Zhao Wenlong, Wei Ziqi, Chen Honggang, Zhang Jinbao, Duan Haijing, Jin Ling
College of Pharmacy, Gansu University of Traditional Chinese Medicine, Lanzhou, China.
Northwest Chinese and Tibetan Medicine Collaborative Innovation Center, Lanzhou, China.
Mol Biol Rep. 2025 Mar 29;52(1):348. doi: 10.1007/s11033-025-10451-0.
Plant adaptation to environmental stress is crucial for improving crop resilience and productivity. The growth and yield of Isatis indigotica are significantly affected by water conditions. In this study, high-throughput transcriptome sequencing was performed on leaf samples from Isatis indigotica after different treatments: normal precipitation (CK), 40% rainfall reduction (R1), 80% rainfall reduction (R2), 40% rainfall enhancement (I1) and 80% rainfall enhancement (I2).
Under 80% rainfall augmentation (I2), the malondialdehyde (MDA) content of Isatis indigotica leaves was the lowest, and the proline (pro) and catalase (CAT) activities were the highest. These findings indicate that normal precipitation conditions do not meet the optimal water requirements for the growth of Isatis indigotica and that appropriate irrigation can be used to improve the accumulation and quality of medicinal substances from this species. Transcriptome analysis of Isatis indigotica leaves compared with those in the control group (CK) revealed 896, 2551, 1294, and 3082 differentially expressed genes in the reduced rainfall reduction groups (R1, R2) and increased rainfall groups (I1, 12), respectively. The number of differentially expressed genes (DEGs) gradually increased with increasing rainfall and decreased after rainfall reduction. The GO enrichment results revealed that the DEGs were significantly enriched in functions such as cellular processes, metabolic processes, stimulus response, cell structure, and catalytic and binding activities. KEGG analysis revealed that metabolic pathways such as glutathione metabolism, phenylpropanoid biosynthesis, and plant hormone signaling were significantly enriched, with the greatest number of enriched genes. This study revealed 32 antioxidant system-related genes, 49 phenylpropanoid biosynthesis-related genes, and 49 plant hormone signaling pathway-related genes among the significantly enriched pathways.
This study provides new insights into the regulation of Isatis indigotica leaves in response to different water contents at the molecular level. The findings also provide a reference for optimizing the field management of Isatis indigotica and improving the quality and yield of medicinal materials.
植物对环境胁迫的适应对于提高作物的抗逆性和生产力至关重要。菘蓝的生长和产量受到水分条件的显著影响。在本研究中,对菘蓝叶片样本进行了不同处理后的高通量转录组测序:正常降水(CK)、降水减少40%(R1)、降水减少80%(R2)、降水增加40%(I1)和降水增加80%(I2)。
在降水增加80%(I2)条件下,菘蓝叶片的丙二醛(MDA)含量最低,脯氨酸(Pro)和过氧化氢酶(CAT)活性最高。这些结果表明,正常降水条件不能满足菘蓝生长的最佳水分需求,适当灌溉可用于提高该物种药用物质的积累和品质。与对照组(CK)相比,菘蓝叶片的转录组分析显示,降水减少组(R1、R2)和降水增加组(I1、I2)中分别有896、2551、1294和3082个差异表达基因。差异表达基因(DEG)的数量随着降水量的增加而逐渐增加,在降水减少后减少。GO富集结果显示,差异表达基因在细胞过程、代谢过程、刺激反应、细胞结构以及催化和结合活性等功能中显著富集。KEGG分析显示,谷胱甘肽代谢、苯丙烷生物合成和植物激素信号传导等代谢途径显著富集,富集基因数量最多。本研究在显著富集的途径中揭示了32个与抗氧化系统相关的基因、49个与苯丙烷生物合成相关的基因和49个与植物激素信号通路相关的基因。
本研究在分子水平上为菘蓝叶片对不同水分含量的响应调控提供了新的见解。研究结果也为优化菘蓝的田间管理以及提高药材质量和产量提供了参考。