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Identification of Ethanol-inducible Genes and Isolation of the Myb-related Protein-like Promoter in <italic>Oryza sativa</italic> L.

Authors :
Khanthapok, Patipanee
Sukrong, Suchada
Sang-Awut, Numphet
Chakhonkaen, Sriprapai
Pitngam, Keasinee
Muangprom, Amorntip
Osadcenco, Adrian
Source :
Journal of Plant Growth Regulation; Jun2018, Vol. 37 Issue 2, p452-470, 19p
Publication Year :
2018

Abstract

The ethanol-inducible system derived from &lt;italic&gt;Aspergillus nidulans&lt;/italic&gt; has been used for gene expression analysis in plants. However, the response of non-transformed plants to ethanol suggests that this system may be present in plants. Therefore, it is possible to use an ethanol-inducible promoter derived from plants for gene regulation. In this study, effects of ethanol on rice growth were examined and an ethanol-inducible gene from rice was identified. The ethanol-inducible transcript-derived fragments (TDFs) were identified using cDNA-AFLP. These TDFs corresponded to genes involving different pathways including stress response. Using semi-quantitative RT-PCR, five TDFs, which were homologous to &lt;italic&gt;Os07g0240300, Os02g0175700, Os05g0392100, Os03g0569000, Os07g0627300&lt;/italic&gt;, and &lt;italic&gt;adh2&lt;/italic&gt;, were up-regulated. Among them, &lt;italic&gt;Os07g0627300&lt;/italic&gt; is highly conserved and expressed in several tissues; therefore, the promoter of &lt;italic&gt;Os07g0627300&lt;/italic&gt; was isolated and analyzed for motifs and promoter activity. The results indicated that it was a TATA-less promoter containing a number of motifs involved in stress responses. Transient expression results revealed that this promoter had ethanol-inducible promoter activity. These findings suggested that the &lt;italic&gt;Os07g0627300&lt;/italic&gt; promoter could be used as a useful tool for regulating gene expression in plants and could be used to generate transgenic crops with desirable traits. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07217595
Volume :
37
Issue :
2
Database :
Complementary Index
Journal :
Journal of Plant Growth Regulation
Publication Type :
Academic Journal
Accession number :
129426281
Full Text :
https://doi.org/10.1007/s00344-017-9742-2