NtDREB-1BL1 Enhances Carotenoid Biosynthesis by Regulating Phytoene Synthase in Nicotiana tabacum

Genes (Basel). 2022 Jun 24;13(7):1134. doi: 10.3390/genes13071134.

Abstract

As one of the most imperative antioxidants in higher plants, carotenoids serve as accessory pigments to harvest light for photosynthesis as well as photoprotectors for plants to adapt to high light stress. Phytoene synthase (PSY) is the entry enzyme and also the major rate-limiting enzyme in the carotenoid pathway. Here, we report a dehydration-responsive element-binding protein (DREB) transcription factor member in Nicotiana tabacum K326, NtDREB-1BL1, which regulates carotenoids biosynthesis by binding to the NtPSY promoter. The NtDREB-1BL1 transcript was widely distributed in leaves by Real-time PCR. Confocal image revealed that NtDREB-1BL1 was localized in the nucleus. The chromatin immunoprecipitation (ChIP) with the qPCR technique indicated that NtDREB-1BL1 could anchor the promoter region of NtPSY. Overexpression (NtDREB-1BL1 OE) and RNA interference (NtDREB-1BL1 RNAi) of NtDREB-1BL1 were performed to evaluate its biological function in N. tabacum. Both carotenoid and chlorophyll contents increased in transgenic plants of NtDREB-1BL1 OE compared with wild-type (WT) plants, with the augment of the genes involved in carotenoid biosynthesis. In contrast, the contents of carotenoid and chlorophyll significantly decreased in transgenic plants of NtDREB-1BL1 RNAi compared to WT, along with the decline in the expression of genes related to carotenoid biosynthesis. Moreover, transgenic plants of NtDREB-1BL1 OE exhibited enhanced tolerance under drought stress, with the weakened tolerance of drought stress in transgenic plants of NtDREB-1BL1 RNAi. In conclusion, our results illustrated the new role of transcription factor NtDREB-1BL1 in improving carotenoid biosynthesis through regulating NtPSY expression.

Keywords: DREB; antioxidants; carotenoid biosynthesis; drought stress; phytoene synthase; transcription factor.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Carotenoids* / metabolism
  • Chlorophyll / metabolism
  • Geranylgeranyl-Diphosphate Geranylgeranyltransferase / genetics
  • Geranylgeranyl-Diphosphate Geranylgeranyltransferase / metabolism
  • Nicotiana* / genetics
  • Nicotiana* / metabolism
  • Plants, Genetically Modified / genetics
  • Plants, Genetically Modified / metabolism
  • Transcription Factors / genetics
  • Transcription Factors / metabolism

Substances

  • Transcription Factors
  • Chlorophyll
  • Carotenoids
  • (all-E) phytoene
  • Geranylgeranyl-Diphosphate Geranylgeranyltransferase

Grants and funding

This research was funded by Grants from the Natural Science Foundation of Henan Province (182300410053), the Science Project 110202101042 (JY-19)/2022530000241007, and 110202102033.