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FIGURE 15. Species relationship among P in Synopsis of Potamogetonaceae in Iran with supplements to the Flora Iranica and a new identification key
FIGURE 15. Species relationship among P.×Khuzestanicus and its parents based on trnH-psbA tree (numbers at nodes are Bayesian Posterior Probabilities).
FIGURE 14. Species relationship among P in Synopsis of Potamogetonaceae in Iran with supplements to the Flora Iranica and a new identification key
FIGURE 14. Species relationship among P.×khuzestanicus and its parents based on ITS tree (numbers at nodes are Bayesian Posterior Probabilities).
FIGURE 1 in Identification of the new species Comatricha macrospora and two other recently recorded species of Comatricha from China
FIGURE 1. Phylogenetic tree of Comatricha (based on SSU) which shows relationships among species in this genus along with species in the genera Meriderma, Lamproderma, Stemonitopsis and Diacheopsis. New species are indicated in bold and red colour. Support in nodes is indicated when posterior probabilities are>95%.
FIGURE 4 in Identification of the new species Comatricha macrospora and two other recently recorded species of Comatricha from China
FIGURE 4. Comatricha afroalpina Rammeloo (HMJAU: M1006) A. Sporocarps occurring on a log; B. Two sporocarps as observed by SEM; C. Incomplete surface net and spores as observed by SEM; D. A portion of the spores and capillitium as viewded by TL; E-F. Spores marked with warts by as viewed by SEM. (Bar: A=1 mm)
FIGURE 3 in Identification of the new species Comatricha macrospora and two other recently recorded species of Comatricha from China
FIGURE 3. Comatricha tenerrima (M.A. Curtis) G. Lister (HMJAU: M1058) A. Sporocarp as observed by SEM; B-D. Capillitium and spores as observed by SEM and TL; E-F. Spores marked with warts as viewed by SEM.
FIGURE 2 in Identification of the new species Comatricha macrospora and two other recently recorded species of Comatricha from China
FIGURE 2.. Comatricha macrospora B. Zhang & Yu Li (HMJAU-M1066!) A. Sporocarp growing on a log; B. Sporocarp as seen by SEM, C. Columella and capillitia; D. Capillitia and spores as seen by TL; E. Peridia and capillitia; F. Spores marked with spines. (Bar: A = 2 mm)
FIGURE 1 in Morphological and molecular identification of a new species of Atraporiella (Polyporales, Basidiomycota) in China
FIGURE 1. Maximum Parsimony strict consensus tree illustrating the phylogeny of Atraporiella yunnanensis and related species in Polyporales based on ITS+nLSU sequences. Branches are labeled with maximum likelihood bootstrap higher than 70%, parsimony bootstrap proportions higher than 50% and Bayesian posterior probabilities more than 0.95 respectively. Clade names follow Binder et al. (2013).
FIGURE 3 in Morphological and molecular identification of a new species of Atraporiella (Polyporales, Basidiomycota) in China
FIGURE 3. Microscopic structures of Atraporiella yunnanensis (drawn from the holotype). a basidiospores. b basidia and basidioles. c hyphae from trama. d hyphae from subiculum. Bars: a—5 μm; b–d—10 μm.
FIGURE 1 in Morphological and molecular identification of Alternaria hedjaroudei sp. nov., a new species in section Panax from Iran
FIGURE 1. Bayesian inference (BI) tree obtained by phylogenetic analysis using a combined ITS, GAPDH, RPB2 and TEF sequences data of Alternaria species from different sections. Bayesian posterior probabilities (BPP) and bootstrap support values from maximum parsimony (MP-BS) above 50% are indicated at the nodes (BPP/MP-BS). The tree was rooted to Stemphylium vesicarium (CBS 191.86). The scale bar indicates the number of expected substitutions per position. The isolates from the current study are in bold.
