Tian Xiaoming, Xiang Guangfeng, Mou Cun, Zhu Lu, Song Jing, Li Gaofei, Lv Hao
Institute of Plant Conservation, Hunan Botanical Garden, Changsha 411006, China.
Forestry Affairs Center of Hunan Province, Changsha 410114, China.
Metabolites. 2024 Nov 25;14(12):654. doi: 10.3390/metabo14120654.
var. is an ancient relic plant unique to China. However, the typical shade-loving plant is largely exposed to the sun, which poses a major challenge to its conservation. This study explored dynamic changes in primary and secondary metabolites in leaves at different stages of development, combining metabolomics and transcriptome analysis to discuss the differentially accumulated metabolites (DAMs) and differentially expressed genes (DEGs). The DAMs and DEGs were enriched in pathways related to photosynthesis, carbon (C) metabolism, anthocyanin synthesis, plant hormone signal transduction, and flavonoid synthesis. At the initial stage of leaf development, many primary metabolites were synthesized in the leaves. Before leaf maturity, many primary metabolites were converted into secondary metabolites. Combined transcriptome and metabolome analysis showed that the metabolites and genes related to anthocyanin synthesis and flavonoid metabolism were upregulated. In contrast, the genes related to C metabolism and C fixation were downregulated. After leaf maturity, photosynthetic capacity increased, total flavonoid content peaked (implying the strongest photoprotection capacity), and the transformation of anthocyanins and flavonoids was weakened. Light intensity indirectly affects the accumulation of the primary and secondary metabolism of . With the enhancement of photoprotection, the photosynthetic energy capacity decreases. It is, therefore, inferable that has shading properties and achieves a stable nutrient supply during growth and development through these strategies. Thus, protection requires a shaded environment.
变种是中国特有的古老残遗植物。然而,这种典型的喜阴植物却大多暴露在阳光下,这对其保护构成了重大挑战。本研究探讨了不同发育阶段叶片中初生和次生代谢物的动态变化,结合代谢组学和转录组分析来讨论差异积累代谢物(DAMs)和差异表达基因(DEGs)。DAMs和DEGs在与光合作用、碳(C)代谢、花青素合成、植物激素信号转导和类黄酮合成相关的途径中富集。在叶片发育初期,叶片中合成了许多初生代谢物。在叶片成熟之前,许多初生代谢物转化为次生代谢物。转录组和代谢组联合分析表明,与花青素合成和类黄酮代谢相关的代谢物和基因上调。相反,与C代谢和C固定相关的基因下调。叶片成熟后,光合能力增强,总黄酮含量达到峰值(意味着最强的光保护能力),花青素和类黄酮的转化减弱。光照强度间接影响变种初生和次生代谢的积累。随着光保护作用的增强,光合能量能力降低。因此,可以推断变种具有遮荫特性,并通过这些策略在生长发育过程中实现稳定的养分供应。因此,对变种进行保护需要一个遮荫环境