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226 results for “Herrera”
Figure 5 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 5 Cantharellus violaceovinosus: a basidiospores b basidia (Gutiérrez 23) c pileipellis (Herrera 61). Scale bars: 5 µm (a); 10 µm (b); 25 µm (c).
Figure 4 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 4 Cantharellus violaceovinosus (Corona 648, holotype): a basidiospores b terminal elements of the pileipellis c basidia d pileipellis. Scale bars: 5 µm (a); 10 µm (b, c); 25 µm (d).
Figure 3 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 3 Basidiomes of Cantharellus violaceovinosus: a Corona 648 (holotype) b Bandala 4550 c Del Moral 427 d Bandala 4490. Scale bars: 20 mm.
Figure 2 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 2 Molecular phylogenetic analysis by maximum likelihood of tef-1α+nLSU sequences dataset of Cantharellus species. Posterior probabilities and Bootstrap values (BPP/BS) are indicated on the tree branches.
Figure 1 from: Herrera M, Bandala VM, Montoya L (2018) Cantharellus violaceovinosus, a new species from tropical Quercus forests in eastern Mexico. MycoKeys 32: 91-109. https://doi.org/10.3897/mycokeys.32.22838
Figure 1 Molecular phylogenetic analysis by maximum likelihood of tef-1α sequences dataset of Cantharellus species. Posterior probabilities and Bootstrap values (BPP/BS) are indicated on the tree branches.
Linked collectors and determiners for: Computarización de la colección de abejas (Hymenoptera: Apoidea) del Museo de Zoología Alfonso L. Herrera, de la Facultad de Ciencias de la UNAM.
Natural history specimen data linked to collectors and determiners held within, "Computarización de la colección de abejas (Hymenoptera: Apoidea) del Museo de Zoología Alfonso L. Herrera, de la Facultad de Ciencias de la UNAM". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7f662562-f762-11e1-a439-00145eb45e9a">https://bionomia.net/dataset/7f662562-f762-11e1-a439-00145eb45e9a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7f662562-f762-11e1-a439-00145eb45e9a">https://gbif.org/dataset/7f662562-f762-11e1-a439-00145eb45e9a</a>. Formatted as a Frictionless Data package.
Figure 2 from: Alvarado AT, Muñoz AM, Bartra MS, Valderrama-Wong M, González D, Quiñones LA, Varela N, Bendezú MR, García JA, Loja-Herrera B (2021) Frequency of CYP1A1*2A polymorphisms and deletion of the GSMT1 gene in a Peruvian mestizo population. Pharmacia 68(4): 747-754. https://doi.org/10.3897/pharmacia.68.e71621
Figure 2 Genotypic analysis of CYP1A1*2A and GSTM1 (-) (2% agarose gel). Std represents the 100 bp molecular weight marker. The 340 bp amplicon represents the undigested CYP1A1 gene fragment. The 200 bp and 140 bp fragments correspond to the fragments cut with the enzyme Mspl. The 273 bp amplicon corresponds to the presence of GSTM1.
Figures 10-13 from: Herrera-Flórez A (2012) A new species of Apechoneura Kriechbaumer (Hymenoptera, Ichneumonidae, Labeninae) from Colombia. ZooKeys 213: 41-49. https://doi.org/10.3897/zookeys.213.3309
Figures 10-13 - Wings of Apechoneura seminigra sp. n. 10, 12 female, holotype; 11, 13 putative male.
Figures 5-8 from: Herrera-Flórez A (2012) A new species of Apechoneura Kriechbaumer (Hymenoptera, Ichneumonidae, Labeninae) from Colombia. ZooKeys 213: 41-49. https://doi.org/10.3897/zookeys.213.3309
Figures 5-8 - Apechoneura seminigra sp. n. 5, 7 female, holotype 6, 8 putative male 5, 6 Head, mesosoma and part of metasoma, lateral view 7, 8 head, mesosoma and part of metasoma, dorsal view.
Figures 1-4 from: Herrera-Flórez A (2012) A new species of Apechoneura Kriechbaumer (Hymenoptera, Ichneumonidae, Labeninae) from Colombia. ZooKeys 213: 41-49. https://doi.org/10.3897/zookeys.213.3309
Figures 1-4 - Habitus of Apechoneura seminigra sp. n. 1, 3 female, holotype 2, 4 putative male 1, 2 line drawings 3, 4 photographs.
Figures 6-10 from: Herrera-Flórez A (2014) A new species of Grotea Cresson (Hymenoptera, Ichneumonidae, Labeninae) from Colombia. ZooKeys 389: 27-33. https://doi.org/10.3897/zookeys.389.6066
Figures 6-10 - Line drawings of Grotea villosissima sp. n. 6 Habitus 7 Head, posterodorsal view 8 Head (showing detail of genal projection), posteroventral view 9 Propodeum, dorsal view 10 Wings.
