A gene expression atlas of Nicotiana tabacum across various tissues at transcript resolution.

IF 4.1 2区 生物学 Q1 PLANT SCIENCES Frontiers in Plant Science Pub Date : 2025-02-07 eCollection Date: 2025-01-01 DOI:10.3389/fpls.2025.1500654
Shizhou Yu, Jufen Wan, Tenghang Xu, Jie Zhang, Linggai Cao, Jie Liu, Hongfeng Liu, Xueliang Ren, Zhixiao Yang
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Abstract

Alternative splicing (AS) expands the transcriptome diversity by selectively splicing exons and introns from pre-mRNAs to generate different protein isoforms. This mechanism is widespread in eukaryotes and plays a crucial role in development, environmental adaptation, and stress resistance. In this study, we collected 599 tobacco RNA-seq datasets from 35 projects. 207,689 transcripts were identified in this study, of which 35,519 were annotated in the reference genome, while 172,170 transcripts were newly annotated. Additionally, tissue-specific analysis revealed 4,585 transcripts that were uniquely expressed in different tissues, highlighting the complexity and specialization of tobacco gene expression. The analysis of AS events (ASEs) across different tissues showed significant variability in the expression levels of ASE-derived transcripts, with some of these transcripts being associated with stress resistance, such as the geranyl diphosphate synthase (GGPPS). Moreover, we identified 21,763 splicing quantitative trait locus (sQTLs), which were enriched in genes involved in biological processes such as histone acetylation. Furthermore, sQTLs involved genes related to plant hormone signal transduction, terpenoid backbone biosynthesis, and other resistance pathways. These findings not only reveal the diversity of gene expression in tobacco but also provide new insights and strategies for improving tobacco quality and resistance.

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烟草在不同组织中的基因表达图谱。
选择性剪接(AS)通过选择性剪接前mrna的外显子和内含子来产生不同的蛋白质亚型,从而扩大转录组多样性。这一机制在真核生物中广泛存在,在发育、环境适应和抗逆性中起着至关重要的作用。在这项研究中,我们收集了来自35个项目的599个烟草RNA-seq数据集。本研究共鉴定出207,689个转录本,其中35,519个转录本在参考基因组中被注释,172,170个转录本被新注释。此外,组织特异性分析揭示了4585个转录本在不同组织中独特表达,突出了烟草基因表达的复杂性和专一性。对不同组织中AS事件(ase)的分析显示,ase衍生转录物的表达水平存在显著差异,其中一些转录物与抗逆性有关,如香叶二磷酸合成酶(GGPPS)。此外,我们还鉴定出21,763个剪接数量性状位点(sqtl),这些位点富含参与组蛋白乙酰化等生物过程的基因。此外,sqtl还涉及植物激素信号转导、萜类主干生物合成和其他抗性途径相关的基因。这些发现不仅揭示了烟草基因表达的多样性,而且为提高烟草品质和抗性提供了新的见解和策略。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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