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Figure 3 in The heterogeneity of Caatinga biome: an overview of the bat fauna
Figure 3: Cluster analyses based on the Euclidean distance for the bat species composition in the eight Caatinga ecoregions (A) and for the main references in the best surveyed ecore- gions for the bat fauna. (B) * Fazenda Arara/Caatinga Arbustiva ** Reserva Particular do Patrimônio Natural – Fazenda Bituri/ Floresta Montana. Chapada Diamantina Complex (CDC), São Francisco Dunes (SFD), Raso da Catarina (RAC), Campo Maior Complex (CMC), Borborema Highlands (BOH), Southern Sertaneja Depression (SSD), Ibiapaba-Araripe Complex (IAC), and Northern Sertaneja Depression (NSD).
Figure 2 in The heterogeneity of Caatinga biome: an overview of the bat fauna
Figure 2: Scatter plot showing the relationship between the number of bat species known to each Caatinga ecoregion and (A) the ecoregion area and (B) the number of studies that included the sampling of chiropterans in each ecoregion.
Figure 1 in The heterogeneity of Caatinga biome: an overview of the bat fauna
Figure 1: Map of Caatinga ecoregions and municipalities surveyed for chiropteran fauna. Inset shows the South American continent and Brazil, more specifically northeastern Brazil (light gray) and the area covered by the Caatinga biome (dark gray). The numbers indicate the names of municipalities, as follows. Superscript numbers in brackets indicate the studies that cite the municipality, as listed in Supplementary Table S1. 1 – Batalha – PI (39); 2 – José de Freitas – PI (36); 3 – Teresina – PI (28;35;54); 4 – Monsenhor Gil – PI (25); 5 – Arajara – CE (23,64); 6 – Crateús – CE (4;21;52); 7 – Crato – CE (23;28;55;60;61); 8 – Ipu – CE (57); 9 – Juazeiro do Norte – CE (2); 10 – Nova Olinda – CE (53;28); 11 – Parambú – CE (24); 12 – Ubajara – CE (20;50); 13 – Cocal – PI (25); 14 – Guaribas – PI (19); 15 – São Raimundo Nonato – PI (28); 16 – Valença do Piauí – PI (28;61); 17 – Canindé – CE (7;8); 18 – Fortaleza – CE (7;27;63); 19 – Guaramiranga – CE (7;63); 20 – Jaguaruana – CE (7; 8); 21 – Limoeiro do Norte – CE (7;8;32); 22 – Morada Nova – CE (7); 23 – Palhano – CE (7); 24 – Pereiro – CE (7;8); 25 – Quixadá – CE (2;7;8;32;63); 26 – Russas – CE (7;8;32); 27 – Brejo dos Santos – PB (10); 28 – Maturéia – PB (32); 29 – Santa Terezinha – PB (10;32); 30 – São José dos Cordeiros – PB (10;13;32); 31 – Pombal – PB (32); 32 – Exu – PE (2;18;23;28;53;60;61); 33 – Apodi – RN (12); 34 – Baraúna – RN(12); 35 – Felipe Guerra – RN (12); 36 – Martins – RN (12); 37 – Mossoró – RN (5); 38 – Nova Cruz – RN (11;32); 39 – Pedra Grande – RN (12); 40 – Alagoinha – PB (32); 41 – Araruna – PB (4;9; 10;32); 42 – Areia – PB (32); 43 – Boqueirão – PB (32); 44 – Cabaceiras – PB (10;32); 45 – Cacimba de Dentro – PB (32); 46 – Guarabira – PB (32); 47 – Juazeirinho – PB(2); 48 – Soledade – PB (18); 49 – Umbuzeiro – PB (10); 50 – Arcoverde – PE (2;22); 51 – Belo Jardim – PE (2; 23); 52 – Brejo da Madre de Deus – PE (2;23;32;47;49); 53 – Buíque – PE (2; 23); 54 – Caruaru – PE (2;23); 55 – Panelas – PE (23); 56 – Pedra – PE (2); 57 – Sanharó – PE (23); 58 – Toritama – PE (2; 23); 59 – Vertentes – PE (32);60 – Penedo – AL(25;58);61 – Anagé – BA (32); 62 – Aporá – BA (15); 63 – Bom Jesus da Lapa – BA (43); 64 – Contendas do Sincorá – BA (41;42); 65 – Euclides da Cunha – BA (18); 66 – Glória – BA (2); 67 – Irecê – BA (17); 68 – Iuiú – BA (43); 69 – Juazeiro – BA (28,32); 70 – Malhada – BA (43); 71 – Palmas de Monte Alto – BA (43); 72 – Paratinga – BA (43); 73 – São Gonçalo dos Campos – BA (32); 74 – São José – BA (32); 75 – Senhor do Bonfim – BA (14;28); 76- Itacarambi – MG (32;40;56); 77 – Jaíba – MG (33;34;37;56); 78 – Januária – MG (56); 79 – Manga – MG (56); 80 – Mocambinho – MG (32); 81 – São João das Missões – MG (40); 82 – Betânia – PE (4); 83 – Bodocó – PE (2;23); 84 – Floresta – PE (2;4); 85 – Orocó – PE (2;23;51); 86 – Petrolândia – PE (2;23); 87 – Salgueiro – PE (2;23); 88 – São Caetano do Navio – PE (32); 89 – São José do Egito – PE (48); 90 – Serra Talhada – PE(3;2;23;28); 91 – Sertânia – PE (2;23); 92 – Areia Branca – SE (31); 93 – Canindé do São Francisco – SE (1; 2;23); 94 – Itabaiana – SE (29;30;31); 95 – Canarana – BA (44); 96 – Itaeté – BA (16;55); 97 – Iraquara – BA (44); 98- Itaberaba – BA (38); 99 – Gentio do Ouro – BA (32); 100 – Jacobina – BA (32); 101 – João Dourado – BA (44); 102 – Jussiape – BA(38); 103 – Lençóis – BA (38;46); 104 – Morro do Chapéu – BA (32;38;44); 105 – Mucugê – BA (38); 106 – Ourolândia – BA (44); 107 – Palmeiras – BA (44); 108 – Rio de Contas – BA (38); 109 – Utinga – BA (44;45); 110 – Barra – BA (26); 111 – Sobradinho – BA (2); 112 – Pilão Arcado – BA (32); 113 – Canudos – BA (18); 114 – Rodelas – BA (2); 115 – Floresta do Navio – PE (23); 116 – Ibimirim – PE (2;23); 117 – Inajá – PE (23;32); 118 – Jardim – CE (64); 119- São João do Piauí – PI (65). PI, Piauí; CE, Ceará; PB, Paraíba; RN, Rio Grande do Norte; PE, Pernambuco; AL, Alagoas; BA, Bahia; MG, Minas Gerais; SE, Sergipe.
FIGURE 1. Nasuscoelum pampensis n. gen., n in A new genus and new species of Cyclocoelidae (Digenea), a parasite in spotted rail, Pardirallus maculatus (Gruiformes: Rallidae), in the Pampa biome, southern Brazil
FIGURE 1. Nasuscoelum pampensis n. gen., n. sp. parasite of Pardirallus maculatus (Boddaert) (Gruiformes: Rallidae) in southern Brazil. A. Ventral view, pharynx (ph), ceca (c), and uterus (u). B. Anterior extremity, genital pore (gp), and cirrus sac (cs). C. Ovarian complex, ovary (ov), Mehlis' gland (mg), posterior testis (pt).
FIGURE 9. Benthanoides tarzan n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 9. Benthanoides tarzan n. sp., male holotype (ISLA 96768). A, pereopod 1; B, pereopod 7; C, genital papilla and pleopod 1; D, pleopod 2; E, pleopod 3 exopod; F, pleopod 4 exopod; G, pleopod 5 exopod.
FIGURE 8. Benthanoides tarzan n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 8. Benthanoides tarzan n. sp., male holotype (ISLA 96768). A, habitus, dorsal view; B, epimeron 7 with nodulus lateralis and tricorn scale-setae; C, noduli laterales b/c coordinates; D, noduli laterales d/c coordinates; E, cephalon, frontal view; F, pleonites 4 and 5, pleotelson and uropods; G, antennula; H, antenna, I, left mandible; J, right mandible; K, maxillula; L, maxilla; M, maxilliped. Scale bar: 0.5 mm.
