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蚕豆AP2/ERF基因的综合分析表明VfAP2-1和VfERF-99在非生物和生物胁迫响应中的潜在作用。

Comprehensive Analysis of Faba Bean AP2/ERF Genes Suggests Potential Roles of VfAP2-1 and VfERF-99 in Abiotic and Biotic Stress Responses.

作者信息

Dong Limeng, Huang Ting, Han Shuo, Han Xiaowen, Yin Junliang, Hou Lu, Liu Yujiao

机构信息

Engineering Research Center of Ecology and Agricultural Use of Wetland, Ministry of Education/MARA Key Laboratory of Sustainable Crop Production in the Middle Reaches of the Yangtze River (Co-Construction by Ministry and Province)/Hubei Key Laboratory of Waterlogging Disaster and Agricultural Use of Wetland/College of Agriculture, Yangtze University, Jingzhou, China.

Qinghai Academy of Agriculture and Forestry Sciences, Qinghai University/Key Laboratory of Agricultural Integrated Pest Management, Qinghai Province/Key Laboratory of Qinghai-Tibetan Plateau Biotechnology, Ministry of Education, Qinghai University, Xining, China.

出版信息

Physiol Plant. 2025 May-Jun;177(3):e70356. doi: 10.1111/ppl.70356.

Abstract

The AP2/ERFs not only participate in regulating signal networks, but they also play important roles in the process of plant growth and stress response. However, systematic research of AP2/ERF in Vicia faba is lacking. In this study, VfAP2/ERF was systematically identified and their characteristics were comprehensively analyzed. In total, 145 VfAP2/ERFs were identified, which were unevenly distributed across six chromosomes, and according to phylogenetic relationships, VfAP2/ERFs could be classified into five subgroups. Cis-elements analysis showed that VfAP2/ERF promoters harbored numerous elements functionally relating to light response, plant hormone, abiotic stress response, and plant growth and development response. Expression profiling analysis indicated that VfAP2/ERFs were broadly expressed during growth and development, and were responsive to drought and salt stresses. RT-qPCR revealed that six VfAP2/ERF genes were upregulated under drought and salt stress. Inoculation assay showed that VfAP2-1 and VfERF-99 could enhance resistance to pathogens. Further research shows that VfAP2-1 and VfERF-99 positively influence ROS homeostasis, resulting in the accumulation of HO and O under abiotic and biotic stresses, which inhibited the colonization of pathogens. Additionally, VfAP2-1 and VfERF-99 could significantly increase the content of chlorophyll a, carotenoids, and total chlorophyll, suggesting their possible roles in promoting photosynthesis. This study comprehensively analyzed VfAP2/ERFs and preliminarily explored the function of VfAP2-1 and VfERF-99 in biotic/abiotic stresses and photosynthesis, which laid the foundation for deciphering their functional mechanisms.

摘要

AP2/ERF转录因子不仅参与调控信号网络,还在植物生长和胁迫响应过程中发挥重要作用。然而,目前对蚕豆中AP2/ERF转录因子的系统研究尚显匮乏。本研究对蚕豆VfAP2/ERF转录因子进行了系统鉴定,并全面分析了它们的特征。共鉴定出145个VfAP2/ERF转录因子,它们在六条染色体上分布不均,根据系统发育关系,VfAP2/ERF转录因子可分为五个亚组。顺式作用元件分析表明,VfAP2/ERF转录因子的启动子含有大量与光响应、植物激素、非生物胁迫响应以及植物生长发育响应相关的功能元件。表达谱分析表明,VfAP2/ERF转录因子在生长发育过程中广泛表达,并对干旱和盐胁迫有响应。RT-qPCR结果显示,六个VfAP2/ERF基因在干旱和盐胁迫下上调表达。接种试验表明,VfAP2-1和VfERF-99可增强对病原体的抗性。进一步研究表明,VfAP2-1和VfERF-99对活性氧稳态有正向影响,导致在非生物和生物胁迫下H₂O₂和O₂⁻积累,从而抑制病原体的定殖。此外,VfAP2-1和VfERF-99可显著增加叶绿素a、类胡萝卜素和总叶绿素的含量,表明它们在促进光合作用中可能发挥作用。本研究全面分析了VfAP2/ERF转录因子,并初步探索了VfAP2-1和VfERF-99在生物/非生物胁迫及光合作用中的功能,为阐明其作用机制奠定了基础。

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