Nemania Effusa
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Nemania Effusa
''Nemania effusa'' is a species of ascomycete fungus in the family Xylariaceae. It is often found living on the dead bark of willow trees. The species was originally named ''Hypoxylon effusum'' by German botanist Theodor Rudolph Joseph Nitschke in 1867; Zdeněk Pouzar transferred it to ''Nemania ''Nemania'' is a genus of fungi in the family Xylariaceae. The widespread genus contains 44 species. The anamorph In mycology, the terms teleomorph, anamorph, and holomorph apply to portions of the life cycles of fungi in the phyla Ascomyco ...'' in 1985. References Xylariales Fungi described in 1867 Fungi of Europe Fungus species {{Xylariales-stub ...
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Fungi
A fungus ( : fungi or funguses) is any member of the group of eukaryotic organisms that includes microorganisms such as yeasts and molds, as well as the more familiar mushrooms. These organisms are classified as a kingdom, separately from the other eukaryotic kingdoms, which by one traditional classification include Plantae, Animalia, Protozoa, and Chromista. A characteristic that places fungi in a different kingdom from plants, bacteria, and some protists is chitin in their cell walls. Fungi, like animals, are heterotrophs; they acquire their food by absorbing dissolved molecules, typically by secreting digestive enzymes into their environment. Fungi do not photosynthesize. Growth is their means of mobility, except for spores (a few of which are flagellated), which may travel through the air or water. Fungi are the principal decomposers in ecological systems. These and other differences place fungi in a single group of related organisms, named the ''Eumycota'' (''t ...
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Ascomycota
Ascomycota is a phylum of the kingdom Fungi that, together with the Basidiomycota, forms the subkingdom Dikarya. Its members are commonly known as the sac fungi or ascomycetes. It is the largest phylum of Fungi, with over 64,000 species. The defining feature of this fungal group is the " ascus" (), a microscopic sexual structure in which nonmotile spores, called ascospores, are formed. However, some species of the Ascomycota are asexual, meaning that they do not have a sexual cycle and thus do not form asci or ascospores. Familiar examples of sac fungi include morels, truffles, brewers' and bakers' yeast, dead man's fingers, and cup fungi. The fungal symbionts in the majority of lichens (loosely termed "ascolichens") such as ''Cladonia'' belong to the Ascomycota. Ascomycota is a monophyletic group (it contains all descendants of one common ancestor). Previously placed in the Deuteromycota along with asexual species from other fungal taxa, asexual (or anamorphic) ascomyce ...
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Sordariomycetes
Sordariomycetes is a class of fungi in the subdivision Pezizomycotina (Ascomycota), consisting of 28 orders, 90 families, 1344 genera. Sordariomycetes is from the Latin sordes (filth) because some species grow in animal feces, though growth habits vary widely across the class. Sordariomycetes generally produce their asci in perithecial fruiting bodies. Sordariomycetes are also known as Pyrenomycetes, from the Greek πυρἠν - 'the stone of a fruit' - because of the usually somewhat tough texture of their tissue. Sordariomycetes possess great variability in morphology, growth form, and habitat. Most have perithecial (flask-shaped) fruiting bodies, but ascomata can be less frequently cleistothecial (like in the genera '' Anixiella'', ''Apodus'', '' Boothiella'', ''Thielavia'', '' Zopfiella''),. Fruiting bodies may be solitary or gregarious, superficial, or immersed within stromata or tissues of the substrates and can be light to bright or black. Members of this group can grow ...
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Xylariales
The Xylariales are an order (biology), order of fungi within the class (biology), class Sordariomycetes (also known as Pyrenomycetes), subdivision Pezizomycotina, division (mycology), division Ascomycota. It is the only order of the Class (taxonomy), subclass Xylariomycetidae. Xylariales was circumscription (taxonomy), circumscribed in 1932 by Swedish mycologist John Axel Nannfeldt, and Xylariomycetidae by Ove Erik Eriksson and Katarina Winka in 1997. Type: ''Xylaria'' Families * Amphisphaeriaceae * Barrmaeliaceae * Castanediellaceae * Clypeosphaeriaceae * Diatrypaceae * Graphostromataceae * Hypoxylaceae * Hyponectriaceae * Lopadostomataceae * Microdochiaceae * Myelospermataceae * Polystigmataceae * Requienellaceae * Xylariaceae * Zygosporiaceae Genera incertae sedis: *''Adomia'' *''Diamantinia'' *''Lasiobertia'' *''Palmicola'' *''Pulmosphaeria'' *''Yuea'' References

Xylariales, Ascomycota orders Lichen orders Taxa named by John Axel Nannfeldt Taxa described in 1932 ...
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Xylariaceae
The Xylariaceae are a family of mostly small ascomycetous fungi. It is one of the most commonly encountered groups of ascomycetes and is found throughout the temperate and tropical regions of the world. They are typically found on wood, seeds, fruits, or plant leaves, some even associated with insect nests. Most decay wood and many are plant pathogens. One example of this family is King Alfred's Cake (''Daldinia concentrica''). Phylogenetic analyses published in 2009 suggest that there are two main lineages in this family, Hypoxyloideae and Xylarioideae. Genera This is a complete list of genera in the Xylariaceae, based on the 2007 Outline of Ascomycota. A question mark before the genus name indicates that the placement of that taxon in this family is uncertain. '' Amphirosellinia'' — '' Annulohypoxylon'' — '' Anthostomella'' — '' Appendixia'' — '' Areolospora'' — ?'' Ascotricha'' — '' Ascovirgaria'' — '' Astrocystis'' — '' Ba ...
