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zenodo28/100

Supplementary material 1 from: Galasso G, Domina G, Andreatta S, Argenti C, Astuti G, Bacaro G, Bacchetta G, Bagella S, Banfi E, Barberis D, Bartolucci F, Bernardo L, Bonari G, Brundu G, Buccomino G, Calvia G, Cancellieri L, Capuano A, Celesti-Grapow L, Conti F, Cuena-Lombraña A, D'Amico FS, De Fine G, de Simone L, Del Guacchio E, Emili F, Fanfarillo E, Fascetti S, Fiaschi T, Fois M, Fortini P, Gentili R, Giardini M, Hussain AN, Iamonico D, Laface VLA, Lallai A, Lazzaro L, Lecis AP, Ligato E, Loi G, Lonati M, Lozano V, Maccherini S, Mainetti A, Mascia F, Mei G, Menini F, Merli M, Montesano A, Mugnai M, Musarella CM, Nota G, Olivieri N, Passalacqua NG, Pinzani L, Pisano A, Pittarello M, Podda L, Posillipo G, Potenza G, Probo M, Prosser F, Quaglini LA, Ravetto Enri S, Rivieccio G, Roma-Marzio F, Rosati L, Selvaggi A, Soldano A, Stinca A, Tasinazzo S, Tassone S, Terzi M, Vallariello R, Vangelisti R, Verloove F, Lastrucci L (2022) Notulae to the Italian alien vascular flora: 14. Italian Botanist 14: 99-118. https://doi.org/10.3897/italianbotanist.14.97758

Supplementary data

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Supplementary material 1 from: Bartolucci F, Domina G, Adorni M, Andreatta S, Angiolini C, Bacchetta G, Banfi E, Barberis D, Bertani G, Bonari G, Buccomino G, Calvia G, Caputo P, Cavallaro V, Conti F, Cuena-Lombraña A, D'Aleo F, D'Amico FS, De Fine G, Del Guacchio E, De Matteis Tortora M, De Santis E, Fois M, Di Pietro F, Di Pietro R, Fanfarillo E, Fiaschi T, Forte L, Galasso G, Laface VLA, Lallai A, Lonati M, Longo C, Longo D, Magrini M, Mei G, Menghi L, Menini F, Morabito A, Musarella CM, Nota G, Palermo DC, Passalacqua NG, Pazienza G, Peruzzi L, Pierini B, Pinzani L, Pisani G, Polverelli L, Prosser F, Salerno G, Salerno P, Santi F, Selvaggi A, Spampinato G, Stinca A, Terzi M, Valentini F, Vitale S, Wagensommer RP, Lastrucci L (2022) Notulae to the Italian native vascular flora: 14. Italian Botanist 14: 119-131. https://doi.org/10.3897/italianbotanist.14.97813

Supplementary data

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Fig. ¹. 7KRWWHD EHXQJRQJWDQRHK MustaqimNJ ANJ Living plantNJ BNJ Leaf, adaxial sideNJ CNJ Leaf, abaxial sideNJ DNJ InflorescencesNJ ENJ Flower, lateral viewNJ FNJ Flower, top viewNJ GNJ Perianth, outer surfaceNJ HNJ Perianth, inner surfaceNJ INJ StamensNJ JNJ Style and stigmaNJ KNJ Immature capsuleNJ Scale bars: B-C, F = 1 cm, D-E = 1 cm, G = 5 mm, H-J = 1 mm, K = 5 mmNJ Photographed by Wendy ANJ Mustaqim in Thottea beungongtanoeh (Aristolochiaceae), a new species Irom Aceh, northern Sumatra

Fig. ¹. 7KRWWHD EHXQJRQJWDQRHK MustaqimNJ ANJ Living plantNJ BNJ Leaf, adaxial sideNJ CNJ Leaf, abaxial sideNJ DNJ InflorescencesNJ ENJ Flower, lateral viewNJ FNJ Flower, top viewNJ GNJ Perianth, outer surfaceNJ HNJ Perianth, inner surfaceNJ INJ StamensNJ JNJ Style and stigmaNJ KNJ Immature capsuleNJ Scale bars: B-C, F = 1 cm, D-E = 1 cm, G = 5 mm, H-J = 1 mm, K = 5 mmNJ Photographed by Wendy ANJ Mustaqim

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Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms

Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h).

