Search bioRxiv⌕ Search

Biology subjects

Schiefelbein, U.

Publications and source records attributed to Schiefelbein, U..

2 recordsLinked to original sources

Towards a monograph of marine Verrucariaceae in Southern South America and maritime Antarctica: Integrative taxonomy reveals a previously unknown diversity

The family of predominantly lichen-forming Verrucariaceae, contains several lineages that have adapted to live in the stressful conditions of the intertidal and supralittoral zones of rocky seashores in both hemispheres. The marine Verrucariaceae has been the subject of several systematic and taxonomic studies over the past few decades, although these studies have primarily concentrated on groups from the northern hemisphere. This study aims to address the paucity of taxonomic studies in the southern hemisphere by examining a substantial number of specimens collected in Southern South America and maritime Antarctica over the past two decades by the authors. We opted for an integrative taxonomic approach that joins the characterization and measurement of morpho-anatomical characters, coupled together with molecular barcoding to produce species delimitations to overcome the difficulties derived by the scarcity of taxonomic characters and the high plasticity of those characters. We barcoded a total of 301 specimens using the universal barcode un fungi (nrITS) and used single-locus species delimitation algorithms (ASAP, PTP, GMYC) to produce candidate species hypothesis that were corroborated with the morphological data. Our findings indicate that the taxonomic diversity of the Southern Hemisphere Verrucaria marina group has been significantly underestimated in previous studies. A total of 27 species were found in the region, 21 of which represent new taxa for science. Thorough descriptions together with illustrations showing the main characters of the species are provided for each taxon. In addition, we explored the systematics of the new taxa. We reconstructed the phylogenetic relationships of the family based on on six molecular markers (ITS, mcm7, nrSSU, nrLSU, mtSSU, RPB1). Our results showed that marine Verrucariaceae from the studied area belong to two distinct and non-related clades. A small group of species were related to the northern hemisphere species Turgidosculum ulvae. The second and more numerous group, which included the characteristic species Mastodia tessellata for a clade sister to the European genus Verrucariopsis. The systematic consequences of our findings are discussed. None of the previously reported species from the northern hemisphere and considered bipolar were found during our study.

genetics↗

The microbiome of the lichen Lobaria pulmonaria varies according to climate in Europe

The Lobaria pulmonaria holobiont comprises algal, fungal, cyanobacterial, and bacterial components. We investigated L. pulmonarias bacterial microbiome in the adaptation of this ecologically sensitive lichen species to diverse climatic conditions. Our central hypothesis posited that microbiome composition and functionality aligns with continental-scale climatic parameters related to temperature and precipitation. We also tested the impact of short-term weather dynamics, sampling season, and algal/fungal genotypes on microbiome variation. Metaproteomics provided insights into compositional and functional changes within the microbiome. Climatic variables explained 41.64% of microbiome variation, surpassing the combined influence of local weather and sampling season at 31.63%. Notably, annual mean temperature and temperature seasonality emerged as significant climatic drivers. Microbiome composition correlated with algal, not fungal genotype, suggesting similar environmental recruitment for the algal partner and microbiome. Differential abundance analyses revealed distinct protein compositions in sub-atlantic lowland and alpine regions, indicating differential microbiome responses to contrasting environmental/climatic conditions. Proteins involved in oxidative and cellular stress were notably different. Our findings highlight microbiome plasticity in adapting to stable climates, with limited responsiveness to short-term fluctuations, offering new insights into climate adaptation in lichen symbiosis.

microbiology↗