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140 results for “Fallax”
On following pages: 788. Small-eared Rat (Taeromys microbullatus); 789. Sulawesi Forest Rat (Taeromys punicans); 790. Tondano Rat (Taeromys taerae); 791. Long-tailed Sulawesian Shrew Rat (Tateomys macrocercus); 792. Tate's Sulawesian Shrew Rat (Tateomys rhinogradoides); 793. Mamasa Water Rat (Waiomys mamasae); 794. Spiny Boki Mekot Rat (Halmaheramys bokimekot); 795. Komodo Rat (Komodomys rintjanus); 796. Seram Island Mountain Rat (Nesoromys ceramicus); 797. Armandville's Giant Tree Rat (Papagomys armandville)); 798. Paula's Long-nosed Rat (Paulamys naso); 799. Luzon Broad-toothed Rat (Abditomys latidens); 800. Mindoro Climbing Rat (Anonymomys mindorensis); 801. Mindanao Forest Rat (Bullimus bagobus); 802. Camiguin Forest Rat (Bullimus gamay); 803. Luzon Forest Rat (Bullimus luzonicus); 804. Sulawesi Shrew Mouse (Crunomys celebensis), 805. Luzon Shrew Mouse (Crunomys fallax); 806. Mindanao Shrew Mouse (Crunomys melanius); 807. Katanglad Shrew Mouse (Crunomys suncoides); 808. Gray-bellied Moss Mouse (Limnomys bryophilus), 809. Long-tailed Moss Mouse (Limnomys sibuanus); 810. Dusky Long-footed Rat (Tarsomys apoensis); 811. Spiny Long-footed Rat (Tarsomys echinatus); 812. Luzon Short-nosed Rat (Tryphomys adustus); 813. Ethiopian Amphibious Rat (Nilopegamys plumbeus); 814. Hume's Hadromys (Hadromys humei); 815. Yunnan Hadromys (Hadromys yunnanensis); 816. Vernay's Climbing Mouse (Vernaya fulva). in Muridae
On following pages: 788. Small-eared Rat (Taeromys microbullatus); 789. Sulawesi Forest Rat (Taeromys punicans); 790. Tondano Rat (Taeromys taerae); 791. Long-tailed Sulawesian Shrew Rat (Tateomys macrocercus); 792. Tate's Sulawesian Shrew Rat (Tateomys rhinogradoides); 793. Mamasa Water Rat (Waiomys mamasae); 794. Spiny Boki Mekot Rat (Halmaheramys bokimekot); 795. Komodo Rat (Komodomys rintjanus); 796. Seram Island Mountain Rat (Nesoromys ceramicus); 797. Armandville's Giant Tree Rat (Papagomys armandville)); 798. Paula's Long-nosed Rat (Paulamys naso); 799. Luzon Broad-toothed Rat (Abditomys latidens); 800. Mindoro Climbing Rat (Anonymomys mindorensis); 801. Mindanao Forest Rat (Bullimus bagobus); 802. Camiguin Forest Rat (Bullimus gamay); 803. Luzon Forest Rat (Bullimus luzonicus); 804. Sulawesi Shrew Mouse (Crunomys celebensis), 805. Luzon Shrew Mouse (Crunomys fallax); 806. Mindanao Shrew Mouse (Crunomys melanius); 807. Katanglad Shrew Mouse (Crunomys suncoides); 808. Gray-bellied Moss Mouse (Limnomys bryophilus), 809. Long-tailed Moss Mouse (Limnomys sibuanus); 810. Dusky Long-footed Rat (Tarsomys apoensis); 811. Spiny Long-footed Rat (Tarsomys echinatus); 812. Luzon Short-nosed Rat (Tryphomys adustus); 813. Ethiopian Amphibious Rat (Nilopegamys plumbeus); 814. Hume's Hadromys (Hadromys humei); 815. Yunnan Hadromys (Hadromys yunnanensis); 816. Vernay's Climbing Mouse (Vernaya fulva).
