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855 results for “México”

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FIGURE 18 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 18. Scalation characters of Lygodactylus intermedius. (a) head in lateral view (scale bar = 2 mm); (b) lamellae of fourth toe in ventral view (scale bar = 2 mm); (c) head dorsal view (scale bar = 2 mm); (d) throat in ventral view (scale bar = 2 mm); (e) preanal pores in ventral view (scale bar = 2 mm). Drawings based on male specimen MNHN 1990.52, except for (b) that is based on female specimen MNHN 1990.54. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 17 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 17. Scalation characters of Lygodactylus blanci. (a) head in lateral view (scale bar=2 mm), based on of female specimen MNHN 1990.1897; (b) lamellae of fourth toe in ventral view (scale bar=2 mm), based on female specimen MNHN 1990.1895; (c) head in dorsal view (scale bar=2 mm), based on female specimen MNHN 1990.1897; (d) throat in ventral view (scale bar=2 mm), based on female specimen MNHN 1990.1897; (e) preanal pores in ventral view (scale bar=2 mm), based on male specimen MNHN 1990.10. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 20 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 20. Scalation and hemipenial characters of Lygodactylus montanus. (a) head in lateral view (scale bar = 2 mm); (b) head in dorsal view (scale bar = 1 mm); (c) throat in ventral view (scale bar = 1 mm); (d) preanal pores in ventral view (scale bar = 2 mm); (e) lamellae of fourth toe in ventral view (scale bar = 1 mm); all based on based on male specimen MNHN 1990.3499; (f) and (g), sulcal and asulcal view of the hemipenis, based on male specimen ZSM 5120/ 2005 (scale bar = 1 mm). All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 16 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 16. Photographs of living specimens attributed to species in the Lygodactylus mirabilis group. (a) and (b) male of L. blanci from Mt. Ibity; (c) and (d) specimens of L. intermedius from Andringitra; note melanic colouration in (d); (e) and (f), striped and ocellated specimens of L. mirabilis, Ankaratra Massif; (g) and (h), striped and ocellated specimens of L. montanus from Andohahela massif. All photographs by F. Glaw & M. Vences, except (c) which was taken by P. Bora.

opennotspecifiedMay 2009View details →
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FIGURE 22 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 22. Scalation characters of Lygodactylus arnoulti. (a) head in lateral view (scale bar = 2 mm); (b) lamellae of fourth toe in ventral view (scale bar = 2 mm); (c) head in dorsal view (scale bar = 2 mm); (d) throat in ventral view (scale bar = 2 mm); (e) preanal pores in ventral view (scale bar = 2 mm); all based on male specimen MNHN 1990.3420. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 15 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 15. Scalation and hemipenial characters of Lygodactylus roavolana, all based on male holotype ZSM 5115/ 2005. (a) head in lateral view (scale bar = 1 mm); (b) black spot above forelimb insertion, photographed in preserved specimen; (c) dorsal view of head (scale bar = 2 mm); (d) throat in ventral view (scale bar = 2 mm), (e) preanal pores in ventral view (scale bar = 1 mm); (f) lamellae of fourth toe in ventral view (scale bar = 2 mm); (g) and (h), sulcal and asulcal views of the hemipenis (scale bar = 1 mm). All drawings by M. Puente; photograph by R. D. Randrianiaina.

opennotspecifiedMay 2009View details →
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FIGURE 19 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 19. Scalation and hemipenial characters of Lygodactylus mirabilis. (a) head in lateral view (scale bar = 2 mm); (b) head dorsal view (scale bar = 2 mm); (c) throat in ventral view (scale bar = 2 mm); (d) preanal pores in ventral view (scale bar = 2 mm); (e) B, lamellae of fourth toe in ventral view (scale bar = 2 mm); (f) and (g), sulcal and asulcal view of the hemipenis (scale bar = 1 mm). Drawings based on male specimen MNHN 1990.3605 except for (b) that is based on male specimen MNHN 1990.3582 and (f) and (g) that are based on male specimen ZSM 389/2000. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 30 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 30. Scalation characters of Lygodactylus pauliani, (a) head in lateral view (scale bar = 2 mm); (b) head in dorsal view (scale bar = 2 mm); (c) throat in ventral view (scale bar = 2 mm); (d) lamellae of fourth toe in ventral view (scale bar = 1 mm); based on female specimen MNHN 1990.7 except for (b) that is based on female specimen MNHN 1990.202. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 14 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 14. Scalation and hemipenial characters of Lygodactylus tuberosus. (a) head in lateral view (scale bar = 1 mm), based on male specimen MNHN 1990.535; (b) head in dorsal view (scale bar = 2 mm), based on male specimen MNHN 1990.605; (c) throat in ventral view (scale bar = 2 mm), based on male specimen MNHN 1990.541; (d) preanal pores in ventral view (scale bar = 2 mm), based on male specimen MNHN 1990.524; (e) lamellae of fourth toe in ventral view (scale bar = 2 mm), based on male specimen MNHN 1990.535; (f) and (g), sulcal and asulcal view of the hemipenis based on male specimen ZSM 583/2000 (scale bar = 1 mm). All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 24 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 24. Scalation characters of Lygodactylus decaryi. (a) head in lateral view (scale bar = 2 mm); (b) lamellae of fourth toe in ventral view (scale bar = 2 mm); (c) head in dorsal view (scale bar = 2 mm); (d) throat in ventral view (scale bar = 2 mm); (e) preanal pores in ventral view (scale bar = 2 mm). Drawings based on holotype male specimen MNHN 1930.271 except (b) that is based on female specimen MNHN 1950.262. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 26 in Competitividad del Sector Forestal de México Tendencias y Perspectivas

