AI Article Synopsis

  • Transcriptional regulation is important for plant adaptation to various stresses, including low-boron (B) stress, and this study focuses on the role of the STOP1 transcription factor in Arabidopsis under low-B conditions.
  • STOP1 co-localizes with the NIP5;1 boric acid-channel protein in root epidermal cells, and it enhances B uptake by binding to the 5'-untranslated region of NIP5;1 and activating its expression.
  • Overexpression of STOP1 leads to increased tolerance to low-B stress, indicating that the STOP1-NIP5;1 pathway is crucial for improving plant growth in low-B environments.

Article Abstract

Transcriptional regulation is a crucial component of plant adaptation to numerous different stresses; however, its role in how plants adapt to low-boron (B) stress remains unclear. In this study, we show that the C2H2-type transcription factor SENSITIVE TO PROTON RHIZOTOXICITY1 (STOP1) in Arabidopsis is essential for improving plant growth under low-B conditions. STOP1 and the boric acid-channel protein NOD26-LIKE MAJOR INTRINSIC PROTEIN5;1 (NIP5;1) were found to co-localize in root epidermal cells, and STOP1 binds to the 5´-untranslated region of NIP5;1 to activate its expression and enhance B uptake by the roots. Overexpression of STOP1 increased tolerance to low-B stress by up-regulating NIP5;1 transcript levels. Further genetic analyses revealed that STOP1 and NIP5;1 function together in the same pathway to confer low-B tolerance. These results highlight the importance of the STOP1-NIP5;1 module in improving plant growth under low-B conditions.

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Source
http://dx.doi.org/10.1093/jxb/erae038DOI Listing

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