On following pages: 473. Senegal Striped Grass Mouse (Lemniscomys linulus); 474. Mittendorf's Striped Grass Mouse (Lemniscomys mittendorfi); 475. Hoogstraal's Striped Grass Mouse (Lemniscomys hoogstraali), 476. Buffoon Striped Grass Mouse (Lemniscomys macculus); 477. Griselda Striped Grass Mouse (Lemniscomys griselda); 478. Single-striped Grass Mouse (Lemniscomys rosalia); 479. Rosevear's Striped Grass Mouse (Lemniscomys roseveari); 480. West African Rufous-nosed Rat (Oenomys ornatus); 481. Common Rufous-nosed Rat (Oenomys hypoxanthus); 482. East African Groove-toothed Swamp Rat (Pelomys fallax); 483. Hopkins's Groove-toothed Swamp Rat (Pelomys hopkinsi); 484. Lake Victoria Groove-toothed Swamp Rat (Pelomys isseli); 485. Angolan Groove-toothed Swamp Rat (Pelomys campanae); 486. Least Groove-toothed Swamp Rat (Pelomys minor); 487. Target Rat (Stochomys longicaudatus); 488. Kemp's Thicket Rat (Thamnomys kempi); 489. Hatt's Thicket Rat (Thamnomys majon; 490. Schouteden's Thicket Rat (Thamnomys schoutedeni); 491. Thomas's Thicket Rat (Thamnomys venustus); 492. Namaqua Rock Rat (Micaelamys namaquensis); 493. Grant's Rock Rat (Micaelamys granti); 494. Mesic Four-striped Grass Rat (Rhabdomys dilectus); 495. West-Central South African Fourstriped Grass Rat (Rhabdomys bechuanae); 496. KwaZulu Natal Four-striped Grass Rat (Rhabdomys chakae); 497. Karoo Four-striped Grass Rat (Rhabdomys intermedius); 498. Xeric Four-striped Grass Rat (Rhabdomys pumilio), 499. Loring's Thallomys (Thallomys loringi); 500. Black-tailed Thallomys (Thallomys nigricauda); 501. Sundevall's Thallomys (Thallomys paedulcus); 502. Shortridge's Thallomys (Thallomys shortridgei). in Muridae
On following pages: 473. Senegal Striped Grass Mouse (Lemniscomys linulus); 474. Mittendorf's Striped Grass Mouse (Lemniscomys mittendorfi); 475. Hoogstraal's Striped Grass Mouse (Lemniscomys hoogstraali), 476. Buffoon Striped Grass Mouse (Lemniscomys macculus); 477. Griselda Striped Grass Mouse (Lemniscomys griselda); 478. Single-striped Grass Mouse (Lemniscomys rosalia); 479. Rosevear's Striped Grass Mouse (Lemniscomys roseveari); 480. West African Rufous-nosed Rat (Oenomys ornatus); 481. Common Rufous-nosed Rat (Oenomys hypoxanthus); 482. East African Groove-toothed Swamp Rat (Pelomys fallax); 483. Hopkins's Groove-toothed Swamp Rat (Pelomys hopkinsi); 484. Lake Victoria Groove-toothed Swamp Rat (Pelomys isseli); 485. Angolan Groove-toothed Swamp Rat (Pelomys campanae); 486. Least Groove-toothed Swamp Rat (Pelomys minor); 487. Target Rat (Stochomys longicaudatus); 488. Kemp's Thicket Rat (Thamnomys kempi); 489. Hatt's Thicket Rat (Thamnomys majon; 490. Schouteden's Thicket Rat (Thamnomys schoutedeni); 491. Thomas's Thicket Rat (Thamnomys venustus); 492. Namaqua Rock Rat (Micaelamys namaquensis); 493. Grant's Rock Rat (Micaelamys granti); 494. Mesic Four-striped Grass Rat (Rhabdomys dilectus); 495. West-Central South African Fourstriped Grass Rat (Rhabdomys bechuanae); 496. KwaZulu Natal Four-striped Grass Rat (Rhabdomys chakae); 497. Karoo Four-striped Grass Rat (Rhabdomys intermedius); 498. Xeric Four-striped Grass Rat (Rhabdomys pumilio), 499. Loring's Thallomys (Thallomys loringi); 500. Black-tailed Thallomys (Thallomys nigricauda); 501. Sundevall's Thallomys (Thallomys paedulcus); 502. Shortridge's Thallomys (Thallomys shortridgei).
FIGURES 6a–f. Andrena fallax Eversmann, 1852 in The type specimens of bees (Hymenoptera, Apoidea) deposited in the Zoological Institute of the Russian Academy of Sciences, St. Petersburg. Contribution V. Family Andrenidae, genus Andrena Fabricius, 1775, species described by E. Eversmann
FIGURES 6a–f. Andrena fallax Eversmann, 1852. Lectotype, male: a—habitus, lateral view and labels; b—genitalia; c—head, frontal view; d— labrum, dorsal view; e—T1–T3, dorsal view f—mesosoma, dorsal view. Scale bar: 1 mm.
FIGURE 16. Tenerodus fallax n. comb. RMNH Coel. 40214 in Revisionary systematics of the endemic soft coral fauna (Octocorallia: Alcyonacea: Alcyoniina) of the Agulhas Bioregion, South Africa
FIGURE 16. Tenerodus fallax n. comb. RMNH Coel. 40214 (SAF072). Radiates and tuberculate spheroids from interior of colony.