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Text-fig. 16. Scanning electron microscope (SEM) images of "Stamen fragments with in situ Clavatipollenites- or Asteropollis-type pollen" (sp. 1: a–c; sp. 2: d–f; sp. 3: g–i); Catefica locality, Portugal. a) Stamen fragment showing pollen sacs; b) Distal view of pollen grain from (a) showing semitectate-reticulate tectum; c) Detail of pollen wall showing the semitectate-reticulate tectum and long, scattered, columellae supporting muri with fine pits and rounded supratectal ornamentation; note orbiculae with a finely spiny surface (arrows); d) Stamen showing very short filament, lateral pollen sacs and short apical extension of the narrow connective; e) Folded pollen grain from (d) showing semitectate-reticulate tectum; f) Detail of pollen wall from (d) showing the semitectatereticulate tectum and muri with fine rounded ornamentation; g) Stamen fragment; h, i) Detail of pollen grains from (g) showing the semitectate-reticulate tectum with smooth muri, long scattered columellae and tiny scattered orbicules (arrow). Specimens, Catefica 50-S170395 (a–c), Catefica 49-S172561 (d–f), Catefica 50-S170390 (g–i). Scale bars = 600 Μm (a, d, g), 6 Μm (b, e, h), 1.5 Μm (c, f, i). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms

Text-fig. 16. Scanning electron microscope (SEM) images of "Stamen fragments with in situ Clavatipollenites- or Asteropollis-type pollen" (sp. 1: a–c; sp. 2: d–f; sp. 3: g–i); Catefica locality, Portugal. a) Stamen fragment showing pollen sacs; b) Distal view of pollen grain from (a) showing semitectate-reticulate tectum; c) Detail of pollen wall showing the semitectate-reticulate tectum and long, scattered, columellae supporting muri with fine pits and rounded supratectal ornamentation; note orbiculae with a finely spiny surface (arrows); d) Stamen showing very short filament, lateral pollen sacs and short apical extension of the narrow connective; e) Folded pollen grain from (d) showing semitectate-reticulate tectum; f) Detail of pollen wall from (d) showing the semitectatereticulate tectum and muri with fine rounded ornamentation; g) Stamen fragment; h, i) Detail of pollen grains from (g) showing the semitectate-reticulate tectum with smooth muri, long scattered columellae and tiny scattered orbicules (arrow). Specimens, Catefica 50-S170395 (a–c), Catefica 49-S172561 (d–f), Catefica 50-S170390 (g–i). Scale bars = 600 Μm (a, d, g), 6 Μm (b, e, h), 1.5 Μm (c, f, i).

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Text-fig. 4. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of seeds of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a–d) Volume renderings of abraded seeds in ventral (a), lateral (b, d) and apical (c) views showing the slightly protruding chalaza (arrows) and dense longitudinal grooves with shallow pits in the surface of the endotesta; e) Transverse section of seed (orthoslice xy0665) showing the irregular grooved surface of the endotesta (oi-en) and the tegmen comprised of two layers of thick-walled cells that surround the cells of the prominent endothelium (asterisk); f) Longitudinal section (orthoslice xz1195) through seed showing the thin-walled endothelium cells (asterisk) surrounded by the thicker cells of the outer tegmen and endotesta; g) Longitudinal section (orthoslice yz0727) through seed showing outlines of angular crystals evenly distributed in cells of the endotesta (oi-en); note the outer epidermis of the tegmen (ii-o) composed of thick-walled cells; h) Longitudinal section (orthoslice xz0940) of seed showing details of the chalazal region with course of the vascular bundle (vb), cells of the prominent endothelium (asterisk), crystalliferous endotesta of the outer integument (oi-en) and the distinct thick walled cells of the outer cells of the tegmen (ii-o); i) Longitudinal and tangential section (orthoslice yz0542) through the endotesta (oi-en) showing the outlines of densely spaced crystals. Specimens, Catefica 242-S175178 (a–c, e–h), Catefica 49-S175179 (d, i). Scale bars = 300 Μm (a–d), 100 Μm (e, f, h, i), 50 Μm (g). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms

Text-fig. 4. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of seeds of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a–d) Volume renderings of abraded seeds in ventral (a), lateral (b, d) and apical (c) views showing the slightly protruding chalaza (arrows) and dense longitudinal grooves with shallow pits in the surface of the endotesta; e) Transverse section of seed (orthoslice xy0665) showing the irregular grooved surface of the endotesta (oi-en) and the tegmen comprised of two layers of thick-walled cells that surround the cells of the prominent endothelium (asterisk); f) Longitudinal section (orthoslice xz1195) through seed showing the thin-walled endothelium cells (asterisk) surrounded by the thicker cells of the outer tegmen and endotesta; g) Longitudinal section (orthoslice yz0727) through seed showing outlines of angular crystals evenly distributed in cells of the endotesta (oi-en); note the outer epidermis of the tegmen (ii-o) composed of thick-walled cells; h) Longitudinal section (orthoslice xz0940) of seed showing details of the chalazal region with course of the vascular bundle (vb), cells of the prominent endothelium (asterisk), crystalliferous endotesta of the outer integument (oi-en) and the distinct thick walled cells of the outer cells of the tegmen (ii-o); i) Longitudinal and tangential section (orthoslice yz0542) through the endotesta (oi-en) showing the outlines of densely spaced crystals. Specimens, Catefica 242-S175178 (a–c, e–h), Catefica 49-S175179 (d, i). Scale bars = 300 Μm (a–d), 100 Μm (e, f, h, i), 50 Μm (g).

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Text-fig. 13. Ammonoids Branneroceras sp. A (a–u) and Br. sp. B (v–z) from the Mospyne Formation. a–c: Specimen IGSU-4/315, dorsal view (a), lateral view (b), ventral view (c). d, e: Specimen IGSU-4/338, lateral view (d), ventral view (e). f: Specimen IGSU- 4/669, lateral view. g, h: Specimen IGSU-4/315a, lateral view (g), ventral view (h). i, j: Specimen IGSU-4/609, lateral view (i), ventral view (j). k, l: Specimen IGSU-4/350, lateral view (k), ventral view (l). m: Specimen IGSU-4/350a, lateral view. n, o: Specimen IGSU-4/725, lateral view (n), ventral view (o). p: Specimen IGSU-4/338a, lateral view of the juvenile conch. q: Fragment of the suture line of specimen IGSU-4/725 (at wh = 6 mm). r: Specimen IGSU-4/338, reticulate ornamentation of the ventrolateral shoulder of conch. s: Specimen IGSU-4/503, lateral view. t: Specimen IGSU-4/710a, lateral view. u: Specimen IGSU-4/5180, lateral view of early whorls. v, w: Specimen IGSU-4/626, lateral view (v), ventral view (w). x, y: Specimen IGSU-4/3984a, lateral view (x), ventral view (y). z: Specimen IGSU-4/626а, lateral view of early whorls. Scale bars 5 mm (p–r, u, z) and 10 mm (a–o, s, t, v–y). in Late Bashkirian Ammonoids From The Mospyne Formation Of The Donets Basin, Ukraine

Text-fig. 13. Ammonoids Branneroceras sp. A (a–u) and Br. sp. B (v–z) from the Mospyne Formation. a–c: Specimen IGSU-4/315, dorsal view (a), lateral view (b), ventral view (c). d, e: Specimen IGSU-4/338, lateral view (d), ventral view (e). f: Specimen IGSU- 4/669, lateral view. g, h: Specimen IGSU-4/315a, lateral view (g), ventral view (h). i, j: Specimen IGSU-4/609, lateral view (i), ventral view (j). k, l: Specimen IGSU-4/350, lateral view (k), ventral view (l). m: Specimen IGSU-4/350a, lateral view. n, o: Specimen IGSU-4/725, lateral view (n), ventral view (o). p: Specimen IGSU-4/338a, lateral view of the juvenile conch. q: Fragment of the suture line of specimen IGSU-4/725 (at wh = 6 mm). r: Specimen IGSU-4/338, reticulate ornamentation of the ventrolateral shoulder of conch. s: Specimen IGSU-4/503, lateral view. t: Specimen IGSU-4/710a, lateral view. u: Specimen IGSU-4/5180, lateral view of early whorls. v, w: Specimen IGSU-4/626, lateral view (v), ventral view (w). x, y: Specimen IGSU-4/3984a, lateral view (x), ventral view (y). z: Specimen IGSU-4/626а, lateral view of early whorls. Scale bars 5 mm (p–r, u, z) and 10 mm (a–o, s, t, v–y).

