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Figure 7 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 7 Mistariamoschiensis, holotype female A epigyne, ventral view B vulva, dorsal. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); ET, epigynal teeth; FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 4 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 4 Mistariakeniana, holotype female A epigyne, ventral view B vulva, dorsal. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); ET, epigynal teeth; FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 11 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 11 Mistariazuluana, holotype female A epigyne, ventral view B vulva, dorsal. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); ET, epigynal teeth; FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 6 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 6 Mistarialawrencei, holotype female A epigyne, ventral view B vulva, dorsal view. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); ET, epigynal teeth; FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 3 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 3 Palp of Mistariajumbo, syntype male A prolateral view B retrolateral view. C, conductor; Cb, cymbium; E, embolus; F, fulcrum; LTA, prolateral tibial apophysis; MA, median apophysis; PA, patella apophysis; RTA, retrolateral tibial apophysis; ST; sub tegulum; T, tegulum.
Figure 5 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 5 Mistariakiboschensis, female from Rwanda A epigyne, ventral view B vulva, dorsal view. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); ET, epigynal teeth; FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 2 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 2 Mistariajumbo, holotype female A epigyne, ventral view B vulva, dorsal view. Al, anterior lobe of spermatheca; CD, copulatory duct; Ede, epigyne delimiting edge (anterior); EIg, extended inward growth; ET, epigynal teeth, FD, fertilization duct; Ln, lateral notches; Ml, median lobe of spermatheca; Pl, posterior lobe of spermatheca; Vde, vulva delimiting edge (anterior).
Figure 13 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 13 Known distribution of 11 Mistaria species from Africa. 1M.jaundea2M.jumbo3M.keniana4M.kiboschensis5M.lawrencei6M.longimamillata, M.mossambica, M.teteana7M.moschiensis8M.nyassana9M.zuluana.
Figure 1 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 1 Palp of Mistariajaundea, holotype male A prolateral view B ventral view C retrolateral view. C, conductor; Cb, cymbium; CF, cymbium furrow; E, embolus; F, fulcrum; LTA, prolateral tibial apophysis; MA, median apophysis; PA, patella apophysis; RTA, retrolateral tibial apophysis, ST, sub tegulum; T, tegulum.
Figure 10 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 10 Palp of Mistariateteana, holotype male A prolateral view B ventral view C retrolateral view. C, conductor; Cb, cymbium; CF, cymbium furrow; E, embolus; F, fulcrum; LTA, prolateral tibial apophysis; MA, median apophysis; PA, patella apophysis; RTA, retrolateral tibial apophysis, ST, sub tegulum; T, tegulum.
Figure 12 from: Kioko GM, Jäger P, Kioko EN, Ji L-Q, Li S (2019) On the species of the genus Mistaria Lehtinen, 1967 studied by Roewer (1955) from Africa (Araneae, Agelenidae). African Invertebrates 60(1): 109-132. https://doi.org/10.3897/afrinvertebr.60.34359
Figure 12 Habitus AM.kiboschensisBM.jumboCM.teteanaDM.jaundeaEM.moschiensisFM.mossambicaGM.kenianaHM.nyassanaIM.lawrenceiJM.zuluanaK, LM.longimamillata; Scale bars: 2mm.
Figures 8-12 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 8-12 Stuckenbergomyiasecunda (Smith). 8 Holotype labels (upper label is reverse side of second label) 9 Holotype habitus, lateral view 10 Male habitus, Louwsberg specimen 11 Wing 12 Male foreleg, arrow pointing to fore tibial gland, posterior view. Abbreviations: cua – anterior cubital cell, CuA+CuP – anterior branch of cubital vein + posterior branch of cubital vein, dm – discal medial cell, M1 – first branch of media, M2 – second branch of media, M4 – fourth branch of media, Sc – subcostal vein. Scale bars: 1.0 mm (8–11); 0.5 (12).
Figures 3-7 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 3-7 Stuckenbergomyianamibiensis sp. nov., male and female terminalia. 3 Male, lateral view 4 Male, dorsal view 5 Phallus, dorsal view 6 Female, lateral view 7 Spermatheca, dorsal view. Abbreviations: ej apod – ejaculatory apodeme, epand – epandrium, epiprct – epiproct, hypd – hypandrium, hyprct – hypoproct, pgt – postgonite, ph – phallus, tg – tergite, v apod – ventral apodeme. Scale bars: 0.1 mm.
Figures 20- 21 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 20- 21 Stuckenbergomyia sp. A., female. 20 Habitus, lateral view 21 dorsal view. Scale bars: 1.0 mm.
Figures 17-19 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 17-19 Stuckenbergomyia species. 17S.tumbinensis (Smith), holotype habitus, lateral view 18 Holotype labels 19S.secunda (Smith), mouthparts, arrow pointing to palpifer. Abbreviations: hyphar – hypopharynx, lbl – labellum, lbr – labrum, premnt – prementum. Scale bars: 1.0 mm (17); 0.5 mm (19).
