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271 results for “introduced species”
Fig. 2 in Insights Into the Establishment of Introduced Species Using Coccinellines (Coleoptera: Coccinellidae) as a Model System
Fig. 2. Summary of factors to assess within the proposed categorization to increase predictability of establishment success.
Fig. 1 in Insights Into the Establishment of Introduced Species Using Coccinellines (Coleoptera: Coccinellidae) as a Model System
Fig. 1. Categorization of factors to assess establishment success of introduced species. Invasibility is defined as the characteristics of a habitat that makes it vulnerable to be invaded by introduced species. Invasiveness is defined as those characteristics or traits of introduced species that enable them to establish in a new area. Stochastic events are events that may or may not change invasibility and invasiveness affecting the establishment process. We predict the rate of successful establishment will increase at the mid-point where all three categories overlap. However, in the absence of stochastic events that would influence the establishment process, we may predict the success rate of establishment by assessing only the species' match in invasiveness with invasibility of the recipient ecosystem.
FIGURE. Number of species introduced from different provinces in China over the last decade (2010–2020). in Yunnan-Guizhou Plateau: a mycological hotspot
FIGURE. Number of species introduced from different provinces in China over the last decade (2010–2020).
Morphological and phylogenetic characterization of fungi within Hymenochaetales: Introducing two new species from southern China
<p>Two new wood-inhabiting fungal species, <i><span>Lyomyces </span></i><i><span>niveus</span></i> and <i><span>L</span></i>. <i><span>ochraceoalbus</span></i> spp. nov. are proposed based on a combination of morphological and molecular evidence. <i><span>Lyomyces</span></i> <i><span>ochraceoalbus</span></i> is characterised by resupinate basidiomata with tuberculate, cracking hymenial surface, clavate basidia with a median constriction, gathering numerous irregular crystals and thin-walled basidiospores with one or two globules. <i><span>Lyomyces</span></i> <i><span>niveus</span></i> is characterised by resupinate basidiomata, smooth to grandinioid hymenial surface, presence of three kinds of cystidia, and broadly ellipsoid basidiospores. Sequences of ITS and nLSU gene regions were generated, and phylogenetic analyses were performed with maximum likelihood, maximum parsimony and Bayesian inference methods. The phylogenetic reconstruction of Schizoporaceae based on a concatenated ITS+nLSU dataset showed that two new species nested in <i><span>Lyomyces</span></i>. A second phylogenetic analysis, of the genus <i><span>Lyomyces</span></i>, demonstrated that multiple isolates of <i><span>L</span></i>. <i><span>niveus</span></i> forms a monophyletic lineage and is sister to a clade comprising of <i><span>L</span></i>. <i><span>crustosus</span></i><span>,</span><i><span> L. </span></i><i><span>juniperi</span></i>, <i><span>L</span></i>. <i><span>ochraceoalbus</span></i><span>,</span><i> </i>and <i><span>L</span></i>. <i><span>vietnamensis</span></i>. Moreover, <i><span>L</span></i>. <i><span>ochraceoalbus</span></i> is closely related to <i><span>L</span></i>. <i><span>crustosus</span></i>.</p>
FIGURE 1 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 1. Megalothorax anterolenis sp. nov. (A) Chaetotaxy of trunk tergites from Th. I to Abd. IV, with representation of the secondary granulation. (B, C, D) Head, (B) dorsal side including labrum and maxillary palp, (C) ventral side including labium basal fields, (D) variant morphology of the connection between linea ventralis and integumentary channels.
FIGURE 6 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 6. Megalothorax zealanterolenis sp. nov. (A) Chaetotaxy of trunk tergites from Th. I to Abd. V, (B) Head dorsal side. (C) Mandibula. (D) Antenna.
FIGURE 5 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 5. Megalothorax tasmanterolenis sp. nov. (A) Chaetotaxy of antenna, arrow indicates a facultative chaeta. (B) Claw I. (C) Claw II. (D) Claw III. (E) Furca posterior side.
