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2,775 results for “G×E”
F I G U R E 7 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 7 Gouania hofrichteri sp. nov., PMR VP4595, holotype, male, 30.35+3.67 mm, Souda Beach, Plakias, Crete, Greece. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 1 in The future of fish-based ecological assessment of European rivers: from traditional EU Water Framework Directive compliant methods to eDNA metabarcoding-based approaches
F I G U R E 1 Sampling locations along river stretches (RS) A to E () of the main channel of the Rhône River, France, using both traditional electro-fishing (TEF) and eDNA., Sites sampled every 2 months (September 2015– August 2016);, sites where ten eDNA water samples (filtration capsules) were collected once;, sites located on the tributaries or the Rhône River itself sampled once for eDNA. The 10 metric fish index and the adapted six-metric fish index were computed at all sites with a black filled symbol within natural water bodies
F I G U R E 9 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 9 Gouania willdenowi (Risso 1810), PMR VP4574, neotype, male, 46.11+6.56 mm, Cagnes-sur-mer, Nice, France. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 1 0 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 1 0 Results of DNA-barcoding analyses. (a) Net between-group mean distances (mean and S.E.). The phylogeny shown in this figure is based on Wagner et al. (2019). (b) DNA-barcoding gap represented by boxplots showing maximum intraspecific and minimum interspecific divergences in %
F I G U R E 6 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 6 Gouania orientalis sp. nov., PMR VP4585, holotype, male, 32.8+4.93 mm, Plakias, Crete, Greece. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 8 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 8 Gouania pigra (Nardo, 1827), PMR VP3529, neotype, female, 43.12+5.03 mm, Glavotok, Krk, Croatia. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 5 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 5 Head osteology of Gouania species. (a) G. adriatica sp. nov. (PMR VP4618 – Holotype), (b) G. orientalis sp. nov. (PMR VP4585 – Holotype), (c) G. hofrichteri sp. nov. (ZSM-PIS- 047656 – Paratype), (d) G. pigra (Nardo 1827) (PMR VP3531 – Other material) and (e) G. willdenowi (Risso 1810) (ZSM-PIS-0476654 – Other material). Red, ceratobranchial 5; orange, premaxillary bone; blue, maxillary bone; green, nasal bone
F I G U R E 3 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 3 Gouania adriatica sp. nov., PMR VP4618, holotype, male, 41.41+6.77 mm, Stoja, Pula. Lateral view of specimen preserved in 4% formaldehyde (top). Lateral, dorsal and ventral view, alive (below). Photographs by M. Wagner and M. Kovacˇic
F I G U R E 4 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 4 Sucking discs and disc-papillae of Gouania species. (a) G. adriatica sp. nov. (PMR VP4618 – Holotype), (b) G. orientalis sp. nov. (PMR VP4585 – Holotype), (c) G. hofrichteri sp. nov. (PMR VP4595 – Holotype), (d) G. pigra (Nardo 1827) (ZSM-PIS-047649 – Other material) and (e) G. willdenowi (Risso 1810) (PMR VP4574 – Neotype). (f) Males of Gouania can have seemingly perfused prominent finger-like extensions on sucking disc edge in region A.A, B and C correspond to disc regions. Photographs by M. Wagner
F I G U R E 1 in Unravelling the taxonomy of an interstitial fish radiation: Three new species of Gouania (Teleostei: Gobiesocidae) from the Mediterranean Sea and redescriptions of G. willdenowi and G. pigra
F I G U R E 1 Geographical distribution ranges and ecology. (a) Distribution ranges of single Gouania species. The data shown are based on genetic, morphological and field observations as well as on historical findings mentioned by Hofrichter (1995) (all his records combined the species in G. willdenowi described here). Type and location of water currents are based on data provided by El-Geziry and Bryden (2010). Numbers 1–23 indicate sampling sites (compare with Supporting Information Table S1). (b) Female Gouania pigra (Nardo, 1827) in the interstitial of pebbles (photo taken in aquarium); see Supporting Information Video S1 for behaviour. (c) Trstenik (Pelješac, Croatia) – a site where G. pigra, G. adriatica sp. nov. and G. hofrichteri sp. nov. were found in sympatry. Photographs by M. Wagner
F I G U R E 6 in Variation in the post-smolt growth pattern of wild one sea-winter salmon (Salmo salar L.), and its linkage to surface warming in the eastern North Atlantic Ocean
F I G U R E 6 Back-calculated mean body length (±95% confidence interval) of Salmo salar at the midpoint of the winter annulus, following the conclusion of the post-smolt growth period
F I G U R E 1 in Variation in the post-smolt growth pattern of wild one sea-winter salmon (Salmo salar L.), and its linkage to surface warming in the eastern North Atlantic Ocean
