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苹果DNA结合单锌指蛋白MdDof54促进抗旱性。

The apple DNA-binding one zinc-finger protein MdDof54 promotes drought resistance.

作者信息

Chen Pengxiang, Yan Mingjia, Li Lei, He Jieqiang, Zhou Shuangxi, Li Zhongxing, Niu Chundong, Bao Chana, Zhi Fang, Ma Fengwang, Guan Qingmei

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, 712100, Yangling, Shaanxi, P. R. China.

The New Zealand Institute for Plant and Food Research Limited, Hawke's Bay, New Zealand.

出版信息

Hortic Res. 2020 Dec 1;7(1):195. doi: 10.1038/s41438-020-00419-5.

Abstract

DNA-binding one zinc-finger (Dof) proteins constitute a family of transcription factors with a highly conserved Dof domain that contains a C2C2 zinc-finger motif. Although several studies have demonstrated that Dof proteins are involved in multiple plant processes, including development and stress resistance, the functions of these proteins in drought stress resistance are largely unknown. Here, we report the identification of the MdDof54 gene from apple and document its positive roles in apple drought resistance. After long-term drought stress, compared with nontransgenic plants, MdDof54 RNAi plants had significantly shorter heights and weaker root systems; the transgenic plants also had lower shoot and root hydraulic conductivity, as well as lower photosynthesis rates. By contrast, compared with nontransgenic plants, MdDof54-overexpressing plants had higher photosynthesis rates and shoot hydraulic conductivity under long-term drought stress. Moreover, compared with nontransgenic plants, MdDof54-overexpressing plants had higher survival percentages under short-term drought stress, whereas MdDof54 RNAi plants had lower survival percentages. MdDof54 RNAi plants showed significant downregulation of 99 genes and significant upregulation of 992 genes in response to drought, and 366 of these genes were responsive to drought. We used DAP-seq and ChIP-seq analyses to demonstrate that MdDof54 recognizes cis-elements that contain an AAAG motif. Taken together, our results provide new information on the functions of MdDof54 in plant drought stress resistance as well as resources for apple breeding aimed at the improvement of drought resistance.

摘要

DNA结合单锌指(Dof)蛋白构成了一类转录因子家族,其具有一个高度保守的Dof结构域,该结构域包含一个C2C2锌指基序。尽管多项研究表明Dof蛋白参与多种植物过程,包括发育和抗逆性,但这些蛋白在干旱胁迫抗性中的功能在很大程度上尚不清楚。在此,我们报告了从苹果中鉴定出MdDof54基因,并证明了其在苹果抗旱性中的积极作用。长期干旱胁迫后,与非转基因植物相比,MdDof54 RNA干扰植株的株高显著更矮,根系更弱;转基因植株的地上部和根系导水率也更低,光合作用速率也更低。相比之下,与非转基因植物相比,在长期干旱胁迫下,过表达MdDof54的植株具有更高的光合作用速率和地上部导水率。此外,与非转基因植物相比,在短期干旱胁迫下,过表达MdDof54的植株具有更高的存活率,而MdDof54 RNA干扰植株的存活率更低。MdDof54 RNA干扰植株在干旱胁迫下有99个基因显著下调,992个基因显著上调,其中366个基因对干旱有响应。我们通过DNA亲和纯化测序(DAP-seq)和染色质免疫沉淀测序(ChIP-seq)分析证明,MdDof54识别含有AAAG基序的顺式作用元件。综上所述,我们的研究结果为MdDof54在植物干旱胁迫抗性中的功能提供了新信息,也为旨在提高抗旱性的苹果育种提供了资源。

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