Cheng Xin, Sun Ying, Wang Yijia, Liu Xuyang, Cao Jingjie, Li Dandan, Yang Dan, Zhuo Chao, Wan Xiaochun, Liu Linlin
Anhui Agricultural Universtiy, No. 130 of Changjiang West Road, Hefei, 230036, Anhui, China.
Summit Angeltea Company, Dipu Town, Anji, 313300, Zhejiang, China.
Tree Physiol. 2024 Dec 16;44(12). doi: 10.1093/treephys/tpae149.
C-repeat binding factors (CsCBFs) play a pivotal role in regulating cold response in higher plants. Camellia sinensis cv. Baiye 1, a representative albino tea cultivar, has been identified as temperature-sensitive based on long-term observations by tea farmers. However, it remains unclear whether CsCBFs are involved in temperature-mediated albinism and seasonal greening in 'Baiye 1', and the mechanisms by which CBFs regulate cold responses in albino leaves are unknown. In this study, we demonstrate that CsCBF2 suppresses the seasonal greening of albino leaves by inhibiting chlorophyll and carotenoid biosynthesis under cold stress. In tea plantations, the accumulation of chlorophylls and carotenoids in the albino shoots of 'Baiye 1' is closely correlated with the effective accumulated temperature during its seasonal greening process. Weighted Gene Co-expression Network Analysis revealed negative associations between CsCBF expression and chlorophylls, carotenoids, as well as their biosynthetic genes REVEILLE 1 (CsRVE1) and Zeaxanthin epoxidase 1 (CsZEP1) under temperature fluctuations during seasonal greening. Cold-induced upregulation of CsCBF2 expression and decreased chlorophyll and carotenoids under controlled climate conditions. Transient suppression of CsCBF2 by antisense oligodeoxynucleotides elevated expressions of target genes and increased chlorophylls and carotenoids. CBF-binding cis-elements were identified in CsRVE1, Protochlorophyllide oxidoreductase A (CsPORA) and CsZEP1 promoters. Luciferase assays suggested CsCBF2 binding to the CRT/DRE cis-elements and repressing expression of CsRVE1, CsPORA and CsZEP1. These findings highlight CsCBF2 as a key transcriptional repressor involved in the seasonal greening of albino 'Baiye 1' under cold stress by modulating cold responses and inhibiting genes associated with chlorophyll and carotenoid biosynthesis.
C-重复结合因子(CsCBFs)在高等植物的冷响应调节中起关键作用。长期以来,茶农观察发现,代表性白化茶品种白茶1号对温度敏感。然而,CsCBFs是否参与白茶1号温度介导的白化和季节性返绿尚不清楚,且CBFs调节白化叶片冷响应的机制也未知。在本研究中,我们证明CsCBF2在冷胁迫下通过抑制叶绿素和类胡萝卜素生物合成来抑制白化叶片的季节性返绿。在茶园中,白茶1号白化新梢中叶绿素和类胡萝卜素的积累与其季节性返绿过程中的有效积温密切相关。加权基因共表达网络分析显示,在季节性返绿期间温度波动下,CsCBF表达与叶绿素、类胡萝卜素及其生物合成基因REVEILLE 1(CsRVE1)和玉米黄质环氧化酶1(CsZEP1)呈负相关。在可控气候条件下,冷诱导CsCBF2表达上调,叶绿素和类胡萝卜素含量降低。反义寡脱氧核苷酸瞬时抑制CsCBF2可提高靶基因表达,并增加叶绿素和类胡萝卜素含量。在CsRVE1、原叶绿素酸酯氧化还原酶A(CsPORA)和CsZEP1启动子中鉴定出CBF结合顺式元件。荧光素酶检测表明,CsCBF2与CRT/DRE顺式元件结合,抑制CsRVE1、CsPORA和CsZEP1的表达。这些发现突出了CsCBF2作为一个关键的转录抑制因子,通过调节冷响应和抑制与叶绿素和类胡萝卜素生物合成相关的基因,参与冷胁迫下白化白茶1号的季节性返绿。