FIGURE 3. Alternaria hedjaroudei. a–c in Morphological and molecular identification of Alternaria hedjaroudei sp. nov., a new species in section Panax from Iran
FIGURE 3. Alternaria hedjaroudei. a–c, Ascomata formed on PCA culture medium. d–e, Ascomata wall. f–g, Hymenium. h–j, 8-spored mature asci. k, Pseudoparaphyses. l–z, Ascospores. Scale bars 20 µm.
FIGURE 2. Alternaria hedjaroudei. a-d, Colonies after 7 in Morphological and molecular identification of Alternaria hedjaroudei sp. nov., a new species in section Panax from Iran
FIGURE 2. Alternaria hedjaroudei. a-d, Colonies after 7 days on PDA (a), PCA (b), HA (c), and V8–A (d). e–f, Sporulation pattern. g–l, Primary conidiophores. m–o, Secondary conidiophores. p–z, Conidia. Scale bars 25 µm.
FIGURE 1. Euonymus echinatus. A in Euonymus echinatus, a new record for the Flora of Vietnam, the species lectotypification and the key for identification of Vietnamese species of the genus Euonymus (Celastraceae)
FIGURE 1. Euonymus echinatus. A: Fruiting shoot. B: Fruit—spiny capsule. C: Leaf top view. D: Leaf bottom view. E: Part of stem and leaves bottom view. Scale bar: 1 sm. Photos by Hoang Thanh Son.
FIGURE 2 in Euonymus echinatus, a new record for the Flora of Vietnam, the species lectotypification and the key for identification of Vietnamese species of the genus Euonymus (Celastraceae)
FIGURE 2. Euonymus echinatus, image of the Lectotype (K: K001038627). © copyright of the Board of Trustees of the Royal Botanic Gardens, Kew.
TABLE 2 in A new genus and new species of sucking louse (Phthiraptera: Anoplura: Enderleinellidae) from the particoloured flying squirrel (Hylopetes alboniger) in Laos, and an updated identification key to enderleinellid genera
<p><b>TABLE 2.</b> Species of Enderleinellinae, their known hosts and geographical distributions.</p><table><tbody><tr><th><b>Louse Species</b></th><th><b>Host/ <b>sa</b></b></th><th><b>Geographical <b>Distributionsb</b></b></th></tr></tbody><tbody><tr><th><i>Atopophthirus emersoni</i> Kim</th><td><i>Petaurista elegans</i> (Müller)</td><td>Peninsular Malaysia</td></tr><tr><th><i>Atopophthirus setosus</i> Chin</th><td><i>Petaurista philippensis</i> (Elliot) <i>Petaurista alborufus</i> Milne-Edwards</td><td>China</td></tr><tr><th><i>Enderleinellus arizonensis</i> Werneck</th><td><i>Sciurus arizonensis</i> Coues <i>Sciurus alleni</i> Nelson <i>Sciurus nayaritensis</i> Allen</td><td>U.S.A., México</td></tr><tr><th><i>Enderleinellus blagoveshtchenskyi</i> Sosnina & Ozerova</th><td><i>Marmota baibacina</i> Kastschenko</td><td>Kyrgyzstan</td></tr><tr><th><i>Enderleinellus corrugatus</i> Johnson</th><td><i>Tamiops mcclellandii</i> (Horsfield) <i>Callosciurus erythraeus</i> (Pallas)</td><td>China, Thailand</td></tr><tr><th><i>Enderleinellus deppei</i> Kim</th><td><i>Sciurus deppei</i> Peters <i>Sciurus aureogaster</i> Cuvier <i>Sciurus granatensis</i> Humboldt</td><td>México, Nicaragua, Panamá</td></tr><tr><th><i>Enderleinellus disparilis</i> Blagoveschtchensky</th><td><i>Urocitellus