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109 results for “Pheretima”

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Fig. 2 in Pheretima baracatanensis Aspe & James 2017, new species

Fig. 2. Friesea mirceai sp. nov., holotype female (RO-Fr147-IBB). A) Habitus and dorsal chaetotaxy; (B) Fourth antennal segment; (C) Labium; (D) Tibiotarsal chaetotaxy and claw of leg III; (E) Chaetotaxy of abdominal sterna II-VI and ventral tube. A and E, scale bars = 0.1 mm. B-D, scale bars = 0.01 mm.

opennotspecifiedDec 2017View details →
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Fig. 4 in Pheretima gamay Aspe & James 2017, new species

Fig. 4. Temporal variations of the gonadosomatic index (GSI) of Channa striata females in southern Taiwan from September 2008 to December 2010.

opennotspecifiedDec 2017View details →
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Fig. 8S in Pheretima baracatanensis Aspe & James 2017, new species

Fig. 8S. Distribution map of Friesea posada sp. nov., and F. stampa sp. nov., F. mirceai sp. nov. in Romania.

opennotspecifiedDec 2017View details →
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Fig. 2 in Pheretima gamay Aspe & James 2017, new species

Fig. 2. Standard length plotted against the gonadosomatic index (GSI) for collected Channa striata females from southern Taiwan (n = 162). The mature gonads of females first appeared at a standard length of 24.5 cm (arrow).

opennotspecifiedDec 2017View details →
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Fig. 1 in Pheretima gamay Aspe & James 2017, new species

Fig. 1. Regression results and formulas of standard length and weight of Channa striata. Graphs are shown with sexes separated (top) and combined (bottom).

opennotspecifiedDec 2017View details →
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Fig. 3 in Pheretima baracatanensis Aspe & James 2017, new species

Fig. 3. Friesea stampa sp. nov., holotype female (RO-Fr149-IBB). (A) Habitus and dorsal chaetotaxy; (B) Fourth antennal segment; (C) Labium; (D) Tibiotarsal chaetotaxy and claw of leg III; (E) Chaetotaxy of abdominal sterna II-VI and ventral tube. A and E, scale bars = 0.1 mm. B-D, scale bars = 0.01 mm.

opennotspecifiedDec 2017View details →
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Fig. 3 in Pheretima gamay Aspe & James 2017, new species

Fig. 3. Monthly variations of the proportional numerical abundance of the ovarian developmental stages of Channa striata females from 2009 to 2010.

opennotspecifiedDec 2017View details →
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Fig. 2 in Pheretima hamiguitanensis

Fig. 2. Surface water temperature in the monitoring site (A) and sequential change of Plakobranchus ocellatus population density (B) and Morisita's Iδ-index (C) form April 2012 to November 2013. Black letters in B and C indicate the month in 2012 and gray letters indicate the month in 2013. Asterisks in C indicate significant departure from random distribution (Iδ = 1) based on chi-square values (*, P <0.05; **, P <0.01).

opennotspecifiedDec 2017View details →
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Fig. 1 in Pheretima hamiguitanensis

Fig. 1. Map of Okinawa-jima Island (A) and the monitoring site off Toguchi Beach (B). Quadrats were randomly placed within the rectangular area (ca. 50 × 200 m). Plakobranchus ocellatus sea slugs were collected for measurement of total body length within the circular area.

opennotspecifiedDec 2017View details →
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Fig. 6 in Pheretima monotheca

Fig. 6. The Bayesian tree of concatenated sequences (partial COI and ITS1) for jellyfish species which was rooted with Rhopilema hispidum. The tree denotes separation of Cyanea species into different groups (Cyanea Group I + II and III). Numbers on the branches indicate bootstrap values of Neighbour Joining (NJ), Maximum Parsimony (MP) and Bayesian posterior probabilities, respectively.

opennotspecifiedDec 2017View details →
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Fig. 4. The partial 16S in Pheretima monotheca

Fig. 4. The partial 16S mtDNA sequence Bayesian tree for jellyfish species which denotes major clades. The tree was rooted with outgroup Cubozoa. Numbers on the branches indicate bootstrap values of Neighbour Joining (NJ), Maximum Parsimony (MP) and Bayesian posterior probabilities, respectively.

