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代谢谱揭示了氮缺乏下油菜( L.)幼苗叶片和根系的变化。

Metabolic Profiles Reveal Changes in the Leaves and Roots of Rapeseed ( L.) Seedlings under Nitrogen Deficiency.

机构信息

Oil Crops Research Institute of Chinese Academy of Agricultural Sciences, Key Laboratory of Biology and Genetics Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs, Wuhan 430062, China.

Agricultural College, Guizhou University, Guiyang 550025, China.

出版信息

Int J Mol Sci. 2022 May 21;23(10):5784. doi: 10.3390/ijms23105784.

Abstract

Rapeseed ( L.) is an important oil crop species and plays a crucial role in supplying edible oil worldwide. However, rapeseed production in the field is often severely inhibited due to nitrogen (N) deficiency. Metabolites play key roles in plant growth and resistance to environmental stress, but little is known about the differential synthesis and accumulation of metabolites underlying rapeseed adaptation to N deficiency. Here, we studied the phenotypic response and used LC-electrospray ionization (ESI), ESI-MS/MS, and widely untargeted metabolomic approaches to detect differences in rapeseed under normal N (HN) and N-deficient (LN) conditions. The results showed that N deficiency severely inhibited rapeseed shoot growth and promoted rapeseed root architectural changes under LN conditions. In total, 574 metabolites were detected, and there were 175 and 166 differentially accumulated metabolites in the leaves and roots between the HN and LN conditions, respectively. The significantly differentially accumulated metabolites were involved in four primary metabolic pathways, namely, sucrose, phenylalanine, amino acid, and tricarboxylic acid cycle metabolism. Notably, we found that plant hormones have distinct accumulation patterns in rapeseed and coordinate to play crucial roles in both maintaining growth and protecting against damage from plant disease under HN and LN conditions. Moreover, our results indicated that flavonoid compounds, especially anthocyanins and rutin, may play important roles in increasing root cell resistance to oxidative damage and soil pathogen infections. Overall, this work provides valuable information for understanding the overall metabolite changes in rapeseed under N deficiency conditions, which may be beneficial for improving and producing new varieties of rapeseed capable of high yields under low N conditions.

摘要

油菜(L.)是一种重要的油料作物,在全球范围内供应食用油方面发挥着关键作用。然而,由于氮(N)缺乏,田间油菜的生产经常受到严重抑制。代谢物在植物生长和抵抗环境胁迫方面起着关键作用,但对于油菜适应 N 缺乏的代谢物的差异合成和积累知之甚少。在这里,我们研究了表型反应,并使用 LC-电喷雾电离(ESI)、ESI-MS/MS 和广泛的非靶向代谢组学方法来检测正常氮(HN)和缺氮(LN)条件下油菜的差异。结果表明,N 缺乏严重抑制了油菜地上部分的生长,并在 LN 条件下促进了油菜根的形态变化。总共检测到 574 种代谢物,HN 和 LN 条件下叶片和根中的差异积累代谢物分别有 175 和 166 种。差异显著的差异积累代谢物涉及四个主要代谢途径,即蔗糖、苯丙氨酸、氨基酸和三羧酸循环代谢。值得注意的是,我们发现植物激素在油菜中有明显的积累模式,并在 HN 和 LN 条件下协调发挥重要作用,以维持生长和防止植物病害造成的损害。此外,我们的结果表明,类黄酮化合物,特别是花青素和芦丁,可能在增加根细胞对氧化损伤和土壤病原体感染的抗性方面发挥重要作用。总的来说,这项工作为了解油菜在 N 缺乏条件下的整体代谢物变化提供了有价值的信息,这可能有助于提高和生产在低 N 条件下能够高产的油菜新品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da09/9142919/d33923704c08/ijms-23-05784-g001.jpg

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