Untargeted metabolomic analysis of the metabolites in roots of Pugionium cornutum seedlings under drought stress.

IF 2.6 4区 生物学 Q2 PLANT SCIENCES Functional Plant Biology Pub Date : 2024-03-01 DOI:10.1071/FP22190
Zhaoxin Wu, Ping Wang, Guihua Chen
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Abstract

Pugionium cornutum is an annual or biennial xerophyte distributed in arid regions, with drought resistance properties. While previous studies have predominantly focused on the physiological changes of P. cornutum , the understanding of its metabolite variations remains limited. In this study, untargeted metabolomic technology was performed to analyse the change of metabolites in the roots of P. cornutum seedlings under drought stress. Our findings revealed that compared to the R1, the root water potential and the number of lateral roots increased, while the length of the tap root and fresh weight increased first and then decreased. In the R1-R2, a total of 45 differential metabolites (DMs) were identified, whereas in the R1-R3 82 DMs were observed. Subsequently, KEGG analysis revealed a significant enrichment of microbial metabolism in diverse environments and aminobenzoate degradation in the R1-R2, and phenylpropanoid biosynthesis, ubiquinone, and other terpenoid-quinone biosynthesis and isoquinoline alkaloid biosynthesis were significantly enriched in the R1-R3. The upregulation DMs, including L-arginosuccinate, L-tyrosine, p-coumarate, caffeate, ferulate, vanillin, coniferin, 5-aminopentanoate, 2-methylmaleate and 2-furoate in P. cornutum seedlings may play a crucial role in enhancing root growth and improving drought resistance. These findings provide a basis for future investigations into the underlying mechanisms of drought resistance in P. cornutum .

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干旱胁迫下玉米须秧苗根部代谢物的非靶向代谢组学分析
矢车菊(Pugionium cornutum)是一种一年生或两年生的旱生植物,分布于干旱地区,具有抗旱特性。以往的研究主要集中在矢车菊的生理变化上,但对其代谢物变化的了解仍然有限。本研究采用非靶向代谢组学技术分析了干旱胁迫下玉米须草幼苗根部代谢物的变化。我们的研究结果表明,与 R1 相比,根部水势和侧根数量增加,而直根长度和鲜重先增加后减少。在 R1-R2 中,共鉴定出 45 种差异代谢物(DMs),而在 R1-R3 中则观察到 82 种 DMs。随后的 KEGG 分析显示,在 R1-R2 中,不同环境中的微生物代谢和氨基苯甲酸盐降解显著富集,而在 R1-R3 中,苯丙类生物合成、泛醌和其他萜类-醌类生物合成以及异喹啉生物碱生物合成显著富集。玉米螟幼苗中L-精氨酸琥珀酸酯、L-酪氨酸、对香豆酸酯、咖啡酸酯、阿魏酸酯、香兰素、针叶素、5-氨基戊酸酯、2-甲基马来酸酯和2-糠酸酯等DMs的上调可能在促进根系生长和提高抗旱性方面发挥了重要作用。这些发现为今后研究玉米螟抗旱性的内在机制奠定了基础。
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来源期刊
Functional Plant Biology
Functional Plant Biology 生物-植物科学
CiteScore
5.50
自引率
3.30%
发文量
156
审稿时长
1 months
期刊介绍: Functional Plant Biology (formerly known as Australian Journal of Plant Physiology) publishes papers of a broad interest that advance our knowledge on mechanisms by which plants operate and interact with environment. Of specific interest are mechanisms and signal transduction pathways by which plants adapt to extreme environmental conditions such as high and low temperatures, drought, flooding, salinity, pathogens, and other major abiotic and biotic stress factors. FPB also encourages papers on emerging concepts and new tools in plant biology, and studies on the following functional areas encompassing work from the molecular through whole plant to community scale. FPB does not publish merely phenomenological observations or findings of merely applied significance. Functional Plant Biology is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science. Functional Plant Biology is published in affiliation with the Federation of European Societies of Plant Biology and in Australia, is associated with the Australian Society of Plant Scientists and the New Zealand Society of Plant Biologists.
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