DREB box gene transcriptions: Difference between revisions

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|title=An AP2/EREBP-type transcription-factor gene from rice is cold-inducible and encodes a nuclear-localized protein
|title=An AP2/EREBP-type transcription-factor gene from rice is cold-inducible and encodes a nuclear-localized protein
|journal=Theoretical and Applied Genetics
|journal=Theoretical and Applied Genetics
|month=October
|date=October 2003
|year=2003
|volume=107
|volume=107
|issue=6
|issue=6
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|title=Overexpression of NtERF5, a New Member of the Tobacco Ethylene Response Transcription Factor Family Enhances Resistance to ''Tobacco mosaic virus''
|title=Overexpression of NtERF5, a New Member of the Tobacco Ethylene Response Transcription Factor Family Enhances Resistance to ''Tobacco mosaic virus''
|journal=Molecular Plant-Microbe Interactions
|journal=Molecular Plant-Microbe Interactions
|month=
|date=2004
|year=2004
|volume=17
|volume=17
|issue=10
|issue=10
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==See also==
==See also==
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* [[Gene transcriptions/A1BG]]
* [[A1BG gene transcriptions]]
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Latest revision as of 17:03, 28 December 2019

Editor-In-Chief: Henry A. Hoff

It "is likely that the present OsDREBL may preferably bind to other elements such as the ethylene responsive element GCC box (AGCCGCC), rather than the CRT/DREB box (TACCGACAT), since the two boxes were very similar."[1]

"Based on DNA-binding data, this group [one AP2/ERF domain only] has been subdivided into dehydration-responsive element-binding (DREB)-like proteins, which interact with the dehydration-responsive, or cold-repeat, element (consensus sequence TACCGACAT) (Liu et al. 1998; Stockinger et al. 1997) and the EREBP-like (ethylene responsive element binding protein) proteins binding the GCC box (consensus sequence AGCCGCC) (Ohme-Takagi and Shinshi 1995; Sakuma et al. 2002)."[2]

DREB box sampling of A1BG promoters

Consensus sequence for the dehydration-responsive element-binding (DREB) box is 3'-TACCGACAT-5'.

For the Basic programs (starting with SuccessablesDREB.bas) written to compare nucleotide sequences with the sequences on either the template strand (-), or coding strand (+), of the DNA, in the negative direction (-), or the positive direction (+), the programs are, are looking for, and found:

  1. negative strand in the negative direction (from ZSCAN22 to A1BG) is SuccessablesDREB--.bas, looking for 3'-TACCGACAT-5', 0,
  2. negative strand in the positive direction (from ZNF497 to A1BG) is SuccessablesDREB-+.bas, looking for 3'-TACCGACAT-5', 0,
  3. positive strand in the negative direction is SuccessablesDREB+-.bas, looking for 3'-TACCGACAT-5', 0,
  4. positive strand in the positive direction is SuccessablesDREB++.bas, looking for 3'-TACCGACAT-5', 0,
  5. complement, negative strand, negative direction is SuccessablesDREBc--.bas, looking for 3'-ATGGCTGTA-5', 0,
  6. complement, negative strand, positive direction is SuccessablesDREBc-+.bas, looking for 3'-ATGGCTGTA-5', 0,
  7. complement, positive strand, negative direction is SuccessablesDREBc+-.bas, looking for 3'-ATGGCTGTA-5', 0,
  8. complement, positive strand, positive direction is SuccessablesDREBc++.bas, looking for 3'-ATGGCTGTA-5', 0,
  9. inverse complement, negative strand, negative direction is SuccessablesDREBci--.bas, looking for 3'-ATGTCGGTA-5', 0,
  10. inverse complement, negative strand, positive direction is SuccessablesDREBci-+.bas, looking for 3'-ATGTCGGTA-5', 0,
  11. inverse complement, positive strand, negative direction is SuccessablesDREBci+-.bas, looking for 3'-ATGTCGGTA-5', 0,
  12. inverse complement, positive strand, positive direction is SuccessablesDREBci++.bas, looking for 3'-ATGTCGGTA-5', 0,
  13. inverse, negative strand, negative direction, is SuccessablesDREBi--.bas, looking for 3'-TACAGCCAT-5', 0,
  14. inverse, negative strand, positive direction, is SuccessablesDREBi-+.bas, looking for 3'-TACAGCCAT-5', 0,
  15. inverse, positive strand, negative direction, is SuccessablesDREBi+-.bas, looking for 3'-TACAGCCAT-5', 0,
  16. inverse, positive strand, positive direction, is SuccessablesDREBi++.bas, looking for 3'-TACAGCCAT-5', 0.

Increasing the number of nts from A1BG to ZNF497 from 958 to 4445 has yielded no DREB boxes.

Acknowledgements

The content on this page was first contributed by: Henry A. Hoff.

Initial content for this page in some instances came from Wikiversity.

See also

References

  1. Jian-Quan Chen, Yi Dong, Yu-Jun Wang, Qiang Liu, Jin-Song Zhang, Shou-Yi Chen (October 2003). "An AP2/EREBP-type transcription-factor gene from rice is cold-inducible and encodes a nuclear-localized protein". Theoretical and Applied Genetics. 107 (6): 972–979. doi:10.1007/s00122-003-1346-5. Retrieved 2017-05-30.
  2. Ute Fischer and Wolfgang Dröge-Laser (2004). "Overexpression of NtERF5, a New Member of the Tobacco Ethylene Response Transcription Factor Family Enhances Resistance to Tobacco mosaic virus". Molecular Plant-Microbe Interactions. 17 (10): 1162–1171. doi:10.1094/MPMI.2004.17.10.1162. Retrieved 2017-05-30.

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