FIGURE 26. Scalation characters of Lygodactylus klemmeri, based on the juvenile type specimens of L. praecox that we here consider as a junior synonym of klemmeri. (a) head in lateral view (scale bar = 1 mm); (b) lamellae of fourth toe in ventral view (scale bar = 0.1 mm); (c) head in dorsal view (scale bar = 2 mm); (d) throat in ventral view (scale bar = 3 mm). Drawings (a) and (d) based on MNHN 1990.48; (b) and (c) on MNHN 1990.49. All drawings by M. Puente.

opennotspecifiedMay 2009View details →
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FIGURE 3. Sideroxylon cochranei. A in Sideroxylon cochranei (Sapotoideae, Sapotaceae): a new cloud forest tree species from the Sierra de Manantlán and Cuale in western México

FIGURE 3. Sideroxylon cochranei. A. Immature fruits, from El Fresnal. Sierra de Manantlán, Cuevas-G. et al. 7694. B. Mature fruits from Sierra de Cuale, Santana-M. et al. 11384. Photographs by R. Cuevas-G.

opennotspecifiedApr 2021View details →
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FIGURE 2. Sideroxylon cochranei. A. Fruiting branch. B. Floriferous branch. C in Sideroxylon cochranei (Sapotoideae, Sapotaceae): a new cloud forest tree species from the Sierra de Manantlán and Cuale in western México

FIGURE 2. Sideroxylon cochranei. A. Fruiting branch. B. Floriferous branch. C. The entire flower (left) and gynoecium showing the open corolla and staminodes (right). D. Fruit. E. Seed. Illustration by Enrique V. Sánchez R.

opennotspecifiedApr 2021View details →
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FIGURE 1 in Sideroxylon cochranei (Sapotoideae, Sapotaceae): a new cloud forest tree species from the Sierra de Manantlán and Cuale in western México

FIGURE 1. Distribution of Sideroxylon cochranei and other geographically close species of Sideroxylon in the state of Jalisco, Mexico.

opennotspecifiedApr 2021View details →
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FIGURE 3 in A new species of Paspalum (Paspaleae, Panicoideae, Poaceae) from Ario de Rosales, México, with partially homogenized synflorescences

FIGURE 3. Caryopses in dorsal (left) and ventral (right) views, and stained cross-sections showing the starch grains. A–B. Paspalum prodigiosum Sánchez-Ken. C–D. Paspalum paniculatum L. E–F. Paspalum squamulatum E. Fourn.

opennotspecifiedApr 2021View details →
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FIGURE 4 in A new species of Paspalum (Paspaleae, Panicoideae, Poaceae) from Ario de Rosales, México, with partially homogenized synflorescences

FIGURE 4. Stereomicroscope images of vegetative and reproductive characters of Paspalum paniculatum L. (A–C) and P. prodigiosum Sánchez-Ken (D–H). A. and D. Ligular area, adaxial view (pseudoligule: left arrow; ligule: right arrow). B. Apex of a primary branch showing an apical 3-flowered spikelet. C. Spikelets (left two: 2-flowered; right: 3-flowered) and H. Spikelets (first: 3-flowered; right two: 2-flowered). E. Segment of a primary branch, proximal region showing secondary and tertiary branches (arrows). F. Segment of a primary branch, proximal region showing a short secondary branch with three spikelets (arrow). G. Segment of a primary branch, proximal region showing a 3-flowered spikelet (arrow).

