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为研究适应机制对植物多叶半日花进行从头转录组组装。

De novo transcriptome assembly of the plant Helianthemum marifolium for the study of adaptive mechanisms.

作者信息

Martín-Díaz Andrea, de Vega Clara, Martín-Hernanz Sara, Aparicio Abelardo, Albaladejo Rafael G

机构信息

Departamento de Biología Vegetal y Ecología. Facultad de Farmacia, Universidad de Sevilla, Sevilla, Spain.

Departamento de Ecología y Evolución. Estación Biológica de Doñana, Consejo Superior de Investigaciones Científicas, Sevilla, Spain.

出版信息

Sci Data. 2025 Mar 27;12(1):515. doi: 10.1038/s41597-025-04888-y.

Abstract

The genus Helianthemum, commonly known as rockroses, encompasses 140 species primarily distributed in the Palearctic region, with notable diversification driven by climatic and geological changes. These plants are valuable for studying speciation processes and ecological divergence. The chemical properties of the leaves have also been investigated for containing valuable bioactive compounds with several therapeutic properties. However, the availability of genomic resources for species in this genus are almost entirely lacking. Here, we assembled and annotated the first reference transcriptome of Helianthemum marifolium, a species with wide morphological variability and infraspecific diversity. Illumina paired-end RNA sequences were generated using leaves from 16 individuals, representing the four recognized subspecies, all cultivated in a greenhouse. RNA reads were assembled with Trinity and Oases, and EvidentialGene produced a transcriptome with 122,002 transcripts. The transcriptome showed 59524 hits on the UniProtBK database through BLASTx. This transcriptome will be an invaluable resource for transcriptome-level population studies, conservation genetics of the many endangered species within the genus, and for deepen into the metabolic pathways of leaf-derived compounds.

摘要

半日花属植物,通常被称为岩蔷薇,包含140个物种,主要分布在古北区,显著的物种分化是由气候和地质变化驱动的。这些植物对于研究物种形成过程和生态分化很有价值。其叶片的化学性质也已被研究,因为叶片含有具有多种治疗特性的有价值的生物活性化合物。然而,该属物种几乎完全缺乏基因组资源。在此,我们组装并注释了多叶半日花(Helianthemum marifolium)的首个参考转录组,该物种具有广泛的形态变异性和种下多样性。使用来自16个个体的叶片生成了Illumina双端RNA序列,这些个体代表了四个公认的亚种,均在温室中种植。RNA reads用Trinity和Oases进行组装,EvidentialGene生成了一个包含122,002个转录本的转录组。通过BLASTx,该转录组在UniProtBK数据库上有59524个匹配。这个转录组将成为转录组水平种群研究、该属许多濒危物种的保护遗传学以及深入研究叶片衍生化合物代谢途径的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/636c/11950303/90f201fcb42f/41597_2025_4888_Fig1_HTML.jpg

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