1,727,710 research outputs found

    Hymenotorrendiella guangxiensis Baral & W. Y. Zhuang 2014, comb. nov.

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    Hymenotorrendiella guangxiensis (W.Y. Zhuang) Baral & W.Y. Zhuang, comb. nov. Registration identifier: IF550530 Synonym: Torrendiella guangxiensis W.Y. Zhuang, Mycotaxon 72: 331 (1999).Published as part of Johnston, Peter R., Park, Duckchul, Baral, Hans-Otto, Galán, Ricardo, Platas, Gonzalo & Tena, Raúl, 2014, The phylogenetic relationships of Torrendiella and Hymenotorrendiella gen. nov. within the Leotiomycetes, pp. 1-25 in Phytotaxa 177 (1) on page 17, DOI: 10.11646/phytotaxa.177.1.1, http://zenodo.org/record/514452

    Karl Baral ex librise

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    R. Mękicki, F.http://www.lib.unideb.huDebreceni Egyetem Egyetemi és Nemzeti KönyvtárCopf/empire stílű kisszekrény, tetején könyvek, ill. Hermész/Mercurius jelvényei: szárnyas kalap s caduceus, valamint rózsafüzérek. A szekrényen tábla, rajta Ex libris Karl Baral felirat. A szekrény alatt készítői jelzet.metsze

    Orbilia aureocrenulata Baral 2020

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    <i>Orbilia aureocrenulata</i> Baral <p> MATERIAL STUDIED. — <b>Brazil</b>. Mato Grosso do Sul, Campo Grande, UFMS Campus, on wood, <i>Aptroot & Muxfeldt 83271</i>.</p> NOTES <p> New record for Mato Grosso do Sul. For a description, see Baral <i>et al</i>. (2020).</p>Published as part of <i>Naziazeno, Leticia Muxfeldt & Aptroot, André, 2023, New species and records of mostly lignicolous dothideomycetous ascomycetes from Brazil, pp. 1-9 in Cryptogamie, Mycologie 20 (1)</i> on page 5, DOI: 10.5252/cryptogamie-mycologie2023v44a1, <a href="http://zenodo.org/record/7815368">http://zenodo.org/record/7815368</a&gt

    Hymenotorrendiella P. R. Johnst., Baral & R. Galan 2014, gen. nov.

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    Hymenotorrendiella P.R. Johnst., Baral & R. Galán, gen. nov. Registration identifier: IF550522 Differs from Torrendiella by the Hymenoscyphus - or Calycina - type ascus apex structure and the contents of the living paraphyses comprising numerous globose vacuolar bodies. Type:— Hymenotorrendiella eucalypti (Berk.) P.R. Johnst., Baral & R. Galán Etymology:—refers to the phylogenetic position of this Torrendiella -like genus in a clade containing the type species of Hymenoscyphus. Apothecia 0.2–5 mm diam., with short to long stalk, disc whitish to cream or grey, exterior concolorous or light to black-brown, receptacle and often also stalk with dark brown setae. Asci 8-spored, apex distinctly conical, apical ring staining blue in IKI (without KOH, type bb), either of the Hymenoscyphus - type: forming a thin-walled tube restricted to the lower part of the apical thickening or extending to the apex, or sometimes of the Calycina - type: tube apically thicker-walled and here laterally extending, ring basally not distinctly projecting, not forming an apical chamber; base arising from croziers or simple septa (without basal protuberance). Ascospores non-septate when mature, hyaline, straight or slightly, rarely medium curved, narrowly to broadly ellipsoid, fusoid, fusiform, or lemon-shaped (homopolar), containing in the living state some large and a few or many small oil drops (high lipid content), with a thin sheath around the entire spore that separates after discharge, sometimes with polar mucilaginous caps, overmature non-septate, spores sometimes budding ellipsoid microconidia (H. madsenii). Paraphyses cylindrical, straight, not or only slightly enlarged at the apex, containing many globose, small or large, strongly refractive, hyaline vacuolar bodies (living state), mainly in the terminal cell. Ectal excipulum comprising three layers: outer layer (ec1) one-layered, of meandering hyphae, encrusted with olivaceous to red-brown wall pigment, or hyaline and smooth; central layer (ec2) of prismatic or long-cylindrical cells, very slightly to strongly gelatinized, hyaline, rarely pale brown and encrusted; inner layer (ec3) of long-cylindrical hyphae, pale to bright brown, not or ± distinctly encrusted. Setae with dark brown, 1–3.5 µm thick wall, rooting or superficial, base unbranched or T- to L-shaped. Habitat:—developing on fallen leaves or dead wood, or bark of angiosperms. FIGURE. Torrendiella ciliata. a–c. Fresh apothecia. d. Ascospores. e, k, p. Mature asci. f–j. Ascus apices in IKI (h, after ejection). l–n. Paraphyses containing vacuolar bodies. s, o, q. Marginal setae. e, r. Simple-septate ascus bases with a basal protuberance. All elements in living state except for f–j (in IKI, unpretreated).— a, i–l. France, Charente-Maritime, Ile de Ré, les Maraises, Quercus ilex leaf (M.H. 71108, phot. M. Hairaud). b. Spain, Asturias, Somiedo, Quercus ilex leaf (E.R.D. 4435, phot. E. Rubio). c. Andalucía, Huelva, Galaroza,? Quercus suber twig (D.M.A. 20100116, phot. D. Merino). d–h, n–p, r. Valencia, El Saler, Quercus coccifera leaves (R.T. 10010501). m, q. ibid. (R.T. 11111202). Further included species: — H. andina, H. brevisetosa, H. cannibalensis, H. clelandii, H. dingleyae, H. grisea, H. guangxiensis, H. madsenii. FIGURE. Torrendiella ciliata. a. Fresh apothecium. b–c. Median section of receptacle at lower flanks. d. Median section of receptacle at margin. e. Surface view on ectal excipulum at margin, brown undulating cortical hyphae surrounding base of seta. f–i. Marginal setae. All elements in living state. ec1 = cortical layer of ectal excipulum, ec2 = gelatinized outer layer of main part of ectal excipulum, ec3 = non-gelatinized inner layer of ectal excipulum, em = non-gelatinized medullary excipulum.— a–d, f. France, Charente, Bourg-Charente, Quercus ilex leaf (M.H. 70712, a: phot. M. Hairaud). e, g–i. Spain, Valencia, El Saler, Quercus coccifera leaves (R.T. 11111202).Published as part of Johnston, Peter R., Park, Duckchul, Baral, Hans-Otto, Galán, Ricardo, Platas, Gonzalo & Tena, Raúl, 2014, The phylogenetic relationships of Torrendiella and Hymenotorrendiella gen. nov. within the Leotiomycetes, pp. 1-25 in Phytotaxa 177 (1) on pages 9-11, DOI: 10.11646/phytotaxa.177.1.1, http://zenodo.org/record/514452