undulatus</i> (Pallas)</td><td>Russia</td></tr><tr><th><i>Enderleinellus dolichocephalus</i> Blagoveschtchensky</th><td><i>Marmota camtschatica</i> (Pallas)</td><td>Russia</td></tr><tr><th><i>Enderleinellus dremomydis</i> Ferris</th><td><i>Dremomys pernyi</i> (Milne-Edwards) <i>Dremomys rufigenis</i> (Blanford)</td><td>China, Thailand</td></tr><tr><th><i>Enderleinellus euxeri</i> Ferris</th><td><i>Euxerus erythropus</i> (Geoffroy Saint-Hilaire)</td><td>Benin, Kenya, Liberia, Nigeria, Sudan</td></tr><tr><th><i>Enderleinellus extremus</i> Ferris</th><td><i>Sciurus aureogaster</i> Cuvier <i>Sciurus deppei</i> Peters</td><td>Guatemala, México</td></tr><tr><th><i>Enderleinellus ferrisi</i> (Touleshkov)</th><td><i>Spermophilus citellus</i> (Linnaeus)</td><td>Eastern Europe</td></tr><tr><th><i>Enderleinellus gambiani</i> Kuhn &Ludwig</th><td><i>Heliosciurus punctatus</i> (Temmiinck)</td><td>Liberia</td></tr><tr><th><i>Enderleinellus heliosciuri</i> Ferris</th><td><i>Heliosciurus undulatus</i> (True) <i>Heliosciurus gambianus</i> (Ogilby) <i>Heliosciurus ruwenzorii</i> (Schwann), <i>Heliosciurus rufobrachium</i> (Waterhouse), <i>Epixerus ebii</i> (Temminck) <i>Paraxerus cepapi</i> (Smith) <i>Protoxerus aubinnii</i> (Gray) <i>Protoxerus stangeri</i> (Waterhouse)</td><td>Angola, Democratic Republic of the Congo, Kenya, Liberia, Tanzania, Uganda</td></tr><tr><th><i>Enderleinellus hondurensis</i> Werneck</th><td><i>Sciurus variegatoides</i> Ogilby <i>Sciurus yucatanensis</i> Allen</td><td>Colombia, Honduras, México. Nicaragua, Panamá</td></tr><tr><th><i>Enderleinellus insularis</i> Werneck</th><td><i>Sciurus granatensis</i> Humboldt</td><td>Venezuela</td></tr><tr><th><i>Enderleinellus kaibabensis</i> Kim</th><td><i>Sciurus aberti</i> Woodhouse</td><td>U.S.A.</td></tr><tr><th><i>Enderleinellus kelloggi</i> Ferris</th><td><i>Sciurus griseus</i> Ord</td><td>North America</td></tr><tr><th><i>Enderleinellus krochinae</i> Blagoveschtchensky</th><td><i>Sciurus anomalus</i> Gmelin</td><td>Azerbaijan, Syria, Turkey</td></tr><tr><th><i>Enderleinellus kumadai</i> Kaneko</th><td><i>Callosciurus erythraeus</i> (Pallas) <i>Callosciurus finlaysoni</i> (Horsfield) <i>Callosciurus nigrovittatus</i> (Horsfield) <i>Callosciurus prevostii</i> (Desmarest)</td><td>Borneo, Malaysia, Taiwan, Thailand c</td></tr><tr><th><i>Enderleinellus larisci</i> Ferris</th><td><i>Lariscus insignis</i> (Cuvier)</td><td>Borneo</td></tr><tr><th><i>Enderleinellus longiceps</i> Kellogg & Ferris</th><td><i>Sciurus carolinensis</i> Gmelin <i>Sciurus niger</i> (Linnaeus)</td><td>North America d</td></tr><tr><th><i>Enderleinellus malaysianus</i> Ferris</th><td><i>Callosciurus caniceps</i> (Gray) <i>Callosciurus notatus</i> (Bodaert) <i>Callosciurus prevostii</i> (Desmarest)</td><td>Borneo, Malaysia, Myanmar, Thailand</td></tr><tr><th><i>Enderleinellus marmotae</i> Ferris</th><td><i>Marmota monax</i> (Linnaeus)</td><td>U.S.A.