Pisutiella Phaeothamnos
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Pisutiella Phaeothamnos
''Pisutiella'' is a genus of lichen-forming fungi in the family Teloschistaceae. It contains five species of saxicolous (rock-dwelling), crustose lichens that are found in a variety of environments in the Northern Hemisphere. Taxonomy The genus was circumscribed in 2020 by lichenologists Sergey Kondratyuk, László Lőkös, and Edit Farkas, with ''Pisutiella conversa'' assigned as the type species. This species was originally described in 1861 by August von Krempelhuber as ''Callopisma conversum'', and was later known as a member of the large genus ''Caloplaca''. The genus name was chosen by the authors to honour the Slovak lichenologist Ivan Pišút (1935–2017), "to acknowledge his great contribution to our knowledge on lichens of the Carpathians and in recognition of his general contribution to lichenology". ''Pisutiella'' is in the subfamily Caloplacoideae of the family Teloschistaceae. Description The lichen genus ''Pisutiella'' features a crustose thallus that varies ...
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Edit Éva Farkas
Edit Éva Farkas is a Hungarian lichenologist and mycologist at the Institute of Ecology and Botany, Centre for Ecological Research in Hungary. She is the author of at least 14 taxon names and author or co-author of over 148 scientific publications. Education and personal life She studied at Eötvös Loránd University public research university in Budapest. She was awarded an MSc degree in 1982, with a thesis about the effects of air pollution on lichens, supervised by Klára Verseghy and her doctorate in 1987 for the thesis ''Lichenológiai vizsgálatok Budapesten éa a Pilis bioszféra Rezervátumban - elterjedés, bioindikáció'' (''Lichenological investigations in the Pilis Biosphere Reserve in Budapest - distribution, bioindication''). In 2013 she was awarded Dr. habil by Eötvös Loránd University. In 2016, she defended her academic doctoral title to become a Doctor of the Hungarian Academy of Sciences (DSc); her thesis was titled (). She is married to László Sánd ...
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August Von Krempelhuber
August von Krempelhuber (14 September 1813 – 2 October 1882) was a German lichenologist born in Munich. Born into nobility, he studied forestry at the University of Munich. Through his work in forestry, he developed an interest in lichens, subsequently publishing numerous articles in the field of lichenology. He traveled widely throughout Europe, and knew several languages, including classical Latin and Greek. His analysis of lichens included species from both European and exotic locales (Argentina, Brazil, New Zealand, et al.). Through his collection and evaluation of lichenological literature (up to 1871), he made strides in establishing order out of the confusing nomenclatural situation that existed at the time. Among his written works is ''Geschichte und Litteratur der Lichenologie'', a book on the history and literature of lichenology from antiquity up to the year 1865. His collection of nearly 20,000 specimens is now kept at the ''Botanische Staatssammlung München''. Th ...
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Spot Test (lichen)
A spot test in lichenology is a spot analysis used to help identify lichens. It is performed by placing a drop of a chemical on different parts of the lichen and noting the colour change (or lack thereof) associated with application of the chemical. The tests are routinely encountered in dichotomous keys for lichen species, and they take advantage of the wide array of lichen products produced by lichens and their uniqueness among taxa. As such, spot tests reveal the presence or absence of chemicals in various parts of a lichen. They were first proposed by the botanist William Nylander in 1866. Three common spot tests use either 10% aqueous KOH solution (K test), saturated aqueous solution of bleaching powder or calcium hypochlorite (C test), or 5% alcoholic ''p''-phenylenediamine solution (P test). The colour changes occur due to presence of particular secondary metabolites in the lichen. There are several other less frequently used spot tests of more limited use that are employed ...
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Potassium Hydroxide
Potassium hydroxide is an inorganic compound with the formula K OH, and is commonly called caustic potash. Along with sodium hydroxide (NaOH), KOH is a prototypical strong base. It has many industrial and niche applications, most of which exploit its caustic nature and its reactivity toward acids. An estimated 700,000 to 800,000 tonnes were produced in 2005. KOH is noteworthy as the precursor to most soft and liquid soaps, as well as numerous potassium-containing chemicals. It is a white solid that is dangerously corrosive. Properties and structure KOH exhibits high thermal stability. Because of this high stability and relatively low melting point, it is often melt-cast as pellets or rods, forms that have low surface area and convenient handling properties. These pellets become tacky in air because KOH is hygroscopic. Most commercial samples are ca. 90% pure, the remainder being water and carbonates. Its dissolution in water is strongly exothermic. Concentrated aqueous solut ...
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Conidia
A conidium ( ; ), sometimes termed an asexual chlamydospore or chlamydoconidium (), is an asexual, non-motile spore of a fungus. The word ''conidium'' comes from the Ancient Greek word for dust, ('). They are also called mitospores due to the way they are generated through the cellular process of mitosis. The two new haploid cells are genetically identical to the haploid parent, and can develop into new organisms if conditions are favorable, and serve in biological dispersal. Asexual reproduction in ascomycetes (the phylum Ascomycota) is by the formation of conidia, which are borne on specialized stalks called conidiophores. The morphology of these specialized conidiophores is often distinctive between species and, before the development of molecular techniques at the end of the 20th century, was widely used for identification of (''e.g.'' ''Metarhizium'') species. The terms microconidia and macroconidia are sometimes used. Conidiogenesis There are two main types of conidium ...
