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220 results for “Inquilinism”
Fig. 3 in Inquiline Effects On A Multilocular Gall Community
Fig. 3. Scatter plots of the gall diameter and the number of emerged individuals relationships for inquiline-free (❍) and inquilined galls (●).
Fig. 2 in Inquiline Effects On A Multilocular Gall Community
Fig. 2. Averages and SE of the studied parameters for the inquiline-free and inquilined galls for the diameter (a), number of emerged individuals (b), and Shannon diversity (c); A – inquiline-free galls, B – inquilined galls.
Fig. 1. a in Inquiline Effects On A Multilocular Gall Community
Fig. 1. a) Distribution of emerged Periclistus brandtii individuals among attacked galls; b) Scatter plot of the gall diameter and the rate of inquilinism (P. brandtii) (r = –0.59, P <0.01); c) Scatter plot of the gall diameter and the number of emerged inquiline (P. brandtii) specimens (r = 0.08, P = N.S.)
Figures 1–3 in A new key for the species of Ateuchus Weber (Coleoptera: Scarabaeidae: Scarabaeinae) occurring in Mexico, with a description of the first North American inquiline species from a rodent burrow (Rodentia: Geomydae) and new distribution records
Figures 1–3. Ateuchus tuza sp. nov.; 1, dorsal habitus of holotype; 2, ventral habitus of holotype; 3, wrinkled area at the base of the head of a male.
Linked collectors and determiners for: A new inquiline ant (Hymenoptera: Formicidae) in Cataglyphis and its phylogenetic relationship.
Natural history specimen data linked to collectors and determiners held within, "A new inquiline ant (Hymenoptera: Formicidae) in Cataglyphis and its phylogenetic relationship". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/54b2150d-e662-450d-b3c2-73b51ac32041">https://bionomia.net/dataset/54b2150d-e662-450d-b3c2-73b51ac32041</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/54b2150d-e662-450d-b3c2-73b51ac32041">https://gbif.org/dataset/54b2150d-e662-450d-b3c2-73b51ac32041</a>. Formatted as a Frictionless Data package.
Fig. 7 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 7. Box and whisker (a, d) and scatter (b, c) plots showing the relationships between the inquiline species richness of individual pitchers and pitcher type (a), pitcher size (b), canopy cover (c), and location (within or outside of the CCNR; d). The plots show that inquiline species richness was higher in lower than upper pitchers (a), and pitcher size (b) and canopy cover (c) had weak positive effects on inquiline species richness, but there was no significant difference in inquiline species richness between pitchers outside of and within the Central Catchment Nature Reserve (CCNR) (d). In (a) and (d), boxes represent interquartile ranges, whiskers represent maxima and minima, and points represent outliers. In (b) and (c), points (green = lower, beige = upper pitchers) represent the species richness of individual pitchers, and lines represent the model predictions of the second (b; ΔAICc = 1.94) and third (c; ΔAICc = 1.99) best models for lower (green) and upper (beige) pitchers.
Fig. 11 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 11. Scanning electron microscope (SEM) photographs exemplifying morphological differences in the chelicerae of Nepenthes histiostomatid mites: (a) Creutzeria sp., (b) Zwickia sp., (c) Nepenthacarus sp. Scale bar = 10 micrometres. (Photographs by: Norman J. Fashing).
Fig. 3 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 3. Two-dimensional NMDS plot of the plant communities co-occurring with Nepenthes rafflesiana in plots located within (brown points) and outside (pink points) of the CCNR (a), and box and whisker plot comparing the log-transformed floristic species richness of these locations (b). Plant communities differed significantly in composition (a; pseudo-F1,11 = 3.80, p-value <0.001) and species richness (b; T11 = 4.74, p-value = 0.001). Each point in the NMDS plot (a) represents the plant communities of a single plot. Colours are translucent, so that overlapping points may be distinguished. Points which are located closer to each other in the NMDS plot share more similar plant communities. Texts represent plant species centroids, with font sizes proportional to the number of plots in which each was found (species which were found in two or less plots are not displayed). A species is more likely to occur in a plot if the plot's point is located close to the species' centroid. Bold lines in the box and whisker plot represent median log-transformed species richness, boxes represent interquartile ranges, whiskers represent maxima/minima and points represent outliers.
Fig. 6 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 6. Box and whisker plots show that inquiline taxa were found in different abundances across the different forest types, with several species being confined to the old secondary forests within the Central Catchment Nature Reserve (CCNR). Bold horizontal lines represent median log-transformed number of each inquiline taxon in pitchers from each forest type (denoted by colours); boxes represent interquartile range; whiskers represent maximum values. Taxon names are abbreviated as done in the previous figure; rare inquiline taxa which were present in only one sample are not displayed.
Fig. 2 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 2. Habitat types in which Nepenthes rafflesiana plants were found in this study: (a) coastal cliffs; (b) adinandra belukar; (c) old secondary forests (in this case, a tree fall gap within an old secondary forest). Nepenthes rafflesiana plants are indicated by an arrow in panels a and c. Coastal cliffs (a) and adinandra belukar (b) type habitats were mainly found outside the Central Catchment Nature Reserve (CCNR), while old secondary forests type habitats were only found within the CCNR. Despite their different locations, plant communities in which N. rafflesiana were found in coastal cliff habitats (a) and typical adinandra belukar habitats (b) were compositionally highly similar and may both be classified as adinandra belukar type plant communities. (Photographs by: Lam Weng Ngai).
