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311 results for “Kimberley”

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zenodo28/100

Figure 2 from: Helgen K, Portela Miguez R, Kohen J, Helgen L (2012) Twentieth century occurrence of the Long-Beaked Echidna Zaglossus bruijnii in the Kimberley region of Australia. ZooKeys 255: 103-132. https://doi.org/10.3897/zookeys.255.3774

Figure 2 - Australian rock art of Zaglossus. Photograph of an Aboriginal rock art illustration from Arnhem Land depicting the characteristic long and down-curved beak (and whitish head of some specimens) of Zaglossus (see Murray and Chaloupka 1984). Photograph by G. Chaloupka.

opencc-by-4.0Dec 2012View details →
zenodo28/100

Figure 1 from: Helgen K, Portela Miguez R, Kohen J, Helgen L (2012) Twentieth century occurrence of the Long-Beaked Echidna Zaglossus bruijnii in the Kimberley region of Australia. ZooKeys 255: 103-132. https://doi.org/10.3897/zookeys.255.3774

Figure 1 - Map of the Greater Australian continent. Map includes an outline of the larger land mass know as "Sahul" or "Meganesia" that forms when the continental shelf (dark grey) is exposed during glaciation. Overlaid is the modern distribution of the three recognized species of Zaglossus: Zaglossus bartoni (red), Zaglossus bruijnii (yellow), and Zaglossus attenboroughi (blue diamond), with the Kimberley record of Zaglossus bruijnii highlighted by a yellow star. Other possible Australian records of Zaglossus cf. bruijnii are numbered by general locality: 1 Pleistocene fossil remains from Naracoorte, South Australia, referred to Zaglossus cf. bruijnii by Murray (1978a) 2 Aboriginal rock art (probably late Pleistocene in age) from Arnhem Land, Northern Territory (see Figure 2) 3 Aboriginal reports of a second, larger echidna taxon, in addition to Tachyglossus, present in the East Kimberley (Kununurra, Western Australia) in recent (20th century) memory (see text).

opencc-by-4.0Dec 2012View details →
zenodo28/100

Figure 8 from: Helgen K, Portela Miguez R, Kohen J, Helgen L (2012) Twentieth century occurrence of the Long-Beaked Echidna Zaglossus bruijnii in the Kimberley region of Australia. ZooKeys 255: 103-132. https://doi.org/10.3897/zookeys.255.3774

Figure 8 - Specimen export list. A list of specimens shipped from Perth to Tring included in a letter, dated 25 April 1904, from Bernard Woodward at the Western Australian Museum to Oldfield Thomas, detailing the transfer of Tunney specimens to Rothschild at Tring. The list includes his number 347 (now BMNH 1939.3315), an echidna identified as "Echidna aculeata" (i.e. Tachyglossus aculeatus) prior to Thomas' examination of the specimen in London, where he realized it is a Zaglossus; we have circled and highlighted this entry in the list.

opencc-by-4.0Dec 2012View details →
zenodo28/100

Figure 4 from: Helgen K, Portela Miguez R, Kohen J, Helgen L (2012) Twentieth century occurrence of the Long-Beaked Echidna Zaglossus bruijnii in the Kimberley region of Australia. ZooKeys 255: 103-132. https://doi.org/10.3897/zookeys.255.3774

Figure 4 - Study skin of the Kimberley Zaglossus (BMNH 1939.3315), bearing the original field tags of John T. Tunney. From top: dorsal, ventral, right lateral, and left lateral views. Scale bar = 5 cm.

opencc-by-4.0Dec 2012View details →
zenodo28/100

Figure 7 from: Helgen K, Portela Miguez R, Kohen J, Helgen L (2012) Twentieth century occurrence of the Long-Beaked Echidna Zaglossus bruijnii in the Kimberley region of Australia. ZooKeys 255: 103-132. https://doi.org/10.3897/zookeys.255.3774

Figure 7 - John Tunney's original field labels attached to the skin of BMNH 1939.3315. A front of card skin tag (attached with sturdy twine to right ankle of study skin) bearing original data, providing the specimen's field number, date of collection, age and sex, and locality B back of same card skin tag bearing original data, detailing the specimen's measurements, context of collection, and abundance C cloth tag bearing original field number ("N 347"), wired tightly to right ankle of study skin. See text for details.

