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生物胁迫响应中参与的 NAC 转录因子家族的计算分析和表达谱分析在 Manihot esculenta 中。

Computational analysis and expression profiling of NAC transcription factor family involved in biotic stress response in Manihot esculenta.

机构信息

National Key Laboratory for Tropical Crop Breeding, Sanya Institute of Breeding and Multiplication, Hainan University, Sanya, China.

College of Tropical Agriculture and Forestry, Hainan University, Danzhou, China.

出版信息

Plant Biol (Stuttg). 2024 Dec;26(7):1247-1259. doi: 10.1111/plb.13715. Epub 2024 Sep 12.

Abstract

The Nascent polypeptide-Associated Complex (NAC) family is among the largest plant-specific TF families and plays an important role in plant growth, development, and stress responses. NAC TFs have been extensively studied in plants such as rice and Arabidopsis; however, their characterization, functions, evolution, and expression patterns in Manihot esculenta (cassava) under environmental stress remain largely unexplored. Here, we used bioinformatic analyses and biotic stress responses to investigate the physicochemical properties, chromosome location, phylogeny, gene structure, expression patterns, and cis-elements in promoter regions of the NAC TFs in cassava. We identified 119 M. esculenta NAC (MeNAC) gene families, unevenly distributed on 16 chromosomes. We investigated expression patterns of all identified MeNAC TFs under Xanthomonas axonopodis pv. manihotis (Xam) infection, strain CHN11, at different time points. Only 20 MeNAC TFs showed expression of significant bacterial resistance. Six MeNACs (MeNAC7, 26, 63, 65, 77, and 113) were selected for functional analysis. qRT-PCR assays revealed that MeNAC7, 26, 63, 65, 77, and 113 were induced in response to XamCHN11 infection and may participate in the molecular interaction of cassava and bacterial blight. Interestingly, MeNAC26, MeNAC63, MeNAC65, and MeNAC113 responded to XamCHN11 infection at 3 h post-inoculation. Furthermore, we identified 13 stress-related cis-elements in promoter regions of the MeNAC genes that are involved in diverse environmental stress responses. Phylogenetic analysis revealed that MeNAC genes with similar structures and motif distributions were grouped. This study provides valuable insights into the evolution, diversity, and characterization of MeNAC TFs. It lays the groundwork for a better understanding of their biological roles and molecular mechanisms in cassava.

摘要

NAC 家族是植物特有的最大的 TF 家族之一,在植物生长、发育和应激反应中发挥着重要作用。NAC TF 在水稻和拟南芥等植物中得到了广泛的研究;然而,它们在环境胁迫下的特征、功能、进化和在 Manihot esculenta(木薯)中的表达模式在很大程度上仍未被探索。在这里,我们使用生物信息学分析和生物胁迫反应来研究木薯 NAC TF 的理化性质、染色体定位、系统发育、基因结构、表达模式和启动子区域中的顺式元件。我们鉴定了 119 个木薯 NAC(MeNAC)基因家族,不均匀地分布在 16 条染色体上。我们研究了所有鉴定的 MeNAC TF 在黄单胞菌 axonopodis pv. 感染下的表达模式。木薯(Xam),菌株 CHN11,在不同时间点。只有 20 个 MeNAC TF 表现出对细菌的显著抗性。选择了六个 MeNAC(MeNAC7、26、63、65、77 和 113)进行功能分析。qRT-PCR 检测显示,MeNAC7、26、63、65、77 和 113 对 XamCHN11 感染有诱导作用,可能参与了木薯与细菌性疫病的分子互作。有趣的是,MeNAC26、MeNAC63、MeNAC65 和 MeNAC113 在接种后 3 小时对 XamCHN11 感染有反应。此外,我们在 MeNAC 基因的启动子区域鉴定了 13 个与应激相关的顺式元件,这些元件参与了不同的环境应激反应。系统发育分析表明,具有相似结构和基序分布的 MeNAC 基因被分组。本研究为 MeNAC TF 的进化、多样性和特征提供了有价值的见解。它为更好地理解它们在木薯中的生物学作用和分子机制奠定了基础。

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