Fig. 1 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 1. Nepenthes rafflesiana lower (a) and upper (b) pitchers in situ; location of the Central Catchment Nature Reserve (CCNR) in Singapore (c). Data sources for (c): Singapore Public Data (https://data.gov.sg); Global Administrative Areas Database version 3.6 (https:// gadm.org/data.html). (Photographs by: Lam Weng Ngai).
Fig. 5 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 5. Sample-size- (a) and coverage-based (b) rarefaction curves of inquiline species richness from pitchers collected outside of (pink lines) and within (brown lines) the Central Catchment Nature Reserve (CCNR). Lines represent the interpolated (continuous) and extrapolated (dashed) species richness of each forest type, as a function of the number of individuals sampled within it (a) and the estimated sample coverage (b); shaded regions represent the 95% confidence intervals of these estimates; points represent the observed species richness (these are omitted from panel b to prevent the obscuring of other details in the figure).
Fig. 4 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 4. Two-dimensional NMDS plot of the pitcher inquiline communities of the sampled Nepenthes rafflesiana pitchers. Each point represents an inquiline community from an individual pitcher, with its colour denoting the location in which it was found (within [brown] or outside [pink] the Central Catchment Nature Reserve [CCNR]), and its shape denoting its pitcher type (triangles denote upper, and circles, lower, pitchers). Texts represent inquiline species centroids, with font sizes proportional to the number of pitchers in which each was found. A species is more likely to occur in a pitcher if the pitcher's point is located close to the species' centroid. Taxon name abbreviations: Dasy = Dasyhelea spp.; Phor = Phoridae; Ar.giv = Armigeres giveni; Ar.kuc = Ar. cf. kuchingensis; Cx.bre = Culex brevipalpus complex; Cx.cur = Cx. curtipalpis; Tp.tnx = Tripteroides tenax; Lest = Lestodiplosis sp.; Nsyr = Nepenthosyrphus sp. raff; Creu = Creutzeria spp.; M2.sp1 = Histiostomatidae genus 1 sp. 1; Naca = Nepenthacarus spp.; Zwic = Zwickia spp.; Nema = nematodes.
Fig. 9 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 9. Habitus of Armigeres giveni fourth instar larva (a); Ar. giveni female adult (b); Ar. cf. kuchingensis fourth instar larva (c); Ar. cf. kuchingensis male adult (d). Scale bars represent 1 mm. (Photographs by: Yeo Huiqing).
Fig. 10 in A comparative exploration of the inquiline and prey species of Nepenthes rafflesiana pitchers in contiguous and fragmented habitat patches in Singapore
Fig. 10. Illustrations of mite genera inhabiting Nepenthes rafflesiana pitchers in Singapore: (a) Undescribed genus (male dorsum), (b) Creutzeria sp. (male venter), (c) Zwickia sp. (male dorsum), (d) Nepenthacarus sp. (male dorsum). Scale bars represent 150 micrometres. (Illustrations by: Norman J. Fashing).
Figure 15 in Tiny mites on a great journey - a review on scutacarid mites as phoronts and inquilines (Heterostigmatina, Pygmephoroidea, Scutacaridae)
Figure 15 Number of scutacarid species belonging to different genera associated with mammals (Mammalia). "Other genera" combineDiversipes, Lamnacarus, Lophodispus, Nasutiscutacarus, Parascutacarus, Reductacarus, Rettenmeyerella, Scutacaropsis, SymbolacrasisandThaumatopelvis.
Figure 16 in Tiny mites on a great journey - a review on scutacarid mites as phoronts and inquilines (Heterostigmatina, Pygmephoroidea, Scutacaridae)
Figure 16 Percentage distribution of scutacarid genera along different host taxa. "Other genera" combineDiversipes, Lamnacarus, Lophodis-
Figure 11 in Tiny mites on a great journey - a review on scutacarid mites as phoronts and inquilines (Heterostigmatina, Pygmephoroidea, Scutacaridae)
Figure 11 Number of scutacarid species belonging to different genera associated with ants (Formicidae). "Other genera" combineDiversipes, Lamnacarus, Lophodispus, Nasutiscutacarus, Parascutacarus, Reductacarus, Rettenmeyerella, Scutacaropsis, Symbolacrasisand Thaumatopelvis.
Figure 10 in Tiny mites on a great journey - a review on scutacarid mites as phoronts and inquilines (Heterostigmatina, Pygmephoroidea, Scutacaridae)
Figure 10 Number of scutacarid species belonging to different genera associated with bees and wasps (Apoidea and Vespoidea excl. Formicidae). "Other genera" combineDiversipes, Lamnacarus, Lophodispus, Nasutiscutacarus, Parascutacarus, Reductacarus, Rettenmeyerella, Scutacaropsis, Symbolacrasisand Thaumatopelvis.
Figure 13 in Tiny mites on a great journey - a review on scutacarid mites as phoronts and inquilines (Heterostigmatina, Pygmephoroidea, Scutacaridae)
Figure 13 Number of scutacarid species belonging to different genera associated with various "insects" (insecta). The group "insects" comprises Entognatha, Dermaptera, Diptera, Heteroptera, Isoptera and Orthoptera as well as hosts that have not been defined further in literature. "Other genera" combineCoronipes, Diversipes, Reductacarus, Rettenmeyerella, Scutacaropsis and Thaumatopelvis.
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