opencc-by-4.0Dec 2012View details →
dryad24/100

Kimberley Fish microsatellite genotypes

<ol> <li>Dispersal is a critically important process that dictates population persistence, gene flow and evolutionary potential and is an essential element for identifying species conservation risks. This project aims to investigate the contributions of dispersal syndromes and hydrographic barriers on patterns of population connectivity and genetic structure in fishes occupying the particularly rugged and fragmented landscape of the Kimberley Plateau, Western Australia.</li> <li>We assessed population genetic structure between three neighbouring catchments (the Mitchell, King Edward and Drysdale rivers) in three congeneric groups of freshwater fishes that exhibit varied dispersal syndromes within and among groups: (1) <i>Melanotaenia australis</i> and <i>M. gracilis</i>; (2) <i>Syncomistes trigonicus </i>and <i>S. rastellus</i>; (3) <i>Hephaestus jenkinsi</i> and <i>H. epirrhinos</i>. Within each species we sampled the upper, middle and lower reaches of each catchment and assessed patterns of gene flow between and within catchments using microsatellite markers.</li> <li>Our results suggest that contemporary connectivity between catchments is greatly limited or absent in all study species, regardless of their dispersal syndromes. However, gene flow within catchments varied in line with predicted dispersal potential with poor dispersers exhibiting limited gene flow and significant genetic structuring.</li> <li>We conclude that the rugged landscape and historical habitat isolation has contributed to patterns of population fragmentation among fish populations from different river catchments. However, it appears dispersal syndromes influence connectivity and gene flow within catchments, where landscape constraints are not as pervasive.</li> <li>This study presents a comparative population genetic analysis of freshwater fishes with differing dispersal syndromes and colonisation ability. Our findings provide new insights into factors shaping patterns of biodiversity on the Kimberley Plateau, and the evolutionary uniqueness of fish communities from different river catchments draining the plateau. The results from this study provide a framework for informing the management of the region's unique freshwater biodiversity.</li> </ol>

opencc-zeroOct 2021View details →
dryad24/100

Kimberley Fish microsatellite genotypes

Open the record for dataset details and reuse information.

publicOct 2021View details →
zenodo20/100

Distribution. NW & N Australia, in Western Australia (Pilbara and Kimberley bioregions), Northern Territory in the Top End, S of Gulf of Carpentaria, and Gulf Fall and Uplands bioregion, and Queensland E to N Mount Isa Inlier and W Gulf Plains bioregions; also on Hook I off coast of Queensland and several small offshore islands off coasts of Western Australia and Northern Territory. in Emballonuridae

Distribution. NW &amp; N Australia, in Western Australia (Pilbara and Kimberley bioregions), Northern Territory in the Top End, S of Gulf of Carpentaria, and Gulf Fall and Uplands bioregion, and Queensland E to N Mount Isa Inlier and W Gulf Plains bioregions; also on Hook I off coast of Queensland and several small offshore islands off coasts of Western Australia and Northern Territory.

opennotspecifiedOct 2019View details →
zenodo20/100

FIGURE 8 in Freshwater Sawfish Pristis microdon Latham, 1794 (Chondrichthyes: Pristidae) in the Kimberley region of Western Australia

FIGURE 8. Percentage occurrence of the total number of rostral teeth in female and male Pristis microdon.

opennotspecifiedMay 2007View details →
zenodo20/100

FIGURE 2. Drosera margaritacea. A in A new species of Drosera section Arachnopus (Droseraceae) from the western Kimberley, Australia, and amendments to the range and circumscription of Drosera finlaysoniana

FIGURE 2. Drosera margaritacea. A. habit; note the very tall, many-flowered inflorescences. B. stem, with peduncle and leaf bases, showing the stalked milky-white glands on the adaxial petiole surfaces. C. flower. D. close-up of petiole covered with stalked milky-white glands, lateral view. E. close-up of stamens; note the rounded yellow connective tips around which the thecae protrude. F. inflorescence. G. close-up of petiole covered with stalked milky-white glands, adaxial view. All photographs taken at the type locality on 18 July 2020 by T. Krueger.

opennotspecifiedMay 2021View details →
zenodo20/100

FIGURE 9 in A new species of Drosera section Arachnopus (Droseraceae) from the western Kimberley, Australia, and amendments to the range and circumscription of Drosera finlaysoniana

FIGURE 9. Seed comparison of Drosera margaritacea (left: A, C, F, G) and D. finlaysoniana (right: B, D, E, H, I). A Trent River Valley, Yampi Peninsula, Kimberley, Western Australia (A. Lowrie s.n.). C, F, G Type locality of D. margaritacea, Kimberley, Western Australia (T. Krueger 7) B, H, I Keep River, Northern Territory, Australia (A. Lowrie s.n.). D Fujian, China (P.E. Chen 2491). E Hsinchu, Taiwan (from cultivated plant). Photographs and SEM-images by A. Fleischmann.

opennotspecifiedMay 2021View details →

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