</td></tr><tr><th><i>Enderleinellus menetensis</i> Ferris</th><td><i>Menetes berdmorei</i> (Blyth)</td><td>Thailland</td></tr><tr><th><i>Enderleinellus mexicanus</i> Werneck</th><td><i>Sciurus aureogaster</i> Cuvier</td><td>México</td></tr><tr><th><i>Enderleinellus microsciuri</i> Werneck</th><td><i>Microsciurus mimulus</i> (Thomas) <i>Microsciurus alfari</i> (Allen)</td><td>Colombia, Panamá</td></tr><tr><th><i>Enderleinellus nannosciuri</i> Ferris</th><td><i>Nannosciurus melanotis</i> (Müller)</td><td>Java</td></tr><tr><th><i>Enderlenellus nayaritensis</i> Kim</th><td><i>Sciurus nayaritensis</i> Allen</td><td>México</td></tr><tr><th><i>Enderleinellus nishimarui</i> Kaneko</th><td><i>Funambulus pennanti</i> Wroughton</td><td>India, Nepal</td></tr><tr><th><i>Enderleinellus nitzschi</i> Fahrenholz</th><td><i>Sciurus vulgaris</i> Linnaeus</td><td>Eurasia</td></tr><tr><th><i>Enderleinellus oculatus</i> Kim</th><td><i>Sciurus oculatus</i> Peters <i>Sciurus alleni</i> Nelson</td><td>México</td></tr><tr><th><i>Enderleinellus osborni</i> Kellogg & Ferris</th><td><i>Otospermophilus beecheyi</i> (Richardson) <i>Otospermophilus variegatus</i> (Erxleben) <i>Urocitellus beldingi</i> (Merriam) <i>Xerospermophilus mohavensis</i> (Merriam) <i>Xerospermophilus tereticaudus</i> (Baird)</td><td>North America, México</td></tr><tr><th><i>Enderleinellus paralongiceps</i> Kim</th><td><i>Sciurus aberti</i> Woodhouse</td><td>U.S.A.</td></tr><tr><th><i>Enderleinellus platyspicatus</i> Ferris</th><td><i>Funambulus palmarum</i> (Linnaeus)</td><td>Sri Lanka</td></tr><tr><th><i>Enderleinellus pratti</i> Kim</th><td><i>Sciurus colliaei</i> Richardson</td><td>México</td></tr><tr><th><i>Enderleinellus propinquus</i> Blagoveschtchensky</th><td><i>Spermophilus fulvus</i> (Lichtenstein), <i>Spermophilus citellus</i> (Linnaeus), <i>Spermophilus suslicus</i> (Güldenstädt)</td><td>Eastern Europe, Kazakhstan</td></tr><tr><th><i>Enderleinellus puvensis</i> Blagoveschtchensky</th><td><i>Callosciurus inornatus</i> (Gray) <i>Callosciurus pygerythrus</i> (Geoffroy Saint Hilaire)</td><td>China</td></tr><tr><th><i>Enderleinellus replicatus</i> Redikorzev</th><td><i>Pteromys volans</i> (Linnaeus)</td><td>Russia</td></tr><tr><th><i>Enderleinellus sciurotamiasis</i> Ferris</th><td><i>Sciurotamias davidianus</i> (Milne-Edwards)</td><td>China</td></tr><tr><th><i>Enderleinellus suturalis</i> (Osborn)</th><td><i>Ictidomys tridecemlineatus</i> (M <i>i</i> itchill), <i>Ammospermophilus harrisii</i> (Audubon & Bachman) <i>Ammospermophilus nelsoni</i> (Merriam), <i>Callospermophilus lateralis</i> (Say) <i>Cynomys gunnisoni</i> (Baird) <i>Cynomys leucurus</i> Merriam <i>Ictidomys mexicanus</i> (Erxleben), <i>Otospermophilus variegatus</i> (Erxleben), <i>Poliocitellus franklinii</i> (Sabine) <i>Urocitellus beldingi</i> (Merriam) <i>Urocitellus richardsonii</i> (Sabine) <i>Urocitellus townsendii</i> Bachman <i>Xerospermophilus spilosoma</i> (Bennett) <i>Xerospermophilus tereticaudus</i> (Baird)</td><td>North America, México</td></tr><tr><th><i>Enderleinellus tamiasciuri</i> Kim</th><td><i>Tamiasciurus hudsonicus</i> (Erxleben) <i>Tamiasciurus douglasii</i> (Bachman)</td><td>North America</td></tr><tr><th><i>Enderleinellus tamiasis</i> Fahrenholz</th><td><i>Eutamias sibiricus</i> (Laxmann)</td><td>Korea, Mongolia e</td></tr><tr><th><i>Enderleinellus tamiopsis</i> Chin</th><td><i>Tamiops</i> sp.