Algal and Fungal Diversity in Antarctic Lichens

地衣 生物 叶状体 植物 子囊菌纲 内转录区 擔子菌門 操作分类学单元 藻类 焦测序 核糖体RNA 生态学 16S核糖体RNA 基因 生物化学
作者
Chae Haeng Park,Kyung Mo Kim,Arve Elvebakk,Ok‐Sun Kim,Gajin Jeong,Soon Gyu Hong
出处
期刊:Journal of Eukaryotic Microbiology [Wiley]
卷期号:62 (2): 196-205 被引量:65
标识
DOI:10.1111/jeu.12159
摘要

Abstract The composition of lichen ecosystems except mycobiont and photobiont has not been evaluated intensively. In addition, recent studies to identify algal genotypes have raised questions about the specific relationship between mycobiont and photobiont. In the current study, we analyzed algal and fungal community structures in lichen species from King George Island, Antarctica, by pyrosequencing of eukaryotic large subunit (LSU) and algal internal transcribed spacer (ITS) domains of the nuclear r RNA gene. The sequencing results of LSU and ITS regions indicated that each lichen thallus contained diverse algal species. The major algal operational taxonomic unit (OTU) defined at a 99% similarity cutoff of LSU sequences accounted for 78.7–100% of the total algal community in each sample. In several cases, the major OTUs defined by LSU sequences were represented by two closely related OTUs defined by 98% sequence similarity of ITS domain. The results of LSU sequences indicated that lichen‐associated fungi belonged to the Arthoniomycetes, Eurotiomycetes, Lecanoromycetes, Leotiomycetes, and Sordariomycetes of the Ascomycota, and Tremellomycetes and Cystobasidiomycetes of the Basidiomycota. The composition of major photobiont species and lichen‐associated fungal community were mostly related to the mycobiont species. The contribution of growth forms or substrates on composition of photobiont and lichen‐associated fungi was not evident.
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