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289 results for “Baleares islands”
FIGURES 216–221 in A taxonomic revision of the genus Tentyria Latreille, 1802 in the Iberian Peninsula and Balearic Islands (Coleoptera: Tenebrionidae)
FIGURES 216–221. Habitus (♁) VI. 216: T. velox ssp. serrana nov. (Holotype). 217: T. grossa ssp. basalis. 218: T. castiliana. 219: T. aragonica. 220: T. pazi. 221: T. bifida.
FIGURES 258–261 in A taxonomic revision of the genus Tentyria Latreille, 1802 in the Iberian Peninsula and Balearic Islands (Coleoptera: Tenebrionidae)
FIGURES 258–261. Habitus of historical specimens III. 258: T. gaditana Rambur in litt. (NMHUB). 259: Probably syntype of T. subrugosa Besser (NMHUB), a: ♁, b: ♀. 260: T. italica Solier syn. nov. (MNHN, Syntype ♀) (= T. subrugosa Besser). 261: Probably syntype of T. grossa Besser (NMHUB).
FIGURES 252–257 in A taxonomic revision of the genus Tentyria Latreille, 1802 in the Iberian Peninsula and Balearic Islands (Coleoptera: Tenebrionidae)
FIGURES 252–257. Habitus of historical specimens II. 252: T. incerta sensu Kraatz (♁, MNHN) (= T. prolixa Rosenhauer, non Type of T. incerta Solier). 253: T. frigida Rambur in litt., (♀, NMHUB) (= T. prolixa Rosenhauer). 254: Probably syntype of T. levis Solier syn. nov. (NMHUB) (= T. peiroleri ssp. incerta Solier stat. nov.). 255: T. sublaevis Kraatz (SDEI). 256: Tentyria levis Solier (MNHN, non Type!) (= T. kochi sp. nov.). 257: T. incerta ssp. pseudolaevis Koch (NHMB, non Type!) (= T. kochi sp. nov.).
FIGURES 186–191 in A taxonomic revision of the genus Tentyria Latreille, 1802 in the Iberian Peninsula and Balearic Islands (Coleoptera: Tenebrionidae)
FIGURES 186–191. Habitus (♁) I. 186: T. mucronata. 187: T. schaumii. 188: T. ophiusae. 189: T. subcostata. 190: T. striatorugosa sp. nov. (Holotype). 191: T. sinuatocollis ssp. sinuatocollis.
Data from: Population clustering and clonal structure evidence the relict state of Ulmus minor Mill. in the Balearic Islands
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Data from: Two New Species of Aira (Poaceae) from the Iberian Peninsula and the Balearic Islands
<p>Two new diploid species, <b><i>Aira</i> <i>minoricensis</i></b> and <b><i>Aira</i> <i>hercynica</i></b> are described and illustrated, along with chromosome counts, risk assessment, distribution and habitat, phenology, and comparisons with morphologically similar species. A comparative table and a key for the species of <i>Aira</i> for the Iberian Peninsula and the Balearic Islands are provided to assist in the identification of these overlooked species, and their relationships to other taxa are discussed.</p>
FIGURE 12 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURE 12. Ovicellate zooids of Coronellina fagei (MNCN–25.03/3822).
FIGURES 10, 11 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURES 10, 11. Coronellina fagei (MNCN–25.03/3822). 10, view of the colony; 11, autozooids.
FIGURE 1 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURE 1. Distribution map of sample stations.
Pollinator surveys of two populations located in the North and South of Mallorca (Balearic Islands, Spain) in 2021 from May to July focused on Eryngium maritimum pollinators
<p>The aim of this study is to analyse the role played by E. maritimum in the dune pollination network of the Balearic Islands, where there is an intense anthropogenic impact in its habitat. For this purpose, two populations located in the North and South of Mallorca were chosen, in which diurnal transects were carried out to observe and capture pollinators on 15 plant species during the anthesis period of E. maritimum. The flowering period of 10 plant species flowering at the same period than E. maritimum was analysed to identify periods of competition</p> <p>First sampling area was located in Son Serra de Marina (SS, 39.7309N, 3.2382E), in the North of the island. We carried out three 50m linear transects along the seashore. Transects were randomly located at a minimum of 100 m from each other in order to enhance the chances of a fair sampling of most of the flora. In both areas, vegetation, and so transects, followed a clear sequence from the seashore inland. Areas were sampled for 10 weeks, from the beginning of E. maritimum flowering in the first week of June until the second week of July, plus two weeks extra (one after and one before) in order two observe pollinator diversity variation. Surveys took place between 08:00–18:00h under favourable weather conditions. A pollinator survey involved an observer slowly walking (40 min) along a transect and recording only those insects that contacted the plant's reproductive structures while actively searching for pollen and/or nectar. </p> <p>The dataset indicates each observation in a single row. Population, hour, transect, pollinator and plant taxonomical information, if the pollinator was captured, photographed or if it visited multiple species is indicated. </p>
Fig. 3 in Some Dermestidae (Coleoptera) of Mallorca (Balearic Islands, Spain)
Fig. 3.- Anthrenus, habitus dorsal aspect: 3a.- A. amandae. 3b.- A. angustefasciatus. 3c.- A. isabellinus. 3d.- A. munroi. 3e.- A. verbasci. Scale bar = 1 mm in all cases.