</td><td>China</td></tr><tr><th><i>Enderleinellus urosciuri</i> Werneck</th><td><i>Sciurus igniventris</i> Wagner</td><td>Brazil</td></tr><tr><th><i>Enderleinellus venezuelae</i> Ferris</th><td><i>Sciurus granatensis</i> Humboldt</td><td>Venezuela</td></tr><tr><th><i>Enderleinellus zonatus</i> Ferris</th><td><i>Paraxerus ochraceus</i> (Huet) <i>Paraxerus palliatus</i> (Peters)</td><td>Kenya, South Africa</td></tr><tr><th><i>Hylophthirus spinosus</i> Durden, Beati, Greiman & Abramov</th><td><i>Hylopetes alboniger</i> (Hodgson)</td><td>Laos</td></tr><tr><th><i>Microphthirus uncinatus</i> (Ferris)</th><td><i>Glaucomys sabrinus</i> (Shaw) <i>Glaucomys volans</i> (Linnaeus)</td><td>North America</td></tr><tr><th><i>Phthirunculus sumatranus</i> Kuhn & Ludwig</th><td><i>Petaurista petaurista</i> (Pallas) <i>Petaurista alborufus</i> (Milne-Edwards) <i>Petaurista philippensis</i> (Elliot)</td><td>Southeast Asia</td></tr><tr><th><i>Werneckia africana</i> Kaneko</th><td><i>Funisciurus</i> sp.</td><td>Nigeria</td></tr><tr><th><i>Werneckia funisciuri</i> Benoit</th><td><i>Funisciurus carruthersi</i> Thomas</td><td>Central Africa</td></tr><tr><th><i>Werneckia minuta</i> (Werneck)</th><td><i>Paraxerus ochraceus</i> (Huet) <i>Paraxerus cepapi</i> (Smith) <i>Heliosciurus rufobrachium</i> (Waterhouse)</td><td>Central & East Africa</td></tr><tr><th><i>Werneckia nigeriensis</i> Kaneko</th><td><i>Funisciurus</i> sp.</td><td>Nigeria</td></tr><tr><th><i>Werneckia paraxeri</i> (Werneck)</th><td><i>Paraxerus palliatus</i> (Peters) <i>Paraxerus cepapi</i> (Smith)</td><td>Kenya, Namibia</td></tr></tbody></table><p><sup>a</sup> The type host for each species of louse is listed first if there are multiple recorded host species.</p><p><sup>b</sup> Geographical distributions reflect known distributions for the lice; in almost all cases, known host distributions are larger.</p><p><sup>c</sup> <i>Enderleinellus kumadai</i> has also been recorded on introduced, non-native <i>Callosciurus erythraeus</i> in Japan (Katahira <i>et al</i>. 2022) and in Belgium and France (Dozières <i>et al</i>. 2010).</p><p><sup>d</sup> <i>Enderleinellus longiceps</i> has also been recorded on introduced, non-native <i>Sciurus carolinensis</i> in some other parts of the world (e.g, Britain) (Thompson 1935; Durden & Musser 1994).</p><p><sup>e</sup> <i>Enderleinellus tamiasis</i> has also been recorded in France on introduced, non-native <i>Eutamias sibiricus</i> (Beaucournu <i>et al</i>. 2008).</p>
TABLE 1 in A new genus and new species of sucking louse (Phthiraptera: Anoplura: Enderleinellidae) from the particoloured flying squirrel (Hylopetes alboniger) in Laos, and an updated identification key to enderleinellid genera
