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Supplementary material 4 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Table S4
Supplementary material 2 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Table S2
Figure 4 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Figure 4 Ecological indicators of fish species richness (S), Shannon-Wiener diversity (H'), and Pielou evenness (J') by transect. The inferior and superior sides of each blue rectangle represent the first and third quartiles (P25 and P75), respectively, and the median is represented by the horizontal black line. The points indicate the values of each data point, while the line surrounding each box plot shows the probability density.
Figure 3 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Figure 3 Ecological indicators of invertebrate species richness (S), Shannon-Wiener diversity (H'), and Pielou evenness (J') by transect. The inferior and superior sides of each blue rectangle represent the first and third quartiles (P25 and P75), respectively, and the median is represented by the horizontal black line. The points indicate the values of each data point, while the line surrounding each box plot shows the probability density.
Figure 2 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Figure 2 Total abundance and number of a invertebrate and b fish species observed per year in the Island San Pedro Mártir Biosphere Reserve (ISPMBR) in the Gulf of California, Mexico.
Figure 1 from: Amador-Castro IG, Fernández-Rivera Melo FJ, Torre J (2021) Marine diversity in the biosphere reserve of the most oceanic island in the Gulf of California: San Pedro Mártir. ZooKeys 1062: 177-201. https://doi.org/10.3897/zookeys.1062.67964
Figure 1 Left panel: Map of the Gulf of California and surrounding areas. The Midriff Islands region (MIR, dotted line) includes the a Bahía de los Ángeles, Canales de Ballenas y Salsipuedes Biosphere Reserve; b Archipiélago de San Lorenzo National Park; and c island San Pedro Mártir Biosphere Reserve (ISPMBR), whereas d Bahía de Loreto National Park is located to the south of the MIR. Right panel: The limits of the ISPMBR, including Island San Pedro Mártir (shaded region) and the monitoring sites (1–6) of this study. 1 Punta Rabijunco 2 Cueva de la Reserva and 3 Los Morritos are located within the core, no-take zone (dashed region) of the ISPMBR, whereas 4 Cueva del Biólogo 5 Barra Baya 6 La Ventana and 7 Arroyo del Cartelón are located within the buffer zone.
Figure 2 from: Wagner W, Lorence D (2011) A nomenclator of Pacific oceanic island Phyllanthus (Phyllanthaceae), including Glochidion. PhytoKeys 4: 67-94. https://doi.org/10.3897/phytokeys.4.1581
Figure 2 - Phyllanthus marchionicus (F. Br.) W. L. Wagner & Lorence. Branch with dehisced fruit showing red arillate seeds, with trunk in background. Field image by K. R. Wood: Marquesas Islands. Ua Huka, Haahue, northwestern coastal valley,Wood 10765 (PTBG, US).
Figure 1 from: Wagner W, Lorence D (2011) A nomenclator of Pacific oceanic island Phyllanthus (Phyllanthaceae), including Glochidion. PhytoKeys 4: 67-94. https://doi.org/10.3897/phytokeys.4.1581
Figure 1 - Phyllanthus hivaoaense (J. Florence) W. L. Wagner & Lorence. A branch B abaxial leaf surface C leaf axil showing stipules D female flowers E female flower close-up F–G calyx lobes H longitudinal view of female flower I capsule. A–I drawn from: Marquesas Islands. Tahuata: Haaoiputeomo, summit ridge, 823-951 m, Wood et al. 6522(BISH, DAV, K, MO, P, PAP, PTBG, US).
Figures 57-63 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 57-63 - Streptaxidae from Pemba. 57–58 "Gulella" (Aenigmigulella) aenigmatica 59 "Gulella" (Aenigmigulella) aenigmatica, juvenile 60 "Gulella" radius 61 "Gulella" radius, juvenile 62 Gulella gwendolinae (resembling var. scissidens) 63 Gulella planidens.
