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MsAREB1通过促进苜蓿中抗坏血酸的生物合成来增强其对低温和盐碱复合胁迫的耐受性。

MsAREB1 enhances combined cold and saline-alkali stress tolerance by promoting ascorbic acid biosynthesis in alfalfa.

作者信息

Guo Weileng, Sun Yuanqing, Chai Juqi, Liu Lei, Li Jiaqi, Ren Yuekun, Guo Changhong

机构信息

Key Laboratory of Molecular and Cytogenetics, College of Life Science and Technology, Harbin Normal University, Harbin, China.

出版信息

Plant Biotechnol J. 2025 Aug;23(8):3349-3362. doi: 10.1111/pbi.70156. Epub 2025 May 26.

DOI:10.1111/pbi.70156
PMID:40415591
Abstract

Cold and saline-alkali stress are typical abiotic stresses on forage in middle and high latitudes, and they frequently occur simultaneously, decreasing the yield and quality of forage. Ascorbic acid plays an essential role in reactive oxygen species metabolism in response to abiotic stress. However, the molecular mechanisms of ascorbic acid biosynthesis induced by combined cold and saline-alkali stress remain unclear. This study identified an abscisic acid-responsive element-binding protein/ABRE-binding factors transcription factor (TF), MsAREB1, which was significantly induced by the combined stress and abscisic acid treatment. Under combined stress, MsAREB1 overexpression regulated ascorbic acid biosynthesis and played a role in the defence response to combined stress by positively regulating myo-inositol oxygenase 2 (MsMIOX2) expression. MsAREB1 and MsMIOX2 overexpression improved resistance to combined stress by increasing the ascorbic acid content. In addition, MsILR3, a bHLH TF, interacted with MsAREB1 to form a protein complex, thereby reducing the MsAREB1-induced transcriptional activation of MsMIOX2. This study demonstrates a model for the regulatory mechanism of MsAREB1-mediated regulation of MsMIOX2 expression and ascorbic acid biosynthesis to reduce oxidative damage by combined cold and saline-alkali stress. These results provide insights for improving the resistance of plants to combined cold and saline-alkali stress and lay the foundation for the genetic improvement of stress tolerance in alfalfa.

摘要

低温和盐碱胁迫是中高纬度地区牧草典型的非生物胁迫,且常同时发生,会降低牧草的产量和品质。抗坏血酸在植物应对非生物胁迫的活性氧代谢中起着至关重要的作用。然而,低温和盐碱复合胁迫诱导抗坏血酸生物合成的分子机制尚不清楚。本研究鉴定出一种脱落酸响应元件结合蛋白/ABRE结合因子转录因子(TF),即MsAREB1,它在复合胁迫和脱落酸处理下显著被诱导。在复合胁迫下,MsAREB1过表达调控抗坏血酸生物合成,并通过正向调控肌醇加氧酶2(MsMIOX2)的表达在对复合胁迫的防御反应中发挥作用。MsAREB1和MsMIOX2过表达通过增加抗坏血酸含量提高了对复合胁迫的抗性。此外,一种bHLH转录因子MsILR3与MsAREB1相互作用形成蛋白复合体,从而降低MsAREB1诱导的MsMIOX2转录激活。本研究展示了MsAREB1介导调控MsMIOX2表达和抗坏血酸生物合成以减轻低温和盐碱复合胁迫下氧化损伤的调控机制模型。这些结果为提高植物对低温和盐碱复合胁迫的抗性提供了见解,并为苜蓿耐逆性的遗传改良奠定了基础。

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本文引用的文献

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Hortic Res. 2024 Jun 21;11(8):uhae165. doi: 10.1093/hr/uhae165. eCollection 2024 Aug.
2
The regulatory module MdCPCL-MdILR3L mediates the synthesis of ascorbic acid and anthocyanin in apple.调控模块MdCPCL-MdILR3L介导苹果中抗坏血酸和花青素的合成。
Plant Biotechnol J. 2025 Apr;23(4):1101-1117. doi: 10.1111/pbi.14567. Epub 2025 Jan 7.
3
MsMIOX2, encoding a MsbZIP53-activated myo-inositol oxygenase, enhances saline-alkali stress tolerance by regulating cell wall pectin and hemicellulose biosynthesis in alfalfa.
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4
Ascorbate, plant hormones and their interactions during plant responses to biotic stress.抗坏血酸、植物激素及其在植物应对生物胁迫中的相互作用。
Physiol Plant. 2024 Jul-Aug;176(4):e14388. doi: 10.1111/ppl.14388.
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