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Figure 1 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 1 BI phylogram of the Afro-Madagascan Pavetteae clade and two outgroup taxa using rps16, trnT-F, petD, accD-psa1, PI and ITS sequences. BPP support is indicated.

opencc-by-4.0May 2018View details →
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Figure 8 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 8 Helictosperma malacophylla: pyrene and seed. A pyrene showing four preformed germination slits, lateral view B pyrene falling apart into four valves along preformed germination slits, lateral view C seed, adaxial view, with embryo position indicated D transverse section through seed. A–D coll. ignot. 19146-SF.

opencc-by-4.0May 2018View details →
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Figure 3 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 3 Tulearia. A–D Tulearia splendida: A habit B flowers C young inflorescence showing calyces and flower buds D young fruits E–K T. capsaintemariensis: E, F habit G branching pattern H top view of flower I lateral view of flower J ovary and calyx K fruit. Photographs: P. De Block (A, B, E, F, J), S. Dessein (C, D), M. Strack Van Schijndel (G–I), I. Van der Beeten (K).

opencc-by-4.0May 2018View details →
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Figure 12 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 12 Tulearia capsaintemariensis. A, habit B adaxial view of leaf C bracteole, ovary and calyx D corolla, style, stigma and anthers E young fruit F transverse section through fruit G seed, lateral view H placenta and ovules, abaxial view I placenta and ovules, adaxial view. A, B, E, F Groeninckx et al. 309 C, D, G–I De Block et al. 2421.

opencc-by-4.0May 2018View details →
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Figure 2 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 2 Exallosperma and Helictosperma. A–C Exallosperma longiflora: A flowering branch B inflorescence C infructescence from herbarium specimen Gautier et al. 4257 D Helictosperma poissoniana, flowering branch E, F Helictosperma malacophylla: E inflorescence F detail of inflorescence. Photographs: P. De Block (A, D), S. Dessein (E, F), L. Nusbaumer (B, C, ©: Conservatoire et Jardin botaniques de la Ville de Genève).

opencc-by-4.0May 2018View details →
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Figure 7 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 7 Helictosperma poissoniana. A flowering branch B dimorphic stipules of vegetative and reproductive nodes C short-shoot bearing young infructescence D bracteole, ovary and calyx E corolla, style, stigma and anthers F fruit G placenta and ovules, abaxial view H placenta and ovules, adaxial view. A, C De Block & Rakotonasolo 797 B De Block 910 D, E Jongkind et al. 3415 F Randriamiera 8795-RN G, H Jongkind et al. 3258.

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Figure 11 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 11 Tulearia splendida. A, flowering branch B stipule C bracteole, ovary and calyx D bract E corolla, style, stigma and anthers F fruit G seed H cross-section through seed. A–E De Block et al. 542 F–H Groeninckx et al. 209.

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Figure 14 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 14 Distribution maps. A Exallosperma longiflora B Helictosperma malacophylla C H. poissoniana D Pseudocoptosperma menabense E Tulearia splendida F T. capsaintemariensis.

opencc-by-4.0May 2018View details →
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Figure 6 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713

Figure 6 Helictosperma malacophylla. A, flowering branch B fruiting branch C flower D bract, bracteole, ovary and calyx E longitudinal section through ovary and calyx F longitudinally opened corolla showing the position of stamens and style G stamens H placenta and ovules, abaxial view I placenta and ovules, adaxial view J fruit. A–C, E–G, J reproduced or adapted from Drake del Castillo (1897: Pl. 422) D De Block et al. 534 H, I De Block et al. 797.

opencc-by-4.0May 2018View details →
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Figure 5 from: Rahelivololona EM, Fischer E, Janssens SB, Razafimandimbison SG (2018) Phylogeny, infrageneric classification and species delimitation in the Malagasy Impatiens (Balsaminaceae). PhytoKeys 110: 51-67. https://doi.org/10.3897/phytokeys.110.28216

Figure 5 Maximum likelihood tree based on the combined nuclear-plastid data. Bootstrap support values and Bayesian posterior probabilities are above and below nodes, respectively.

opencc-by-4.0Nov 2018View details →
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Figure 4 from: Rahelivololona EM, Fischer E, Janssens SB, Razafimandimbison SG (2018) Phylogeny, infrageneric classification and species delimitation in the Malagasy Impatiens (Balsaminaceae). PhytoKeys 110: 51-67. https://doi.org/10.3897/phytokeys.110.28216

Figure 4 A Sclerophyllous montane cloud forest of the Marojejy National park; 1500 m B Subalpine grassland, Marojejy at ca. 2100 m. Photo: E. Fischer.

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Figure 3 from: Rahelivololona EM, Fischer E, Janssens SB, Razafimandimbison SG (2018) Phylogeny, infrageneric classification and species delimitation in the Malagasy Impatiens (Balsaminaceae). PhytoKeys 110: 51-67. https://doi.org/10.3897/phytokeys.110.28216

Figure 3 A, B Lowland rainforest of the Marojejy National park A ca. 400 m B ca. 490 m C Moist montane rainforest of the Marojejy National park at ca. 1100 m. Photo: E. Fischer.

