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91 results for “Tropical Asia”
Figure 4 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 4 Results of the analysis of biometric data of "Thiara" aspera (Lesson, 1831) specimens from Australia (yellow), Indonesia (green), Thailand (red) and India/Sri Lanka (blue) and type material of Melaniaaspera Lesson, 1831 (holotype, triangle), Melaniarudis Lea & Lea, 1851 (syntype, square) and Melaniamicrostoma Lea & Lea, 1851 (syntype, diamond). A. Scatter plot of the first two axes of the principal component analysis (PCA) of biometric data. Coloured lines indicate the outline of the convex hull for each geographic group; B, C. Boxplots of PCA 1 (B) and PCA 2 (C); bars above the box plots indicate significant differences of groups resulting from testing with Dunn's test.
Figure 3 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 3 Measured shell parameters. A: H – shell height; W – shell width; BW – body whorl height; AL – aperture length; AW – aperture width. B: he – height of embryonic shell; we – width of embryonic shell; de – maximum diameter at one whorl.
Figure 2 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 2 Distribution and reproductive strategy of "Thiara" aspera (Lesson, 1831). Stars: type localities of a) Melaniaaspera Lesson, 1831, Monokwari, New Guinea, b) Melaniarudis Lea & Lea, 1851, Amboyna and c) Melaniamicrostoma Lea & Lea, 1851, mountain streams, isle of Negros, Philippines. Pie charts show the percentages of offspring in the brood pouch of female T.aspera in different size classes as defined in Glaubrecht et al. (2009), see inset. The numbers near the pie charts refer to the number of individuals examined per population. Filled circles: material preserved in ethanol; open circles: dry shells.
Figure 6 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 6 Juvenile and embryonic shells of "Thiara" aspera (Lesson, 1831), SUT 0311020, Samut Sakhon Province, Klong Don Ko. A. Lateral view; B. Apical whorls, lateral, C. Apical view. D. Details of the protoconch. Scale bars: 450 µm (A); 250 µm (B); 200 µm (C); 100 µm (D).
Figure 1 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 1 Shells of "Thiara" aspera (Lesson, 1831). A. Holotype of Melaniaaspera Lesson, 1831, MNHN 21098, 'La Nouvelle-Guinée' [more specifically Manokwari on New Guinea Island, West Papua, Indonesia, see Glaubrecht and Podlacha 2010]; B. Syntype of Melaniarudis Lea & Lea, 1851, USNM 119778, Amboyna; C. Syntype of Melaniamicrostoma Lea & Lea, 1851, USNM 119722, mountain streams, isle of Negros, Philippines; D.ZMB 107002, Calcutta, India; E.ZMB 107003, Ceylon, Sri Lanka; F.ZMB 127534, Don Ko Canal, Nakhon Pathom, Thailand; G.ZMB 127535, Don Ko Canal, Nakhon Pathom, Thailand; H.ZMB 127535, Don Ko Canal, Nakhon Pathom, Thailand; I.ZMB 191279, Yehembang River, Bali, Indonesia; J.ZMB 191279, Yehembang River, Bali, Indonesia; K.ZMB 106472, Yehembang, Bali, Indonesia; L. East of Mendaya, stream southwest of Gumicik, Bali, Indonesia; M.ZMB 191278, stream at Tembeeha, road Tirobus-Kendari, Southwest Sulawesi, Indonesia; N.ZMB 107378, Banggai Islands, Peleng Island, West of Peninsula, Tataban river, Central Sulawesi, Indonesia; O.ZMB 107377, Banggai Islands, Peleng Island, West of Peninsula, Tataban river, Central Sulawesi, Indonesia.river; P, Q.ZMB 107617, Wabalarr, Roper River, Northern Territory, Australia; R.ZMB 106599, Berry Springs, Northern Territory, Australia. Scale bar: 1 cm.
Figure 5 from: Boonmekam D, Krailas D, Gimnich F, Neiber MT, Glaubrecht M (2019) A glimpse in the dark? A first phylogenetic approach in a widespread freshwater snail from tropical Asia and northern Australia (Cerithioidea, Thiaridae). Zoosystematics and Evolution 95(2): 373-390. https://doi.org/10.3897/zse.95.34486
Figure 5 Bayesian 50% majority-rule consensus tree based on partial sequences mitochondrial cytochrome c oxidase subunit 1 (cox1) and 16S rRNA (16S) genes. Support values at nodes refer to Bayesian posterior probabilities (left), Maximum Likelihood (middle) and Maximum Parsimony (right) bootstrap values. AUS: Australia, IDN: Indonesia, THA: Thailand. Numbers at tips refer to DNA vouchers in the collection of the ZMB, see also Table 1.
FIGURE 2. A in A new species of Sidera (Hymenochaetales, Basidiomycota) from tropical Asia
FIGURE 2. A basidiocarp of Sidera vesiculosa (BJFC025377). Bar: 1 cm. Photo by Yu-Cheng Dai.
FIGURE 3 in A new species of Sidera (Hymenochaetales, Basidiomycota) from tropical Asia
FIGURE 3. Basidiocarps of Sidera vesiculosa (BJFC025377). Bar: 1 cm. Photo by Yu-Cheng Dai.
CMS: Estimated Deforested Area Biomass, Tropical America, Africa, and Asia, 2000
This data set provides estimates of pre-deforestation aboveground live woody biomass (AGLB) at 30-m resolution for deforested areas of tropical America, tropical Africa, and tropical Asia for the year 2000. The biomass estimates are only for areas where deforestation occurred during the period 2000 through 2012. These estimates represent biomass loss over this time period and can be used to derive average annual carbon emissions from tropical deforestation.
Figure 4 from: Zhu A-H, Liu Z-B, Li Y, Liu H-G, Yuan Y, He S-H (2024) Molecular and morphological data reveal two new species of Tropicoporus (Hymenochaetaceae, Basidiomycota) from Australia and tropical Asia. MycoKeys 103: 57-70. https://doi.org/10.3897/mycokeys.103.119027
Figure 4 Basidiomata of Tropicoporus zuzaneae (Dai 22171, holotype).
Figure 2 from: Zhu A-H, Liu Z-B, Li Y, Liu H-G, Yuan Y, He S-H (2024) Molecular and morphological data reveal two new species of Tropicoporus (Hymenochaetaceae, Basidiomycota) from Australia and tropical Asia. MycoKeys 103: 57-70. https://doi.org/10.3897/mycokeys.103.119027
Figure 2 Basidiomata of Tropicoporus oceanianus (Dai 18859, holotype).
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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