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1,102 results for “plant diversity”

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FIGURE 13 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 13. Mines of Phyllonorycter spp. from the Russian Far East. (A–B) Ph. ringoniella, host plant Malus mandshurica; (C–D) Ph. sorbicola, Prunus padus and Prunus maackii respectively; (E) Ph. strigulatella, Alnus hirsuta; (F) Phyllonorycter sp. 1, Tilia mandshurica; (G–H) Phyllonorycter sp. 6, Acer pseudosieboldianum. Indications: (m) mine; (t) epidermal tunnel; (b) blotch. Close up: (B–C, F, H) mine. Sampling locations: (A–D, F–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016; (E) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 11–20.VII.2017.

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FIGURE 15 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 15. Similarity of gracillariid faunas of the Russian regions and Japan. Gracillariid species number is given in the corresponding bar, number of shared species is in the circles. The similarity Sørensen–Dice coefficient is given in red.

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FIGURE 12 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 12. Mines of Phyllonorycter spp. from the Russian Far East. (A) Ph. cretata, host plant Quercus mongolica; (B) Ph. ermani, B. platyphylla; (C) Ph. issikii, Tilia mandshurica; (D) Ph. japonica, Corylus mandshurica; (E) sampling location of Ph. junoniella; (F) Ph. nigristella, Quercus dentata; (G) Ph. orientalis, Acer pictum; (H) Ph. pastorella, Salix sp. Indications: (m) mine; (t) epidermal tunnel; (l) larva; (p) pupa. Close up: (B) deformation of the leaf due to mines (the view from the upper side); (C, F–H) mine, (E) the bush from that the specimens were collected. Sampling locations: (A–B, F) SO, Sakhalin Isl., Yuzhno- Sakhalinsk, Gagarin's Park, 11–20.VII.2017; (E) SO, Sakhalin Isl., Susunay mountain range, 14.VII.2017; (C–D, G–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016.

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FIGURE 8 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 8. Male genitalia of Phyllonorycter and Cameraria spp. from the Russian Far East. (A) Ph. reduncata, host plant Lonicera maackii, [23Pr-2016-male]; (B) Ph. ringoniella, Malus mandshurica, [10Prin-2016-male]; (C) Ph. similis, Quercus dentata, [8Psim-2016-male]; (D) Ph. ulmifoliella [15Pu-2016-male]; (E) Cameraria niphonica, Acer pseudosieboldianum, [1Cn-2016-male]. Sampling location: Gornotaezhnoe, Primorskii Krai, 22–26.VII.2016. Scale bars: (A–D) 200, (E) 250 µm.

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FIGURE 4 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 4. Forewing pattern of Phyllonorycter spp. from the Russian Far East. (A) Ph. caraganella, host plant Caragana fruticosa, NK- 184-16-9A; (B) Ph. cavella, Betula dahurica, 111.1; (C) Ph. cretata, Quercus mongolica, NK-85-17-4; (D) Ph. issikii, T. mandshurica, NK596; (E) Ph. japonica, Corylus mandshurica, 36.2; (F) Ph. jozanae, Crataegus sp., 44.1; (G) Ph. kisoensis, Alnus hirsuta, 45.1; (H) Ph. pastorella, Salix sp., 49.1; (I) Ph. reduncata, Lonicera maackii, 55.3; (K) Ph. ringoniella, Malus mandshurica, NK-179-16-1A; (L) Ph. similis, Quercus dentata, 42.1; (M) Ph. ulmifoliella, 37.1. Sampling locations: (A) PK, Rakovka, 27.VII.2016; (B, D–M) ibidem, Gornotaezhnoe, 16.VII.2013 (D), 22-25.VII.2016 (B, E–M); (C) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 12.VII.2017. Scale bars 1 mm.

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FIGURE 3 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 3. COI Neighbor-Joining tree of Gracillariidae species sampled in the Russian Far East. Each specimen is accompanied by its sequence number (BOLD "process ID"), species name, sampling location and host plant. Sampling locations are given between two vertical lines, i.e. |Skov.| Skovorodino; |Blag.| Blagoveshchensk; |MTS| Komarov Mountain-Taiga Station FEB RAS and the forest around; |Rakovka|, |Glukhovka| forest around the villages Rakovka and Glukhovka respectively; |Vlad.| Vladivostok; |Sikhote-Alin| Sikhote-Alin Mountains, national park "Zov tigra", |Y-S| Yuzhno-Sakhalinsk and the area around including Susunay mountain range (see Fig. 1 for details). Host plants: A. pseudosieb.—Acer pseudosieboldianum; * sampling done by sweep netting from the bush, whereas all other gracillariids were collected/ reared directly from their mines. Each leafminer species is supplied with its BIN number retrieved from BOLD; blue BINs correspond to known species, red—new BINs.

