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Diaz Escandon, D.

Publications and source records attributed to Diaz Escandon, D..

2 recordsLinked to original sources

Carbohydrate degradation machineries in lichen fungal symbionts reveal distinct symbiotic footprints across Ascomycota

Lichens--the archetypal symbiosis--have long been known for their nutritional relationship, in which the photoautotrophic partners subsidize the carbon needs of their fungal symbiont. Yet, this subsidiary framing obscures the fact that lichenization has evolved multiple times across different fungal lineages and involves a wide array of phylogenetically distinct photosynthetic symbionts and subsidy types. Here, we compiled and functionally annotated 309 fungal genomes--including 24 newly generated metagenomically assembled genomes--with 191 representing lichen fungal symbionts spanning all taxonomic classes with lichen symbioses in Ascomycota. We found that lichen fungal genomes consistently had fewer annotations than other fungi, except for CAZymes. Moreover, the enzymatic machinery of lichen fungal symbionts exhibits a distinct bimodal pattern, with some genomes maintaining large enzymatic repertoires, while others hold some of the smallest sets in ascomycotan fungi. This pattern closely aligns with their photobiont subsidiary molecules; lichens subsidized by their photobiont with the polyol erythritol possess large enzymatic repertoires compared to those that receive glucose, sorbitol, or ribitol. These retained enzymes are primarily related to carbon-harvesting functions, often streamlined as redundant functionalities in symbioses with a supplied carbon source. Our results suggest that lichens may have more than one fate for their carbon subsidies, rather than solely operating as nutritional symbioses.

genomics↗

Evidence for a core set of microbial lichen symbionts from a global survey of metagenomes

Lichens are the archetypal symbiosis and the one for which the term was coined. Although application of shotgun sequencing techniques has shown that many lichen symbioses can harbour more symbionts than the canonically recognized fungus and photobiont, no global census of lichen organismal composition has been undertaken. Here, we analyze the genome content of 437 lichen metagenomes from six continents, and show that four bacterial lineages occur in the majority of lichen symbioses, at a frequency on par with algal photobionts. A single bacterial genus, Lichenihabitans, occurs in nearly one-third of all lichens sampled. Genome annotations from the most common lichen bacterial symbionts suggest they are aerobic anoxygenic photoheterotrophs and produce essential vitamins, but do not fix nitrogen. We also detected secondary basidiomycete symbionts in about two-thirds of analyzed metagenomes. Our survey suggests a core set of four to seven microbial symbionts are involved in forming and maintaining lichen symbioses.

microbiology↗