FIGURE 7. Benthanoides amazonicus n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 7. Benthanoides amazonicus n. sp., male paratype (ISLA 30726). A, pereopod 1; B, pereopod 7; C, genital papilla and pleopod 1; D, pleopod 2; E, pleopod 3 exopod; F, pleopod 4 exopod; G, pleopod 5 exopod.
FIGURE 6. Benthanoides amazonicus n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 6. Benthanoides amazonicus n. sp., male paratype (ISLA 30726). A, habitus, dorsal view; B, epimeron 1 with nodulus lateralis and tricorn scale-setae; C, noduli laterales b/c coordinates; D, noduli laterales d/c coordinates; E, cephalon, frontal view; F, pleonite 5, pleotelson and uropod; G, antennula; H, antenna, I, left mandible; J, right mandible; K, maxillula; L, maxilla; M, maxilliped. Scale bar: 1 mm.
FIGURE 5. Benthana alba n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 5. Benthana alba n. sp., male holotype (ISLA 96766). A, pereopod 1; B, pereopod 2; C, pereopod 7; D. genital papilla and pleopod 1 endopod; E, pleopod 1 exopod; F, pleopod 2; G, pleopod 3 exopod; H, pleopod 4 exopod; I, pleopod 5 exopod.
FIGURE 4. Benthana alba n in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 4. Benthana alba n. sp., male holotype (ISLA 96766). A, habitus, dorsal view; B, epimeron 7 with nodulus lateralis and tricorn scale-seta; C, noduli laterales b/c coordinates; D, noduli laterales d/c coordinates; E, cephalon, frontal view; F, pleotelson and uropod; G, antennula; H, antenna, I, left mandible; J, right mandible; K, maxillula; L, maxilla; M, maxilliped. Scale bar: 1 mm.
FIGURE 3. A in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 3. A, Benthana iporangensis; B, Benthana alba n. sp.; C, Benthanoides amazonicus n. sp.; D, Benthanoides tarzan n. sp. Scale bar: 1 mm.
FIGURE 2. A in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 2. A, Plateaus in the Carajás National Forest; B, mining activities in the Serra Norte complex (Photo by Allan Calux); C, upperview of a canga formation; D, canga typical vegetation; E, canaliculi on canga; F, live specimen of Benthana iporangensis; G, live specimen of Benthanoides tarzan n. sp.
FIGURE 1 in New troglobitic species of Benthana Budde-Lund, 1908 and Benthanoides Lemos de Castro, 1958 from iron-ore caves and their important record in the Amazon biome (Crustacea: Isopoda: Philosciidae)
FIGURE 1. Map of Brazil with the Brazilian legal Amazon and the Carajás National Forest (FLONA) delimited in green.
Bioequivalence Study of Flibanserin From AphroFemine 100 mg F.C.T (Bio Med for Pharmaceuticals Industries (BIOMED), Egypt) Versus Addyi 100 mg Tablets (Sprout Pharmaceuticals, Inc., USA)
ClinicalTrials.gov study NCT04494191. IPD Sharing: NO. Countries: 1. Publications: 3.
ZOE BIOME Study: Biotics Influence on Microbiome Ecosystem
ClinicalTrials.gov study NCT06231706. IPD Sharing: NO. Countries: 1. Publications: 9.
The Effect of Leukocyte Dna mEthylation and micRoBIOME Diversity on Host Defense Mechanisms During Community-acquired Pneumonia (ELDER-BIOME)
ClinicalTrials.gov study NCT02928367. IPD Sharing: Not stated. Countries: 1. Publications: 3.
A Registry Study of Biomarkers in Mitral Valve Disease (BIOMS-MVD)
ClinicalTrials.gov study NCT05141292. IPD Sharing: Not stated. Countries: 1. Publications: 2.
A Study to Evaluate OPTI-BIOME™ Bacillus Subtilis MB40 on Abdominal Discomfort, Gas and Bloating in a Healthy Population
ClinicalTrials.gov study NCT02950012. IPD Sharing: NO. Countries: 2. Publications: 1.
Ocular Rosacea Biome Study
ClinicalTrials.gov study NCT05296837. IPD Sharing: NO. Countries: 1. Publications: 10.
Data from: Contrasting scales of local persistence between monsoonal and arid biomes in closely related, low-dispersal vertebrates
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