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Conidiomata
Conidiomata (singular: Conidioma) are blister-like fruiting structures produced by a specific type of fungus called a coelomycete. They are formed as a means of dispersing asexual spores call conidia, which they accomplish by creating the blister-like formations which then rupture to release the contained spores. Structure Conidiomata mainly consist of a mass of densely packed hypha which develops below the surface of the host cuticle, and the fungus may or may not use some of the host’s own tissue to construct the structure. Development of these structures can either occur just below the cuticle or below the epidermal layer of the tissue. Formation on the differing levels is dependent upon the type of conidiomata being formed. Five types of conidioma have been found and are classified as acervuli, pycnidia, sporodochia, synnemata and corenima. Types Acervuli Acervuli is one of the two major groups of conidiomata (the other being pycnidia). Conidiomata of this type form ju ...
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Septum
In biology, a septum (Latin for ''something that encloses''; plural septa) is a wall, dividing a cavity or structure into smaller ones. A cavity or structure divided in this way may be referred to as septate. Examples Human anatomy * Interatrial septum, the wall of tissue that is a sectional part of the left and right atria of the heart * Interventricular septum, the wall separating the left and right ventricles of the heart * Lingual septum, a vertical layer of fibrous tissue that separates the halves of the tongue. *Nasal septum: the cartilage wall separating the nostrils of the nose * Alveolar septum: the thin wall which separates the alveoli from each other in the lungs * Orbital septum, a palpebral ligament in the upper and lower eyelids * Septum pellucidum or septum lucidum, a thin structure separating two fluid pockets in the brain * Uterine septum, a malformation of the uterus * Vaginal septum, a lateral or transverse partition inside the vagina * Intermuscular sep ...
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Ellipsoid
An ellipsoid is a surface that may be obtained from a sphere by deforming it by means of directional scalings, or more generally, of an affine transformation. An ellipsoid is a quadric surface;  that is, a surface that may be defined as the zero set of a polynomial of degree two in three variables. Among quadric surfaces, an ellipsoid is characterized by either of the two following properties. Every planar cross section is either an ellipse, or is empty, or is reduced to a single point (this explains the name, meaning "ellipse-like"). It is bounded, which means that it may be enclosed in a sufficiently large sphere. An ellipsoid has three pairwise perpendicular axes of symmetry which intersect at a center of symmetry, called the center of the ellipsoid. The line segments that are delimited on the axes of symmetry by the ellipsoid are called the ''principal axes'', or simply axes of the ellipsoid. If the three axes have different lengths, the figure is a triaxial ellipsoid (r ...
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Teloschistes
''Teloschistes'' is a genus of lichens in the family Teloschistaceae. It was circumscribed by Norwegian botanist Johannes Musaeus Norman in 1852. The name of the genus means "split ends". Species *'' Teloschistes chrysophthalmus'' *'' Teloschistes fasciculatus'' *''Teloschistes flavicans ''Teloschistes flavicans'', also known as the golden hair-lichen is a lichenized species of fungus in the genus ''Teloschistes'', family Teloschistaceae. Recognized by its safron coloured pigmentation, this species grows on rocks and branches of ...'' *'' Teloschistes inflatus'' *'' Teloschistes sieberianus'' *'' Teloschistes spinosus'' *'' Teloschistes velifer'' *'' Teloschistes xanthoroides'' References Teloschistales Teloschistales genera Lichen genera Taxa described in 1853 {{Teloschistales-stub ...
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Hymenium
The hymenium is the tissue layer on the hymenophore of a fungal fruiting body where the cells develop into basidia or asci, which produce spores. In some species all of the cells of the hymenium develop into basidia or asci, while in others some cells develop into sterile cells called cystidia (basidiomycetes) or paraphyses (ascomycetes). Cystidia are often important for microscopic identification. The subhymenium consists of the supportive hyphae from which the cells of the hymenium grow, beneath which is the hymenophoral trama, the hyphae that make up the mass of the hymenophore. The position of the hymenium is traditionally the first characteristic used in the classification and identification of mushrooms. Below are some examples of the diverse types which exist among the macroscopic Basidiomycota and Ascomycota. * In agarics, the hymenium is on the vertical faces of the gills. * In boletes and polypores, it is in a spongy mass of downward-pointing tubes. * In puffballs, ...
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Diaspore (botany)
In botany, a diaspore is a plant dispersal unit consisting of a seed or spore plus any additional tissues that assist dispersal. In some seed plants, the diaspore is a seed and fruit together, or a seed and elaiosome. In a few seed plants, the diaspore is most or all of the plant, and is known as a tumbleweed. Diaspores are common in weedy and ruderal species. Collectively, diaspores, seeds, and spores that have been modified for migration are known as ''disseminules''. Role in dispersal A diaspore of seed plus elaiosome is a common adaptation to seed dispersal by ants (myrmecochory). This is most notable in Australian and South African sclerophyll plant communities. Typically, ants carry the diaspore to their nest, where they may eat the elaiosome and discard the seed, and the seed may subsequently germinate. A diaspore of seed(s) plus fruit is common in plants dispersed by frugivores. Fruit-eating bats typically carry the diaspore to a favorite perch, where they eat the ...
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Cortex (botany)
In botany, a cortex is an outer layer of a stem or root in a vascular plant, lying below the epidermis but outside of the vascular bundles. The cortex is composed mostly of large thin-walled parenchyma cells of the ground tissue system and shows little to no structural differentiation. The outer cortical cells often acquire irregularly thickened cell walls, and are called collenchyma cells. Plants Stems and branches In the three dimensional structure of herbaceous stems, the epidermis, cortex and vascular cambium form concentric cylinders around the inner cylindrical core of pith. Some of the outer cortical cells may contain chloroplasts, giving them a green color. They can therefore produce simple carbohydrates through photosynthesis. In woody plants, the cortex is located between the periderm (bark) and the vascular tissue (phloem, in particular). It is responsible for the transportation of materials into the central cylinder of the root through diffusion and may als ...
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