4.7 Article

Promoter activity of polypyrimidine tract-binding protein genes of potato responds to environmental cues

期刊

PLANTA
卷 236, 期 6, 页码 1747-1755

出版社

SPRINGER
DOI: 10.1007/s00425-012-1726-7

关键词

Solanum tuberosum; RNA binding; PTB proteins; Tubers

资金

  1. NSF Plant Genome Research Program [DBI-0820659]
  2. National Research Initiative from the USDA National Institute of Food and Agriculture [2008-02806]
  3. Division Of Integrative Organismal Systems
  4. Direct For Biological Sciences [0820659] Funding Source: National Science Foundation

向作者/读者索取更多资源

Polypyrimidine tract-binding (PTB) proteins are RNA-binding proteins that target specific RNAs for post-transcriptional processing by binding cytosine/uracil motifs. PTBs have established functions in a range of RNA processes including splicing, translation, stability and long-distance transport. Six PTB-like genes identified in potato have been grouped into two clades based on homology to other known plant PTBs. StPTB1 and StPTB6 are closely related to a PTB protein discovered in pumpkin, designated CmRBP50, and contain four canonical RNA-recognition motifs. CmRBP50 is expressed in phloem tissues and functions as the core protein of a phloem-mobile RNA/protein complex. Sequence from the potato genome database was used to clone the upstream sequence of these two PTB genes and analyzed to identify conserved cis-elements. The promoter of StPTB6 was enriched for regulatory elements for light and sucrose induction and defense. Upstream sequence of both PTB genes was fused to beta-glucuronidase and monitored in transgenic potato lines. In whole plants, the StPTB1 promoter was most active in leaf veins and petioles, whereas StPTB6 was most active in leaf mesophyll. Both genes are active in new tubers and tuber sprouts. StPTB6 expression was induced in stems and stolon sections in response to sucrose and in leaves or petioles in response to light, heat, drought and mechanical wounding. These results show that CmRBP50-like genes of potato exhibit distinct expression patterns and respond to both developmental and environmental cues.

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