F I G U R E 1 Hierarchical cluster analysis of intercirculus spacing for scales of Salmo salar. (a) The dendrogram for k = 20 using Euclidean distance and Ward linkage for z-scored and interpolated data. The five major sub-branches (A–E) and the 20 clusters are ordered sequentially from the left. (b) The standardized intercirculus spacing plots for the 20 clusters. Clusters are colour-coded and ordered as in (a). The LOESS fits for each cluster are shown as a black line and the number of fish per cluster (n) is also shown
F I G U R E 1 in Differences in growth between offspring of anadromous and freshwater brown trout Salmo trutta
F I G U R E 1 The River Imsa (1) in southwestern Norway where the anadromous Salmo trutta spawned. (A) The location of the fish trap where the anadromous fish were sampled. (B) The location of the upstream impassable waterfall, built between 1993 and 1995. (C) The brook, Fossbekk, where the resident fish spawned
F I G U R E 2 in Variation in the post-smolt growth pattern of wild one sea-winter salmon (Salmo salar L.), and its linkage to surface warming in the eastern North Atlantic Ocean
F I G U R E 2 Tabulation of significant under- and over-representation of the 10 most frequent growth pattern categories (and "Others") for Salmo salar scales amongst the 20 dendrogram clusters. Proportions of growth pattern frequency were compared to the overall population proportion of scales for k = 20 with Ward linkage, and clustering of the z-scored and interpolated data. Light shading (−) indicates significant under-representation and dark shading (+) indicates over-representation. Sample sizes (n) for each growth pattern across the time-series are shown
F I G U R E 4 in Variation in the post-smolt growth pattern of wild one sea-winter salmon (Salmo salar L.), and its linkage to surface warming in the eastern North Atlantic Ocean
F I G U R E 4 Time-series changes in ocean surface temperature and Salmo salar scale growth pattern. (a) Changes in monthly SST anomaly for the 250 and 500 km standard deviation spatially weighted kernels in the Norwegian Sea (April 1992 – March 2011). (b) Changes in frequency (proportion within years) of selected growth patterns. The three selected pattern groupings illustrate fish showing persistent Fast growth (F) throughout the post-smolt growth season, Slow growth followed by Fast growth (SF), and all patterns pooled that displayed one or more growth Checks. The growth pattern data for each capture year (b) are aligned with the SST anomaly in April of the previous year (a), coinciding with the commencement of annual smolt emigration
F I G U R E 5 in Variation in the post-smolt growth pattern of wild one sea-winter salmon (Salmo salar L.), and its linkage to surface warming in the eastern North Atlantic Ocean
F I G U R E 5 Monthly correlations between the SST anomalies throughout the post-smolt Salmo salar growth period and annual frequency of the Fast (F) and All Check growth patterns. The salmon data were lagged by -1 year to match the annual post-smolt growth seasons to the SST anomalies. Significant correlations (P <0.05; following adjustment of d.f. to allow for autocorrelation) are shown by the filled circles
F I G U R E 4 in Differences in growth between offspring of anadromous and freshwater brown trout Salmo trutta
F I G U R E 4 Mean growth per day (Ω, Equation 1, ±S.D.) at 18.3 C and 14.9 C of juvenile age 0 offspring of (a) 7.1 C and (b) 4.4 C incubated freshwater resident Salmo trutta (1, solid line) and anadromous (3, broken line), and hybrids between freshwater resident and anadromous (2, dotted line) S. trutta of the River Imsa, Norway
F I G U R E 1 Turcinoemacheilus ekmekciae, FFR 3608 in Turcinoemacheilus ekmekciae, a new dwarf loach from upper Tigris and Euphrates (Teleostei: Nemacheilidae)
F I G U R E 1 Turcinoemacheilus ekmekciae, FFR 3608, holotype, 36 mm standard length (SL); Kaynarca stream.
F I G U R E 3 in Riverscape genetics of the orangethroat darter complex
F I G U R E 3 Orangethroat darter clade collection sites with colored circles corresponding to the proportion of individuals at the site that had predominant assignment to each genetic cluster identified in the STRUCTURE analysis for K=3. Inset shows region boundary between Upper Mississippi River and Ohio River regions.
F I G U R E 2 in Effects of dietary hydrolysate supplementation on growth, body composition, hematological responses, and liver histology of juvenile giant trevally (Caranx ignobilis Forsskal, 1775)
F I G U R E 2 Somatic indexes and condition factor of giant trevally fed experimental diets for 8 weeks. ns, nonsignificant. Different subscript letters indicate differences among treatments.
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