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Figures 26 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figures 26 to 31. Bactrocera umbrosa (26), B. penefurva (27), B. neoxanthodes (28), B. xanthodes (29), B. decipiens (30), B. atrisetosa (31). All photos by Steve Wilson, Queensland Museum.
Figure 1 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figure 1. Map of the Pacific Island countries and territories, with area covered by this publication enclosed within the dotted line (courtesy from the Secretariat of the Pacific Community).
Figures 32 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figures 32 to 37. B. strigifinis (32), B. triangularis (33), B. chorista (34), B. cucurbitae (35), Dacus axanus (36), D. solomonensis (37). All photos by Steve Wilson, Queensland Museum.
Figures 20 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figures 20 to 25. B. passiflorae (20), B. psidii (21), B. tinomiscii (22), B. trilineola (23), B. trivialis (24), and B. tryoni (25). All photos by Steve Wilson, Queensland Museum.
Figures 14 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figures 14 to 19. Bactrocera melanotus (14), B. moluccensis (15), B. musae (16), B. obliqua (17), B. papayae (18), B. paramusae (19). Photos by Steve Wilson, Queensland Museum, except for B. melanotus (Gerald McCormak).
Figures 8 in Host Plant Records for Fruit Flies (Diptera: Tephritidae: Dacini) in the Pacific Islands
Figures 8 to 13. B. dapsiles (8), B. enochra (9), B. facialis (10), B. frauenfeldi (11), B. kirki (12), and B. lineata (13). All photos by Steve Wilson, Queensland Museum.
Jumping to new hosts: the diversification of flea beetles (Coleoptera: Chrysomelidae: Alticini) in the context of their host plant associations
<p><span>Flea beetles (Alticini) represent one of the most diverse groups within the family Chrysomelidae and are associated with more than 100 different plant families. Conspicuously, only 10 genera account for about a quarter of flea beetle diversity, whereas about 380 genera each comprise less than ten species, indicating different rates of diversification within the Alticini. Here, we reconstructed the phylogenetic relationships of 608 species in 101 Alticini genera using mitogenomes and cytochrome oxidase I, and applied several frameworks of clade-specific diversification rate analyses. Increased diversification rates were consistently detected in the cosmopolitan genera <em>Altica</em> and <em>Longitarsus</em>, the Palearctic genus <em>Phyllotreta</em>, and in neotropical taxa of the subtribe Oedionychina. In addition, we tested whether the evolution of specialized interactions with plants of the order Brassicales influenced the diversification of <em>Phyllotreta</em> and <em>Psylliodes</em> flea beetles. Specialization on Brassicales was only associated with increased diversification rates in <em>Phyllotreta</em> but not in <em>Psylliodes</em>. Our results indicate that host associations per se do not explain different diversification rates and lay the groundwork for investigating the evolutionary drivers of rapid radiations in Alticini.</span></p>
Fig. 12 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 12. Habitat of Orinda (Scapulorinda) scapularis (Jacobi, 1928), Lake Eacham car park, 6 May 2022.
Fig. 10 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 10. Habitat and host plant of Orinda (Montorinda) montana sp. nov., Mount Walsh National Park, 14 Dec. 2019. A. Mount Walsh as seen from the car park. B. Landscape on the top of Mount Walsh with shrubs growing between the rocks. C. Host plant, Grevillea whiteana Mc Gill. (Proteaceae). D–E. Host plant, G. whiteana, detail.
Fig. 9 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 9. Orinda (Montorinda) montana sp. nov., Ô, holotype (QM), terminalia. A–D. Pygofer, anal tube and gonostyli. A. Left lateral view. B. Left posterolateral view. C. Posterior view. D. Dorsal view. E–L. Aedeagus. E. Left lateral view. F. Posterior view. G. Left laterodorsal view. H. Left lateroventral view. I. Dorsal view. J. Anterodorsal view. K. Aedeagus posteroventral view. L. Ventral view. Abbreviations: see Material and methods.
Fig. 8 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 8. Orinda (Montorinda) montana sp. nov., ♀, paratype (QM). A. Habitus, dorsal view. B. Habitus, ventral view. C. Habitus, lateral view. D. Posterior wing. E. Habitus, anterolateral view. F. Habitus, perpendicular view of frons. G. Left posterior leg, apical half of tibia and tarsus, ventral view.
Fig. 1 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 1. Orinda (Montorinda) eungellana sp. nov., Ô, holotype (QM). A. Habitus, dorsal view. B. Habitus, ventral view. C. Habitus, lateral view. D. Posterior wing. E. Habitus, anterolateral view. F. Habitus, perpendicular view of frons. G. Left posterior leg, apical half of tibia and tarsus, ventral view.
Fig. 4 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 4. Orinda (Montorinda) spp., adeagus of holotypes. A–B. O. (Montorinda) eungellana sp. nov. A. Left lateral view. B. Posterior view. C–D. O. (Montorinda) montana sp. nov. C. Left lateral view. D. Posterior view.
Fig. 3 in The Australian issid planthopper genus Orinda Kirkaldy, 1907: New subgenera, new species, host plant and identification key (Hemiptera: Fulgoromorpha: Issidae)
Fig. 3. Orinda (Montorinda) eungellana sp. nov., Ô, holotype (QM), terminalia. A–D. Pygofer, anal tube and gonostyli. A. Left lateral view. B. Left posterolateral view. C. Posterior view. D. Dorsal view. E–L. Aedeagus. E. Left lateral view. F. Posterior view. G. Left laterodorsal view. H. Left lateroventral view. I. Dorsal view. J. Anterodorsal view. K. Posteroventral view. L. Ventral view. Abbreviations: see Material and methods.
Data from: Host plant phenology drives risky larval dispersal in an outbreaking insect defoliator
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Data from: Fungal symbionts generate water-saver and water-spender plant drought strategies via diverse effects on host gene expression
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Data from: Virus infection and host plant suitability affect feeding behaviors of cannabis aphid (Hemiptera: Aphididae), a newly described vector of potato virus Y
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Data from: Speciation in Nearctic oak gall wasps is frequently correlated with changes in host plant, host organ, or both
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Novel host plant unmasks heritable variation in plant preference within an insect population
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Metadata from: Rhizosphere bacteria and fungi are differentially structured by host plants, soil mineralogy and ectomycorrhizal communities in the Alaskan tundra
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