Zhang Tingting, Zhu Xinyu, Vizzini Alfredo, Li Biting, Cao Zhenghua, Guo Wenqing, Qi Sha, Wei Xinli, Zhao Ruilin
State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.
College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
J Fungi (Basel). 2022 Sep 29;8(10):1033. doi: 10.3390/jof8101033.
The genus is an ideal genus for studying the evolutionary mechanism of lichenization. Based on molecular phylogeny using ITS and nuLSU sequences by means of Bayesian and maximum likelihood analyses and morphological examination, combining the existence of green algae in basidiomata stipe and a -type vegetative thallus, we described a bryophilous new basidiolichen species, , from a residential area of Jiangxi Province, China. This finding of unusual new basidiolichen species updated our understanding of the delimitation of , indicating that both non-lichen-forming and lichen-forming fungal species are included simultaneously. The presence of algal cells in the basidiomata should receive more attention, as this would be helpful to distinguish more potential basidiolichens and explore the cryptic species diversity. This work provides new insights and evidence for understanding the significance of lichenization during the evolution of Agaricomycetes.
该属是研究地衣化进化机制的理想属。基于利用ITS和nuLSU序列通过贝叶斯和最大似然分析进行的分子系统发育以及形态学检查,并结合担子果柄中绿藻的存在和a型营养体地衣体,我们从中国江西省的一个居民区描述了一种喜苔藓的新担子地衣物种。这一不寻常的新担子地衣物种的发现更新了我们对该属界定的认识,表明非地衣形成和地衣形成真菌物种同时被纳入其中。担子果中藻类细胞的存在应受到更多关注,因为这将有助于区分更多潜在的担子地衣并探索隐性物种多样性。这项工作为理解伞菌纲进化过程中地衣化的意义提供了新的见解和证据。