    Role-based User Access Control in MERN Stack applications

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    Web technologies have been rapidly evolving. They have evolved along with the development and advancement of web browsers and scripting languages. Development of modern browsers, cascading style sheets and open source concepts are the main reasons behind the latest revolution in web tools and technologies. Web technologies have come a long way from static HTML pages to complex, powerful, full-stack web applications. Inside the application, there can be some sensitive data or content that should not be accessible to every user. It should be accessible to only authorized users. To tackle this problem, the concept of Role-Based User Access Control was developed. The main objective of this thesis was to research the various aspects of Role-Based User Access Control and implement them in a MERN Stack application. This thesis provides a brief induction to a current approach to web development. There have been several addition to the web development stack recently. The stack that has been used during the technical implementation of this thesis is the MERN stack. This thesis describes the general idea of Role-Based User Access Control in the MERN stack application. The Application that has been developed with this thesis elaborates how the Role-Based User Access Control can be implemented on the MERN Stack applications from scratch with the tools and libraries such as PassportJS, ExpressJS, JSON Web Tokens, and BcryptJS

    Orbilia foliicola Baral & E. Weber 2020

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    Orbilia foliicola Baral & E. Weber, in Baral, Weber & Marson, Monogr. Orbiliomycetes: 482 (2020) Index Fungorum registration number: 813487 Colonies on PDA are fast-growing, reached ¾ th of the 9 cm plate in 10 days at 28–30 0 C, orange, reverse orange, circular, margin curled, appearance flat, smooth, concentric circles on both sides (Figure 3j, k.). Conidiophore 11–29 μm (x̄=20) in length and 1.5–2 μm (x̄=1.6) in width, hyaline, smooth, high branching pattern (Figure 3l.), exudates orange pigmented. Notes: The Orbilia foliicola isolate (MZ277276) from this study was 100% similar to the closest match KU715138 (identity: 520/520, gaps: 0/520).Published as part of Ganeshalingam, Archchana & Daranagama, Dinushani A., 2022, First comprehensive study on distribution frequency and incidence of seed-borne pathogens from cereal and legume crops in Sri Lanka, pp. 267-281 in Phytotaxa 531 (3) on page 276, DOI: 10.11646/phytotaxa.531.3.6, http://zenodo.org/record/588636

    Lachnum subvirgineum Baral: A new lignicolous fungus record from Tokat

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    In this study, Lachnum subvirgineum Baral was recorded for the first time for Turkish mycota. Short description of the new record, illustrations, some ecological features and discussion are provided

    Présentation par Anna Baral, "Good Life, Bad Guys: urban planning in downtown Kampala", (7/04/2016)

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    Dans le cadre du séminaire DALVAA, Anna Baral (Uppsala University, Department of Cultural Anthropology and Ethnology) présentera ses travaux le 7 avril 2016 à 14h dans la salle 864, bâtiment Olympe de Gouges, Université Paris Diderot. "Good Life, Bad Guys: urban planning in downtown Kampala" Anna Baral Uppsala University, Department of Cultural Anthropology and Ethnology Scholarship and media discourse on informality often focus on conflict and resistance at the interface between urban planni..
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