Återgå till huvudnavigering Återgå till sök Gå direkt till huvudinnehållet

OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice

  • Yangyang Sun
  • , Bi Wang
  • , Junxia Ren
  • , Yutong Zhou
  • , Yu Han
  • , Shuying Niu
  • , Yuanyuan Zhang
  • , Yuheng Shi
  • , Junjie Zhou
  • , Chenkun Yang
  • , Xuemin Ma
  • , Xianqing Liu
  • , Yuehua Luo
  • , Cheng Jin
  • , Jie Luo

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

1 Nedladdningar

Sammanfattning

Serotonin (5-hydroxytryptamine) plays an important role in many developmental processes and biotic/abiotic stress responses in plants. Although serotonin biosynthetic pathways in plants have been uncovered, knowledge of the mechanisms of serotonin accumulation is still limited, and no regulators have been identified to date. Here, we identified the basic leucine zipper transcription factor OsbZIP18 as a positive regulator of serotonin biosynthesis in rice. Overexpression of OsbZIP18 strongly induced the levels of serotonin and its early precursors (tryptophan and tryptamine), resulting in stunted growth and dark-brown phenotypes. A function analysis showed that OsbZIP18 activated serotonin biosynthesis genes (including tryptophan decarboxylase 1 (OsTDC1), tryptophan decarboxylase 3 (OsTDC3), and tryptamine 5-hydroxylase (OsT5H)) by directly binding to the ACE-containing or G-box cis-elements in their promoters. Furthermore, we demonstrated that OsbZIP18 is induced by UV-B stress, and experiments using UV-B radiation showed that transgenic plants overexpressing OsbZIP18 exhibited UV-B stress-sensitive phenotypes. Besides, exogenous serotonin significantly exacerbates UV-B stress of OsbZIP18_OE plants, suggesting that the excessive accumulation of serotonin may be responsible for the sensitivity of OsbZIP18_OE plants to UV-B stress. Overall, we identified a positive regulator of serotonin biosynthesis and demonstrated that UV-B-stress induced serotonin accumulation, partly in an OsbZIP18-dependent manner.
OriginalspråkEngelska
Artikelnummer3215
Antal sidor16
TidskriftInternational Journal of Molecular Sciences
Volym23
Nummer6
DOI
StatusPublicerad - 2022

Nyckelord

  • serotonin
  • UV-B tolerance
  • basic leucine zipper transcription factor
  • transcriptional regulation

Citera det här