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Keywords = graphidales

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12 pages, 1359 KiB  
Article
Diorygma tiantaiense sp. nov. and a Checklist and Key to Diorygma Species from China
by Can Cui, Yujie Li, Jiahui Xu, Xin Zhao and Zefeng Jia
Diversity 2024, 16(4), 213; https://doi.org/10.3390/d16040213 - 30 Mar 2024
Cited by 3 | Viewed by 1446
Abstract
A new species Diorygma tiantaiense Z.F. Jia, sp. nov. was found, which is characterized by a corticolous thallus with norstictic acid, oval or oblong apothecia, immersed to ± raised discs with white pruina, and large muriform ascospores (120–210 × 35–60 µm). Detailed morphological [...] Read more.
A new species Diorygma tiantaiense Z.F. Jia, sp. nov. was found, which is characterized by a corticolous thallus with norstictic acid, oval or oblong apothecia, immersed to ± raised discs with white pruina, and large muriform ascospores (120–210 × 35–60 µm). Detailed morphological descriptions, photographs, and a comparison and discussion of similar species are provided. A checklist and key to the species of Diorygma known from China is presented. Full article
(This article belongs to the Special Issue Phylogeny, Taxonomy and Ecosystems of Lichens)
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23 pages, 4226 KiB  
Article
The Evolution of Life Modes in Stictidaceae, with Three Novel Taxa
by Vinodhini Thiyagaraja, Robert Lücking, Damien Ertz, Samantha C. Karunarathna, Dhanushka N. Wanasinghe, Saisamorn Lumyong and Kevin D. Hyde
J. Fungi 2021, 7(2), 105; https://doi.org/10.3390/jof7020105 - 2 Feb 2021
Cited by 28 | Viewed by 4158
Abstract
Ostropales sensu lato is a large group comprising both lichenized and non-lichenized fungi, with several lineages expressing optional lichenization where individuals of the same fungal species exhibit either saprotrophic or lichenized lifestyles depending on the substrate (bark or wood). Greatly variable phenotypic characteristics [...] Read more.
Ostropales sensu lato is a large group comprising both lichenized and non-lichenized fungi, with several lineages expressing optional lichenization where individuals of the same fungal species exhibit either saprotrophic or lichenized lifestyles depending on the substrate (bark or wood). Greatly variable phenotypic characteristics and large-scale phylogenies have led to frequent changes in the taxonomic circumscription of this order. Ostropales sensu lato is currently split into Graphidales, Gyalectales, Odontotrematales, Ostropales sensu stricto, and Thelenellales. Ostropales sensu stricto is now confined to the family Stictidaceae, which includes a large number of species that are poorly known, since they usually have small fruiting bodies that are rarely collected, and thus, their taxonomy remains partly unresolved. Here, we introduce a new genus Ostropomyces to accommodate a novel lineage related to Ostropa, which is composed of two new species, as well as a new species of Sphaeropezia, S. shangrilaensis. Maximum likelihood and Bayesian inference analyses of mitochondrial small subunit spacers (mtSSU), large subunit nuclear rDNA (LSU), and internal transcribed spacers (ITS) sequence data, together with phenotypic data documented by detailed morphological and anatomical analyses, support the taxonomic affinity of the new taxa in Stictidaceae. Ancestral character state analysis did not resolve the ancestral nutritional status of Stictidaceae with confidence using Bayes traits, but a saprotrophic ancestor was indicated as most likely in a Bayesian binary Markov Chain Monte Carlo sampling (MCMC) approach. Frequent switching in nutritional modes between lineages suggests that lifestyle transition played an important role in the evolution of this family. Full article
(This article belongs to the Special Issue Fungal Biodiversity and Ecology)
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