科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Journal of agricultural and food chemistry2026-08-12

An Exopolysaccharide from Endophytic Fungus Fusarium solani CL105 and Its Effect on Flavonoid Synthesis in Scutellaria baicalensis.

Huicong Wang, Xin Zhang, Qian Wang, Huiyong Fang, Yunsheng Zhao, Kaiyan Zheng, Xian Gu, Yuguang Zheng, Lanfang Wu, Chunyan Su

原始摘要(英文原文)· Original abstract
Elucidating the material basis and molecular mechanisms of endophytic fungal polysaccharide-mediated promotion of plant secondary metabolism is key to understanding endophyte-host interactions. Here, we found that crude exopolysaccharide (CEP) from endophytic fungus Fusarium solani CL105 promoted flavonoid biosynthesis in Scutellaria baicalensis seedlings, with CEP-0.3 as its major bioactive component. Subsequently, methylation and NMR analysis revealed that the backbone of CEP-0.3 consisted of (→2)-α-d-Manp-(1→), (→3,6)-β-d-Galp-(1→), and (→4)-α-d-Manp-(1→) units, with β-d-Galp-(1→) and α-d-Glcp-(1→) as terminal residues. Transcriptome analysis revealed that CEP-0.3 induced the expression of genes involved in GA/ABA biosynthesis (CPS, CYP701, KOA, GA3ox, GA2ox, GA20ox, NCED, ABA2, AAO3, CYP707A) and MYB transcription factors (SbMYB5, SbMYB11, SbMYB13, SbMYB330), thereby upregulating core flavonoid biosynthetic genes (PAL, C4H, CHS, CHI, FNS, F6H) and ultimately promoting flavonoid synthesis in S. baicalensis. These findings demonstrate that endophytic fungal exopolysaccharides represent a promising approach for sustainable S. baicalensis cultivation and biotechnological production of pharmaceutical flavonoids.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

An Exopolysaccharide from Endophytic Fungus Fusarium solani CL105 and Its Effect on Flavonoid Synthesis in Scutellaria baicalensis. — 科研速览 Science Skim