Zhen Qian Zhang's research while affiliated with Oil Crops Research Institute and other places

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Publications (1)


Characterization of the promoter and 5'-UTR intron of oleic acid desaturase (FAD2) gene in Brassica napus
  • Article

May 2014

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94 Reads

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27 Citations

Gene

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Zhen Qian Zhang

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Chang Fa Yin

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[...]

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Chun Yun Guan

In the present study, we characterized the transcriptional regulatory region (KF038144) controlling the expression of a constitutive FAD2 in Brassica napus. There are multiple FAD2 gene copies in B. napus genome. The FAD2 gene characterized and analyzed in the study is located on chromosome A5 and was designated as BnFAD2A5-1. BnFAD2A5-1 harbors an intron (1192bp) within its 5'-untranslated region (5'-UTR). This intron demonstrated promoter activity. Deletion analysis of the BnFAD2A5-1 promoter and intron through the β-glucuronidase (GUS) reporter system revealed that the -220 to -1bp is the minimum promoter region, while -220 to -110bp and +34 to +285bp are two important regions conferring high-levels of transcription. BnFAD2 transcripts were induced by light, low temperature, and abscisic acid (ABA). These observations demonstrated that not only the promoter but also the intron are involved in controlling the expression of the BnFAD2A5-1 gene. The intron-mediated regulation is an essential aspect of the gene expression regulation.

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Citations (1)


... Interestingly, distinct SA-responsive and JA-responsive elements have been identified within specific regions of its promoter . Moreover, both the BnFAD2A5-1 and Sesame SeFAD2 promoters incorporate ABA-responsive cis-elements (ABRE), with their gene expression being induced by ABA (Xiao et al., 2014). Our investigation has shown a significant presence of MeJA, ABA and SA stress-related elements within the HvFAD promotes. ...

Reference:

Genome-wide identification and characterization of FAD family genes in barley
Characterization of the promoter and 5'-UTR intron of oleic acid desaturase (FAD2) gene in Brassica napus
  • Citing Article
  • May 2014

Gene