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FIGURE 1 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 1. The area of study in the Russian Far East, June–July 2010–2017. Black circles indicate cities, yellow circles with the numbers 1–12 are the sampling locations: (1) AO, Skovorodino, tree plantation nearby train station; (2) AO, Blagoveshchensk, Friendship park; (3) KK, Komsomolsk-na-Amure, tree lines along the road; (4) PK, Gornotaezhnoe, MTS; (5) ibidem, forest; (6) PK, Glukhovka, forest; (7) PK, Rakovka, forest; (8) PK, Vladivostok, suburb, tree plantation; (9) PK, Sikhote-Alin Mountains, national park "Zov tigra"; (10) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, Botanical garden FEB RAS Sakhalin Branch; (11) ibidem, Gagarin park; (12) SO, Sakhalin Isl., Susunay mountain range, pass "Verblyud". In the left corner, on the map of Russia the sampled area is shaded in gray. Regions: (ChAO) Chukotsky Autonomous Okrug, (KamK) Kamchatskii Krai, (MA) Magadanskaya Oblast, (AO) Amurskaya Oblast, (KK) Khabarovskii Krai, (JAO) Jewish Autonomous Oblast, (AO) Amurskaya Oblast, (PK) Primorskii Krai, (SO) Sakhalinskaya Oblast (includes Sakhalin Island and Kuril Islands).

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FIGURE 7 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 7. Male genitalia of Phyllonorycter spp. from the Russian Far East. (A) Phyllonorycter junoniella, genitalia slide [21-male]; (B) Ph. pastorella, host plant Salix sp., [12Pp-2016-male]; (C) Ph. populifoliella, Populus balsamifera, [NK-561- 1-male]; (D) Ph. pseudojezoniella, Acer saccharum, [20Pps-2016-male]; (E) Ph. kisoensis, Alnus hirsuta, [5Pk-2016-male]. Sampling location: (A) SO, Sakhalin Isl., 14.VII.2017; (B, D) PK, Gornotaezhnoe, MTS, 22–26.VII.2016; (C) AO, Blagoveshchensk, 27.VI.2016. Scale bars 200µm.

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FIGURE 11 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 11. Mines and leaf shelters of Gracillaria, Callisto, Parornix and Phyllonorycter spp. from the Russian Far East. (A) Gracillaria sp., host plant Syringa amurensis; (B–C) Callisto sp. on Malus sp.; (D) Parornix ermolaevi, Corylus sieboldiana; (E–F) Ph. caraganella, Caragana fruticosa; (G–H) Ph. cavella, Betula platyphylla, (H) "green island" and the mine. Indications: (m) mine; (b) blotch part of the mine; (t) epidermal tunnel; (e) exit hole; (f–f2) folded leaf margin or leaf tip (the indexes 1 and 2 indicate the order of construction appearance); (g.i.) green island region. Close up: (B, E–G) mine. Sampling locations: (A–D, G–H) PK, Gornotaezhnoe, MTS and forest, 22–27.VII.2016; (E–F) ibidem, Glukhovka, forest, 27.VII.2016.

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FIGURE 2 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 2. Sampling localities in the Russian Far East. (A–C) PK, Gornotaezhnoe, MTS: (A) European woody plant species zone, (B) Juglans mandshurica plantation, (C) East Asian woody plant species zone; (D) PK, 20 km west of MTS, artificial lake on the way to Glukhovka and Rakovka; (E–H) SO, Sakhalin Isl., Susunay mountain range: (E–G) pass "Verblud", sampling and camping area, (H) foothills of the Susunay mountain range, the Erman's birch groove. Personalities: (C) S. Gorokhova, (F) V. Sheiko, (H) N. Kirichenko (the photographs are published with the permission of SG, VS and NK). (PK) Primorskii Krai, (SO) Sakhalinskaya Oblast (includes Sakhalin Island and Kuril Islands).

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FIGURE 9 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 9. Number of gracillariid species found on various plant plants in the Russian Far East in 2010–2017. In some cases, the same gracillariid species were found on more than one plant genus (for example, Gracillaria sp. on Syringa and Fraxinus, Phyllonorycter pastorella on Salix and Populus etc.), therefore the sum of all bars is more than the total number of species identified in the study.

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FIGURE 5 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 5. Female genitalia of gracillariids sampled in the Russian Far East. (A) Micrurapteryx caraganella, host plant Caragana arborescens, Skovorodino, Amurskaya Oblast, 26.VI.2016; genitalia slide [39-female]; (B) Phyllonorycter nipponicella, Quercus mongolica, PK, Gornotaezhnoe, 23.VII.2016, [8-2016-female]. Scale bars: (A) 550, (B) 100 µm.

