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利用生态分析工具作为非传统方法分析非靶向代谢组学数据:以钝叶榕及其对硝酸盐饥饿的适应反应为例。

The use of ecological analytical tools as an unconventional approach for untargeted metabolomics data analysis: the case of Cecropia obtusifolia and its adaptive responses to nitrate starvation.

机构信息

Red de Estudios Moleculares Avanzados (REMAV), Instituto de Ecología, A.C. (INECOL), Xalapa, 91073, Veracruz, México.

Investigador por México - CONACYT en la Red de Estudios Moleculares Avanzados (REMAV), Instituto de Ecología, A.C. (INECOL), Xalapa, 91073, Veracruz, México.

出版信息

Funct Integr Genomics. 2022 Dec;22(6):1467-1493. doi: 10.1007/s10142-022-00904-1. Epub 2022 Oct 6.

Abstract

Plant metabolomics studies haves revealed new bioactive compounds. However, like other omics disciplines, the generated data are not fully exploited, mainly because the commonly performed analyses focus on elucidating the presence/absence of distinctive metabolites (and/or their precursors) and not on providing a holistic view of metabolomic changes and their participation in organismal adaptation to biotic and abiotic stress conditions. Therefore, spectral libraries generated from Cecropia obtusifolia cell suspension cultures in a previous study were considered as a case study and were reanalyzed herein. These libraries were obtained from a time-course experiment under nitrate starvation conditions using both electrospray ionization modes. The applied methodology included the use of ecological analytical tools in a systematic four-step process, including a population analysis of metabolite α diversity, richness, and evenness (i); a chemometrics analysis to identify discriminant groups (ii); differential metabolic marker identification (iii); and enrichment analyses and annotation of active metabolic pathways enriched by differential metabolites (iv). Our species α diversity results referring to the diversity of metabolites represented by mass-to-charge ratio (m/z) values detected at a specific retention time (rt) (an uncommon way to analyze untargeted metabolomic data) suggest that the metabolome is dynamic and is modulated by abiotic stress. A total of 147 and 371 m/z_rt pairs was identified as differential markers responsive to nitrate starvation in ESI and ESI modes, respectively. Subsequent enrichment analysis showed a high degree of completeness of biosynthetic pathways such as those of brassinosteroids, flavonoids, and phenylpropanoids.

摘要

植物代谢组学研究已经揭示了新的生物活性化合物。然而,与其他组学学科一样,所产生的数据并没有得到充分利用,主要是因为通常进行的分析侧重于阐明独特代谢物(及其前体)的存在/不存在,而不是提供代谢组变化及其参与生物体对生物和非生物胁迫条件的适应的整体视图。因此,此前从 Cecropia obtusifolia 细胞悬浮培养物中生成的光谱库被视为一个案例研究,并在此重新进行了分析。这些库是从硝酸盐饥饿条件下的时间过程实验中使用两种电喷雾电离模式获得的。所应用的方法学包括在系统的四步过程中使用生态分析工具,包括代谢物 α 多样性、丰富度和均匀度的种群分析(i);化学计量学分析以识别判别组(ii);差异代谢标志物鉴定(iii);以及差异代谢物富集的活性代谢途径的富集分析和注释(iv)。我们的物种 α 多样性结果涉及到在特定保留时间(rt)处检测到的质荷比(m/z)值表示的代谢物多样性(一种分析非靶向代谢组学数据的不常见方法)表明代谢组是动态的,并受非生物胁迫的调节。在 ESI 和 ESI 模式下,分别有 147 和 371 个 m/z_rt 对被鉴定为对硝酸盐饥饿有反应的差异标记物。随后的富集分析显示了生物合成途径(如油菜素内酯、类黄酮和苯丙烷途径)的高度完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/018e/9701659/4bb728dd7699/10142_2022_904_Fig1_HTML.jpg

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