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鹰嘴豆和小扁豆中AREB/ABF/ABI5亚家族基因的鉴定与表达揭示了参与脱落酸介导的干旱胁迫防御反应的主要因子。

Identification and expression of the AREB/ABF/ABI5 subfamily genes in chickpea and lentil reveal major players involved in ABA-mediated defense response to drought stress.

作者信息

Basso Marcos Fernando, Iovieno Paolo, Capuana Maurizio, Contaldi Felice, Ieri Francesca, Menicucci Felicia, Celso Fabrizio Lo, Barone Giampaolo, Martinelli Federico

机构信息

Department of Biology, University of Florence, Sesto Fiorentino, Via Madonna del Piano, 50019, Florence, Sesto Fiorentino, Italy.

Institute of Biosciences and BioResources (IBBR), National Research Council of Italy (CNR), Via Madonna del Piano 10, 50019, Florence, Sesto Fiorentino, Italy.

出版信息

Planta. 2025 Jun 10;262(1):22. doi: 10.1007/s00425-025-04740-y.

Abstract

This study identified and evaluated the expression of the AREB/ABF/ABI5 subfamily genes in chickpea and lentil, and revealed the major players involved in defense response to PEG-induced drought stress. Abscisic acid (ABA)-responsive element-binding protein/ABRE-binding factor/ABA-INSENSITIVE 5 (AREB/ABF/ABI5) subfamily proteins are major players in the ABA-mediated signaling pathway triggered by multiple stresses. AREB/ABF/ABI5 subfamily proteins belong to the basic-leucine zipper transcription factors that regulate the expression of several downstream defense genes to abiotic and biotic stresses. This protein set is highly targeted when trying to understand plant defense against abiotic stress or to improve plant tolerance to drought, cold, and salinity stresses. However, there is still very little information available about the genes of the AREB/ABF/ABI5 subfamily in chickpea and lentil. Herein, 8 chickpea and 9 lentil genes of the AREB/ABF/ABI5 subfamily were identified based on sequence analysis, and their expression levels were tested in a polyethylene glycol-induced drought experiment (20% PEG in Hoagland solution) using real-time RT-PCR and metadata analysis. Sequence analysis showed that members of this subfamily are highly conserved among themselves and with their orthologous genes in other closely related plant species. Overall, sequence data suggested that these genes may possess close or overlapping biological roles in regulating the transcription of abiotic stress-related defense genes. The meta-analysis from RNA-Seq datasets of unstressed plants showed that some members of this gene subfamily have a tissue-specific expression in both chickpea and lentil. Drought-contrasting chickpea and lentil cultivars showed that most AREB/ABF/ABI5 genes are modulated by PEG-induced drought. Furthermore, AREB/ABF/ABI5 genes had also a tendency for higher expression as cultivar tolerance increases. Therefore, this study identified the AREB/ABF/ABI5 subfamily genes in chickpea and lentil, and provides a comprehensive characterization of these members to support further focused research.

摘要

本研究鉴定并评估了鹰嘴豆和小扁豆中AREB/ABF/ABI5亚家族基因的表达,并揭示了参与对聚乙二醇诱导的干旱胁迫防御反应的主要因子。脱落酸(ABA)响应元件结合蛋白/ABRE结合因子/ABA不敏感5(AREB/ABF/ABI5)亚家族蛋白是多种胁迫触发的ABA介导信号通路中的主要因子。AREB/ABF/ABI5亚家族蛋白属于碱性亮氨酸拉链转录因子,可调节多个下游防御基因对非生物和生物胁迫的表达。在试图了解植物对非生物胁迫的防御或提高植物对干旱、寒冷和盐胁迫的耐受性时,这组蛋白是高度靶向的研究对象。然而,关于鹰嘴豆和小扁豆中AREB/ABF/ABI5亚家族基因的信息仍然非常少。在此,基于序列分析鉴定了8个鹰嘴豆和9个小扁豆的AREB/ABF/ABI5亚家族基因,并使用实时RT-PCR和元数据分析在聚乙二醇诱导的干旱实验(Hoagland溶液中20%PEG)中测试了它们的表达水平。序列分析表明,该亚家族成员之间以及与其他密切相关植物物种中的直系同源基因高度保守。总体而言,序列数据表明这些基因在调节非生物胁迫相关防御基因的转录中可能具有密切或重叠的生物学作用。来自未受胁迫植物RNA-Seq数据集的元分析表明,该基因亚家族的一些成员在鹰嘴豆和小扁豆中均具有组织特异性表达。干旱对比的鹰嘴豆和小扁豆品种表明,大多数AREB/ABF/ABI5基因受聚乙二醇诱导的干旱调节。此外,随着品种耐受性的增加,AREB/ABF/ABI5基因也有表达升高的趋势。因此,本研究鉴定了鹰嘴豆和小扁豆中的AREB/ABF/ABI5亚家族基因,并对这些成员进行了全面表征,以支持进一步的重点研究。

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