<p><b>TABLE 1</b>. Families and genera of sucking lice that include species parasitic on members of the Sciuridae (squirrels, chipmunks, susliks and marmots).</p><table><tbody><tr><th><b>Louse Families &Genera</b></th><th><b>Number of species</b></th><th><b>Host Tribe/s</b></th><th><b>Geographical Distributions</b></th></tr><tr><th><b>Enderleinellidae</b></th></tr></tbody><tbody><tr><th><i>Atopophthirus</i></th><td>2</td><td>Pteromyini</td><td>Southeast Asia</td></tr><tr><th><i>Enderleinellus</i> b</th><td>47</td><td>Nannosciurini, Funambulini, Protoxerini, Pteromyini, Sciurini</td><td>North America, South America, Eurasia, Africa</td></tr><tr><th><i>Hylophthirus</i> new genus</th><td>1</td><td>Pteromyini</td><td>Southeast Asia</td></tr><tr><th><i>Microphthirus</i></th><td>1</td><td>Pteromyini</td><td>North America</td></tr><tr><th><i>Phthirunculus</i></th><td>1</td><td>Pteromyini</td><td>Southeast Asia</td></tr><tr><th><i>Werneckia</i></th><td>5</td><td>Protoxerini</td><td>Sub-Saharan Africa</td></tr><tr><th><b>Hoplopleuridae</b></th></tr><tr><th><i>Hoplopleura</i> Enderlein, 1904b a,b</th><td>19</td><td>Nannosciurini, Marmotini, Sciurini, Pteromyini</td><td>North America, Southern Asia</td></tr><tr><th><i>Paradoxophthirus</i> Chin, 1989</th><td>1</td><td>Marmotini</td><td>Southeast Asia</td></tr><tr><th><b>Polyplacidae</b></th></tr><tr><th><i>Johnsonpthirus</i> Benoit, 1961</th><td>5</td><td>Protoxerini</td><td>Africa</td></tr><tr><th><i>Linognathoides</i> Cummings, 1914</th><td>11</td><td>Marmotini, Xerini</td><td>North America, Central America, Eurasia, Africa</td></tr><tr><th><i>Neohaematopinus</i> Mjöberg, 1910 a,b</th><td>30</td><td>Nannosciurini, Pteromyini, Sciurini</td><td>North America, South America, Eurasiac</td></tr><tr><th><i>Polyplax</i> Enderlein, 1904 aa</th><td>1</td><td>Marmotini</td><td>Europe</td></tr></tbody></table><p><sup>a</sup> Except for <i>Hoplopleura, Neohaematopinus</i> and <i>Polyplax</i>, all known species in the remaining genera exclusively parasitise sciurid rodents.</p><p><sup>b</sup> Three species of squirrel-associated lice, <i>Enderleinellus longiceps, Hoplopleura sciuricola</i> and <i>Neohaematopinus sciuri</i>, have accompanied their host, the eastern grey squirrel, <i>Sciurus carolinensis</i> Gmelin, from North America to some other parts of the world as intentional or accidental squirrel introductions [Thompson 1935; Davis 1951 (louse misidentified as <i>Neohaematopinus sciurinus</i>), Durden & Musser 1994].</p><p><sup>c</sup> <i>Neohaematopinus callosciuri</i> has accompanied its intentionally introduced host, <i>Callosciurus erythraeus</i> (Pallas squirrel), from Taiwan to Japan (Shinozaki <i>et al</i>. 2003, 2004).</p>
FIGURES 9–16 in Four new species of Mesorhaga Schiner (Diptera: Dolichopodidae) from Northeastern Brazil, with an identification key to South American species of the genus
FIGURES 9–16. Mesorhaga gomesi sp. nov., Holotype ♂, left lateral view. 9, habitus, left lateral view; 10, head, left lateral view; 11, head, frontal view; 12, wing; 13, thorax, dorsal view; 14, post-abdomen, left lateral view; 15, terminalia left lateral view; 16, terminalia illustration left lateral view.