FIGURE 15. Tenerodus fallax n. comb. RMNH Coel. 40214 in Revisionary systematics of the endemic soft coral fauna (Octocorallia: Alcyonacea: Alcyoniina) of the Agulhas Bioregion, South Africa
FIGURE 15. Tenerodus fallax n. comb. RMNH Coel. 40214 (SAF072). a, club-like sclerites from polyps and colony surface; b, asymmetrical spinose clubs from polyps and colony surface; c, tentacle sclerites; d, radiates and tuberculate spheroids from colony surface.
FIGURES 102–106. Epeolus fallax Morawitz, 1872 in Catalogue and identification key of the bee genus Epeolus Latreille, 1802 (Hymenoptera, Apidae) from the Palaearctic region
FIGURES 102–106. Epeolus fallax Morawitz, 1872. Lectotype, male: 102—habitus, lateral view and labels; 103—head, frontal view; 104—labrum, dorsal view; 105—mesosoma, dorsal view; 106—T2, dorso-lateral view.
FIGURE 2. Vaccinium fallax. A. Flowering branchlet. B in Three new species of Vaccinium L. (Ericaceae) from Mindanao Island, Philippines
FIGURE 2. Vaccinium fallax. A. Flowering branchlet. B. Lateral view of flower showing pedicel, hypanthium, calyx, and corolla. C. Ventral view of stamen. D. Lateral view of stamen. Illustration by M.N. Tamayo.
FIGURE 5 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 5. High mountain feather grass steppes near Iskanderkul Lake (Zeravshan Mts, Tajikistan), a habitat of Stipa ×fallax: (A) association of Stipetum drobovii, (B) association of Stipetum lipskyi, (C) Stipa ×fallax. Photos by M. Nobis, 30 May 2015.
FIGURE 3 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 3. Micromorphology of Stipa drobovii (A–D), S.×fallax (E–H) and S. macroglossa subsp. macroglossa (I–L). (A, E, I) lemma surface - lateral view, (B, F, J) lemma apex, (C, G, K) callus, (D, H, L) adaxial surface of vegetative leaves. Abbreviations: h = hook, lc = long cell, sb = silica body, cc—cork cell, pr—prickle, mh—macrohair. Scale bars: C, G, K: 1 mm. Examined specimens of S. drobovii, S.×fallax and S. macroglossa were collected in Tajikistan (near Iskanderkul Lake) and are preserved at KRA.
FIGURE 2 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 2. Pollen grains of Stipa taxa stained with Alexander's dye: (A) S. ×fallax, (B) S. macroglossa subsp. macroglossa, (C) S. drobovii. Scale bar 50 μm.
FIGURE 4 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 4. Stipa ×fallax: (A) vegetative shoots, (B) awns, (C) anthecia, (D) panicle, (E) lower part of awns (columns) with anthecia. Scale bar: (A), (B), (D), (E) = 1 cm, (C) = 0.5 cm.
FIGURE 1 in Stipa ×fallax (Poaceae: Pooideae: Stipeae), a new natural hybrid from Tajikistan, and a new combination in Stipa drobovii
FIGURE 1. Biplot of principal component analysis (PCA) performed on 10 quantitative characters; ellipses indicate 95% confidence interval. For character abbreviations see Methods.
FIGURES 26–29. Female head, oblique view. 26. Huarpea wagneriella. 27. H. fallax. 28. H in A new species of Huarpea Pate, 1947 (Hymenoptera, Sapygidae) from the semiarid region of Brazil
FIGURES 26–29. Female head, oblique view. 26. Huarpea wagneriella. 27. H. fallax. 28. H. rotundicornis sp. nov., paratype. 29. Sapyga quinquepunctata. Arrows indicate occipital carina. Scales: 1.0 mm.
FIGURE 15. Pseudoproto fallax Mayer, 1903. A in Caprellidae*
FIGURE 15. Pseudoproto fallax Mayer, 1903. A, Female, ~2 mm, B, premature female, ~1.75 mm, AM P61734, Coconut Beach, Lizard Island, Great Barrier Reef. Refigured from Guerra-García (2006).
