CsLHY positively regulates cold tolerance by activating CsSWEET17 in tea plants

Low temperature is one of the most important environmental factors limiting tea plants' geographic distribution and severely affects spring tea's yield and quality. Circadian components contribute to plant responses to low temperatures; however, comparatively little is known about these co...

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Veröffentlicht in:Plant physiology and biochemistry 2024-02, Vol.207, p.108341-108341, Article 108341
Hauptverfasser: Wu, Yedie, Di, Taimei, Wu, Zhijing, Peng, Jing, Wang, Jie, Zhang, Kexin, He, Mingming, Li, Nana, Hao, Xinyuan, Fang, Wanping, Wang, Xinchao, Wang, Lu
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Sprache:eng
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Zusammenfassung:Low temperature is one of the most important environmental factors limiting tea plants' geographic distribution and severely affects spring tea's yield and quality. Circadian components contribute to plant responses to low temperatures; however, comparatively little is known about these components in tea plants. In this study, we identified a core clock component the LATE ELONGATED HYPOCOTYL, CsLHY, which is mainly expressed in tea plants' mature leaves, flowers, and roots. Notably, CsLHY maintained its circadian rhythmicity of expression in summer, but was disrupted in winter and held a high expression level. Meanwhile, we found that CsLHY expression rhythm was not affected by different photoperiods but was quickly broken by cold, and the low temperature induced and kept CsLHY expression at a relatively high level. Yeast one-hybrid and dual-luciferase assays confirmed that CsLHY can bind to the promoter of Sugars Will Eventually be Exported Transporters 17 (CsSWEET17) and function as a transcriptional activator. Furthermore, suppression of CsLHY expression in tea leaves not only reduced CsSWEET17 expression but also impaired the freezing tolerance of leaves compared to the control. Our results demonstrate that CsLHY plays a positive role in the low-temperature response of tea plants by regulating CsSWEET17 when considered together. •The core clock component CsLHY is identified in tea plants•CsLHY expression hold a circadian rhythm in summer•Low temperature directly intervenes and induces CsLHY transcription•CsLHY positively regulates cold tolerance by activating CsSWEET17 in tea plants
ISSN:0981-9428
1873-2690
DOI:10.1016/j.plaphy.2024.108341