Login / Signup

Glycinebetaine mitigates tomato chilling stress by maintaining high-cyclic electron flow rate of photosystem I and stability of photosystem II.

Dandan WeiTianpeng ZhangBingquan WangHuiling ZhangMingyang MaShufen LiTony H H ChenMarian BresticYang LiuXinghong Yang
Published in: Plant cell reports (2022)
and maintained a high rate of cyclic electron flow around PSI, contributing to reduced production of reactive oxygen species, thereby mitigating PSI photodamage under chilling stress. Our results highlight the novel roles of GB in enhancing chilling tolerance via the protection of PSI and PSII in BADH transgenic and GB-treated tomato plants under chilling stress. Thus, introducing GB-biosynthetic pathway into tomato and exogenous GB application are effective strategies for improving chilling tolerance.
Keyphrases
  • reactive oxygen species
  • electron transfer
  • stress induced
  • energy transfer
  • heat stress
  • solar cells
  • electron microscopy