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综合转录组学和代谢组学分析鉴定与普通小麦种子活力相关的关键基因和代谢物。

Integrated Transcriptomic and Metabolomic Analyses Identify Critical Genes and Metabolites Associated with Seed Vigor of Common Wheat.

机构信息

College of Agriculture, Shanxi Agricultural University, Jinzhong 030801, China.

College of Life Sciences, Shanxi Agricultural University, Jinzhong 030801, China.

出版信息

Int J Mol Sci. 2023 Dec 30;25(1):526. doi: 10.3390/ijms25010526.

Abstract

Seed aging is a common physiological phenomenon during storage which has a great impact on seed quality. An in-depth analysis of the physiological and molecular mechanisms of wheat seed aging is of great significance for cultivating high-vigor wheat varieties. This study reveals the physiological mechanisms of wheat seed aging in two cultivars differing in seed vigor, combining metabolome and transcriptome analyses. Differences between cultivars were examined based on metabolomic differential analysis. Artificial aging had a significant impact on the metabolism of wheat seeds. A total of 7470 (3641 upregulated and 3829 downregulated) DEGs were detected between non-aging HT and LT seeds; however, 10,648 (4506 up and 6142 down) were detected between the two cultivars after aging treatment. Eleven, eight, and four key metabolic-related gene families were identified in the glycolysis/gluconeogenesis and TCA cycle pathways, starch and sucrose metabolism pathways, and galactose metabolism pathways, respectively. In addition, 111 up-regulated transcription factor genes and 85 down-regulated transcription factor genes were identified in the LT 48h group. A total of 548 metabolites were detected across all samples. Cultivar comparisons between the non-aged groups and aged groups revealed 46 (30 upregulated and 16 downregulated) and 62 (38 upregulated and 24 downregulated) DIMs, respectively. Network analysis of the metabolites indicated that glucarate O-phosphoric acid, L-methionine sulfoxide, isocitric acid, and Gln-Gly might be the most crucial DIMs between HT and LT. The main related metabolites were enriched in pathways such as glyoxylate and dicarboxylate metabolism, biosynthesis of secondary metabolites, fatty acid degradation, etc. However, metabolites that exhibited differences between cultivars were mainly enriched in carbon metabolism, the TCA cycle, etc. Through combined metabolome and transcriptome analyses, it was found that artificial aging significantly affected glycolysis/gluconeogenesis, pyruvate metabolism, and glyoxylate and dicarboxylate metabolism, which involved key genes such as , , and . We thus speculate that these genes may be crucial in regulating physiological changes in seeds during artificial aging. In addition, an analysis of cultivar differences identified pathways related to amino acid and polypeptide metabolism, such as cysteine and methionine metabolism, glutathione metabolism, and amino sugar and nucleotide sugar metabolism, involving key genes such as , , , and , which may play pivotal roles in vigor differences between cultivars.

摘要

种子老化是储存过程中一种常见的生理现象,对种子质量有很大影响。深入分析小麦种子老化的生理和分子机制,对于培育高活力小麦品种具有重要意义。本研究结合代谢组学和转录组学分析,揭示了两个活力不同的小麦品种种子老化的生理机制。基于代谢组学差异分析,考察了品种间的差异。人工老化对小麦种子的代谢有显著影响。非老化 HT 和 LT 种子之间共检测到 7470 个差异表达基因(3641 个上调和 3829 个下调);然而,在老化处理后,两个品种之间检测到 10648 个(4506 个上调和 6142 个下调)。在糖酵解/糖异生和 TCA 循环途径、淀粉和蔗糖代谢途径以及半乳糖代谢途径中,分别鉴定出 11、8 和 4 个关键的代谢相关基因家族。此外,在 LT 48h 组中鉴定出 111 个上调转录因子基因和 85 个下调转录因子基因。在所有样品中检测到 548 种代谢物。非老化组和老化组品种间比较分别鉴定出 46 个(30 个上调和 16 个下调)和 62 个(38 个上调和 24 个下调)差异代谢物。代谢物的网络分析表明,半乳糖酸 O-磷酸、L-甲硫氨酸亚砜、异柠檬酸和 Gln-Gly 可能是 HT 和 LT 之间最重要的差异代谢物。主要相关代谢物富集在乙醛酸和二羧酸代谢、次生代谢物生物合成、脂肪酸降解等途径中。然而,表现出品种间差异的代谢物主要富集在碳代谢、TCA 循环等途径中。通过代谢组学和转录组学的联合分析,发现人工老化显著影响糖酵解/糖异生、丙酮酸代谢和乙醛酸和二羧酸代谢,涉及关键基因,如、、等。因此,我们推测这些基因可能在调节人工老化过程中种子的生理变化中起关键作用。此外,品种差异分析鉴定出与氨基酸和多肽代谢相关的途径,如半胱氨酸和蛋氨酸代谢、谷胱甘肽代谢和氨基糖和核苷酸糖代谢,涉及关键基因,如、、、等,这些基因可能在品种活力差异中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e080/10779259/489258146909/ijms-25-00526-g001.jpg

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