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Nemania
''Nemania'' is a genus of fungi in the family Xylariaceae. The widespread genus contains 44 species. The anamorph In mycology, the terms teleomorph, anamorph, and holomorph apply to portions of the life cycles of fungi in the phyla Ascomycota and Basidiomycota: *Teleomorph: the sexual reproductive stage (morph), typically a fruiting body. *Anamorph: an ase ... form of ''Nemania'' species have historically been placed in the genus '' Geniculosporium''. Species *'' N. abortiva'' *'' N. aenea'' *'' N. albocincta'' *'' N. angusta'' *'' N. atropurpurea'' *'' N. beaumontii'' *'' N. bipapillata'' *'' N. carbonacea'' *'' N. caries'' *'' N. chestersii'' *'' N. chrysoconia'' *'' N. circostoma'' *'' N. confluens'' *'' N. costaricensis'' *'' N. creoleuca'' *'' N. diffusa'' *'' N. effusa'' *'' N. flavitextura'' *'' N. gwyneddii'' *'' N. illita'' *'' N. immersidiscus'' *'' N. kauaiensis'' *'' N. kellermanii'' *'' N. latissima'' *'' N. macrocarpa'' *'' N. maculosa'' *'' N. maritima'' *'' ...
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Theodor Rudolph Joseph Nitschke
Theodor Rudolph Joseph Nitschke (26 July 1834, Breslau – 12 December 1883, Münster) was a German botanist and mycologist. He received his education in Breslau, obtaining his PhD in 1858. In 1860 he relocated to Münster, where in 1867 he was named professor of botany at the university, also serving as director of the botanical academy and botanical garden.JSTOR Global plants
(biography)
In his earlier research he was interested in s such as the genus '''' and the species ''

Zdeněk Pouzar
Zdeněk Pouzar (born 13 April 1932) is a Czech mycologist. Along with František Kotlaba, he published several works about the taxonomy of polypore, corticioid, and gilled fungi. Pouzar is a noted expert on stromatic pyrenomycetes. Until 2012, he was the editor-in-chief of the scientific journal ''Czech Mycology Czech may refer to: * Anything from or related to the Czech Republic, a country in Europe ** Czech language ** Czechs, the people of the area ** Czech culture Czech culture has been shaped by its geographical position in the middle of Europe. Infl ...''. References {{DEFAULTSORT:Pouzar, Zdenek 1932 births Czech mycologists Living people ...
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Salix
Willows, also called sallows and osiers, from the genus ''Salix'', comprise around 400 speciesMabberley, D.J. 1997. The Plant Book, Cambridge University Press #2: Cambridge. of typically deciduous trees and shrubs, found primarily on moist soils in cold and temperate regions. Most species are known as willow, but some narrow-leaved shrub species are called osier, and some broader-leaved species are referred to as sallow (from Old English ''sealh'', related to the Latin word ''salix'', willow). Some willows (particularly arctic and alpine species) are low-growing or creeping shrubs; for example, the dwarf willow (''Salix herbacea'') rarely exceeds in height, though it spreads widely across the ground. Description Willows all have abundant watery bark sap, which is heavily charged with salicylic acid, soft, usually pliant, tough wood, slender branches, and large, fibrous, often stoloniferous roots. The roots are remarkable for their toughness, size, and tenacity to live, ...
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Fungi Described In 1867
A fungus ( : fungi or funguses) is any member of the group of eukaryotic organisms that includes microorganisms such as yeasts and molds, as well as the more familiar mushrooms. These organisms are classified as a kingdom, separately from the other eukaryotic kingdoms, which by one traditional classification include Plantae, Animalia, Protozoa, and Chromista. A characteristic that places fungi in a different kingdom from plants, bacteria, and some protists is chitin in their cell walls. Fungi, like animals, are heterotrophs; they acquire their food by absorbing dissolved molecules, typically by secreting digestive enzymes into their environment. Fungi do not photosynthesize. Growth is their means of mobility, except for spores (a few of which are flagellated), which may travel through the air or water. Fungi are the principal decomposers in ecological systems. These and other differences place fungi in a single group of related organisms, named the ''Eumycota'' (''true fungi' ...
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Fungi Of Europe
A fungus (plural, : fungi or funguses) is any member of the group of Eukaryote, eukaryotic organisms that includes microorganisms such as yeasts and Mold (fungus), molds, as well as the more familiar mushrooms. These organisms are classified as a Kingdom (biology), kingdom, separately from the other eukaryotic kingdoms, which by one traditional classification include Plantae, Animalia, Protozoa, and Chromista. A characteristic that places fungi in a different kingdom from plants, bacteria, and some protists is chitin in their cell walls. Fungi, like animals, are heterotrophs; they acquire their food by absorbing dissolved molecules, typically by secreting digestive enzymes into their environment. Fungi do not photosynthesize. Growth is their means of motility, mobility, except for spores (a few of which are flagellated), which may travel through the air or water. Fungi are the principal decomposers in ecological systems. These and other differences place fungi in a single gro ...
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