Transcriptomic Insights: Phytogenic Modulation of Buffel Grass (Cenchrus ciliaris) Seedling Emergence

Plants Pub Date : 2024-04-23 DOI:10.3390/plants13091174
Xipeng Ren, Tieneke Trotter, N. Ashwath, D. Stanley, Y. S. Bajagai, Philip B. Brewer
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Abstract

This study explores the impact of a novel phytogenic product containing citric acid, carvacrol, and cinnamaldehyde on buffel grass (Cenchrus ciliaris) seedling emergence. A dilution series of the phytogenic solution revealed a concentration range that promoted seedling emergence, with an optimal concentration of 0.5%. Transcriptomic analysis using RNA-seq was performed to investigate gene expression changes in seedlings under the influence of the phytogenic product. The results revealed that the phytogenic treatment significantly altered the gene expression, with a prevalent boost in transcriptional activity compared to the control. Functional analysis indicated the positive alteration of key metabolic pathways, including the tricarboxylic acid (TCA) cycle, glycolysis, and pentose phosphate pathways. Moreover, pathways related to amino acids, nucleotide biosynthesis, heme biosynthesis, and formyltetrahydrofolate biosynthesis showed substantial modulation. The study provides valuable insights into the molecular mechanisms underlying the phytogenic product’s effects on grass seedling establishment and highlights its ability to promote energy metabolism and essential biosynthetic pathways for plant growth.
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转录组透视:植被调控布菲尔草(Cenchrus ciliaris)的幼苗萌发
本研究探讨了一种含有柠檬酸、香芹酚和肉桂醛的新型植物源产品对水牛草(Cenchrus ciliaris)出苗的影响。植物生长素溶液的稀释系列显示了促进出苗的浓度范围,最佳浓度为 0.5%。利用 RNA-seq 进行转录组分析,研究植物生长素产品影响下幼苗的基因表达变化。结果显示,植物生长素处理显著改变了基因表达,与对照组相比,转录活性普遍提高。功能分析表明,关键代谢途径发生了积极变化,包括三羧酸(TCA)循环、糖酵解和磷酸戊糖途径。此外,与氨基酸、核苷酸生物合成、血红素生物合成和甲酰四氢叶酸生物合成相关的途径也出现了实质性的改变。这项研究提供了植物源产品对禾苗生长影响的分子机制的宝贵见解,并突出了其促进能量代谢和植物生长所必需的生物合成途径的能力。
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