Fig. 1 in Some Dermestidae (Coleoptera) of Mallorca (Balearic Islands, Spain)
Fig. 1.- Dermestes, habitus dorsal aspect: 1a.- D. frischii. 1b.- D. maculatus. 1c.- D. sardous. 1d.- D. szekessyi. 1e.- D. undulatus. And ventral sternites: 1f.- D. frischii. 1g.- D. maculatus. 1h.- D. sardous. 1i.- D. szekessyi. 1j.- D. undulatus. Scale bar = 1 mm in all cases.
Figure 3 from: Ortega-Olivencia A, Devesa JA (2018) Updated checklist of Poa in the Iberian Peninsula and Balearic Islands. PhytoKeys 103: 27-60. https://doi.org/10.3897/phytokeys.103.26029
Figure 3 Poa minor subsp. nevadensis Nannf. A Habit B Detail of the apex of the sheath and ligule, in adaxial view (upper leaf) C Spikelet D Lower glume, in abaxial view E Upper glume, in abaxial view F Lemma, in abaxial view G Palea, in abaxial view H Lodicule I Sexual verticils J Immature caryopsis, in adaxial view K Caryopsys, in abaxial view. Drawn from GDA 31029 and MA 422687.
Figure 2 from: Ortega-Olivencia A, Devesa JA (2018) Updated checklist of Poa in the Iberian Peninsula and Balearic Islands. PhytoKeys 103: 27-60. https://doi.org/10.3897/phytokeys.103.26029
Figure 2 Poa legionensis (Laínz) Fern.-Casas & Laínz A Habit B Detail of the apex of the sheath and ligule, in adaxial view (upper leaf) C Spikelet D Lower glume, in abaxial view E Upper glume, in abaxial view F Lemma, in abaxial view G Palea, in abaxial view H Lodicule I Sexual verticils J Caryopsis, in adaxial view K Caryopsys, in abaxial view. Drawn from MA 314663 and MA 508371.
Figure 5 from: Ortega-Olivencia A, Devesa JA (2018) Updated checklist of Poa in the Iberian Peninsula and Balearic Islands. PhytoKeys 103: 27-60. https://doi.org/10.3897/phytokeys.103.26029
Figure 5 Lectotype of Poa alpina var. involucrata Lange (C 10022547). Reproduced with permission of the Natural History Museum of Denmark.
Figure 1 from: Ortega-Olivencia A, Devesa JA (2018) Updated checklist of Poa in the Iberian Peninsula and Balearic Islands. PhytoKeys 103: 27-60. https://doi.org/10.3897/phytokeys.103.26029
Figure 1 Map of distribution of the provinces covered by Flora iberica (http://bibdigital.rjb.csic.es/spa/Libro.php?Libro=476&Pagina=27).
Figure 4 from: Ortega-Olivencia A, Devesa JA (2018) Updated checklist of Poa in the Iberian Peninsula and Balearic Islands. PhytoKeys 103: 27-60. https://doi.org/10.3897/phytokeys.103.26029
Figure 4 Poa ligulata Boiss. A Habit B Detail of the apex of the sheath and ligule, in adaxial view (upper leaf) C Spikelet D Lower glume, in abaxial view E Upper glume, in abaxial view F Lemma, in abaxial view G Palea, in abaxial view H Lodicule I Sexual verticils J Caryopsis, in adaxial view K Caryopsys, in abaxial view. Drawn from MA 414266 and MA 423181.
FIGURE 16 in Dasya patentissima (Ceramiales, Dasyaceae), a new species from the Cabrera Archipelago (Balearic Islands, eastern Spain)
FIGURE 16. Known distribution (arrow) of Dasya patentissima in the Balearic Islands (E of Spain).
Figure 4 from: Backeljau T, Breugelmans K, Quintana Cardona J, Artois T, Jordaens K (2012) First report of the exotic blue land planarian, Caenoplana coerulea (Platyhelminthes, Geoplanidae), on Menorca (Balearic Islands, Spain). ZooKeys 199: 91-105. https://doi.org/10.3897/zookeys.199.3215
Figure 4 - Neighbor-Joining and ML tree of the 1765 bp dataset of the nuclear 18S rDNA gene. The clones (cl) of the Menorcan specimens '1957' and '1958' are indicated with an asterisk. Bootstrap values ≥ 70% for the NJ and ML trees are given as NJ/ML and are shown at the nodes. – indicates that the node was not supported by the analysis. Note that the clades of the type I and type II 18S rRNA variants are not supported.
Figure 3 from: Backeljau T, Breugelmans K, Quintana Cardona J, Artois T, Jordaens K (2012) First report of the exotic blue land planarian, Caenoplana coerulea (Platyhelminthes, Geoplanidae), on Menorca (Balearic Islands, Spain). ZooKeys 199: 91-105. https://doi.org/10.3897/zookeys.199.3215
Figure 3 - Neighbor-Joining and ML tree of the 296 bp dataset of the mitochondrial cytochrome c oxidase subunit I gene (COI). The haplotype of the Menorcan specimens is indicated with an asterisk. Bootstrap values ≥ 70% for the NJ and ML trees are given as NJ/ML and are shown at the nodes. – indicates that the node was not supported by the analysis.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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