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Supplementary material 5 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the distance to the closest disease report as a predictor of the number of Cryptostroma corticale spores detected in aerobiological samples
Supplementary material 2 from: Brockerhoff EG, Gresham BA, Meurisse N, Nahrung HF, Perret-Gentil A, Pugh AR, Sopow SL, Turner RM (2023) Pining away and at home: global utilisation of Pinus radiata by native and non-native insects. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 137-167. https://doi.org/10.3897/neobiota.84.95864
Statistics for Table 2. Statistical tests of proportions out of all species among feeding types for impacts, establishments and interceptions.
Supplementary material 3 from: Brockerhoff EG, Gresham BA, Meurisse N, Nahrung HF, Perret-Gentil A, Pugh AR, Sopow SL, Turner RM (2023) Pining away and at home: global utilisation of Pinus radiata by native and non-native insects. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 137-167. https://doi.org/10.3897/neobiota.84.95864
Numbers (and percentages) of species by impact class, and whether or not they have been intercepted (based on the international interceptions dataset covering the period 1995–2021) or established in a region outside their native range.
Supplementary material 4 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the water balance (P-ETP) in the vegetative season (April-August) of the year preceding disease report as a predictor of the standardized record rate of the SBD
Supplementary material 4 from: Brockerhoff EG, Gresham BA, Meurisse N, Nahrung HF, Perret-Gentil A, Pugh AR, Sopow SL, Turner RM (2023) Pining away and at home: global utilisation of Pinus radiata by native and non-native insects. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 137-167. https://doi.org/10.3897/neobiota.84.95864
Percentages of species native to a region in each feeding guild, regardless of impact. Those in the "Native country: other" category are species native to other regions but not to Australia or New Zealand.
Supplementary material 6 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the total sycamore maple basal area in a radius of 50 km from the sampler as a predictor of the number of Cryptostroma corticale spores detected in aerobiological samples
Supplementary material 2 from: Colombari F, Battisti A (2023) Citizen science at school increases awareness of biological invasions and contributes to the detection of exotic ambrosia beetles. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 211-229. https://doi.org/10.3897/neobiota.84.95177
Slides of the lecture on 'Monitoring of insect species harmful to trees and forests' and link to educational videos
Supplementary material 2 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Isolates which DNA was extracted and used to confirm the specificity of the primers ccITS2F and SBD3R and probe SBD5P
Supplementary material 8 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Probability of disease report in an area of 40-km to 130-km radius from the sampler as a function of the number of detected spores per day
FIGURES 84–89 in Six genera of the subtribe Macrothripina from Southeast Asia to Taiwan (Thysanoptera, Phlaeothripidae, Idolothripinae)
FIGURES 84–89. Ethirothrips malaya sp. n., female. (84) Head & prothorax; (85) antennal segments III–VIII; (86) prosternum & mesopresternum; (87) metanotum & pelta; (88) fore tibia & fore tarsus; (89) tube.
FIGURES 80–84 in On fourteen species of Euochin Prószyński, 2018 from China (Araneae: Salticidae: Euophryini)
FIGURES 80–84. Genitalia of Euochin lingyi sp. nov.. 80–82. Left male palp of holotype, in prolateral (80), ventral (81) and retrolateral (82) view; 83–84. Epigyne of paratype, in ventral (83) and dorsal (84) view.
FIGURES 77‒84. Prostoia ozarkensis. 77 in The Nemourinae (Insecta, Nemouridae) of the eastern Nearctic
FIGURES 77‒84. Prostoia ozarkensis. 77, USA, Arkansas River, epiproct, dorsal view; 78, USA, Oklahoma, Baron Fork, epiproct, dorsal view; 79, USA, Arkansas River, epiproct, lateral view; 80, USA, Oklahoma, Baron Fork, epiproct apex, lateral view; 81, USA, Oklahoma, Baron Fork, epiproct apex, lateral view; 82, USA, Oklahoma, Baron Fork, epiproct base, caudal view; 83, USA, Illinois, Hutchins Creek, epiproct base, caudal view; 84, USA, Illinois, Hutchins Creek,, female abdominal terminalia, ventral view. c = cercus, la = lateral arm, sgp = subgenital plate, vs = ventral sclerite.
