Xu Dan, Li Na, Gu Yuan-Qin, Huang Jin, Hu Bin-Sheng, Zheng Jian-Yun, Hu Jing-Wen, Du Qin
Medicinal Plant Biotechnology Laboratory, College of Chinese medicine, Guangzhou University of Chinese Medicine, Guangzhou, China.
Front Plant Sci. 2023 Jul 4;14:1166803. doi: 10.3389/fpls.2023.1166803. eCollection 2023.
Endophytic fungi can promote host plant growth, enhance antioxidant defense enzyme activity, and induce the biosynthesis and accumulation of secondarymetabolites. Therefore, using endophytic fungi to improve the quality and yield of medicinal plants or important crops is an effective means of regulation. sp. AP12 has been reported to produce andrographolide compounds (ADCs). This study aimed to investigate the effects of AP12 and its elicitors on the growth, defense enzyme activity, accumulation, and transcription levels of key genes in (Burm. f.) Nees (). Using fermentation method to prepare AP12 into the inactivated fermentation solution (IFS), fermentation solution (FS), inactivated mycelium solution (IMS), and mycelium solution (MS), and the results showed that all four fungal elicitor components (ECs) could promote growth, enhance antioxidant defense enzymes, and increase ADC content and yield, especially the IMS group that had the highest leaf area, whole plant dry weight, superoxide dismutase (SOD), catalase (CAT) enzyme activities, total lactone contents, and yields, which were 2.37-, 1.60-, 2.20-, 3.27-, 1.59-, and 2.65-fold of the control, respectively. The 14-deoxyandrographolide (NAD) in the host irrigated with MS was 3.35-fold that of the control. In addition, AP12-infected sterile seedlings could significantly increase ADC content and expression levels of key enzyme genes, especially on day 12, when the total lactone content of the host reached 88.881± 5.793 mg/g DW, while on day 6, CPS gene expression level reached 10.79-fold that of the control, in turn promoting the biosynthesis and accumulation of andrographolide. In conclusion, the endophytic fungus AP12 is beneficial to the growth and secondary metabolism of , which is helpful for the cultivation and application of the biological bacterial fertilizer in , providing a theoretical and research basis for the use of endophytic fungi as a microbial resource to improve the quality and yield of medicinal plants.
内生真菌可以促进宿主植物生长,增强抗氧化防御酶活性,并诱导次生代谢产物的生物合成和积累。因此,利用内生真菌提高药用植物或重要作物的品质和产量是一种有效的调控手段。已报道sp. AP12能产生穿心莲内酯类化合物(ADCs)。本研究旨在探究AP12及其激发子对穿心莲(Andrographis paniculata (Burm. f.) Nees)生长、防御酶活性、穿心莲内酯积累及关键基因转录水平的影响。采用发酵法将AP12制成灭活发酵液(IFS)、发酵液(FS)、灭活菌丝体溶液(IMS)和菌丝体溶液(MS),结果表明,这四种真菌激发子成分(ECs)均能促进穿心莲生长,增强抗氧化防御酶活性,提高穿心莲内酯含量和产量,尤其是IMS组,其叶面积、全株干重、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)酶活性、总内酯含量和产量最高,分别是对照的2.37倍、1.60倍、2.20倍、3.27倍、1.59倍和2.65倍。用MS浇灌的宿主中14 - 去氧穿心莲内酯(NAD)是对照的3.35倍。此外,AP12感染的穿心莲无菌苗能显著提高穿心莲内酯含量和关键酶基因的表达水平,尤其是在第12天,宿主总内酯含量达到88.881±5.793 mg/g DW,而在第6天,CPS基因表达水平达到对照的10.79倍,进而促进穿心莲内酯的生物合成和积累。综上所述,内生真菌AP12有利于穿心莲的生长和次生代谢,有助于穿心莲生物菌肥的培育和应用为利用内生真菌作为微生物资源提高药用植物品质和产量提供了理论和研究基础。