opennotspecifiedApr 2021View details →
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FIGURE 2 in A new species of Paspalum (Paspaleae, Panicoideae, Poaceae) from Ario de Rosales, México, with partially homogenized synflorescences

FIGURE 2. Leaf anatomy of Paspalum prodigiosum Sánchez-Ken (A–B) and P. paniculatum L. (D–F). A and D. Leaf blade cross section. B and E. Leaf-blade paradermical section, abaxial surface. C and F. Leaf-blade paradermical section, adaxial surface. ab ep = abaxial epidermis, ad ep = adaxial epidermis, b c = bulliform cells, bs = bundle sheath, c z = costal zone, i z = intercostal zone, l c = long cell, m = mesophyll or chlorenchyma tissue, mah = macrohair base, mb = macrohair base, mih = microhair, p = prickles, ph = phloem, s = sclerenchyma, s c = short cells, si b = silica bodies, s c = short cells, st = stomate, vb = vascular bundle, x = xylem.

opennotspecifiedApr 2021View details →
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FIGURE 1 in A new species of Paspalum (Paspaleae, Panicoideae, Poaceae) from Ario de Rosales, México, with partially homogenized synflorescences

FIGURE 1. Paspalum prodigiosum Sánchez-Ken. A. Habit. B. Ligular area, adaxial view. C. Segment of a primary branch showing a 3-flowered spikelet (arrow). D. Spikelet, second glume dorsal view. E. Spikelet, sterile lemma ventral view. F. Fertile floret, fertile lemma view. G. Fertile floret, fertile palea view. H. Caryopsis, embryo view. I. Caryopsis, hilum view. Drawn from Sánchez-Ken et al. 995 (IEB).

opennotspecifiedApr 2021View details →
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FIGURE 5 in A new species of Paspalum (Paspaleae, Panicoideae, Poaceae) from Ario de Rosales, México, with partially homogenized synflorescences

FIGURE 5.Type locality (red star) of Paspalum prodigiosum Sánchez-Ken in Ario de Rosales, Michoacan, Mexico.

opennotspecifiedApr 2021View details →
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Matrix aggregation of species of Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata registered of the Caribbean Sea and Gulf of Mexico region by Ocean Biodiversity Information Systems of the research "Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) for capturing the biological diversity of two coral reefs in the Yucatán Península, México"

<p>This database consists of an aggregation matrix of species from Ocean Biodiversity Information Systems&nbsp;using as geographic filters the Caribbean Sea region (ID 34287) and the Gulf of Mexico region (ID 34287)&nbsp;nomenclature and hierarchical classification of each Phyla from&nbsp;&nbsp;World Register of Marine Species&nbsp;used for the calculation of average taxonomic distinction of species belonging to the Phyla Annelida (Polychaeta), Mollusca, Arthropoda (Decapoda, Stomatopoda, Amphipoda, and Chelicerata), and Echinodermata associated to Autonomous&nbsp;Reefs Monitoring Structures from the research&nbsp; &ldquo;Evaluation of the use of Autonomous Reef Monitoring Structures (ARMS) to estimate cryptic diversity in two coral reefs of the Yucatan Pen&iacute;nsula, M&eacute;xico&rdquo;</p> <p><strong>*Corresponding autor: </strong>edlinguerra@gmail.com</p> <p>BIS Ocean Biodiversity Information System. Available online:&nbsp;<a href="http://www.iobis.org/">www.iobis.org</a>.</p> <p>Horton, T.; Gofas, S.; Kroh, A.; Poore, G.C.B.; Read, G.; Rosenberg, G.; St&ouml;hr, S.; Bailly, N.; Boury-Esnault, N.; Brand&atilde;o, S.N.; et al. Improving nomenclatural consistency: A decade of experience in the World Register of Marine Species.&nbsp;<em>Eur. J. Taxon.</em>&nbsp;<strong>2017</strong>,&nbsp;<em>2017</em>, doi:10.5852/ejt.2017.389.</p> <p><span lang="EN-US">was produced in collaboration with the Biodiversidad Marina de Yucat&aacute;n project.&nbsp;</span><a href="https://www.bdmy.org.mx/carteles-publicaciones/" target="_blank" rel="noopener">https://www.bdmy.org.mx/,</a> Universidad Nacional Autonoma de M&eacute;xico and Escuela Nacional de Estudios Superiores</p>

opencc-by-nc-nd-4.0Sep 2021View details →

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Last verified 2026-04-29Open record