College of Agronomy, Henan University of Science and Technology, Luoyang, 471003, China.
College of Agronomy, Synergetic Innovation Centre of Henan Grain Crops and National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, Zhengzhou, 450002, China.
Physiol Plant. 2020 Jan;168(1):205-217. doi: 10.1111/ppl.12944. Epub 2019 Mar 6.
Seed germination, as an integral stage of crop production, directly affects Zea mays (maize) yield and grain quality. However, the molecular mechanisms of seed germination remain unclear in maize. We performed comparative transcriptome analysis of two maize inbred lines, Yu82 and Yu537A, at two stages of seed germination. Expression profile analysis during seed germination revealed that a total of 3381 and 4560 differentially expressed genes (DEGs) were identified in Yu82 and Yu537A at the two stages. Transcription factors were detected from several families, such as the bZIP, ERF, WRKY, MYB and bHLH families, which indicated that these transcription factor families might be involved in driving seed germination in maize. Prominent DEGs were submitted for KEGG enrichment analysis, which included plant hormones, amino acid mechanism, nutrient reservoir, metabolic pathways and ribosome. Of these pathways, genes associated with plant hormones, especially gibberellins, abscisic acid and auxin may be important for early germination in Yu82. In addition, DEGs involved in amino acid mechanism showed significantly higher expression levels in Yu82 than in Yu537A, which indicated that energy supply from soluble sugars and amino acid metabolism may contribute to early germination in Yu82. This results provide novel insights into transcriptional changes and gene interactions in maize during seed germination.
种子萌发是作物生产的一个重要阶段,直接影响玉米(玉米)的产量和籽粒品质。然而,玉米种子萌发的分子机制尚不清楚。我们对两个玉米自交系 Yu82 和 Yu537A 在种子萌发的两个阶段进行了比较转录组分析。在种子萌发过程中的表达谱分析表明,在 Yu82 和 Yu537A 两个阶段共鉴定出 3381 和 4560 个差异表达基因(DEGs)。从 bZIP、ERF、WRKY、MYB 和 bHLH 等家族中检测到转录因子,表明这些转录因子家族可能参与驱动玉米种子萌发。显著的 DEGs 进行了 KEGG 富集分析,包括植物激素、氨基酸机制、营养库、代谢途径和核糖体。在这些途径中,与植物激素(特别是赤霉素、脱落酸和生长素)相关的基因可能对 Yu82 的早期萌发很重要。此外,参与氨基酸机制的 DEGs 在 Yu82 中的表达水平明显高于 Yu537A,这表明从可溶性糖和氨基酸代谢中获得的能量供应可能有助于 Yu82 的早期萌发。这些结果为玉米种子萌发过程中的转录变化和基因相互作用提供了新的见解。