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Pra-GE-ATLAS:通过多组学数据库助力辐射松胁迫与育种研究。

Pra-GE-ATLAS: Empowering Pinus radiata stress and breeding research through a multi-omics database.

作者信息

Roces Víctor, Cañal María Jesús, Mateo Juan Luis, Valledor Luis

机构信息

Plant Physiology, Department of Organisms and Systems Biology, Faculty of Biology and Biotechnology Institute of Asturias, University of Oviedo, Oviedo, 33071, Spain.

Department of Informatics, University of Oviedo, Gijón, 33204, Spain.

出版信息

J Integr Plant Biol. 2025 Aug;67(8):2028-2043. doi: 10.1111/jipb.13944. Epub 2025 Jun 12.

Abstract

In recent decades, research on model organisms has significantly increased our understanding of core biological processes in plant science. However, this focus has created a substantial knowledge bottleneck due to the limited phylogenetic and ecological spectrum covered. Gymnosperms, especially conifers, represent a molecular and ecological diversity hotspot among seed plants. Despite their importance, research on these species is notably underrepresented, primarily due to a slower pace of investigation resulting from a lack of community-based resources and databases. To fill this gap, we developed the P(inus)ra(diata)-G(ene)E(xpression) (Pra-GE)-ATLAS, which consists of several tools and two main modules: transcriptomics and proteomics, presented in this work for the forestry commercial and stress-sensitive species Pinus radiata. We have summarized and centralized all the available information to provide a comprehensive view of the gene expression landscape. To illustrate how applications of the database lead to new biological insights, we have integrated multiple regulatory layers across tissues and stressors. While stress favors the retention of small introns, harmonized alternative splicing analyses reveal that genes with conifers' iconic large introns tend to be under constitutive regulation. Furthermore, the degree of convergence between stressors differed between regulatory layers, with proteomic responses remaining highly distinctive even through intergenerational memory tolerance. Overall, the Pra-GE-ATLAS aims to narrow the distance between angiosperms and gymnosperms resources, deepening our understanding of how characteristic pine features have evolved. Pra-GE-ATLAS DB is available at: http://pra-ge-atlas.valmei.es.

摘要

近几十年来,对模式生物的研究极大地增进了我们对植物科学核心生物学过程的理解。然而,由于所涵盖的系统发育和生态谱有限,这种关注造成了巨大的知识瓶颈。裸子植物,尤其是针叶树,是种子植物中的分子和生态多样性热点。尽管它们很重要,但对这些物种的研究明显不足,主要是因为缺乏基于群落的资源和数据库,研究进展较为缓慢。为了填补这一空白,我们开发了辐射松基因表达图谱(Pra-GE-ATLAS),它由几个工具和两个主要模块组成:转录组学和蛋白质组学,本文针对林业商业和胁迫敏感物种辐射松进行了介绍。我们总结并集中了所有可用信息,以全面呈现基因表达格局。为了说明该数据库的应用如何带来新的生物学见解,我们整合了跨组织和应激源的多个调控层面。虽然胁迫有利于保留小内含子,但协调的可变剪接分析表明,具有针叶树标志性大内含子的基因往往受到组成型调控。此外,应激源之间的趋同程度在不同调控层面有所不同,即使通过代际记忆耐受性,蛋白质组反应仍然高度独特。总体而言,Pra-GE-ATLAS旨在缩小被子植物和裸子植物资源之间的差距,加深我们对松树特征如何进化的理解。Pra-GE-ATLAS数据库可在以下网址获取:http://pra-ge-atlas.valmei.es

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e52/12315495/2cd45099d7ee/JIPB-67-2028-g007.jpg

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