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从红树植物白骨壤中分离并鉴定两个与生长和非生物胁迫应答相关的新型 C-重复结合因子(CBF)基因。

Isolation and expression analysis of two novel C-repeat binding factor (CBF) genes involved in plant growth and abiotic stress response in mangrove Kandelia obovata.

机构信息

State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China.

Daya Bay Marine Biology Research Station, Chinese Academy of Sciences, Shenzhen, 518121, China.

出版信息

Ecotoxicology. 2020 Aug;29(6):718-725. doi: 10.1007/s10646-020-02219-y. Epub 2020 May 12.

DOI:10.1007/s10646-020-02219-y
PMID:32394360
Abstract

Kandelia obovata is one of the cold tolerant mangrove plants along the China coast. To reveal the cold tolerant mechanism of K. obovata, the present work isolated two CBF/DREB1 genes (designated KoCBF1 and KoCBF3) from cold-stressed K. obovata and characterized their expression profiles in various organs and in response to multiple abiotic stresses. The deduced proteins of KoCBF1 and 3 all contain specific features of CBFs, and show high similarity to AmCBF1 and 3 from Avicennia marina, respectively. Different expression patterns of the two CBF orthologous under various abiotic stresses and exogenous hormone suggested that they may have different regulators and be involved in different regulatory pathway. The high basal and cold induced expression of the two genes indicated that they may all play important roles in growth and cold resistance of plants. The significant induction of KoCBF3 after salt and lead (Pb) treatments suggested that this CBF gene may also participate in response to salinity and heavy metal stresses. This study will provide a better understanding of CBF-regulated stress-resistant mechanism, which may be benefit in mangrove biotechnological breeding, high-latitude transplanting, and bioremediation of heavy metal pollutions.

摘要

桐花树是中国沿海具有耐寒特性的红树林植物之一。为揭示桐花树的耐寒机制,本研究从受冷胁迫的桐花树中分离得到了两个 CBF/DREB1 基因(分别命名为 KoCBF1 和 KoCBF3),并分析了它们在不同器官中的表达谱以及对多种非生物胁迫的响应。KoCBF1 和 3 的推导蛋白均含有 CBF 的特异性特征,分别与来自海桑的 AmCBF1 和 3 具有高度相似性。这两个 CBF 同源基因在各种非生物胁迫和外源激素下的不同表达模式表明,它们可能具有不同的调控因子,并参与不同的调控途径。这两个基因在基础水平和低温诱导下的高表达表明,它们可能都在植物的生长和抗寒中发挥重要作用。KoCBF3 在盐和铅(Pb)处理后的显著诱导表明,该 CBF 基因可能也参与了对盐度和重金属胁迫的响应。本研究将有助于更好地理解 CBF 调控的抗逆机制,这可能有利于红树生物技术的培育、高纬度移植和重金属污染的生物修复。

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