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108 results for “Possession”
Dataset containing binominal lexemes in Harakmbut (isolate, Peru), for "The derivational use of classifiers in Western Amazonia" and "When the alienability contrast fails to surface in adnominal possession: Bound nouns in Harakmbut"
<p>This is the dataset used, amongst others, in the paper: Van linden, An. Forthcoming. When the alienability contrast fails to surface in adnominal possession: Bound nouns in Harakmbut. Special Issue “Re-assessing the explanatory potential of alienability contrasts”, guest-edited by Françoise Rose & An Van linden. <em>Linguistics – An Interdisciplinary Journal of the Language Sciences</em>. [<a href="https://doi.org/10.1515/ling-2022-0039">https://doi.org/10.1515/ling-2022-0039</a>]</p> <p>For more details, see the ReadMe file.</p>
Supplementary data for the article "Head and dependent marking and dependency length in possessive noun phrases: a typological study of morphological and syntactic complexity"
<p>This material contains the Supplementary material (including the R-scripts) of the following article. Please cite the article when using the data.</p> <p>Sinnemäki, Kaius and Haakana, Viljami. 2023. Head and dependent marking and dependency length in possessive noun phrases: a typological study of morphological and syntactic complexity. <em>Linguistics Vanguard</em> 9(s1). 45-57. <a href="https://doi.org/10.1515/lingvan-2021-0074">https://doi.org/10.1515/lingvan-2021-0074</a></p>
Fig. 10. Males possess a in Characterization of stridulatory structures and sounds of the larger Mexican pine beetle, Dendroctonus approximatus (Coleoptera: Curculionidae: Scolytinae)
Fig. 10. Males possess a well-developed file on the lef elytron a), with a relatively underdeveloped file on the right elytron b). The development of a file in female D. approximatus was highly variable and ofen almost non-existent. Lef elytron of female with a well-developed file, relative to most other observed female files c), and of female with poorly-developed file d).
FIG. 4 in Terrestrial macro-arthropods of the sub-Antarctic islands of Possession (Crozet Archipelago) and Kerguelen: inventory of native and non-native species
FIG. 4. — Some indigeneous arthropod species: Diptera: A, Telmatogeton amphibius (Eaton, 1875); B, Amalopteryx maritima Eaton, 1875; Hymenoptera: C, Kleidotoma icarus (Quinlan, 1964); Coleoptera: D, Antarctotachinus crozetensis Enderlein, 1909; Hemiptera: E, Phthirocoris antarcticus Enderlein, 1904; Lepidoptera: F, Pringleophaga kerguelensis Enderlein, 1905. Photos: Bernard Chaubet.
FIG. 1 in Terrestrial macro-arthropods of the sub-Antarctic islands of Possession (Crozet Archipelago) and Kerguelen: inventory of native and non-native species
FIG. 1. — The South Indian Ocean sub-Antarctic islands, with details of Kerguelen Island (A) and Possession Island (B, in Crozet archipelago). Modified from D. Fourcy, Inrae, 2020.
FIG. 3 in Terrestrial macro-arthropods of the sub-Antarctic islands of Possession (Crozet Archipelago) and Kerguelen: inventory of native and non-native species
FIG. 3. — Some indigeneous arthropod species: Arachnida: A, Hahnia crozetensis Hickman, 1939; B, Myro paucispinosus Berland, 1947; Coleptera: C, Ectemnorhinus viridis G. R. Waterhouse, 1853; D, Palirhoeus eatoni (C. O. Waterhouse, 1876); E, Amblystogenium pacificum (Putzeys, 1869); F, Meropathus chuni Enderlein, 1901; Diptera: G, Calycopteryx moseleyi Eaton, 1875; H, Anatalanta aptera Eaton, 1875. Photos: Bernard Chaubet.
FIG. 2 in Terrestrial macro-arthropods of the sub-Antarctic islands of Possession (Crozet Archipelago) and Kerguelen: inventory of native and non-native species
FIG. 2. — Some typical habitats of sub-Antarctic islands: A, wide open valley; B, wet coastal cliffs; C, slopes covered with Acaena magellanica; D, fell field; E, native vegetation; F, introduced vegetation; G, coastal slopes and foreshore; H, marine animal colonies. Photos: Maurice Hullé.