opennotspecifiedDec 2017View details →
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Fig. 4 in Pheretima hamiguitanensis

Fig. 4. Monthly averages of Plakobranchus ocellatus total body length with maximum and minimum values form April 2012 to November 2013. Error bars indicate standard deviations. The numbers in parentheses indicate the number of individuals examined. NA, data not available.

opennotspecifiedDec 2017View details →
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Fig. 2 in Pheretima monotheca

Fig. 2. The partial COI mtDNA sequence Bayesian tree of jellyfish species denoting the major clades. Numbers on the branches indicate bootstrap values for Neighbour Joining (NJ), Maximum Parsimony (MP) and Bayesian posterior probabilities, respectively. The tree was rooted with outgroups Anthozoa (Acropora cervicornis and Montastraea cavernosa) and Hydrozoa (Hydra sp.).

opennotspecifiedDec 2017View details →
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Fig. 1 in Pheretima monotheca

Fig. 1. Jellyfish species collected in Malaysian waters. Cubozoan jellyfish; Morbakka sp. (a), Chiropsoides buitendijki (b); Scyphozoan jellyfish; Acromitus flagellatus (c), Catostylus townsendi (d), Cephea cephea (e), Chrysaora chinensis (f), Cyanea sp. (g), Lobonemoides robustus (h), Mastigias sp. (i), Phyllorhiza punctata (j), Rhopilema hispidum (k) and Rhopilema esculentum (l).

opennotspecifiedDec 2017View details →
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Fig. 3 in Pheretima apoensis

Fig. 3. Bar plots with richness, density, and biomass of macroinvertebrates at the two study sites. Includes bar plots of stream 61a and tributary, the fast and slow flowing habitats, and the three biotopes (runs, riffles and pools). Error bars represent standard deviation (Stream 61a n = 6, tributary n = 6, both fast and slow flowing habitats n = 6, runs n = 3, riffle n = 3 and pool n = 6). Significant differences between the fast and slow sites with richness (p = 0.05*).

opennotspecifiedDec 2017View details →
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Fig. 5 in Pheretima apoensis

Fig. 5. Length- frequency distributions of macroinvertebrates among stream 61a and its tributary, fast and slow biotopes, and among the three biotopes (runs, riffles and pools). Error bars represent standard deviation (stream 61a n = 6, tributary n = 6, both fast and slow flowing habitats n = 6, runs n = 3, riffle n = 3 and pool n = 6). Significant differences found between the fast and slow sites (p = 0.04*), pool and runs (p = 0.01**) and riffles and runs (p = 0.01**) using Kolmogorov-Smirnov test.

opennotspecifiedDec 2017View details →
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Fig. 6 in Pheretima apoensis

Fig. 6. Sample-size-based rarefaction and extrapolation for fast and slow biotopes. Graph (A) includes all sampled taxa and (B) includes the common taxa which is defined as any taxa that is found more than once.

opennotspecifiedDec 2017View details →
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Fig. 1 in Pheretima apoensis

Fig. 1. Map and schematic of study sites A) Map of Borneo Island in S.E Asia with Brunei situated in the north. The dotted circle highlights Brunei. B) Plan view schematic of the two study sites, tributary of 61a (left) and stream 61a (right).

opennotspecifiedDec 2017View details →
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Fig. 2 in Pheretima gamay Aspe & James 2017, new species

Fig. 2. Leaf decay rates (mean ± SE) of M. chartacea (empty bars) and H. dusenii (solid bars) leaves in treatments containing T. fluviatilis and Triplectides sp., alone and together.

opennotspecifiedDec 2017View details →
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Fig. 1 in Pheretima gamay Aspe & James 2017, new species

Fig. 1. Relative abundance (mean ± SE) of food categories in the gut contents of T. fluviatilis. Abundances with the same letter do not differ significantly (post hoc tests by simple pairwise Wilcoxon; n = 55).

opennotspecifiedDec 2017View details →

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