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Supplementary material 1 from: Roques A, Ren L, Rassati D, Shi J, Akulov E, Audsley N, Auger-Rozenberg M-A, Avtzis D, Battisti A, Bellanger R, Bernard A, Bernadinelli I, Branco M, Cavaletto G, Cocquempot C, Contarini M, Courtial B, Courtin C, Denux O, Dvořák M, Fan J-t, Feddern N, Francese J, Franzen EKL, Garcia A, Georgiev G, Georgieva M, Giarruzzo F, Gossner M, Gross L, Guarneri D, Hoch G, Hölling D, Jonsell M, Kirichenko N, Loomans A, Luo Y-q, McCullough D, Maddox C, Magnoux E, Marchioro M, Martinek P, Mas H, Mériguet B, Pan Y-z, Phélut R, Pineau P, Ray AM, Roques O, Ruiz M-C, Sarto i Monteys V, Speranza S, Sun J-h, Sweeney JD, Touroult J, Valladares L, Veillat L, Yuan Y, Zalucki MP, Zou Y, Žunič-Kosi A, Hanks LM, Millar JG (2023) Worldwide tests of generic attractants, a promising tool for early detection of non-native cerambycid species. 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: 169-209. https://doi.org/10.3897/neobiota.84.91096

Total trapping network

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Supplementary material 1 from: Ruzzier E, Haack RA, Curletti G, Roques A, Volkovitsh MG, Battisti A (2023) Jewels on the go: exotic buprestids around the world (Coleoptera, Buprestidae). 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: 107-135. https://doi.org/10.3897/neobiota.84.90829

Systematic list of all ColeopteraBuprestidae introduced around the world between 1850 and 2020

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Supplementary material 1 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

Records of SBD in France and Switzerland from 1990 to 2021 (red dots)

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Supplementary material 1 from: Galasso G, Domina G, Argenti C, Bajona E, Banfi E, Barberis D, Barone G, Bartolucci F, Biscotti N, Bonali F, Bonifazio C, Bonsanto D, Buldrini F, Cannucci S, Cozzolino A, De Natale A, Del Guacchio E, Di Gristina E, Fiaschi T, Lallai A, Lonati M, Lucchese F, Lupoletti J, Marchi N, Motti R, Nota G, Pica A, Pittarello M, Potenza G, Ratini G, Rota F, Santi F, Santini C, Sarigu M, Selvaggi A, Simonazzi M, Tardella FM, Tripi S, Vetromile R, Lastrucci L (2023) Notulae to the Italian alien vascular flora: 15. Italian Botanist 15: 77-89. https://doi.org/10.3897/italianbotanist.15.105794

Categories concerning the occurrence status of taxa

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Supplementary material 1 from: Bartolucci F, Domina G, Adorni M, Bacchetta G, Bajona E, Banfi E, Barbadoro F, Biscotti N, Bonsanto D, Conti F, Da Pozzo M, Dagnino D, De Fine G, Del Guacchio E, Forte L, Di Gristina E, Galasso G, Ghillani L, Gottschlich G, Gubellini L, Laface VLA, Lasen C, Lonati M, Mainetti A, Mascia F, Mazzacuva G, Musarella CM, Orsenigo S, Passalacqua NG, Pazienza G, Pinzani L, Rodi ES, Santi F, Sáez L, Selvaggi A, Tomaselli V, Torino L, Zidorn C, Lastrucci L (2023) Notulae to the Italian native vascular flora: 15. Italian Botanist 15: 91-109. https://doi.org/10.3897/italianbotanist.15.105796