Figures 25-32 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 25-32 - Cyclophoridae and Stylommatophora from Pemba. 25 Cyathopoma pembense sp. n., paratype, periostracal hairs and protoconch of 26 Cyathopoma pembense sp. n., protoconch of paratype with periostracal fringe 27 Cyathopoma pembense sp. n., paratype, periostracal fringe 28 Rhachistia braunsi 29 Gittenedouardia conulina 30 Curvella subvirescens 31 Striosubulina striatella 32 Pseudopeas igembiense.
Figures 33-56 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 33-56 - Stylommatophora from Pemba (except where noted). 33–35 Tayloria shimbiense 36–38 Sitala jenynsi (Marafa, near Malindi, Kenya) 39–41 Thapsia insulsa 42–44 Kaliella barrakporensis (Mt. Elgon NP, Kenya) 45–47 Afroguppya quadrisculpta (Udzungwa Mountains NP, Tanzania) 48–50 Afropunctum seminium 51–53 Microcystina minima 54–56 Gonaxis denticulatus.
Figures 13-24 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 13-24 - Cyclophoridae from Pemba. 13–15 Cyathopoma azaniense 16–18 Cyathopoma pembense sp. n., live-collected holotype 19–21 Cyathopoma pembense sp. n., paratype (live-collected specimen with periostracal fringe) 22–24 Cyathopoma pembense, sp. n., paratype, dead-collected specimen without periostracum.
Figures 2-12 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 2-12 - Living animals of selected species from Pemba (not to scale). 2 "Assiminea" aurifera 3 Tropidophora zanguebarica 4 Subulona ordinaria 5 Gonaxis denticulatus 6 Gulella planidens 7 Tayloria shimbiensis 8 Edentulina obesa 9 Trochonanina mozambicensis 10 Pembatoxon insulare 11 "Dendrolimax" vangoethemi (Paratype 2) 12 Dendrolimax vangoethemi (Paratype 1).
Figure 1 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figure 1 - A Pemba and the surrounding area. Contours: 200m and 1000m (above sea level); 200m (below sea level). The land below 400m, including the islands, roughly corresponds to the Zanzibar-Inhambane vegetation mosaic of White (1983) in which coastal forest fragments are scattered. B sites surveyed on Pemba in 2009, numbered as in Table 1, with forest reserves (shaded areas) and large towns marked.
Figures 64-75 from: Rowson B, Warren B, Ngereza C (2010) Terrestrial molluscs of Pemba Island, Zanzibar, Tanzania, and its status as an "oceanic" island. ZooKeys 70: 1-39. https://doi.org/10.3897/zookeys.70.762
Figures 64-75 - "Dendrolimax" vangoethemi sp. n. from Pemba. 64–68: Radula of holotype: 64 marginal teeth 65 lateral teeth 66 central teeth including median tooth (M) 67 whole radular row 68 whole radula. 69–71 genitalia of Paratype 2: 69 genitalia 70 free oviduct and sheath 71 penis and sheath; 72–73 shell of holotype: 74 jaw of holotype 75 tail of Paratype 2 in 80% ethanol. Abbreviations: ag albumen gland at atrium bc bursa copulatrix ca caudal appendage ep epiphallus ff foot fringe fl flagellum fo free oviduct ke keel M median radular tooth ot ovotestis pe penis pr penial retractor sh sheath vd vas deferens vg vagina.
