College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, 310018, Zhejiang, China.
Administration of Zhejiang Dapanshan National Nature Reserve, Pan'an, Zhejiang, 322300, China.
BMC Microbiol. 2022 Aug 5;22(1):191. doi: 10.1186/s12866-022-02605-y.
Huperzine A (Hup A) has attracted considerable attention as an effective therapeutic candidate drug used to treat Alzheimer's disease. Whereas, the production of Hup A from wild plants faced a major challenge, which is the wild Huperzia Serrata harbor a low Hup A content, has a long-life cycle, and has a small yield. At present, several reports showed that Hup A is produced by various endophytic fungal strains isolated from H. serrata, thereby providing an alternative method to produce the compound and reduce the consumption of this rare and endangered plant. However, till now, very few comprehensive studies are available on the biological diversity and structural composition of endophytic fungi and the effects of endophytic fungi on the Hup A accumulation in H. serrata.
In this research, the composition and diversity of fungal communities in H. serrata were deciphered based on high-throughput sequencing technology of fungal internal transcribed spacer regions2 (ITS2). The correlation between endophytic fungal community and Hup A content was also investigated. Results revealed that the richness and the diversity of endophytic fungi in H. serrata was various according to different tissues and different ecological areas. The endophytic fungal communities of H. serrata exhibit species-specific, ecological-specific, and tissue-specific characteristics. There are 6 genera (Ascomycota_unclassified, Cyphellophora, Fungi_unclassified, Sporobolomyces, and Trichomeriaceae_unclassified) were significantly positively correlated with Hup A content in all two areas, whereas, there are 6 genera (Auricularia, Cladophialophora, Cryptococcus, Mortierella, and Mycena) were significantly negatively correlated with Hup A content of in all two areas.
This study indicated a different composition and diverse endophytic fungal communities in H. serrata from different organs and ecological areas. The current study will provide the realistic basis and theoretical significance for understanding the biological diversity and structural composition of endophytic fungal communities in H. serrata, as well as providing novel insights into the interaction between endophytic fungi and Hup A content.
石杉碱甲(Hup A)作为一种有效的治疗阿尔茨海默病的候选药物,受到了广泛关注。然而,从野生植物中生产 Hup A 面临着一个主要挑战,即野生蛇足石杉的 Hup A 含量低、生命周期长、产量小。目前,有几项报道表明,Hup A 是从蛇足石杉中分离出的各种内生真菌菌株产生的,从而提供了一种生产该化合物的替代方法,并减少了对这种稀有濒危植物的消耗。然而,到目前为止,关于内生真菌的生物多样性和结构组成以及内生真菌对蛇足石杉中 Hup A 积累的影响的综合研究非常少。
本研究基于真菌内转录间隔区 2(ITS2)高通量测序技术,解析了蛇足石杉内生真菌群落的组成和多样性。还研究了内生真菌群落与 Hup A 含量之间的相关性。结果表明,不同组织和不同生态区蛇足石杉内生真菌的丰富度和多样性各不相同。蛇足石杉内生真菌群落具有种特异性、生态特异性和组织特异性。在两个地区,有 6 个属(未分类的子囊菌门、杯形菌属、未分类的真菌门、节菱孢属和 Trichomeriaceae 未分类)与 Hup A 含量呈显著正相关,而有 6 个属(木耳属、裂褶菌属、隐球菌属、蕈状菌属和蜜环菌属)与 Hup A 含量呈显著负相关。
本研究表明,不同器官和不同生态区的蛇足石杉内生真菌群落组成不同,多样性不同。本研究将为深入了解蛇足石杉内生真菌群落的生物多样性和结构组成提供现实依据和理论意义,为内生真菌与 Hup A 含量之间的相互作用提供新的见解。