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FIGURE 6 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 6. Male genitalia of Caloptilia and Phyllonorycter spp. from the Russian Far East. (A) Caloptilia gloriosa, host plant Acer pseudosieboldianum, genitalia slide [13-male]; (B) Phyllonorycter cavella, Betula dahurica, [11-2016-male]; (C) Ph. japonica, Corylus mandshurica, [4-2016-male]; (D) Ph. jozanae, Crataegus sp. [14Pj-2016-male]; (E) Ph. issikii, T. mandshurica, [NK596-male]. Sampling locations: PK, Gornotaezhnoe, (A–D) 22–25.VII.2016, (E) 21.VIII.2015. Scale bars: (A) 350, (B–E) 200 µm.

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FIGURE 14 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 14. Mines, leaf shelters and pupation sites of Phyllonorycter, Chrysaster and Cameraria spp. from the Russian Far East. (A) Phyllonorycter sp. 7, host plant Ulmus glabra; (B–C) Phyllonorycter sp. 8, Juglans mandshurica; (D–E) Chrysaster hagicola, Lespedeza bicolor; (F–G) Cameraria niphonica, Acer pseudosieboldianum and A. caudatum subsp. ukurundense, respectively; (H) Phyllocnistis sp. 1, Salix sp. Indications: (m) mine; (b) blotch part of the mine; (t) epidermal tunnel; (l) larva; (p) pupation site. Close up: (C–G) mine; (H) pupation site. Sampling locations: (A) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 11–20.VII.2017; (B–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016.

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FIGURE 10 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding

FIGURE 10. Mines, leaf shelters and pupation sites of Micrurapteryx and Caloptilia spp. from the Russian Far East. (A–B) Micrurapteryx caraganella, host plant Caragana arborescens; (C) M. gradatella, Vicia sp.; (D) Caloptilia acericola, Acer pseudosieboldianum; (E) C. alni, Alnus hirsuta; (F) C. betulicola, Betula platyphylla; (G) C. heringi, A. pictum; (H) C. stigmatella, Salix sp. Indications: (m) mine; (t) epidermal tunnel; (p) pupation site; (f) folded leaf margin or leaf tip; (r1–r2) rolled leaf margin or leaf tip (the indexes 1 and 2 indicate the order of construction appearance); *mine of Diptera. Close up: (C, G, H) mine. Sampling locations: (A–C) AO, Skovorodino, 26.VI.2016; (D) PK, Gornotaezhnoe, MTS and forest, 22–27.VII.2016; (E–H) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 11–20.VII.2017.

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Fig. 2 in Pauesia species (Hymenoptera: Braconidae: Aphidiinae) attacking Eulachnini aphids (Hemiptera: Aphididae: Lachninae) on coniferous plants in Lithuania: ecological and mitochondrial COI diversity

Fig. 2 Haplotype networks of Pauesia species attacking Eulachnini aphids in Lithuania based on partial COI fragment

opennotspecifiedAug 2021View details →
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FIGURE 3 in Two new species of Eugenia (Myrtaceae) from the Cabo Frio Center of Plant Diversity, Rio de Janeiro, Brazil

FIGURE 3: Distribution map of Eugenia gastropogena Faria & Proença and Eugenia farneyi Faria & Proença.

opennotspecifiedMay 2015View details →
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FIGURE 1 in Two new species of Eugenia (Myrtaceae) from the Cabo Frio Center of Plant Diversity, Rio de Janeiro, Brazil

FIGURE 1: Eugenia gastropogena Faria & Proença. A. Flowering branch; B, C, D. Details of the inflorescence variation and flower bud; E. Ovary in longitudinal section; F. Fruiting branch. (Fárag, P.R.C. et al. 120, UB – holotype).

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FIGURE 4 in Two new species of Eugenia (Myrtaceae) from the Cabo Frio Center of Plant Diversity, Rio de Janeiro, Brazil

FIGURE 4: Eugenia farneyi Faria & Proença. A. Branch with details of the inflorescence and flower bud; B. Ovary in longitudinal section; C. Fruiting branch. (A, B from Farney, C. et al. 3823, UB – holotype; C from Farney, C. & Fernandes, D.S. 4464, UB – paratype).

opennotspecifiedMay 2015View details →
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FIGURE 11 in Plant diversity of Khuzestan and dust sources in the southwest of Iran, with a checklist of vascular plants

FIGURE 11. Selected several plants of Khuz in their habitats. a: Mandragora officinalis, a medicin species (recorded by the author for Iran); b: Heliotropium curassavicum (recorded by the author for Iran); c: Satureja khuzistanica, an endangered, endemic and medicinal species (recorded as new species by the author); d: Pluchea dioscoridis, an aromatic species (recorded by the author for Iran); e: Dionysia khuzistanica, an endangered and endemic species (recorded as new species by the author); f: Astragalus gypsocola, an endangered and endemic species; g: Echium khuzistanicum, an endangered and endemic species in its habitat in the southern part of Khuz; h: Azilia eryngioides, an endemic monotypic genus (Photos by M. Dinarvand).

opennotspecifiedMar 2020View details →

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Allen Brain Atlas

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record

OpenNeuro

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openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record