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首页> 外文期刊>Scientia horticulturae >Metabolite profiling of mangosteen seed germination highlights metabolic changes related to carbon utilization and seed protection
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Metabolite profiling of mangosteen seed germination highlights metabolic changes related to carbon utilization and seed protection

机译:山竹籽种子萌发的代谢物分析突出了与碳利用和种子保护相关的代谢变化

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摘要

Mangosteen seed is categorized as recalcitrant, becoming inviable if exposed to desiccation and low temperature. However, the molecular mechanism of mangosteen seed germination has not been fully understood. This study profiled the metabolites that were present in germinating mangosteen seeds at different stages (zero, one, three, five, seven and nine days after sowing) using liquid chromatography-mass spectrometry (LC-MS) and gas chromatography-mass spectrometry (GC-MS). A total of 38 tentative metabolites were profiled and classified into amino acid, organic acid, sugar, polyol, alkaloid and others. Metabolites identified implied a timed regulation for germination. Sugars as well as amino acids exhibited a declining trend throughout the germination period as they are likely to be utilized for development and growth of seedling. Furthermore, secondary metabolites such as alkaloids, fiavonoids, and xanthone presence displayed an increasing trend at the middle of germination period which may provide protection for mangosteen seed against herbivory and stress. In brief, carbon utilization and seed protection associated with the modulation of primary and secondary metabolites, respectively are important metabolic signatures of mangosteen seed germination.
机译:山竹籽种子被分类为醋培,如果暴露于干燥和低温,则变得可观。然而,山竹籽种子萌发的分子机制尚未得到完全理解。本研究探讨了使用液相色谱 - 质谱(LC-MS)和气相色谱 - 质谱(GC -多发性硬化症)。将38种暂定的代谢物分为分为氨基酸,有机酸,糖,多元醇,生物碱等。代谢物鉴定了暗示萌发的定时调节。糖类以及氨基酸在整个发芽期间表现出下降的趋势,因为它们可能被用于幼苗的发展和生长。此外,次级代谢产物如生物碱,族骨,和X吨酮和X吨酮在萌发期间呈现出越来越大的趋势,这可能为山竹种子抵抗草食和胁迫提供保护。简而言之,碳利用和与初级代谢物调制相关的种子保护,分别是山竹种子萌发的重要代谢特征。

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