FIGURE 9 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 9. Megalothorax tasmanterolenis sp. nov. (A) Integument with secondary granules and area of enlarged primary hexagons devoid of secondary granules, abdominal region dorsal side. (B) Integument, with area of enlarged primary granules, dorso-anterior part of head. (C) Enlarged and clear S-chaeta Sa2 on Ant. IV, compared with (D) normal, dark S-chaetae (e.g. Sb3, Sb4, Sb5) on Ant. IV. Megalothorax zealanterolenis sp. nov. (E) mucro with focus on the smooth and waved internal posterior lamella.
FIGURE 4 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 4. Megalothorax tasmanterolenis sp. nov. (A) Chaetotaxy of trunk tergites from Th. I to Abd. IV, area of repartition of the secondary granulation represented in grey, (B) Head dorsal side. (C, D) anterior side of the labrum anterior process, (D) labrum posterior side. (E) Maxillary outer lobe. (F) Mandibula. (G) Maxilla.
FIGURE 2 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 2. Megalothorax anterolenis sp. nov. (A, B) Labrum anterior process, (A) posterior side, (B) anterior side. (C) Maxillary outer lobe internal side. (D) Mandibula. (E) Maxilla. (F, G) Antenna (F) posterior side, (G) anterior side. (H) Abd. VI tergite and sternite, Abd. V and IV sternites, and posterior side of manubrium and dens (furca), chaeta and lobe in dotted line are missing on the figured specimen but normally present. (I) dens anterior side. (J) Mucro.
FIGURE 8 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 8. (A) Diagram of dorsal head chaetotaxy, chaeta in blue present only in M. tasmanterolenis sp. nov. and M. zealanterolenis sp. nov., channel in blue present only in M. tasmanterolenis sp. nov. (B) Diagram of ventral head chaetotaxy. (C) Diagram of antenna chaetotaxy. (D) Body chaetotaxy diagram, s-chaetae shape based on M. anterolenis sp. nov. (E) Connection of integumentary channels and linea ventralis: (a) crossed, (b) transitional form, (c) circular.
FIGURE 7 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 7. Megalothorax zealanterolenis sp. nov. (A) chaetae of Abd. IV sternites. (B) Leg I. (C) Leg II. (D) Leg III. (E) Claw I. (F) Claw II. (G) Claw III. (H, I, J) Mucro variations.
FIGURE 10 in A new group of species of the genus Megalothorax (Collembola, Neelidae) with Gondwanan distribution, and introducing an open interactive identification key of Megalothorax species
FIGURE 10. Molecular phylogeny of the genus Megalothorax, with optimization of taxonomically relevant character states. New OTUs names are indicated in bold. Bootstrap node support is shown next to the node, only when below 100 %.
FIGURE 1 in An introduced species, though remarkable: first record of Sepsidae (Diptera Schizophora) from Chile
FIGURE 1. Sepsis punctum (Fabricius), habitus. A. Male, Chile, Parque Nacional Puyehue, Antillanca. B. Female, Chile, Parque Nacional Puyehue, Termas Aguas Calientes.
FIGURE 2 in An introduced species, though remarkable: first record of Sepsidae (Diptera Schizophora) from Chile
FIGURE 2. Sepsis punctum (Fabricius), male, Chile, Parque Nacional Puyehue, Antillanca. A. Fore femur, anterior view. B. Same, posterior view. C. Head and thorax, dorsal view. D. Thoracic pleura, lateral view. E. Wing. F. Male terminalia, lateral view. G. Same, ventral view.
Data from: Using molecular diet analysis to inform invasive species management: a case study of introduced rats consuming endemic New Zealand frogs
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Assessing the population genetic structure of introduced rainbow trout (Oncorhynchus mykiss) in the Lake Tahoe basin: A case for understanding hybridization potential during the reintroduction of the native Endangered Species Act listed Lahontan cutthroat trout (O. clarkii henshawi)
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Climatic niche shifts in 815 introduced plant species affect their predicted distributions: Data and scripts
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Data from: Genomic patterns of diversity and divergence of two introduced salmonid species in Patagonia, South America
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Morphological and phylogenetic characterization of fungi within Hymenochaetales: Introducing two new species from southern China
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.