College of Forest, Henan Agricultural University, Zhengzhou, 450002, China.
BMC Genomics. 2024 Jul 15;25(1):693. doi: 10.1186/s12864-024-10593-8.
ARs plays a crucial role in plant morphogenesis and development. The limited and inefficient rooting of scions poses a significant challenge to the efficiency and quality of clonal propagation of forest trees in silvicultural practices. Building on previous research conducted by our team, we found that applying IBA at a concentration of 1000 mg/L significantly enhanced mulberry rooting. This study aims to uncover the molecular mechanisms underlying this effect by analyzing RNA sequencing data from mulberry phloem before and after treatment with IBA over time intervals of 10, 20, 30, and 40 days. We identified 5226 DEGs, which were then classified into GO terms and KEGG pathways, showing significant enrichment in hormone signaling processes. Using WGCNA, we identified eight co-expression modules, two of which were significantly correlated with the IBA treatment. Additionally, 18 transcription factors that potentially facilitate ARs formation in mulberry were identified, and an exploratory analysis on the cis-regulatory elements associated with these transcription factors was conducted. The findings of this study provide a comprehensive understanding of the mechanisms of ARs in mulberry and offer theoretical support for the discovery and utilization of exceptional genetic resources within the species.
ARs 在植物形态发生和发育中起着至关重要的作用。接穗生根能力有限且效率低下,这对林业实践中树木无性繁殖的效率和质量构成了重大挑战。基于我们团队之前的研究,我们发现,将 IBA 浓度应用于 1000mg/L 可显著增强桑树生根。本研究旨在通过分析 IBA 处理前后桑树韧皮部的 RNA 测序数据,揭示这种效应的分子机制,处理时间间隔为 10、20、30 和 40 天。我们鉴定了 5226 个 DEGs,然后将其分类为 GO 术语和 KEGG 途径,显示出激素信号转导过程的显著富集。使用 WGCNA,我们鉴定了 8 个共表达模块,其中两个与 IBA 处理显著相关。此外,还鉴定了 18 个可能促进桑树 ARs 形成的转录因子,并对与这些转录因子相关的顺式调控元件进行了探索性分析。本研究的结果提供了对桑树 ARs 机制的全面理解,并为该物种中特殊遗传资源的发现和利用提供了理论支持。