Zheng Hua, Qiao Min, Xu Jianping, Yu Zefen
Laboratory for Conservation and Utilization of Bio-Resources, Key Laboratory for Microbial Resources of the Ministry of Education, Yunnan University, Kunming, China.
School of Life Sciences, Yunnan University, Kunming, China.
Front Fungal Biol. 2021 Jul 27;2:692549. doi: 10.3389/ffunb.2021.692549. eCollection 2021.
Aquatic ecosystems contain tremendous plant and microbial diversity. However, little is known about endophyte diversity in aquatic plants. In this study, we investigated the diversity of endophytic fungi in aquatic plants in southwest China using both culture-based and culture-independent high-throughput sequencing methods. A total of 1,689 fungal isolates belonging to three phyla and 154 genera were obtained from 15,373 plant tissue segments of 30 aquatic plant species. The most abundant endophytic fungi were those in ascomycete genera and . No difference in fungal isolation rates was observed among tissues from roots, stems, and leaves. Twenty tissue samples from three most common plant species were further subjected to culture-independent meta-barcode sequencing. The sequence-based analyses revealed a total of 1,074 OTUs belonging to six fungal phyla and 194 genera. Among the three plants, harbored the highest number of OTUs. Besides, a total of 66 genera were detected by two methods. Both the culture-dependent and independent methods revealed that aquatic plants in southwest China have abundant endophytic fungal diversity. This study significantly expands our knowledge of the fungal community of aquatic plants.
水生生态系统包含极为丰富的植物和微生物多样性。然而,人们对水生植物内生菌的多样性了解甚少。在本研究中,我们运用基于培养和非培养的高通量测序方法,对中国西南地区水生植物内生真菌的多样性进行了调查。从30种水生植物的15373个植物组织片段中,共获得了1689株属于3个门和154个属的真菌分离株。最丰富的内生真菌是子囊菌属中的真菌。在根、茎和叶的组织中,真菌分离率未观察到差异。对三种最常见植物物种的20个组织样本进一步进行了非培养的宏条形码测序。基于序列的分析揭示了总共1074个操作分类单元,属于6个真菌门和194个属。在这三种植物中,[具体植物名称]拥有的操作分类单元数量最多。此外,两种方法共检测到66个属。基于培养和非培养的方法均表明,中国西南地区的水生植物具有丰富的内生真菌多样性。本研究显著扩展了我们对水生植物真菌群落的认识。