FIGURE 4 in Paraphyletic Species of Podostemaceae: Cladopus fallax and Polypleurum wallichii
FIGURE 4. Root habits of Polypleurum. Roots are reproductive (with flowers or fruits borne on flanks, indicating root habit; vegetative in A) and exposed in the dry season. A, B, E, F, adhering roots (W type); C, D, floating roots (S type). A−C. P. wallichii (A = P. wallichii-2, Khao Yai National Park, Thailand; B = P. wallichii-3, Meghalaya, India; C = P. wallichii-1, Koh Kong, Cambodia). D, E. P. stylosum (D, E, Kerala, India). F. Dried-up root remains of P. schmidtianum (at top, light brown) with those of Cladopus fallax (at bottom and right, white gray) in Koh Kong, Cambodia.
FIGURE 2 in Paraphyletic Species of Podostemaceae: Cladopus fallax and Polypleurum wallichii
FIGURE 2. Bayes phylogenetic consensus tree deduced from ITS sequences. Numbers above and below branches are Bayesian posterior probabilities (≥0.80) and bootstrap values (≥50 %) of ML (left) and MP (right), respectively. For simplicity, species of Hydrobryum examined are united as 'Hydrobryum species' (see Appendix). The tree is rooted on a branch between a clade of Cladopus, Hanseniella and Hydrobryum and a clade of Polypleurum, Griffithella, Hydrobryopsis, Willisia and Zeylanidium.
FIGURE 3 in Paraphyletic Species of Podostemaceae: Cladopus fallax and Polypleurum wallichii
FIGURE 3. Bayes phylogenetic consensus tree deduced from concatenated matK and ITS sequences. Numbers above and below branches are Bayesian posterior probabilities (≥0.80) and bootstrap values (≥50 %) of ML (left) and MP (right), respectively. For simplicity, the species of Hydrobryum, both matK and ITS sequences of which were examined, are united as 'Hydrobryum species' (Appendix). C. fallax CAM-13a = LC380594 + LC380635; C. fallax CAM-13b = LC380594 + LC380636; C. fallax CAM-13c = LC380594 + LC380637; C. fallax CAM-19a = LC380595 + LC380638; C. fallax CAM-19b = LC380595 + LC380639; C. taiensis CAM-14a = LC380602 + LC380643; C. fallax CAM-14b = LC380602 + LC380644. The tree is rooted on a branch between a clade of Cladopus, Hanseniella and Hydrobryum, and Polypleurum.
FIGURE 1 in Paraphyletic Species of Podostemaceae: Cladopus fallax and Polypleurum wallichii
FIGURE 1. Bayes phylogenetic consensus tree deduced from matK sequences. Numbers above and below branches are Bayesian posterior probabilities (≥0.80) and bootstrap values (≥50 %) of ML (left) and MP (right), respectively. Single asterisk (*) indicates that specimen JK- Manose is followed by additional specimens with the same sequence, JK-02, JK-Yamazaki, JK-Anraku, JP-127, JK-Mawatari, and CH-02. Double asterisk (**) indicates that specimen CP-07 is followed by additional specimens with the same sequence, CP-22, 24, 27, and 29. For simplicity, species of Hanseniella, Hydrobryum, Hydrodiscus and Thawatchaia examined are united as a single clade (for materials see Appendix). The tree is rooted on a branch between a clade of Cladopus, Hanseniella, Hydrobryum, Hydrodiscus, Paracladopus and Thawatchaia, and a clade of Polypleurum, Griffithella, Hydrobryopsis, Willisia and Zeylanidium.
Presumed historical native range of the Eastern Dwarf Tree Frog (Litoria fallax)
<p>The presumed native range of <em>Litoria fallax,</em> obtained from the Australian Frog Atlas (Cutajar et al. 2022) with invasive range removed based upon historical (<1980) records of the species in the Atlas of Living Australia (ALA; ala.org.au). Used in Rowley & Callaghan (2023). </p> <p> </p> <p><strong>Reference</strong></p> <p>Rowley, J.J.L. & Callaghan, C. T. (2023). Tracking the spread of the eastern dwarf tree frog (<em>Litoria fallax</em>) in Australia using citizen science. <em>Australian Journal of Zoology</em> (Under Review).</p> <p> </p> <p><strong>Australian Frog Atlas:</strong></p> <p>Cutajar. T. P., Portway, C. D., Gillard, G. L., & Rowley, J. J. L. (2022) Australian Frog Atlas: Fine-scale species distribution maps informed by the FrogID dataset. <em>Technical Reports of the Australian Museum Online</em>. 36: 1-48. <a href="https://doi.org/10.3853/j.1835-4211.36.2022.1789">https://doi.org/10.3853/j.1835-4211.36.2022.1789</a></p>
FIGURE 5 in Lectotypification, epitypification and taxonomic notes on Oenothera fallax (Onagraceae)
FIGURE 5. Red-striped flower buds and large flowers of Oenothera fallax Renner (phot. M. Woźniak-Chodacka).
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OpenNeuro
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