Figures 13-16 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 13-16 Stuckenbergomyia species, male terminalia. 13S.secunda (Smith), lateral view 14S.secunda, dorsal view 15S.tumbinensis (Smith), epandrium and proctiger, dorsal view 16S.tumbinensis, phallus, dorsal view. Abbreviations: ej apod – ejaculatory apodeme, hypd – hypandrium, hyprct – hypoproct, pgt – postgonite, sur – surstylus, v apod – ventral apodeme. Scale bars: 0.1 mm.
Figures 1- 2 from: Sinclair BJ (2019) Revision of the southern African genus Stuckenbergomyia Smith, 1971 (Diptera, Empidoidea) and proposal of a new subfamily. African Invertebrates 60(1): 133-145. https://doi.org/10.3897/afrinvertebr.60.35556
Figures 1- 2 Stuckenbergomyianamibiensis sp. nov. 1 Holotype habitus, lateral view 2 Female abdomen and spermatheca, dorsal view. Scale bars: 1.0 mm (1); 0.5 mm (2).
Riparian_Invertebrate_Movement_Data_SAFE
<b>Description: </b><p>Mark-Release-Recapture data for moths and dung beetles in riparian reserves within the SAFE project landscape. Data was collected as part of the Land use Options of Maintaining BiOdiversity and eKosystem functions project (LOMBOK) as part of the Human Modified Tropical Forests Programme (HMTF).</p><p><b>Project: </b>This dataset was collected as part of the following SAFE research project: <a href="https://www.safeproject.net/projects/project_view/154"><b>Dynamics and dispersal of forest insects in riparian buffer strips within oil palm-dominated landscapes</b></a></p><p><b>Funding: </b>These data were collected as part of research funded by: </p><ul><li>Natural Environment Research Council (Grant, NE/K016261/1 , <a href="NA">NA</a>)</li></ul><p>This dataset is released under the CC-BY 4.0 licence, requiring that you cite the dataset in any outputs, but has the additional condition that you acknowledge the contribution of these funders in any outputs.</p><p></p><p><b>Permits: </b>These data were collected under permit from the following authorities:</p><ul><li>Sabah Biodiversity Council (Research licence JKM/MBS.1000-2/2 JLD.3(159))</li></ul><p></p><p><b>XML metadata: </b>GEMINI compliant metadata for this dataset is available <a href="https://www.safeproject.net/datasets/xml_metadata?id=3475406">here</a></p><p><b>Files: </b>This consists of 1 file: Riparian_Invertebrate_Movement_Data_SAFE.xlsx</p><p><b>Riparian_Invertebrate_Movement_Data_SAFE.xlsx</b></p><p>This file contains dataset metadata and 2 data tables:</p><ol><li><p><b>Moth movement data</b> (described in worksheet Moth_Movement)</p><p>Description: Mark-Release-Recapture data for moths within riparian reserves in the SAFE project landscape.</p><p>Number of fields: 13</p><p>Number of data rows: 381</p><p>Fields: </p><ul><li><b>Location</b>: Trap name individual was recaptured in. (Field type: location)</li><li><b>Site</b>: Riparian reserve where the trapping took place. (Field type: categorical)</li><li><b>Taxa</b>: Taxomomic name (Field type: taxa)</li><li><b>Sex</b>: Sex of individual (Field type: categorical)</li><li><b>Habitat</b>: Habitat type. Riparian = riparian forest, Forest = continuous forest, Oil Palm = oil palm surrounding riparian reserve (Field type: ordered categorical)</li><li><b>Trap</b>: Trap Identification (Field type: id)</li><li><b>Distance</b>: Distance from release point in meters including a direction represented by positive and negative values. Negative is towards continuous forest and positive is away. (Field type: numeric)</li><li><b>Absolute_Distance</b>: Exact distance in meters from the release point (Field type: numeric)</li><li><b>Habitat_Change</b>: Whether the movement from the release point to recapture included a habitat type change (Field type: categorical)</li><li><b>Orientation</b>: Orientation of movement from the release point. F = Towards continuous forest, R = Towards or along riparian forest, OP = Towards continuous oil palm plantation (Field type: ordered categorical)</li><li><b>Number_of_Days</b>: Number of days from release at release point to recapture (Field type: numeric)</li><li><b>Frequency</b>: Recaptue frequency (Field type: numeric)</li><li><b>Rate</b>: Recapture frequency divided by the number of days (Field type: numeric)</li></ul></li><li><p><b>Dung beetle movement data</b> (described in worksheet Dung_Beetle_Movement)</p><p>Description: Mark-Release-Recapture data for dung beetles within riparian reserves in the SAFE project landscape.