Figure 4 from: De Grave S, Anker A (2012) Description of Alpheus cedrici sp. n., a strikingly coloured snapping shrimp (Crustacea, Decapoda, Alpheidae) from Ascension Island, central Atlantic Ocean. ZooKeys 183: 1-15. https://doi.org/10.3897/zookeys.183.3073
Figure 4 - Colour patterns of some species of the Alpheus macrocheles (Hailstone, 1835) complex. A Alpheus macrocheles from Cadaques, Mediterranean coast of Spain B Alpheus macrocheles from Madeira C Alpheus amblyonyx Chace, 1972 from Guadeloupe D Alpheus amblyonyx from Isla Grande, Panama E Alpheus bellimanus Lockington, 1877 from Santa Barbara, California F Alpheus bellimanus from Galapagos G Alpheus sp. ? rectus Kim & Abele, 1988, from the Gulf of California. Photographic credits: A, Josep Lluis Peralta; B, Peter Wirtz; C, Frédéric Fasquel; D, Arthur Anker; E, Gregory Jensen; F, Todd Zimmerman (courtesy of Cleveland Hickman); G, Alex Kerstitch (from Kerstitch 1988, courtesy of A. Kerstitch).
Figure 1 from: De Grave S, Anker A (2012) Description of Alpheus cedrici sp. n., a strikingly coloured snapping shrimp (Crustacea, Decapoda, Alpheidae) from Ascension Island, central Atlantic Ocean. ZooKeys 183: 1-15. https://doi.org/10.3897/zookeys.183.3073
Figure 1 - Alpheus cedrici sp. n. A–M holotype, male from Ascension Island (OUMNH.ZC. 2008-11-0017); N paratype, female, same locality (OUMNH.ZC. 2008-11-0018). A frontal region, dorsal B anterior carapace, lateral C tooth of ventromesial carina of first article of antennular peduncle, lateral D third maxilliped, lateral E second pereiopod, lateral F third pereiopod, lateral G fifth pereiopod, lateral H second pleopod, lateral I same, appendix masculina and appendix interna, mesial J same, detail of spiniform setae on protopod, lateral K third pleopod, detail of spiniform setae on protopod, mesial L uropod, dorsal M telson, dorsal N anterior carapace, dorsal.
Figure 2 from: De Grave S, Anker A (2012) Description of Alpheus cedrici sp. n., a strikingly coloured snapping shrimp (Crustacea, Decapoda, Alpheidae) from Ascension Island, central Atlantic Ocean. ZooKeys 183: 1-15. https://doi.org/10.3897/zookeys.183.3073
Figure 2 - Alpheus cedrici sp. n. Holotype, male from Ascension Island (OUMNH.ZC. 2008-11-0017). A minor (right) cheliped, lateral B minor (right) chela and carpus, mesial C same, distal palm and fingers, lateral, setae omitted D major (left) cheliped, lateral E major (right) cheliped, mesial F same, distal palm and fingers, lateral, setae omitted.
Figure 3 from: De Grave S, Anker A (2012) Description of Alpheus cedrici sp. n., a strikingly coloured snapping shrimp (Crustacea, Decapoda, Alpheidae) from Ascension Island, central Atlantic Ocean. ZooKeys 183: 1-15. https://doi.org/10.3897/zookeys.183.3073
Figure 3 - Alpheus cedrici sp. n. Holotype, male from Ascension Island (OUMNH.ZC. 2008-11-0017). A dorsal view B lateral view (photographs by S. De Grave).
Fig. 7 in Long distance dispersal and pseudo-cryptic species in Gastrotricha: first description of a new species (Chaetonotida, Chaetonotidae, Polymerurus) from an oceanic island with volcanic rocks
Fig. 7. Scanning electron microscopy. Polymerurus insularis sp. nov. A–B, D–E. Paratype (ZUEC GCH 59). C. Paratype (ZUEC GCH 60). A. Dorsal view of the body. B. Dorsolateral view of the head, showing the cephalion and its lateral projections. C. Lateral view of the head, highlighting the lateral pleurae. D–E. Dorsal trunk view, highlighting scale Type 1. Abbreviations: ce = cephalion; fr = furcal rami; lc = locomotory cilia; lce = lateral cephalic expansions; pl = pleurae; sc-1 = Type 1 scales. Scale bars: A = 40 µm; B–C = 5 µm; D = 20 µm; E = 10 µm.
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