Department of Plant & Environmental New Resources, Kyung Hee University, Yongin 17104, Republic of Korea.
Forest Bioresources Department, National Institute of Forest Science, Suwon 16631, Republic of Korea.
Genes (Basel). 2023 Aug 26;14(9):1698. doi: 10.3390/genes14091698.
Wood is the most important renewable resource not only for numerous practical utilizations but also for mitigating the global climate crisis by sequestering atmospheric carbon dioxide. The compressed wood (CW) of gymnosperms, such as conifers, plays a pivotal role in determining the structure of the tree through the reorientation of stems displaced by environmental forces and is characterized by a high content of lignin. Despite extensive studies on many genes involved in wood formation, the molecular mechanisms underlying seasonal and, particularly, CW formation remain unclear. This study examined the seasonal dynamics of two wood tissue types in : CW and opposite wood (OW). RNA sequencing of developing xylem for two consecutive years revealed comprehensive transcriptome changes and unique differences in CW and OW across seasons. During growth periods, such as spring and summer, we identified 2255 transcripts with differential expression in CW, with an upregulation in lignin biosynthesis genes and significant downregulation in stress response genes. Notably, among the laccases critical for monolignol polymerization, PdeLAC17 was found to be specifically expressed in CW, suggesting its vital role in CW formation. PdeERF4, an ERF transcription factor preferentially expressed in CW, seems to regulate PdeLAC17 activity. This research provides an initial insight into the transcriptional regulation of seasonal CW development in , forming a foundation for future studies to enhance our comprehension of wood formation in gymnosperms.
木材不仅在许多实际应用中是最重要的可再生资源,而且通过固存大气中的二氧化碳来缓解全球气候危机。裸子植物(如针叶树)的压缩木材(CW)在通过环境力使树干重新定向来决定树木结构方面起着关键作用,并且具有高含量的木质素。尽管对许多参与木材形成的基因进行了广泛的研究,但季节性的分子机制,特别是 CW 形成的分子机制仍不清楚。本研究检查了两种木材组织类型在:CW 和对生木(OW)中的季节性动态。对连续两年发育中的木质部进行 RNA 测序,揭示了 CW 和 OW 在整个季节的综合转录组变化和独特差异。在生长期间,如春季和夏季,我们在 CW 中鉴定出 2255 个具有差异表达的转录本,木质素生物合成基因上调,应激反应基因显著下调。值得注意的是,在对单酚聚合至关重要的漆酶中,PdeLAC17 被发现特异性表达在 CW 中,表明其在 CW 形成中的重要作用。PdeERF4,一种在 CW 中优先表达的 ERF 转录因子,似乎调节 PdeLAC17 的活性。本研究为研究季节性 CW 发育的转录调控提供了初步见解,为未来研究增强我们对裸子植物木材形成的理解奠定了基础。