Supplementary data

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Supplementary material 2 from: Mas H, Santoiemma G, Lencina JL, Gallego D, Pérez-Laorga E, Ruzzier E, Rassati D (2023) Investigating beetle communities in and around entry points can improve surveillance at national and international scale. NeoBiota 85: 145-165. https://doi.org/10.3897/neobiota.85.103904

List of beetle species trapped from 2017 to 2021

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Supplementary material 1 from: Seropian A, Arsenashvili E, Bulbulashvili N, Shubashishvili A, Iankoshvili G, Todua M, Ananiashvili A, Japarashvili S, Chkhartisvhili T, Memishishi A, Balkhamishvili S, Chitadze B, Karalashvili E, Mumladze L, Hein N, Rulik B (2023) Into the unknown: the first barcode-assisted checklist of Psocoptera (Insecta, Psocodea) of Georgia with a census on country species richness. ZooKeys 1168: 77-105. https://doi.org/10.3897/zookeys.1168.103666

Details for sampling locations

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Fig. 50. Begonia joshii Moonlight. A. Habit. B. Leaf, adaxial surface. C. Leaf, abaxial surface. D. Inflorescence. E. Staminate flower, front view. F. Staminate flower, side view. G in The genus Begonia (Begoniaceae) in Peru

Fig. 50. Begonia joshii Moonlight. A. Habit. B. Leaf, adaxial surface. C. Leaf, abaxial surface. D. Inflorescence. E. Staminate flower, front view. F. Staminate flower, side view. G. Smallest tepal of staminate flower. H. Largest tepal of staminate flower. I. Androecium, side view. J. Pistillate flower, front view. K. Pistillate flower, side view. L. Cross section of ovary. M. Smallest tepal of pistillate flower. N. Largest tepal of pistillate flower. O. Pistils, side view. All photographs taken by D.A. Purvis in the living collections of the Royal Botanic Garden Edinburgh (Accession 20180923, grown from seeds collected as part of P.W. Moonlight 1253). Reproduced from Moonlight et al. (2020), with the permission of Edinburgh Journal of Botany.

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Fig. 33. Begonia obtecticaulis Irmsch. A. Habit. B. Leaf, abaxial surface. C. Leaf, adaxial surface. D. Stipule. E. Inflorescence. F. Bract. G. Pistillate flower, side view. H. Pistillate flower, front view. I in The genus Begonia (Begoniaceae) in Peru

Fig. 33. Begonia obtecticaulis Irmsch. A. Habit. B. Leaf, abaxial surface. C. Leaf, adaxial surface. D. Stipule. E. Inflorescence. F. Bract. G. Pistillate flower, side view. H. Pistillate flower, front view. I. Cross section of ovary. J. Largest tepal of the pistillate flower. K. Smallest tepal of the pistillate flower. L. Pistils, side view. M. Pistils, front view. N. Staminate flower, side view. O. Staminate flower, front view. P. Androecium, side view. All photographs taken by D.A. Purvis in the living collections of the Royal Botanic Garden Edinburgh (Accession 20160137a, grown from seeds collected as part of P.W. Moonlight & A. Daza 209).

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Supplementary material 2 from: Neal L, Abrahams E, Wiklund H, Rabone M, Bribiesca-Contreras G, Stewart ECD, Dahlgren TG, Glover AG (2023) Taxonomy, phylogeny, and biodiversity of Lumbrineridae (Annelida, Polychaeta) from the Central Pacific Clarion-Clipperton Zone. ZooKeys 1172: 61-100. https://doi.org/10.3897/zookeys.1172.100483

DarwinCore database containing taxonomic designation and collection details

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Supplementary material 1 from: Neal L, Abrahams E, Wiklund H, Rabone M, Bribiesca-Contreras G, Stewart ECD, Dahlgren TG, Glover AG (2023) Taxonomy, phylogeny, and biodiversity of Lumbrineridae (Annelida, Polychaeta) from the Central Pacific Clarion-Clipperton Zone. ZooKeys 1172: 61-100. https://doi.org/10.3897/zookeys.1172.100483

GenBank sequences

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Supplementary material 3 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989

List of collected specimens (*) from Levanzo Insland and/or taxa quoted in the text

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Supplementary material 5 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989

Taxa with authors' names listed in Table 4

opencc-zeroAug 2023View details →

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allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

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