Suppr超能文献

解析性别决定中的跨细胞通讯:网络本体转录本注释(Nota)分析

Unraveling Cross-Cellular Communication in Sex Determination: A Network Ontology Transcript Annotation (Nota) Analysis.

作者信息

Orozco Leonardo R, Weaver Audrey E, Pauli Christopher C, Grassa Christopher J, Vergara Daniela, Baptista Anthony, White Kristin, Emery Benjamin F, Castro Natalie R M, Guerrero Rafael F, Keegan Brian C, Kane Nolan C

机构信息

University of Colorado Boulder, Ecology and Evolutionary Biology, Boulder, CO 80304, USA.

SciAnno Mosaics LLC, Colorado Boulder, USA.

出版信息

bioRxiv. 2025 May 7:2025.05.05.650505. doi: 10.1101/2025.05.05.650505.

Abstract

L. (marijuana, hemp) is a dioecious angiosperm species currently evolving sex chromosomes. Genetic mechanisms, primarily controlled by an XY chromosome system, appear to dictate sex expression in . However, sexual expression is also governed by the interplay of hormone regulatory gene networks, influenced by both genetic and environmental factors. Within the species, some populations exhibit dioecy, monoecy, or a gradient of both. Dioecious individuals produce exclusively male or female flowers, while monoecious plants bear both male and female flowers. However, through interruption of phytohormone signal transduction via abiotic stressors, male and female Cannabis are able to produce flowers of the opposite sex. This mechanism appears to be mediated via long-range signaling cascades enabling alternative cell wall embryo-genesis programming. When the pollen produced by these masculinized XX (genetically female) plants is applied for breeding, the seeds produced all lack a Y chromosome, and are thus considered "feminized" seeds. Previous transcriptomic analysis have identified genes associated with masculinization through the application of phytohormone signal disruption using silver thiosulfate treatment. We used Jack and Nota (Network Ontology Transcript Annotation), tools developed by SciAnno Mosaics and CU Boulder, to analyze transcriptomic data from treated with colloidal silver to induce masculinization. Jack streamlined differential gene expression analysis and functional annotation of the resulting transcripts. Using Nota's multilayer network analysis (random walk with restart), we identified candidate sex-determining genes. Nota and Jack operate on the principle of building a reference-free biology, enabling discovery and annotation of gene-trait associations without relying on pre-existing genomic references. Our findings highlight Nota's power to dissect the genetic architecture of complex traits, particularly in systems like where sex determination is influenced by multiple factors.

摘要

大麻(大麻属植物、麻类)是一种雌雄异株的被子植物,目前正在进化出性染色体。主要由XY染色体系统控制的遗传机制似乎决定了大麻的性别表达。然而,性别表达也受激素调节基因网络相互作用的支配,受到遗传和环境因素的影响。在该物种中,一些种群表现出雌雄异株、雌雄同株或两者的渐变。雌雄异株的个体只产生雄花或雌花,而雌雄同株的植物则同时具有雄花和雌花。然而,通过非生物胁迫因子中断植物激素信号转导,雄性和雌性大麻能够产生异性花。这种机制似乎是通过远程信号级联介导的,从而实现替代细胞壁胚胎发生编程。当这些雄性化的XX(基因上为雌性)植物产生的花粉用于育种时,所产生的种子都缺乏Y染色体,因此被认为是“雌性化”种子。先前的转录组分析已经通过使用硫代硫酸银处理破坏植物激素信号,鉴定出与雄性化相关的基因。我们使用了由SciAnno Mosaics和科罗拉多大学博尔德分校开发的Jack和Nota(网络本体转录注释)工具,来分析用胶体银处理以诱导雄性化的大麻的转录组数据。Jack简化了差异基因表达分析和所得转录本的功能注释。使用Nota的多层网络分析(带重启的随机游走),我们鉴定出了候选性别决定基因。Nota和Jack基于构建无参考生物学的原则运行,能够在不依赖预先存在的基因组参考的情况下发现和注释基因-性状关联。我们的研究结果突出了Nota剖析复杂性状遗传结构的能力,特别是在大麻这样性别决定受多种因素影响的系统中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc03/12247742/a531bc0cb3a3/nihpp-2025.05.05.650505v1-f0001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验