Behavioral datasets of wandering albatrosses collected at Possession Island, Crozet, France, in 2019 and 2020
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Hyper-specialized bamboo lemurs possess a reduced suite of xenobiotic-metabolizing cytochrome P450 genes
<p><span>Subfamilies of cytochrome P450 proteins have been strongly linked to the metabolism of physiologically disruptive compounds such as alkaloids, terpenoids, and other xenobiotics. Consistent with this function, these genes have adaptively evolved in response to environmental pressures exerted on animals, such as herbivores, that consume elevated amounts of toxic xenobiotics or plant secondary metabolites (PSMs). Theory on evolutionary tradeoffs predicts that highly specialized herbivores should exhibit a relatively narrow toolkit of adaptations to accommodate the concomitantly narrow arrays of PSMs in their diets. The bamboo lemurs of Madagascar (genera </span><em>Prolemur</em> and <em>Hapalemur</em>) represent an interesting test case for this theory because of their dietary hyper-specialization, as these lemurs consume bamboo and grasses at rates otherwise unseen in the order Primates. To test whether the hyper-specialized folivory of these primates is reflected in a similarly specialized and narrow P450 gene suite, we assembled a dataset of confidently assembled CYP1-3 genes for two species of bamboo lemur and 13 additional lemur species. With this dataset, we tested the predictions that bamboo lemurs would exhibit, first, greater rates of gene loss for xenobiotic-metabolizing P450s and, second, relaxed selection on xenobiotic-metabolizing P450 subfamilies relative to lemurs without such dietary hyper-specialization. We found support for the prediction of gene loss in the <em>CYP2B,</em> <em>CYP2C</em>, <em>CYP2D</em>, <em>CYP2J</em>, and <em>CYP3A</em> subfamilies, all of which encode xenobiotic metabolizers. We inferred relaxation of selection for the <em>CYP1A</em> and <em>CYP2D</em> subfamilies. The <em>CYP2F</em> subfamily exhibited a signal of significant intensification of selection in the bamboo-lemur lineage. The evolution of the P450 genes in bamboo lemurs provides support for the evolutionary tradeoff hypothesis, and we further hypothesize that, rather than adapting to a general array of PSMs, bamboo lemurs have instead adapted to the primary toxin in their diet, the highly potent poison cyanide.</p>
Microheliella maris possesses the most gene-rich mitochondiral genome in Diaphoretikes
<p>The mitochondrial genomes are very diverse, but their evolutionary history is unclear due to the lack of efforts to sequence that of protists (unicellular eukaryotes), which cover a major part of the eukaryotic tree. Cryptista comprises cryptophytes, goniomonads, kathablepharids, and <em>Palpitomonas bilix</em>, and their mitochondrial genomes (mt-genomes) are characterized by various gene contents, particularly the presence/absence of an ancestral (bacterial) system for the cytochrome c maturation system. To shed light on mt-genome evolution in Cryptista, we report the complete mt-genome of <em>Microheliella maris</em>, which was recently revealed to branch at the root of Cryptista. The <em>M. maris</em> mt-genome was reconstructed as a circular mapping chromosome of 61.2 kbp with a pair of inverted repeats (12.9 kbp) and appeared to be the most gene-rich among the mt-genomes of the members of Diaphoretickes (a mega-scale eukaryotic assembly including Archaeplastida, Cryptista, Haptista, and SAR) studied so far, carrying 53 protein-coding genes. With this newly sequenced mt-genome, we inferred and discussed the evolution of the mtgenome in Cryptista and Diaphoretickes.</p>
Dataset for "Non-canonical possessive constructions in Negidal and other Tungusic languages: a new analysis of the so-called 'alienable possession' suffix"
<p>This is the dataset used in the paper: Aralova, N. & Pakendorf, B. (2023). Non-canonical possessive constructions in Negidal and other Tungusic languages: a new analysis of the so-called “alienable possession” suffix. Special Issue “Re-assessing the explanatory potential of alienability contrasts”, guest-edited by Françoise Rose & An Van linden. <em>Linguistics</em>. <a href="https://doi.org/10.1515/ling-2022-0030">https://doi.org/10.1515/ling-2022-0030</a></p> <p>For more details, see the ReadMe file.</p>
Microheliella maris possesses the most gene-rich mitochondiral genome in Diaphoretikes
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Data from: Comprehensive cDNA cloning and putative feature analysis of endogenous cellulases possessed by the Pacific oyster, Crassostrea gigas
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Data from: Leaf-footed bugs possess multiple hidden contrasting color signals, but only one is associated with increased body size
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Hyper-specialized bamboo lemurs possess a reduced suite of xenobiotic-metabolizing cytochrome P450 genes
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Distribution. Papua New Guinea (recorded only at the lower Strickland River in Western Province and Port Moresby in National Capital District) and NE coast of Australia from Cape York Peninsula to Keppel Bay, also on Moa, Possession, and Albany Is in Torres Strait (possibly also on other islands in this area) and Magnetic I and other coastal islands of Queensland. It might have a larger distribution along S coast ofNew Guinea. in Emballonuridae
Distribution. Papua New Guinea (recorded only at the lower Strickland River in Western Province and Port Moresby in National Capital District) and NE coast of Australia from Cape York Peninsula to Keppel Bay, also on Moa, Possession, and Albany Is in Torres Strait (possibly also on other islands in this area) and Magnetic I and other coastal islands of Queensland. It might have a larger distribution along S coast ofNew Guinea.
