Suppr超能文献

镁营养施用以诱导桑树()植物的代谢组学和生理响应。

Magnesium Nutrient Application Induces Metabolomics and Physiological Responses in Mulberry () Plants.

机构信息

Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.

School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

Int J Mol Sci. 2023 Jun 2;24(11):9650. doi: 10.3390/ijms24119650.

Abstract

Mulberry () is a significant plant with numerous economic benefits; however, its growth and development are affected by nutrient levels. A high level of magnesium (Mg) or magnesium nutrient starvation are two of the significant Mg factors affecting plant growth and development. Nevertheless, metabolic response to different Mg concentrations is unclear. In this study, different Mg concentrations, optimal (3 mmol/L), high (6 mmol/L and 9 mmol/L), or low (1 and 2 mmol/L) and deficient (0 mmol/L), were applied to for three weeks to evaluate their effects via physiological and metabolomics (untargeted; liquid chromatography-mass spectrometry (LC-MS)) studies. Several measured physiological traits revealed that Mg deficiency and excess Mg altered net photosynthesis, chlorophyll content, leaf Mg content and fresh weight, leading to remarkable reductions in the photosynthetic efficiency and biomass of mulberry plants. Our study reveals that an adequate supply of the nutrient Mg promoted the mulberry's physiological response parameters (net photosynthesis, chlorophyll content, leaf and root Mg content and biomass). The metabolomics data show that different Mg concentrations affect several differential metabolite expressions (DEMs), particularly fatty acyls, flavonoids, amino acids, organic acid, organooxygen compounds, prenol lipids, coumarins, steroids and steroid derivatives, cinnamic acids and derivatives. An excessive supply of Mg produced more DEMs, but negatively affected biomass production compared to low and optimum supplies of Mg. The significant DEMs correlated positively with mulberry's net photosynthesis, chlorophyll content, leaf Mg content and fresh weight. The mulberry plant's response to the application of Mg used metabolites, mainly amino acids, organic acids, fatty acyls, flavonoids and prenol lipids, in the KEGG (Kyoto Encyclopedia of Genes and Genomes) pathways. These classes of compounds were mainly involved in lipid metabolism, amino acid metabolism, energy metabolism, the biosynthesis of other secondary metabolites, the biosynthesis of other amino acids, the metabolism of cofactors and vitamin pathways, indicating that mulberry plants respond to Mg concentrations by producing a divergent metabolism. The supply of Mg nutrition was an important factor influencing the induction of DEMs, and these metabolites were critical in several metabolic pathways related to magnesium nutrition. This study provides a fundamental understanding of DEMs in response to Mg nutrition and the metabolic mechanisms involved, which may be critical to the mulberry genetic breeding program.

摘要

桑树是一种具有重要经济价值的植物,但它的生长和发育受到营养水平的影响。高镁(Mg)或镁营养饥饿是影响植物生长和发育的两个重要 Mg 因素。然而,不同 Mg 浓度下的代谢响应尚不清楚。在这项研究中,不同的 Mg 浓度,最佳(3 mmol/L)、高(6 mmol/L 和 9 mmol/L)、低(1 和 2 mmol/L)和缺乏(0 mmol/L),被应用于桑树 3 周,通过生理和代谢组学(非靶向;液相色谱-质谱联用(LC-MS))研究来评估它们的影响。几项生理指标的测量表明,Mg 缺乏和过量 Mg 改变了净光合作用、叶绿素含量、叶片 Mg 含量和鲜重,导致桑树光合作用效率和生物量的显著降低。我们的研究表明,适量的营养 Mg 供应促进了桑树的生理响应参数(净光合作用、叶绿素含量、叶片和根 Mg 含量和生物量)。代谢组学数据显示,不同的 Mg 浓度影响了几种差异表达代谢物(DEMs),特别是脂肪酸、类黄酮、氨基酸、有机酸、含氧化合物、 prenol 脂质、香豆素、类固醇和类固醇衍生物、肉桂酸和衍生物。过量的 Mg 供应产生了更多的 DEMs,但与低和最佳 Mg 供应相比,对生物量的产生产生了负面影响。显著的 DEMs 与桑树的净光合作用、叶绿素含量、叶片 Mg 含量和鲜重呈正相关。桑树对 Mg 应用的响应利用代谢物,主要是氨基酸、有机酸、脂肪酸、类黄酮和 prenol 脂质,参与 KEGG(京都基因与基因组百科全书)途径。这些化合物类主要参与脂代谢、氨基酸代谢、能量代谢、其他次生代谢物的生物合成、其他氨基酸的生物合成、辅助因子和维生素途径的代谢,表明桑树通过产生不同的代谢来响应 Mg 浓度。Mg 营养供应是影响 DEMs 诱导的重要因素,这些代谢物在与镁营养有关的几个代谢途径中至关重要。这项研究为桑树对 Mg 营养的响应和所涉及的代谢机制提供了基本的理解,这可能对桑树遗传育种计划至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1ea/10253527/e2855f797a2f/ijms-24-09650-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验