Figures 1-5 from: Herrera-Flórez A (2014) A new species of Grotea Cresson (Hymenoptera, Ichneumonidae, Labeninae) from Colombia. ZooKeys 389: 27-33. https://doi.org/10.3897/zookeys.389.6066
Figures 1-5 - Photographs of Grotea villosissima sp. n. 1 Head, mesosoma and first tergite, lateral view 2 Head, mesosoma, dorsal view 3 Part of mesosoma and metasoma, lateral view 4 Head and part of mesosoma, ventral view 5 Hind wing.
Figure 6 from: Violante-González J, Monks S, Quiterio-Rendon G, García-Ibáñez S, Larumbe-Morán E, Rojas-Herrera AA (2016) Life on the beach for a sand crab (Emerita rathbunae) (Decapoda, Hippidae): parasite-induced mortality of females in populations of the Pacific sand crab caused by Microphallus nicolli (Microphallidae). Zoosystematics and Evolution 92(2): 153-161. https://doi.org/10.3897/zse.92.8256
Figure 6 - Relationship between mean abundance of cysts (log x + 1) of Microphallus nicolli and size-classes of females of Emerita rathbunae based on cephalothorax length. Data are for all four localities: San Andrés (A), Revolcadero (B), Las Trancas (C), and Ixtapa (D).
Figure 5 from: Violante-González J, Monks S, Quiterio-Rendon G, García-Ibáñez S, Larumbe-Morán E, Rojas-Herrera AA (2016) Life on the beach for a sand crab (Emerita rathbunae) (Decapoda, Hippidae): parasite-induced mortality of females in populations of the Pacific sand crab caused by Microphallus nicolli (Microphallidae). Zoosystematics and Evolution 92(2): 153-161. https://doi.org/10.3897/zse.92.8256
Figure 5 - Relationship between mean abundance of cysts of Microphallus nicolli calculated from volumetric measurements and the cephalothorax length of females of Emerita rathbunae. Data are from only San Andrés (A) and Las Trancas beaches (B).
Figures 4 from: Violante-González J, Monks S, Quiterio-Rendon G, García-Ibáñez S, Larumbe-Morán E, Rojas-Herrera AA (2016) Life on the beach for a sand crab (Emerita rathbunae) (Decapoda, Hippidae): parasite-induced mortality of females in populations of the Pacific sand crab caused by Microphallus nicolli (Microphallidae). Zoosystematics and Evolution 92(2): 153-161. https://doi.org/10.3897/zse.92.8256
Figures 4 - Percentages of cysts of Microphallus nicolli by development stage of cysts and size-classes of female crabs (Emerita rathbunae). Hatched bars = immature cysts; Shaded bars = late immature cysts; Open bars = mature cysts; Dark bars = melanized cysts. Data are only from San Andrés (A) and Las Trancas beaches (B). Stages of cyst maturity were modified from Keeney et al. (2007).
Figure 1 from: Violante-González J, Monks S, Quiterio-Rendon G, García-Ibáñez S, Larumbe-Morán E, Rojas-Herrera AA (2016) Life on the beach for a sand crab (Emerita rathbunae) (Decapoda, Hippidae): parasite-induced mortality of females in populations of the Pacific sand crab caused by Microphallus nicolli (Microphallidae). Zoosystematics and Evolution 92(2): 153-161. https://doi.org/10.3897/zse.92.8256
Figure 1 - Helminth parasites of Emerita rathbunae. A Microphallus nicolli; B Everted proboscis of an excysted specimen of Profilicollis sp.; C Cestode larva; D Proleptus sp., inset (*) = anterior end of worm. Scale bars: A = 500 µm; B = 200 µm; C = 100 µm; D = 100 µm.
Figure 2 from: Violante-González J, Monks S, Quiterio-Rendon G, García-Ibáñez S, Larumbe-Morán E, Rojas-Herrera AA (2016) Life on the beach for a sand crab (Emerita rathbunae) (Decapoda, Hippidae): parasite-induced mortality of females in populations of the Pacific sand crab caused by Microphallus nicolli (Microphallidae). Zoosystematics and Evolution 92(2): 153-161. https://doi.org/10.3897/zse.92.8256
Figure 2 - Map indicating the four collection localities along the Pacific coast of Guerrero. 1. San Andres; 2. Revolcadero; 3. Las Trancas; 4. Ixtapa.
Supplementary material 6 from: Herrera-Mesías F, Ep Jarboui IK, Weigand AM (2022) A metabarcoding framework for wild bee assessment in Luxembourg. Journal of Hymenoptera Research 94: 215-246. https://doi.org/10.3897/jhr.94.84617
Mock community metabarcoding results
Supplementary material 2 from: Herrera-Mesías F, Ep Jarboui IK, Weigand AM (2022) A metabarcoding framework for wild bee assessment in Luxembourg. Journal of Hymenoptera Research 94: 215-246. https://doi.org/10.3897/jhr.94.84617
Mean wild bee genus penalty scores sorted by primer pair
Supplementary material 4 from: Herrera-Mesías F, Ep Jarboui IK, Weigand AM (2022) A metabarcoding framework for wild bee assessment in Luxembourg. Journal of Hymenoptera Research 94: 215-246. https://doi.org/10.3897/jhr.94.84617
Tagged primer combinations used in the mock community experiment
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