biosynthesis related genes in rice and OsWR1 physically interacts with the GCC box and DRE in the wax synthesis related gene promoters.

Expression

To test nuclear localization, an in vivo targeting experiment was performed by fusing the coding region of OsWR1 to GFP, and the resulting constructs (WR1–GFP and GFP only) were introduced into rice calli by agroinfiltration. These fusion proteins, under the control of the CaMV 35S promoter, were expressed in rice callus cells,and the localization of the fusion protein was determined by visualization with a fluorescence microscope. The result indicates that WR1–GFP was localized primarily in the nucleus, while GFP-only was observed in cytosol.

Real-time PCR (Q-PCR) amplifications showed that the expression of OsWR1 was quickly responded at 1 h, and then gradually increased to peak at 2.5 h after drought treatment. The transcripts of OsWR1 induced by ABA treatment were clearly observed at 6 h, and reached max- imum induction at 9 h and then decreased, whereas the induction of OsWR1 by salt treatment was dramatically increased at 3 h and reached a maximum at 6 h, and sustained high induction thereafter.

Evolution

One of the rice WIN1-like genes, OsWR1(Os02g0202000), encodes a protein of 205 amino acids with a predicted protein molecular weight of 22.45 kDa. The amino acid of full length OsWR1 shows a high similarity to WIN1/SHN1 (68.8%), SHN2 (58%), SHN3(57.8%) and OsWR2 (Os06g0604000, 81%), but low similarity to OsWR3 (Os02g0797100, 41.4%).these all contain the conserved ERF domain , suggesting that OsWR1 is a homology of WIN1/SHN1.

References

Youhua Wang;Liyun Wan;Lixia Zhang;Zhijin Zhang;Haiwen Zhang;Ruidang Quan;Shirong Zhou;Rongfeng Huang An ethylene response factor OsWR1 responsive to drought stress transcriptionally activates wax synthesis related genes and increases wax production in rice Plant Molecular Biology, 2012, 78(3): 275-288

Aharoni A, Dixit S, Jetter R, Thoenes E, van Arkel G, Pereira A (2004) The SHINE clade of AP2 domain transcription factors activates wax biosynthesis, alters cuticle properties, and confers drought tolerance when overexpressed in Arabidopsis. Plant Cell 16:2463–2480

Labs working on this gene

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Structured Information

Gene Name

Os06g0181700

Description

Pathogenesis-related transcriptional factor and ERF domain containing protein

Version

NM_001063516.1 GI:115466763 GeneID:4340313

Length

980 bp

Definition

Oryza sativa Japonica Group Os06g0181700, 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

Chromosome 6

Location

Chromosome 6:4039785..4040764

Sequence Coding Region

4039909..4039991,4040099..4040552

Expression

GEO Profiles:Os06g0181700

Genome Context

<gbrowseImage1> name=NC_008399:4039785..4040764 source=RiceChromosome06 preset=GeneLocation </gbrowseImage1>

Gene Structure

<gbrowseImage2> name=NC_008399:4039785..4040764 source=RiceChromosome06 preset=GeneLocation </gbrowseImage2>

Coding Sequence

<cdnaseq>atggcgcggccgcagcagcggtatcgcggcgtgcggcagcgccactggggctcatgggtctccgagatccgccaccctctcctgaagacgaggatctggctgggcacgttcgagacggcggaggacgcggcacgcgcgtacgacgaggcggcgcggatcatgtgcggcccgcgcgtgcgcaccaacttcccccacgacgtcgccgacgaggccgcgccgccgccgccgccgcacagcgccgccgcagcctcctcgtcgttcctctccgcggcgctcgtcgccaagctccaccgcttcaacctcgcctccgtccaggctgcgcagcgcggcaacagcaacgacgacgactccaccacctcctcctccgccgccgcgtcgtcgcgcgccgtgattccgtcccttcccgccgccgccggcgcattgggcaatgcggcggcgacggcggagtggagcggcgggttcctcgaggagcagtacgtggaccagatgatcgaggagctcctcgactccaacttctccatggagatctcctgctga</cdnaseq>

Protein Sequence

<aaseq>MARPQQRYRGVRQRHWGSWVSEIRHPLLKTRIWLGTFETAEDAA RAYDEAARIMCGPRVRTNFPHDVADEAAPPPPPHSAAAASSSFLSAALVAKLHRFNLA SVQAAQRGNSNDDDSTTSSSAAASSRAVIPSLPAAAGALGNAAATAEWSGGFLEEQYV DQMIEELLDSNFSMEISC</aaseq>

Gene Sequence

<dnaseqindica>125..207#315..768#actgatcacctcgacctcacttcctcctcaacctcgagctcactcctcgctctcccgccgcgagcgcgcgctctctctcgccgcgaccacgcgcaatccgtcgccgagctcgaggacgtcggcaatggcgcggccgcagcagcggtatcgcggcgtgcggcagcgccactggggctcatgggtctccgagatccgccaccctctcctgtaattcatcgtcgccatcctcctcctgattgattgattctttgtttcttcctcgcgtagattggtttcttggccatggcggtttgatttcttggttgggcttgcaggaagacgaggatctggctgggcacgttcgagacggcggaggacgcggcacgcgcgtacgacgaggcggcgcggatcatgtgcggcccgcgcgtgcgcaccaacttcccccacgacgtcgccgacgaggccgcgccgccgccgccgccgcacagcgccgccgcagcctcctcgtcgttcctctccgcggcgctcgtcgccaagctccaccgcttcaacctcgcctccgtccaggctgcgcagcgcggcaacagcaacgacgacgactccaccacctcctcctccgccgccgcgtcgtcgcgcgccgtgattccgtcccttcccgccgccgccggcgcattgggcaatgcggcggcgacggcggagtggagcggcgggttcctcgaggagcagtacgtggaccagatgatcgaggagctcctcgactccaacttctccatggagatctcctgctgatgtgccctgttcatctacctgttcttctctgctccatctcctgtttctttctctctctcttttttttctttctttttttttgtttttttagtttagtaagctatgtgaggaagaactctgatcgaggttagtttggtcacagtgagttctggagcagcttgtgtatacggtagcatcatttagagcataatagggttgcagttgagaccttc</dnaseqindica>

External Link(s)

NCBI Gene:Os06g0181700, RefSeq:Os06g0181700