Diversity of genome size, endopolyploidy and SCoT markers in 20 Trigonella (Fabaceae) species.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-12-01 Epub Date: 2024-06-26 DOI:10.1007/s13353-024-00886-9
Monika Rewers, Agnieszka Lojko, Dorota Olszewska, Aleksandra Niklas, Iwona Jedrzejczyk
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Abstract

The Trigonella species possess medicinal, nutraceutical and pharmaceutical properties due to the presence of many bioactive compounds. Its therapeutic effects are mostly valuable in medicine, cosmetics and the functional food industry. Correct genetic characterisation of plant material is needed to increase the potential of Trigonella species by breeding and conservation programs. The aim of this study was to develop a reliable marker system to support the morphological and phytochemical analysis in Trigonella taxonomic research, species identification and characterization as well as determination of the interspecific variation within this genus along with relationships between species. For this purpose, flow cytometry and SCoT molecular markers were combined. Flow cytometric analyses revealed that Trigonella species possess very small and small genomes. The range of genome sizes was from 1.10 to 5.76 pg/2C, with most species possessing very small genomes (< 2.8 pg/2C). In seeds of 14 species endopolyploid nuclei were detected. Flow cytometric analysis of genome size enabled quick identification of four out of 20 species, while combined with endopolyploidy detection in seeds, facilitated distinction of the next seven species. ScoT molecular markers helped to identify closely related species with similar genome size and cell cycle activity. Therefore, flow cytometry was proposed as the first-choice method for quick accession screening, while the more detailed genetic classification was obtained using SCoT molecular markers.

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20 个三叶草(豆科)物种基因组大小、内倍性和 SCoT 标记的多样性。
由于含有多种生物活性化合物,三叶草具有药用、保健和制药特性。其治疗效果在医药、化妆品和功能性食品工业中具有重要价值。需要对植物材料进行正确的遗传特征描述,以便通过育种和保护计划提高三叶草的潜力。本研究的目的是开发一种可靠的标记系统,以支持三叶草分类研究中的形态学和植物化学分析、物种鉴定和特征描述,以及确定该属的种间变异和物种之间的关系。为此,研究人员将流式细胞仪和 SCoT 分子标记结合起来。流式细胞仪分析表明,Trigonella 属物种的基因组非常小。基因组大小范围为 1.10 至 5.76 pg/2C,大多数物种的基因组非常小(< 2.8 pg/2C)。在 14 个物种的种子中检测到了内多倍体细胞核。通过流式细胞仪分析基因组大小,可以快速鉴定出 20 个物种中的 4 个,同时结合种子中的内倍性检测,可以区分出其后的 7 个物种。ScoT 分子标记有助于识别基因组大小和细胞周期活性相似的近缘物种。因此,建议将流式细胞仪作为快速入选筛选的首选方法,而使用 SCoT 分子标记则可获得更详细的遗传分类。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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