Data from: The cacao pathogen Moniliophthora roreri (Marasmiaceae) possesses biallelic A and B mating loci but reproduces clonally
The cacao pathogen Moniliophthora roreri belongs to the mushroom-forming family Marasmiaceae, but it has never been observed to produce a fruiting body, which calls to question its capacity for sexual reproduction. In this study, we identified potential A (HD1 and HD2) and B (pheromone precursors and pheromone receptors) mating genes in M. roreri. A PCR-based method was subsequently devised to determine the mating type for a set of 47 isolates from across the geographic range of the fungus. We developed and generated an 11-marker microsatellite set and conducted association and linkage disequilibrium (standardized index of association, IAs) analyses. We also performed an ancestral reconstruction analysis to show that the ancestor of M. roreri is predicted to be heterothallic and tetrapolar, which together with sliding window analyses support that the A and B mating loci are likely unlinked and follow a tetrapolar organization within the genome. The A locus is composed of a pair of HD1 and HD2 genes, whereas the B locus consists of a paired pheromone precursor, Mr_Ph4, and receptor, STE3_Mr4. Two A and B alleles but only two mating types were identified. Association analyses divided isolates into two well-defined genetically distinct groups that correlate with their mating type; IAs values show high linkage disequilibrium as is expected in clonal reproduction. Interestingly, both mating types were found in South American isolates but only one mating type was found in Central American isolates, supporting a prior hypothesis of clonal dissemination throughout Central America after a single or very few introductions of the fungus from South America.
Data from: Factors associated with possession of accurate knowledge regarding occupational health management among operations leaders of radiation decontamination workers in Fukushima, Japan: a cross-sectional study
Objectives: An operations leader (OL) takes an important role in occupational health management for radiation decontamination workers in Japan, and candidates for the position must participate in a training session to acquire the necessary knowledge as required by law. However, it has not been clarified whether the candidates for the OL position actually possess accurate knowledge regarding occupational health management for such work after the training session. We therefore aimed at examining the current occupational health management knowledge among the candidates and investigating factors related to the knowledge, with hypothesis that possession of accurate knowledge is associated with prior experience of having worked in radiation decontamination. Design: A cross-sectional study. Setting: The training sessions held by Fukushima Prefecture Labor Standard Associations in Fukushima, Japan, in 2017. Participants: Eighty male candidates participated in the training sessions. Outcome: The number/proportion of correct answers to the questions regarding occupational health management such as those on working environment management, control of operations, and health management. Results: The proportion of those who possessed accurate knowledge regarding working environment management, control of operations, and health management, was 68.8%, 55.0%, and 51.2%, respectively. Experience of radiation decontamination work was associated with the possession of inaccurate knowledge regarding working environment management (OR 0.140 [95% CI 0.042, 0.464]), and the uncertainty of future radiation decontamination work schedules in difficult-to-return zones was associated with the possession of accurate knowledge regarding health management (OR 4.382 [95% CI 1.525, 12.591]). Conclusions: Previous experience in radiation decontamination work may hinder the ability to acquire accurate information regarding working environment management among candidates for an OL position. To promote adequate occupational health management for radiation decontamination workers, it is required to establish an effective instructional method for the OL candidate training sessions with consideration of previous relevant experience.
FIGURE 7. Pseudingolfiella possessionis n in Description of Pseudingolfiella possessionis n. sp. (Crustacea, Amphipoda) from sub-Antarctic Île de La Possession, Crozet archipelago: the second freshwater amphipod known from the Antarctic biome, a human introduction of Gondwanan ancestry?
FIGURE 7. Pseudingolfiella possessionis n. sp. SEM photographs. A. Aesthetascs on antenna 1. B. Accessory antenna on antenna 1, male. C. Detail of gnathopod 2, showing denticulate lamella and spine on posterior margin of dactylus. D. Pleopods 2, male. E. Pleopods 3, male. F. Uropods 1 and 2, male, lateral view showing undulate posterolateral margin of outer ramus. G. Uropods 1 and 2, male, oblique ventral view showing smoothly curved posteromedial margin of outer ramus. Scale bars: A: 0.025 mm; B: 0.05 mm; C: 10 µm; D−G: 0.1 mm.
FIGURE 4. Pseudingolfiella possessionis n in Description of Pseudingolfiella possessionis n. sp. (Crustacea, Amphipoda) from sub-Antarctic Île de La Possession, Crozet archipelago: the second freshwater amphipod known from the Antarctic biome, a human introduction of Gondwanan ancestry?
FIGURE 4. Pseudingolfiella possessionis n. sp. A–G. Coxal plates 1−7, C showing coxal gill. H−J. Pleopods 1−3, female. K−M. Pleopods 1−3, male. N. Urosome, lateral view. O. Telson, male, dorsal view. P. Telson, female, dorsal view. Q. Mediodorsal projection of telson. Scale bars: A−Q: 50 µm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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OpenNeuro
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