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乙烯通过巴西橡胶树中的HbEIN3-HbICE2调控模块负向调节耐寒性。

Ethylene negatively regulates cold tolerance through HbEIN3-HbICE2 regulatory module in Hevea brasiliensis.

作者信息

Zeng Xue-Wei, Jiang Wei-Zeng, Zhang Jian-Long, Ding Jia-Hui, Qiu Yi-Min, Wen Wei, Yang Huan, Zhang Qian-Yu, Yuan Hong-Mei

机构信息

National Key Laboratory for Tropical Crop Breeding, School of Breeding and Multiplication (Sanya Institute of Breeding and Multiplication), School of Tropical Agriculture and Forestry, Hainan University, Sanya, 572025, China; Key Laboratory of Banana Genetic Improvement of Hainan Province , Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, China.

National Key Laboratory for Tropical Crop Breeding, School of Breeding and Multiplication (Sanya Institute of Breeding and Multiplication), School of Tropical Agriculture and Forestry, Hainan University, Sanya, 572025, China.

出版信息

Plant Physiol Biochem. 2025 Feb;219:109397. doi: 10.1016/j.plaphy.2024.109397. Epub 2024 Dec 9.

Abstract

Cold stress can result in reduced growth rates, decreased latex production, and restricted areas for the Para rubber tree (Hevea brasiliensis). However, the molecular mechanisms governing the response of Hevea brasiliensis to cold stress remain elusive. Here, we found that ethylene plays a negative role in Hevea brasiliensis responses to cold stress. Treatment with the ethylene synthesis precursor 1-aminocyclopropane-1-carboxylic acid (ACC) decreased the cold tolerance of Hevea brasiliensis, while exogenous treatment with Ag (an ethylene signal inhibitor) had the opposite effect. Additionally, overexpressing HbEIN3 decreased cold stress tolerance in Arabidopsis and Taraxacum koksaghyz plants. Quantitative real-time PCR analysis indicated that HbEIN3-1 and HbEIN3-2 repress the expression of the cold-responsive genes HbCBF1-3 in Hevea brasiliensis. Moreover, HbEIN3-1 and HbEIN3-2 directly bind to the HbCBF1 promoter to suppress its transcription. Further investigation revealed that HbEIN3s interact with and dampen the transcriptional activity of HbICE2, a crucial transcription factor that positively regulates the cold signaling pathway, thereby attenuating the expression of HbICE2-targeted genes. Collectively, these findings indicate that HbEIN3s play a crucial role in ethylene-regulated cold tolerance through the repression of HbCBF1 expression and HbICE2 transcriptional activity.

摘要

低温胁迫会导致巴西橡胶树(橡胶树)生长速率降低、乳胶产量下降以及生长区域受限。然而,橡胶树对低温胁迫响应的分子机制仍不清楚。在这里,我们发现乙烯在橡胶树对低温胁迫的响应中起负作用。用乙烯合成前体1-氨基环丙烷-1-羧酸(ACC)处理会降低橡胶树的耐寒性,而用银(一种乙烯信号抑制剂)进行外源处理则有相反的效果。此外,过表达HbEIN3会降低拟南芥和蒲公英植株的低温胁迫耐受性。定量实时PCR分析表明,HbEIN3-1和HbEIN3-2抑制橡胶树中冷响应基因HbCBF1-3的表达。此外,HbEIN3-1和HbEIN3-2直接结合到HbCBF1启动子上以抑制其转录。进一步研究发现,HbEIN3与HbICE2相互作用并抑制其转录活性,HbICE2是一种正向调节冷信号通路的关键转录因子,从而减弱HbICE2靶向基因的表达。总的来说,这些发现表明HbEIN3通过抑制HbCBF1表达和HbICE2转录活性在乙烯调节的耐寒性中起关键作用。

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