FIGURES 25–32 in Four new species of Mesorhaga Schiner (Diptera: Dolichopodidae) from Northeastern Brazil, with an identification key to South American species of the genus
FIGURES 25–32. Mesorhaga parnasete sp. nov., Holotype ♂, left lateral view. 25, habitus, left lateral view; 26, head, left lateral view; 27, head, frontal view; 28, wing; 29, thorax, dorsal view; 30, post-abdomen, left lateral view; 31, terminalia left lateral view; 32, terminalia illustration left lateral view.
FIGURES 1–8 in Four new species of Mesorhaga Schiner (Diptera: Dolichopodidae) from Northeastern Brazil, with an identification key to South American species of the genus
FIGURES 1–8. Mesorhaga danbickeli sp. nov., Holotype ♂, left lateral view. 1, habitus, left lateral view; 2, head, left lateral view; 3, head, frontal view; 4, wing; 5, thorax, dorsal view; 6, post-abdomen, left lateral view; 7, terminalia left lateral view; 8, terminalia illustration left lateral view. Abbreviations: C = costal vein; cerc = cercus; bm+dm = basal medial cell + dm = discal medial cell; dm–m = discal medial crossvein; ej apod = ejaculatory apodeme; epand = epandrium; epand for = foramen epandrial; hypd = hypandrium; ph = phallus; h = humeral crossvein; M1 = first branch of media; M4 = fourth branch of media; R1 = anterior branch of radius; R2+3 = second branch of radius; R4+5 = third branch of radius; Sc = subcostal vein; spm sac = sperm sac; sur = surstylus.
FIGURES 17–24 in Four new species of Mesorhaga Schiner (Diptera: Dolichopodidae) from Northeastern Brazil, with an identification key to South American species of the genus
FIGURES 17–24. Mesorhaga laetitia sp. nov., Holotype ♂, left lateral view. 17, habitus, left lateral view; 18, head, left lateral view; 19, head, frontal view; 20, wing; 21, thorax, dorsal view; 22, post-abdomen, left lateral view; 23, terminalia left lateral view; 24, terminalia illustration left lateral view.
Data from: Give me a sample of air and I will tell which species are found from your region – molecular identification of fungi from airborne spore samples
Fungi are a megadiverse group of organisms, they play major roles in ecosystem functioning, and are important for human health, food production, and nature conservation. Our knowledge on fungal diversity and fungal ecology is however still very limited, in part because surveying and identifying fungi is time demanding and requires expert knowledge. We present a method that allows anyone to generate a list of fungal species likely to occur in a region of interest, with minimal effort and without requiring taxonomical expertise. The method consists of using a cyclone sampler to acquire fungal spores directly from the air to an Eppendorf tube, and applying DNA barcoding with probabilistic species identification to generate a list of species from the sample. We tested the feasibility of the method by acquiring replicate air samples from different geographical regions within Finland. Our results show that air sampling is adequate for regional-level surveys, with samples collected >100 km apart varying but samples collected <10 km apart not varying in their species composition. The data show marked phenology, and thus that obtaining a representative species list requires aerial sampling that covers the entire fruiting season. In sum, aerial sampling combined with probabilistic molecular species identification offers a highly effective method for generating a species list of airborne dispersed fungi. The method presented here has the potential to revolutionize fungal surveys, as it provides a highly cost-efficient way to include fungi as a part of large-scale biodiversity assessments and monitoring programs.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.