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Supplementary material 2 from: Augustinus BA, Lommen STE, Fogliatto S, Vidotto F, Smith T, Horvath D, Bonini M, Gentili RF, Citterio S, Müller-Schärer H, Schaffner U (2020) In-season leaf damage by a biocontrol agent explains reproductive output of an invasive plant species. NeoBiota 55: 117-146. https://doi.org/10.3897/neobiota.55.46874
Census dates
Supplementary material 1 from: Augustinus BA, Lommen STE, Fogliatto S, Vidotto F, Smith T, Horvath D, Bonini M, Gentili RF, Citterio S, Müller-Schärer H, Schaffner U (2020) In-season leaf damage by a biocontrol agent explains reproductive output of an invasive plant species. NeoBiota 55: 117-146. https://doi.org/10.3897/neobiota.55.46874
Study sites
Supplementary material 6 from: Augustinus BA, Lommen STE, Fogliatto S, Vidotto F, Smith T, Horvath D, Bonini M, Gentili RF, Citterio S, Müller-Schärer H, Schaffner U (2020) In-season leaf damage by a biocontrol agent explains reproductive output of an invasive plant species. NeoBiota 55: 117-146. https://doi.org/10.3897/neobiota.55.46874
Successful raceme formation
RF models for Astraea
<p>RF models for code Astraea</p>
Figures 91-96 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 91-96 Hymenoepimecis spp. 91, 92 fore wing, showing colour pattern. (91) H. veranii (92) H. argyraphaga93H. robertsae, propodeum and hind leg, showing colour pattern, lateral view 94H. heteropus, propodeum and metasoma, showing colour pattern, lateral view 95H. amazonensis (female), tarsal claw, lateral view 96H. argyraphaga, mesosoma, lateral view: Arrow "A" shows epicnemial carina and arrow "B" shows submetapleural carina.
Figures 76-90 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 76-90 Tarsal claws of Hymenoepimecis spp. (females), lateral view 76H. andina sp. nov. (holotype) 77H. bicolor78H. castilloi sp. nov. (holotype) 79H. dolichocarinata sp. nov. (holotype) 80H. duckensis81H. ecuatoriana sp. nov. (holotype) 82H. kleini83H. longilobus sp. nov. (holotype) 84H. manauara85H. neotropica86H. pucallpina sp. nov. (holotype) 87H. rafaelmartinezi sp. nov. (holotype) 88H. ribeiroi89H. tedfordi90H. uberensis.
Figures 72-75 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 72-75 Habitus of Hymenoepimecis spp. (females), lateral view 72H. rafaelmartinezi sp. nov. (holotype) 73H. ribeiroi74H. tedfordi75H. uberensis.
Figures 61-66 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 61-66 Habitus of Hymenoepimecis spp. (females), lateral view 61H. andina sp. nov. (holotype) 62, H. bicolor63H. castilloi sp. nov. (holotype) 64H. dolichocarinata sp. nov. (holotype) 65H. duckensis66H. ecuatoriana sp. nov. (holotype).
Figures 31-45 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 31-45 Head and part of mesosoma of Hymenoepimecis spp. (females), lateral view 31H. andina sp. nov. (holotype) 32H. bicolor33H. castilloi sp. nov. (holotype) 34H. dolichocarinata sp. nov. (holotype), arrow shows the epicnemial carina 35H. duckensis36H. ecuatoriana sp. nov. (holotype) 37H. kleini38H. longilobus sp. nov. (holotype) 39H. manauara40H. neotropica41H. pucallpina sp. nov. (holotype) 42H. rafaelmartinezi sp. nov. (holotype) 43H. ribeiroi44H. tedfordi, arrow shows the epicnemial carina 45H. uberensis.
Figures 46-60 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 46-60 Sternite I of Hymenoepimecis spp. (females), lateral view 46H. andina sp. nov. (holotype) 47H. bicolor48H. castilloi sp. nov. (holotype) 49H. dolichocarinata sp. nov. (holotype) 50H. duckensis51H. ecuatoriana sp. nov. (holotype) 52H. kleini53H. longilobus sp. nov. (holotype) 54H. manauara55H. neotropica56H. pucallpina sp. nov. (holotype) 57H. rafaelmartinezi sp. nov. (holotype) 58H. ribeiroi59H. tedfordi60H. uberensis.
Figures 67-71 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 67-71 Habitus of Hymenoepimecis spp. (females), lateral view 67H. kleini68H. longilobus sp. nov. (holotype) 69H. manauara70H. neotropica71H. pucallpina sp. nov. (holotype).
Figures 103-106 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 103-106 Habitus of Hymenoepimecis spp. (males), lateral view 103H. manauara104H. rafaelmartinezi sp. nov. (paratype) 105H. ribeiroi106H. uberensis.
Figures 16-30 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 16-30 Heads of Hymenoepimecis spp. (females), dorsal view 16H. andina sp. nov. (holotype) 17H. bicolor18H. castilloi sp. nov. (holotype) 19H. dolichocarinata sp. nov. (holotype) 20H. duckensis21H. ecuatoriana sp. nov. (holotype) 22H. kleini23H. longilobus sp. nov. (holotype) 24H. manauara25H. neotropica26H. pucallpina sp. nov. (holotype) 27H. rafaelmartinezi sp. nov. (holotype) 28H. ribeiroi29H. tedfordi30H. uberensis.
Figures 97-102 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 97-102 Habitus of Hymenoepimecis spp. (males), lateral view 97H. andina sp. nov. (paratype) 98H. bicolor99H. dolichocarinata sp. nov. (paratype) 100H. duckensis101H. kleini102H. longilobus sp. nov. (paratype).
