Genome-wide analysis of NAC transcription factors and exploration of candidate genes regulating selenium metabolism in Broussonetia papyrifera.

IF 3.6 3区 生物学 Q1 PLANT SCIENCES
Planta Pub Date : 2024-05-16 DOI:10.1007/s00425-024-04438-7
Longfei Guo, Yongling Liao, Shiming Deng, Jitao Li, Xianchen Bu, Changye Zhu, Weiwei Zhang, Xin Cong, Shuiyuan Cheng, Qiangwen Chen, Feng Xu
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Abstract

Main conclusion: Genome-wide identification revealed 79 BpNAC genes belonging to 16 subfamilies, and their gene structures and evolutionary relationships were characterized. Expression analysis highlighted their importance in plant selenium stress responses. Paper mulberry (Broussonetia papyrifera), a deciduous arboreal plant of the Moraceae family, is distinguished by its leaves, which are abundant in proteins, polysaccharides, and flavonoids, positioning it as a novel feedstock. NAC transcription factors, exclusive to plant species, are crucial in regulating growth, development, and response to biotic and abiotic stress. However, extensive characterization of the NAC family within paper mulberry is lacking. In this study, 79 BpNAC genes were identified from the paper mulberry genome, with an uneven distribution across 13 chromosomes. A comprehensive, genome-wide analysis of BpNACs was performed, including investigating gene structures, promoter regions, and chromosomal locations. Phylogenetic tree analysis, alongside comparisons with Arabidopsis thaliana NACs, allowed for categorizing these genes into 16 subfamilies in alignment with gene structure and motif conservation. Collinearity analysis suggested a significant homologous relationship between the NAC genes of paper mulberry and those in Morus notabilis, Ficus hispida, Antiaris toxicaria, and Cannabis sativa. Integrating transcriptome data and Se content revealed that 12 BpNAC genes were associated with selenium biosynthesis. Subsequent RT-qPCR analysis corroborated the correlation between BpNAC59, BpNAC62 with sodium selenate, and BpNAC55 with sodium selenite. Subcellular localization experiments revealed the nuclear functions of BpNAC59 and BpNAC62. This study highlights the potential BpNAC transcription factors involved in selenium metabolism, providing a foundation for strategically breeding selenium-fortified paper mulberry.

Abstract Image

全基因组范围的 NAC 转录因子分析以及对 Broussonetia papyrifera 硒代谢调控候选基因的探索。
主要结论全基因组鉴定发现了 79 个 BpNAC 基因,隶属于 16 个亚科,并描述了它们的基因结构和进化关系。表达分析强调了它们在植物硒胁迫响应中的重要性。纸桑树(Broussonetia papyrifera)是桑科落叶乔木植物,其独特之处在于叶片富含蛋白质、多糖和黄酮类化合物,因此被定位为一种新型原料。NAC 转录因子是植物物种独有的转录因子,在调节生长、发育以及对生物和非生物胁迫的反应方面至关重要。然而,目前还缺乏对纸桑中 NAC 家族的广泛表征。本研究从纸桑基因组中鉴定出 79 个 BpNAC 基因,这些基因在 13 条染色体上分布不均。对 BpNAC 进行了全面的全基因组分析,包括调查基因结构、启动子区域和染色体位置。通过系统发生树分析以及与拟南芥 NACs 的比较,可以将这些基因分为 16 个亚科,并与基因结构和主题保护保持一致。共线性分析表明,纸桑树的 NAC 基因与 Morus notabilis、Ficus hispida、Antiaris toxicaria 和 Cannabis sativa 中的 NAC 基因之间存在显著的同源关系。整合转录组数据和硒含量后发现,12 个 BpNAC 基因与硒的生物合成有关。随后的 RT-qPCR 分析证实了 BpNAC59、BpNAC62 与硒酸钠以及 BpNAC55 与亚硒酸钠之间的相关性。亚细胞定位实验揭示了 BpNAC59 和 BpNAC62 的核功能。这项研究强调了参与硒代谢的潜在 BpNAC 转录因子,为战略性培育硒强化纸桑提供了基础。
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来源期刊
Planta
Planta 生物-植物科学
CiteScore
7.20
自引率
2.30%
发文量
217
审稿时长
2.3 months
期刊介绍: Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, new methods, physiology, plant-microbe interactions, structural biology, and systems biology.
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