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Acta Prataculturae Sinica ›› 2024, Vol. 33 ›› Issue (8): 159-169.DOI: 10.11686/cyxb2023338

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Functional analysis of the MaERF058 gene in response to drought stress in Melilotus albus

Na WEI1,3(), Wen-mao JING1,3, Er-wen XU1,3, Rong-xin WANG1,3, Jing-zhong ZHAO1,3, Xue-e MA1,3, Ji-yu ZHANG2, Wen-xian LIU2()   

  1. 1.Academy of Water Resources Conservation Forests in Qilian Mountains of Gansu Province,Zhangye 734000,China
    2.State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems,Lanzhou 730030,China
    3.Gansu Qilian Mountain Forest Eco-System of the State Research Station,Zhangye 734000,China
  • Received:2023-09-14 Revised:2023-11-01 Online:2024-08-20 Published:2024-05-13
  • Contact: Wen-xian LIU

Abstract:

Drought is one of the most common stresses in agricultural production. It has a deleterious effect on plant growth and many aspects of development, such as photosynthetic function, stomatal aperture, osmotic balance, and hormone regulation, thereby affecting crop yield and quality. Melilotusalbus is a high-quality forage legume that is widely grown in the northern arid regions of China because of its high protein content and tolerance to drought, salinity, and barren environments. Transcription factors (TFs) are important proteins that regulate gene expression. They bind to specific cis-elements in the promoter regions of their target genes to activate or repress their transcription, thereby regulating plant growth and development in response to abiotic stress. Genes in the plant ethylene response factor (ERF) TF family respond to various abiotic stresses, and are important components of plant stress resistance mechanisms. MaERF058 is a key drought tolerance gene in M.albus. In this study, we analyzed the subcellular localization of MaERF058 in tobacco (Nicotiana tabacum), and found that the expressed protein was located in the nucleus. Overexpression of MaERF058 in Arabidopsisthaliana significantly increased its drought tolerance, compared with that of wild type. Compared with the wild type, the MaERF058-overexpressinglines showed significantly increased proline content (P<0.01) and catalase activity (P<0.05) and significantly decreased malondialdehyde content (P<0.01) under drought conditions. Monoamine oxidase staining using the nitroblue tetrazolium method showed that the reactive oxygen content in the roots was higher in the MaERF058-overexpressinglines than in the control. These results suggest that the TF encoded by MaERF058 in M. albus has a positive regulatory role in the drought stress response.

Key words: Melilotusalbus, ERF transcription factor, drought stress, genetic transformation