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糖和氨基酸的代谢转变调节藏红花球茎的萌发。

Metabolic shift in sugars and amino acids regulates sprouting in Saffron corm.

机构信息

Stress Physiology and Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

Plant Stress Biology, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, India.

出版信息

Sci Rep. 2017 Sep 19;7(1):11904. doi: 10.1038/s41598-017-10528-2.

Abstract

Saffron is one of the most expensive spices of the world. Since this spice is triploid and meiosis is unusual, it cannot reproduce sexually like other plants; rather, it is propagated vegetatively via an underground corm, which can withstand a long dry dormant period before sprouting. Thus, corms are indispensable to saffron propagation. To identify and analyse signature metabolites associated with the 'dormancy-sprouting' process, non-targeted GC-MS was performed at different stages of corm development. Comparative metabolite profiling reflected dissimilar profiles among the stages as portrayed by differential cluster patterns of metabolites in the PCA and PLS-DA analysis. Correlation analysis revealed the interdependencies of individual metabolites and metabolic pathway. At the onset of stage 2, characterized by the initiation and differentiation of leaf primordia, a shift from dormancy to active metabolism occurred as derived from the increased abundance of sugars and other metabolites involved in the tricarboxylic acid cycle, glycolytic, amino acid and fatty acid pathways. These changes contribute to sprouting and vegetative growth of the corm. The present study provides new insights into saffron corm composition and metabolite changes associated with various stages of corm development and may pave the way for achieving agronomical improvements in this economically important spice.

摘要

藏红花是世界上最昂贵的香料之一。由于这种香料是三倍体,减数分裂异常,它不能像其他植物那样进行有性繁殖;相反,它通过地下球茎进行营养繁殖,球茎在发芽前可以耐受长时间的干燥休眠期。因此,球茎对藏红花的繁殖是必不可少的。为了鉴定和分析与“休眠-发芽”过程相关的特征代谢物,在球茎发育的不同阶段进行了非靶向 GC-MS 分析。比较代谢组学分析反映了不同阶段之间的不同图谱,PCA 和 PLS-DA 分析中代谢物的差异聚类模式描绘了这些图谱。相关性分析揭示了单个代谢物和代谢途径之间的相互依存关系。在以叶片原基的启动和分化为特征的第 2 阶段开始时,休眠状态向活跃代谢状态的转变发生了,这是由于参与三羧酸循环、糖酵解、氨基酸和脂肪酸途径的糖和其他代谢物的丰度增加所致。这些变化有助于球茎的发芽和营养生长。本研究为藏红花球茎成分和与球茎发育各个阶段相关的代谢物变化提供了新的见解,并可能为实现这种经济上重要的香料的农艺改良铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cf2/5605653/ba30ef34cd4e/41598_2017_10528_Fig1_HTML.jpg

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