FIGURES 84–86 in Revision of the western Nearctic spider genus Cybaeina including the description of Neocybaeina gen. nov. and Rothaeina gen. nov. (Araneae: Cybaeidae: Cybaeinae)
FIGURES 84–86. Distributions of Neocybaeina gen. nov. and Rothaeina gen. nov. species (84 Neocybaeina burnetti spec. nov. and N. xantha comb. nov.; 85 Rothaeina beaudini spec. nov., R. jamesi spec. nov., R. mackinleyi spec. nov., and R. sequoia comb. nov.; 86 Rothaeina petersoni spec. nov.) AZ—Arizona, CA—California, ID—Idaho, MT—Montana, OR—Oregon, NV—Nevada, UT—Utah, WA—Washington.
FIGURES 77–84 in Redescription of the subgenus Rhithrogeniella Ulmer 1939 (Ephemeroptera, Heptageniidae, genus Ecdyonurus) based on reared specimens from India and Thailand
FIGURES 77–84. Ecdyonurus (Rhithrogeniella) ornatus, female imagines. 77–78, specimen from Agumbe (India); 79–81, specimens from Kwai-Yai (Thailand); 82–84, specimens from Pai (Thailand).
FIGURES 77–84 in Revision of Brazilian species of Aleochara Gravenhorst of the subgenus Xenochara Mulsant & Rey (Coleoptera: Staphylinidae: Aleocharinae)
FIGURES 77–84. Terminalia of Aleochara (Xenochara) lapidicola. 77) Tergum VIII, male; 78) Tergum VIII, female; 79) Sternum VIII, male; 80) Sternum VIII, female; 81) Median lobe of aedeagus, dorsal view; 82) Median lobe of aedeagus, lateral view; 83) Median lobe of aedeagus, ventral view; 84) Spermatheca. Scales: 0.6 mm (Figs.: 77–80), 0.5 mm (Figs. 81–83), 0.15 mm (Fig. 84).
FIGURE 84 in Five new species of Eiphosoma Cresson, 1865 (Ichneumonidae: Cremastinae) from Colombia, new records, and a key to Colombian species
FIGURE 84. Geographic distribution of Eiphosoma laphygmae Costa Lima, 1953. Yellow circles represent new records and red represent previous records.
FIGURE 84 in An illustrated guide to lady beetles (Coleoptera: Coccinellidae) of the Indian Subcontinent. Part 1. Tribe Coccinellini
FIGURE 84. Halyzia tschitscherini Semenow: a. head; b. abdomen, male; c–f. male genitalia: c. tegmen, lateral view; d. tegmen, ventral view; e. penis; f. penis apex; g. female genitalia; h. spermatheca (enlarged).
FIGURES 84–87 in Review of Chalcovietnamicus Marusik, 1991, with description of four new species (Araneae, Salticidae, Euophryini)
FIGURES 84–87. Chalcovietnamicus terbakar Yu, Maddison & Zhang sp. nov., male palp (84–85), epigynum (86) and vulva (87); in ventral (84, 86), retrolateral (85) and dorsal (87) view.
FIGURE 84 in Further additions to the guardstone spider fauna from China (Araneae: Phrurolithidae)
FIGURE 84. Copulatory organs of Xilithus wangi sp. nov.: A. Male left palp, ventral view; B. Same, retrolateral view; C. Same, dorsal view; D. Same, retro-dorsal view; E. Epigyne, ventral view; F. Same, dorsal view. Scale bars: 0.2 mm.
PLATE XIX. FIGURES 79–84. Habitat photos. Figs 79–82 in Integrative taxonomic revision of the Metarctia Walker, 1855 subgenus Hebena Walker, 1856, with descriptions of six new species and one new subspecies (Lepidoptera: Erebidae: Arctiinae: Syntomini)
PLATE XIX. FIGURES 79–84. Habitat photos. Figs 79–82. Habitat of Metarctia (Hebena) lateritia. 79–80. Uganda western, Bwindi Impenetrable NP, Cuckooland Lodge, 1700 m; 81. Uganda, Kibale Forest, a broad-leafed rainforest at a medium altitude; 82. Kenya, Mount Kenya (W), Naro Moru River Lodge, 1950 m, with the Mt. Kenya in the background (79–82. © R. Fiebig); 83. Habitat of Metarctia (Hebena) smithi sp.n., type locality, Zambia, Jiwundu Swamp; 84. Habitat of Metarctia (Hebena) smithi sp.n. and Metarctia (Hebena) henrardi, Zambia, near Kapishya Hot Springs (83–84. © ANHRT).
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