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CIPK11 通过磷酸化 GSTU23 来促进茶树的耐寒性。

CIPK11 phosphorylates GSTU23 to promote cold tolerance in Camellia sinensis.

机构信息

Key Laboratory of Biology, Genetics and Breeding of Special Economic Animals and Plants, Ministry of Agriculture and Rural Affairs, National Center for Tea Plant Improvement, Tea Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou, China.

State Key Laboratory of Plant Environmental Resilience, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.

出版信息

Plant Cell Environ. 2024 Dec;47(12):4786-4799. doi: 10.1111/pce.15070. Epub 2024 Aug 1.

Abstract

Cold stress negatively impacts the growth, development, and quality of Camellia sinensis (Cs, tea) plants. CBL-interacting protein kinases (CIPK) comprise a pivotal protein family involved in plant development and response to multiple environmental stimuli. However, their roles and regulatory mechanisms in tea plants (Camellia sinensis (L.) O. Kuntze) remain unknown. Here we show that CsCBL-interacting protein kinase 11 (CsCIPK11), whose transcript abundance was significantly induced at low temperatures, interacts and phosphorylates tau class glutathione S-transferase 23 (CsGSTU23). CsGSTU23 was also a cold-inducible gene and has significantly higher transcript abundance in cold-resistant accessions than in cold-susceptible accessions. CsCIPK11 phosphorylated CsGSTU23 at Ser37, enhancing its stability and enzymatic activity. Overexpression of CsCIPK11 in Arabidopsis thaliana resulted in enhanced cold tolerance under freezing conditions, while transient knockdown of CsCIPK11 expression in tea plants had the opposite effect, resulting in decreased cold tolerance and suppression of the C-repeat-binding transcription factor (CBF) transcriptional pathway under freezing stress. Furthermore, the transient overexpression of CsGSTU23 in tea plants increased cold tolerance. These findings demonstrate that CsCIPK11 plays a central role in the signaling pathway to cold signals and modulates antioxidant capacity by phosphorylating CsGSTU23, leading to improved cold tolerance in tea plants.

摘要

冷胁迫会对茶树(Camellia sinensis(L.)O. Kuntze)的生长、发育和品质产生负面影响。CBL 相互作用蛋白激酶(CIPK)是一个关键的蛋白质家族,参与植物的发育和对多种环境刺激的响应。然而,它们在茶树中的作用和调控机制尚不清楚。在这里,我们表明 CsCBL 相互作用蛋白激酶 11(CsCIPK11)的转录丰度在低温下显著诱导,与 tau 类谷胱甘肽 S-转移酶 23(CsGSTU23)相互作用并磷酸化。CsGSTU23 也是一个低温诱导基因,在耐寒品种中的转录丰度显著高于在敏感品种中。CsCIPK11 在 Ser37 处磷酸化 CsGSTU23,增强其稳定性和酶活性。在拟南芥中过表达 CsCIPK11 可增强其在冷冻条件下的耐冷性,而在茶树中瞬时敲低 CsCIPK11 的表达则产生相反的效果,导致耐冷性降低,并抑制 C-重复结合转录因子(CBF)转录途径在冷冻胁迫下。此外,茶树中 CsGSTU23 的瞬时过表达提高了其耐冷性。这些发现表明,CsCIPK11 在冷信号转导途径中起着核心作用,通过磷酸化 CsGSTU23 来调节抗氧化能力,从而提高了茶树的耐冷性。

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