Figures 1-15 from: Pádua DG, Sääksjärvi IE, Monteiro RF, Oliveira ML (2020) Seven new species of spider-attacking Hymenoepimecis Viereck (Hymenoptera, Ichneumonidae, Pimplinae) from Ecuador, French Guiana, and Peru, with an identification key to the world species. ZooKeys 935: 57-92. https://doi.org/10.3897/zookeys.935.50492
Figures 1-15 Heads of Hymenoepimecis spp. (females), frontal view 1H. andina sp. nov. (holotype) 2H. bicolor3H. castilloi sp. nov. (holotype) 4H. dolichocarinata sp. nov. (holotype) 5H. duckensis6H. ecuatoriana sp. nov. (holotype) 7H. kleini8H. longilobus sp. nov. (holotype) 9H. manauara10H. neotropica11H. pucallpina sp. nov. (holotype) 12H. rafaelmartinezi sp. nov. (holotype) 13H. ribeiroi14H. tedfordi15H. uberensis.
Arecibo HF experiment H3473 5.1MHz RF recording
<p>These are RF recordings of the experiment H3473 made at Arecibo observatory from 2020-06-24 to 2020-06-26. The description of the experiment can be seen <a href="http://www.naic.edu/vscience/schedule/tpfiles/brumtagH3473tp.pdf">here</a>. The observatory transmitted a CW carrier at 5.1MHz during the experiment in order to artificially excite the ionsophere.</p> <p>The recordings in this dataset been done with my Amateur radio station, which is located in Tres Cantos (Madrid), Spain, and consists of a Hermes-Lite 2 SDR transceiver and a wire antenna of approximately 15m long. A gain of 12dB was used with the Hermes-Lite 2.</p> <p>The recording format is single-channel 16bit WAV files at 8kHz sample rate. The receiver was tuned to 5099kHz in USB mode, so the Arecibo signal lies at 1kHz within the passband.</p> <p>On the recordings corresponding to 2020-06-25 and 2020-06-26 unfortunately there is an interfering CW carrier at the same frequency as Arecibo. The two can be distinguished because the Arecibo signal is keyed on and off every few minutes and is broader in frequency due to Doppler spread.</p> <p>The dataset includes the following recordings, with approximated start times of:</p> <ul> <li>arecibo_2020_06_24T21_00_5099kHz.wav Start time 2020-06-24 21:00 UTC</li> <li>arecibo_2020_06_25T17_21_5099kHz.wav Start time 2020-06-25 17:21 UTC</li> <li>arecibo_2020_06_26T16_51_5099kHz.wav Start time 2020-06-26 16:51 UTC</li> </ul> <p>The experiment schedule was</p> <ul> <li>2020-06-24 18:00 to 22:00 UTC</li> <li>2020-06-25 17:00 to 21:00 UTC</li> <li>2020-06-25 17:00 to 21:00 UTC</li> </ul> <p>The recordings last until the end of the experiment on each day.</p>
Figures 1-2 from: Novaes RLM, Alves FM, Souza RF, Laurindo RS, Moratelli R (2020) Bats used as hosts by Amblyomma sculptum (Acari: Ixodidae) in Northeastern Brazil and its implications on tick-borne diseases. Zoologia 37: 1-4. https://doi.org/10.3897/zoologia.37.e56795
Figures 1-2 (1) Individual of Myotis lavali (MN 75191) parasitized by an engorged Amblyomma sculptum in the xerophytic caatinga from Northeastern Brazil. Photo: Carlos Cândido. (2) Individual of Noctilio albiventris (MN 79943) parasitized by some sub-adult individuals of hard tick Amblyomma sculptum and soft tick Ornithodoros sp. in the xerophytic caatinga from Northeastern Brazil. Photo: Roberto Leonan M. Novaes.
Figure 2 from: Zheng H, Wan Y, Li J, Castañeda-Ruiz RF, Yu Z (2020) Phialolunulospora vermispora (Chaetosphaeriaceae, Sordariomycetes), a novel asexual genus and species from freshwater in southern China. MycoKeys 76: 17-30. https://doi.org/10.3897/mycokeys.76.57410
Figure 2 Phialolunulospora vermispora (YMF 1.04260) A colony on PDA at day 10 B conidia C–F conidiophores, conidiogenous cells and conidia G conidiogenous cells H, I conidiophores and conidiogenous cells. Scale bars: 10 mm (A); 10 μm (B–I).
Figure 1 from: Zheng H, Wan Y, Li J, Castañeda-Ruiz RF, Yu Z (2020) Phialolunulospora vermispora (Chaetosphaeriaceae, Sordariomycetes), a novel asexual genus and species from freshwater in southern China. MycoKeys 76: 17-30. https://doi.org/10.3897/mycokeys.76.57410
Figure 1 Phylogenetic tree derived from Bayesian analysis based on ITS and LSU sequences, depicting the relationships of the new taxon Phialolunulospora vermispora with closely related taxa. The numbers above branches represent BIPP (left) and MLBPs (right). BIPP over 95% and MLBPs greater than 70% are shown on the respective branches, and the bar represents the substitutions per nucleotide position. Gelasinospora tetrasperma CBS 178.33, Sordaria fimicola CBS 508.50 and Lasiosphaeria ovina SMH 4605 were used as outgroup.
Supplementary material 7 from: Melo M, Freitas B, Verbelen P, da Costa SR, Pereira H, Fuchs J, Sangster G, Correia MN, de Lima RF, Crottini A (2022) A new species of scops-owl (Aves, Strigiformes, Strigidae, Otus) from Príncipe Island (Gulf of Guinea, Africa) and novel insights into the systematic affinities within Otus. ZooKeys 1126: 1-54. https://doi.org/10.3897/zookeys.1126.87635
Table S2. Details of song recordings
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