Baudoinia compniacensis explained

Baudoinia compniacensis is a sac fungus which has been observed on a variety of substrates in the vicinity of distilleries, spirits maturation facilities, bonded warehouses, and bakeries. The fungus is a habitat colonist with a preference for airborne alcohol (e.g. the angels' share), earning it the nickname whiskey fungus.[1] [2]

Description

Baudoinia compniacensis can be identified by its black, effused mycelium that can be velvety or crust-like. It features hyphae which are vegetative, dark brown, thick-walled, and often moniliform; although it lacks distinctive conidiophores. Conidiogenous cells can be found integrated within vegetative hyphae. Its conidia are dry, nonseptate or uniseptate, at the median. The conidia are thick-walled, globose to barrel-shaped, brown to black, and typically found with coarse surface ornamentation, dehiscing by schizolysis. Ramoconidia are absent. Colonies on modified Leonian's agar grow slowly and are dark in pigmentation. Synanamorphs are absent during its asexual reproduction stages. The presence of teleomorphs is unknown.

Nutrition

Baudoinia species use ethanol for their carbon nutrition, however growth rates suggest that this is not their only source of calories. Ethanol in vapour form also accelerates the growth of the fungus and stimulates spore germination. The ability to withstand high temperatures and therefore colonize habitats such as roofing, may be explained by the observation that ethanol vapour stimulates the formation of special heat-protective proteins that prevent cells from being killed under these relatively extreme conditions.

Ecology

Baudoinia compniacensis is black in colour and is partly responsible for the frequently observed phenomenon of 'Warehouse Staining', reported originally from the walls of buildings near brandy maturation warehouses in Cognac, France. Baudoinia compniacensis is a cosmopolitan colonist of outdoor surfaces subjected to extreme daily temperature shifts, elevated high relative humidity, periodic wetting, and ambient airborne ethanol.[3] It is known from a wide range of substrates. For example, the UAMH Centre for Global Microfungal Biodiversity[4] lists isolates recovered from tree bark, concrete, PVC plastic, galvanized roofing, masonry, and stone.

Baudoinia compniacensis is not uniquely associated with spirit maturation and manufacture as one sample that was examined came from a commercial bakery, although the fermentation byproducts of yeast include ethanol and its vapors. Ethanol vapor appears to be important in habitat determinant and Baudoinia species may occur in association with natural fermentative processes, such as seasonal fruit drops, bogs, natural composts, etc. B. compniacensis may also occur around places where automotive fuel is stored or transferred, as ethanol is required to be blended with gasoline in most countries.

It has been recorded as a food source of snails and slugs through the radula marks left following grazing.

Distribution

B. compniacensis was first investigated in 1872 when Michel Charles Durieu de Maisonneuve and Casimir Roumeguère examined a black, sooty growth found on the walls and roof tiles of buildings near distilleries in Cognac, France, at the instigation of the French pharmacist, Antonin Baudoin. It has been widely recorded in Asia, Europe, and the Americas. During the process of aging whiskey and certain other liquors, a portion evaporates, colloquially called the "Angel's Share"; this airborne alcohol near barrelhouses can lead to growth of Baudoinia compniacensis in the area, hence the term "whiskey fungus."

B. compniacensis on buildings and plants

The fungus often forms a black coating layer on tree bark and leaves. However, this does not seem to harm the plants by blocking the lenticels or significantly reduce their growth rates. Deciduous species also develop new leaves annually, rendering it less important when older leaves are covered by the growths.

The fungus can be removed from buildings using high pressure water jets, bleach, etc. According to a report from the Kentucky government, it has not been shown to cause anything other than cosmetic effects thanks to its mode of nutrition via the carboniferous atmosphere, rather than the decay of building materials in general.[2] Mosses, lichens and algae also grow on solid vertical surfaces, and slopes in the same fashion as the Angel's Share fungus and do not damage the infrastructure of built structures. However, there have been harsher reports as well. James A. Scott, the researcher at the University of Toronto who has studied the fungus and named the genus, said that the fungus is destructive and can damage property. He wrote "It wrecks patio furniture, house siding, almost any outdoor surface. I've seen trees choked to death by it. It is a small mercy that it does not also appear to have a negative impact on human health."[5]

Genome sequence

Taxid:40216
Ploidy:haploid
Size:21.88 Mb
Year:2011

The genome of B. panamericana was completed by the United States Department of Energy's Joint Genome Institute in 2011, using Roche (454), Sanger fosmid, and Illumina sequence data. The completed assembly is 21.88 Mb in size.[6]

Related fungi

The most closely related ascomycetes to Baudoinia spp. appear to be members of the genera Friedmanniomyces and Trimmatostroma. Friedmanniomyces species are rock-inhabiting species known only from the Antarctic. This fits in well with the observed fact that the species favours surfaces that are subjected to great environmental exposure, as in roofing materials that experience extreme diurnal fluctuations in ambient conditions.

External links

Notes and References

  1. Baudoinia, a new genus to accommodate Torula compniacensis . Scott . J. A. . Untereiner . W. A. . Ewaze . J. O. . Wong . B. . Doyle . D. . Mycologia . July 1, 2007 . 99 . 4 . 592–601 . 10.3852/mycologia.99.4.592 . 18065010 . November 14, 2016 . September 30, 2015 . https://web.archive.org/web/20150930025018/http://www.mycologia.org/content/99/4/592.full . live .
  2. Web site: Whiskey Aging Warehouses and the Effects to Surrounding Residential Neighborhoods in Louisville, Ky. . https://web.archive.org/web/20140225124051/http://www.louisvilleky.gov/NR/rdonlyres/692CEED8-7BDC-48F4-8D37-51B9AF4DA1DD/0/Agingwarehousesfullreport.pdf . February 25, 2014 . Hannah . Byland . September 4, 2012 . Louisville, Kentucky . Louisville, Kentucky government . July 30, 2014.
  3. Web site: Baudoinia compniacensis . University of Toronto, Dalla Lana School of Public Health . Scott, James . November 14, 2016 . November 2, 2016 . https://web.archive.org/web/20161102033318/http://individual.utoronto.ca/jscott/projects/baudoinia/baudoinia.html . dead .
  4. Web site: Sigler. L. UAMH Culture Collection Catalogue. UAMH Centre for Global Microfungal Biodiversity. University of Toronto. 2022-10-06. 2022-02-04. https://web.archive.org/web/20220204021958/https://www.uamh.ca/searchCatalogue.php. live.
  5. News: Levenson . Michael . March 1, 2023 . Whiskey Fungus Fed by Jack Daniel's Encrusts a Tennessee Town . The New York Times . March 2, 2023.
  6. Ohm. RA . Feau, N . Henrissat, B . Schoch, CL . Horwitz, BA . Barry, KW . Condon, BJ . Copeland, AC . Dhillon, B . Glaser, F . Hesse, CN . Kosti, I . LaButti, K . Lindquist, EA . Lucas, S . Salamov, AA . Bradshaw, RE . Ciuffetti, L . Hamelin, RC . Kema, GH . Lawrence, C . Scott, JA . Spatafora, JW . Turgeon, BG . de Wit, PJ . Zhong, S . Goodwin, SB . Grigoriev, IV . Diverse lifestyles and strategies of plant pathogenesis encoded in the genomes of eighteen Dothideomycetes fungi.. PLOS Pathogens. 2012. 8. 12. e1003037. 23236275. 10.1371/journal.ppat.1003037. 3516569 . free .