Maize specialized metabolome networks reveal organ-preferential mixed glycosides

苯丙素 代谢组 化学 糖苷 代谢组学 质谱法 生物化学 立体化学 色谱法 生物合成
作者
Sandrien Desmet,Yvan Saeys,Kevin Verstaen,Rébecca Dauwe,Hoon Kim,Claudiu Niculaes,Atsushi Fukushima,Geert Goeminne,Ruben Vanholme,John Ralph,Wout Boerjan,Kris Morreel
出处
期刊:Computational and structural biotechnology journal [Elsevier]
卷期号:19: 1127-1144 被引量:14
标识
DOI:10.1016/j.csbj.2021.01.004
摘要

Despite the scientific and economic importance of maize, little is known about its specialized metabolism. Here, five maize organs were profiled using different reversed-phase liquid chromatography-mass spectrometry methods. The resulting spectral metadata, combined with candidate substrate-product pair (CSPP) networks, allowed the structural characterization of 427 of the 5,420 profiled compounds, including phenylpropanoids, flavonoids, benzoxazinoids, and auxin-related compounds, among others. Only 75 of the 427 compounds were already described in maize. Analysis of the CSPP networks showed that phenylpropanoids are present in all organs, whereas other metabolic classes are rather organ-enriched. Frequently occurring CSPP mass differences often corresponded with glycosyl- and acyltransferase reactions. The interplay of glycosylations and acylations yields a wide variety of mixed glycosides, bearing substructures corresponding to the different biochemical classes. For example, in the tassel, many phenylpropanoid and flavonoid-bearing glycosides also contain auxin-derived moieties. The characterized compounds and mass differences are an important step forward in metabolic pathway discovery and systems biology research. The spectral metadata of the 5,420 compounds is publicly available (DynLib spectral database, https://bioit3.irc.ugent.be/dynlib/).
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