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Figure 2 from: Rahelivololona EM, Fischer E, Janssens SB, Razafimandimbison SG (2018) Phylogeny, infrageneric classification and species delimitation in the Malagasy Impatiens (Balsaminaceae). PhytoKeys 110: 51-67. https://doi.org/10.3897/phytokeys.110.28216

Figure 2 Representatives of Impatienssubgen.Trimorphopetalum. AImpatienslutzii, Montagne d'Ambre BI.galactica, Marojejy C, DI. "capuronii", Marojejy E, FI.furcata, Marojejy G, KI.navicula, Marojejy H, LI. "humillima", Marojejy II. "hammarbyoides", Marojejy MI.elatostemmoides, Marojejy NI.sp. nov.aff.elatostemmoides 3, Montagne d'Ambre. Photos: E. Fischer.

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Figure 1 from: Rahelivololona EM, Fischer E, Janssens SB, Razafimandimbison SG (2018) Phylogeny, infrageneric classification and species delimitation in the Malagasy Impatiens (Balsaminaceae). PhytoKeys 110: 51-67. https://doi.org/10.3897/phytokeys.110.28216

Figure 1 Representatives of Impatienssubgen.Impatiens. A, BImpatiensbicaudata, Montagne d'Ambre CI.lyallii, Montagne d'Ambre D, EI.bisaccata, Montagne d'Ambre FI.max-huberi, Marojejy GI.nomenyae, Marojejy H, II.masoalensis, Marojejy KI.cf.manaharensis, Marojejy L, OI.marojejyensis, Marojejy MI.susan-nathansoniae, Marojejy NI.hendrikii, Marojejy. Photos: E. Fischer.

opencc-by-4.0Nov 2018View details →
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Figures 7- 8 from: Rachana RR, Mound LA, Rayar SG (2019) Tryphactothripini of India (Thysanoptera, Thripidae, Panchaetothripinae), with identification keys and a new record of Opimothrips. ZooKeys 884: 43-52. https://doi.org/10.3897/zookeys.884.39500

Figures 7- 8 Astrothrips species, head and pronotum 7globiceps; female from Java, compared to holotype and identified by J.S. Bhatti 8parvilimbus; female from Madras on Erythrina, identified by T.N. Ananthakrishnan. [images by Manfred Ulitzka].

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Figures 1-6 from: Rachana RR, Mound LA, Rayar SG (2019) Tryphactothripini of India (Thysanoptera, Thripidae, Panchaetothripinae), with identification keys and a new record of Opimothrips. ZooKeys 884: 43-52. https://doi.org/10.3897/zookeys.884.39500

Figures 1-6 Opimothrips tubulatus1 female 2 head and prothorax 3 antenna 4 pterothorax and female abdominal tergite I 5 female abdominal tergites IX–X 6 fore wing.

opencc-by-4.0Nov 2019View details →
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Figures 5-7 from: Lohaj R, Čeplík D, Lakota J (2013) A new species of the genus Duvalius sg. Neoduvalius from Montenegro with taxonomical remarks on the genus Duvalius (Coleoptera, Carabidae, Trechini). ZooKeys 278: 91-104. https://doi.org/10.3897/zookeys.278.4650

Figures 5-7 - Duvalius (Neoduvalius) gejzadunayi sp. n., 5 aedeagus, left lateral aspect 6 aedeagus, dorsal aspect 7 female genitalia, ventral aspect

opencc-by-4.0Mar 2013View details →
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Figures 1-4 from: Lohaj R, Čeplík D, Lakota J (2013) A new species of the genus Duvalius sg. Neoduvalius from Montenegro with taxonomical remarks on the genus Duvalius (Coleoptera, Carabidae, Trechini). ZooKeys 278: 91-104. https://doi.org/10.3897/zookeys.278.4650

Figures 1-4 - 1, 3 Duvalius (Neoduvalius) gejzadunayi sp. n., Holotype male, Duboki potok cave 2, 4 Duvalius (Neoduvalius) starivlahi Guéorguiev et al. 2000, Topotype male, Hadži Prodanova pećina cave 1, 2 habitus, dorsal view 3, 4 detail of head and pronotum.

opencc-by-4.0Mar 2013View details →
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Figures 3-5 from: Ermilov SG, Gwiazdowicz DJ (2015) Peruvian oribatid mites (Acari, Oribatida) from the German Biological Expedition, with description of a new species of the genus Pergalumna. ZooKeys 487: 87-96. https://doi.org/10.3897/zookeys.487.9335

Figures 3-5 - Pergalumna paraboliviana sp. n.: 3 rostrum, dorso-frontal view 4 dorso-lateral view of prodorsum, pteromorph and anterior part of notogaster (gnathosoma and legs not illustrated) 5 posterior view. Scale bar 100 μm.

opencc-by-4.0Mar 2015View details →
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Figure 2 from: Kainulainen K, Razafimandimbison SG (2015) Chapelieria magna, a new species of Rubiaceae from eastern Madagascar. PhytoKeys 44: 89-95. https://doi.org/10.3897/phytokeys.44.8513

Figure 2 - Chapelieria magna. A Leaf B Longitudinal section of corolla. C Stigma D Part of an inflorescence with flower buds and bracts E Longitudinal section of ovary and calyx F Fruit G Seed. Drawings from the holotype: Razafimandimbison et al. 1240, by Kent Kainulainen.

opencc-by-4.0Jan 2015View details →

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