</p><p>Number of fields: 19</p><p>Number of data rows: 428</p><p>Fields: </p><ul><li><b>Location</b>: Trap name individual was recaptured in. (Field type: location)</li><li><b>Site</b>: Riparian reserve where the trapping took place. (Field type: categorical)</li><li><b>Species</b>: Species or species complex (Field type: taxa)</li><li><b>Before_Habitat</b>: Habitat dung beetle was original captured and marked in. (Field type: ordered categorical)</li><li><b>After_Habitat</b>: Habitat dung beetle was recaptured in. (Field type: ordered categorical)</li><li><b>Before_Trap</b>: Trap dung beetle was original captured and marked in. (Field type: id)</li><li><b>After_Trap</b>: Trap dung beetle was recaptured in. (Field type: id)</li><li><b>Distance</b>: Distance in meters between the trap the dung beetle was caught/marked in and the trap the dung beetle was recaptured in. (Field type: numeric)</li><li><b>Towards_Forest</b>: Whether the movment was towards continous forest of not. (Field type: categorical)</li><li><b>Number_of Days</b>: Number of days between releasing the dung beetle and recapturing it again. (Field type: numeric)</li><li><b>Frequency</b>: Recapture frequency. Each line represents one recapture. (Field type: numeric)</li><li><b>Movement_Category</b>: Movement category. Movement from habitat to habitat. F = Continuous forest, R = Riparian reserve forest, OP = Oil palm plantation (Field type: categorical)</li><li><b>Movement_Type</b>: Whether the movement from capture to recapture was within or between habitats. (Field type: categorical)</li><li><b>Orientation</b>: Orientation or peference of directional movement (which habitat moved towards). F = Continuous forest, R = Riparian reserve forest, OP = Oil palm plantation (Field type: ordered categorical)</li><li><b>Sex</b>: Sex of dung beetle. (Field type: categorical)</li><li><b>Burial_Mode</b>: Burial mode used by the dung beetle. (Field type: categorical)</li><li><b>Temporal_Activity</b>: Temporal activity of the dung beetle. (Field type: categorical)</li><li><b>Body_Area</b>: Body area of the dung beetle, calculated by multiplying the body length of the beetle by the width of the thorax. Data provided by Elizabeth Raine. (Field type: numeric)</li><li><b>Wing_Loading</b>: Wing loading of dung beetle, calculated by dividing the wing area (mm2) by the body area (mm2). Data provided by Jonathan Parrett. (Field type: numeric)</li></ul></li></ol><p><b>Date range: </b>2016-11-01 to 2017-04-30</p><p><b>Latitudinal extent: </b>4.6000 to 4.7000</p><p><b>Longitudinal extent: </b>117.5160 to 117.5400</p><p><b>Taxonomic coverage: </b><br> All taxon names are validated against the GBIF backbone taxonomy. If a dataset uses a synonym, the accepted usage is shown followed by the dataset usage in brackets. Taxa that cannot be validated, including new species and other unknown taxa, morphospecies, functional groups and taxonomic levels not used in the GBIF backbone are shown in square brackets.</p><div> -  Animalia <br> -  -  Arthropoda <br> -  -  -  Insecta <br> -  -  -  -  Coleoptera <br> -  -  -  -  -  Scarabaeidae <br> -  -  -  -  -  -  <i>Catharsius</i> <br> -  -  -  -  -  -  <i>Proagoderus watanebei</i> <br> -  -  -  -  -  -  <i>Onthophagus</i> <br> -  -  -  -  -  -  -  <i>Onthophagus mulleri</i> <br> -  -  -  -  -  -  -  <i>Onthophagus obscurior</i> <br> -  -  -  -  -  -  <i>Paragymnopleurus</i> <br> -  -  -  -  -  -  -  <i>Paragymnopleurus sparsus</i> <br> -  -  -  -  -  -  <i>Sisyphus</i> <br> -  -  -  -  -  -  -  <i>Sisyphus thoracicus</i> <br> -  -  -  -  Lepidoptera <br> -  -  -  -  -  Noctuidae <br> -  -  -  -  -  -  <i>Ischyja</i> <br> -  -  -  -  -  -  <i>Erebus</i> <br> -  -  -  -  -  -  -  <i>Erebus caprimulgus</i> <br> -  -  -  -  -  -  -  <i>Erebus gemmans</i> <br> -  -  -  -  -  -  -  <i>Erebus ephesperis</i> <br> -  -  -  -  -  Erebidae <br> -  -  -  -  -  -  <i>Hypoprya</i> <br></div><p></p>
Figure 9 from: Armstrong AJ, Villet MH (2019) Checklist, endemism, English vernacular names and identification of the cicadas (Insecta, Hemiptera, Cicadidae) of KwaZulu-Natal, South Africa. African Invertebrates 60(2): 165-193. https://doi.org/10.3897/afrinvertebr.60.35130
Figure 9 Guineagrass Redeye Cicada Stagira virescens Kirkaldy, 1909 male; (top) mature male, (bottom) teneral male.
Figure 5 from: Armstrong AJ, Villet MH (2019) Checklist, endemism, English vernacular names and identification of the cicadas (Insecta, Hemiptera, Cicadidae) of KwaZulu-Natal, South Africa. African Invertebrates 60(2): 165-193. https://doi.org/10.3897/afrinvertebr.60.35130
Figure 5 Ngome Redeye Cicada Stagira ngomiensis Villet, 1997 male; (top) mature male, (bottom) teneral male.
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