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185 results for “Multigene”
Figure 1 from: Wang T, Li J, Chang X, Li Z, Hywel-Jones NL, Huang B, Chen M (2024) Morphology and multigene phylogeny reveal three new species of Samsoniella (Cordycipitaceae, Hypocreales) from spiders in China. MycoKeys 101: 329-346. https://doi.org/10.3897/mycokeys.101.111882
Figure 1 Phylogenetic relationships between the genus Samsoniella and closely-related species, based on multigene dataset (SSU, LSU, TEF, RPB1 and RPB2) for maximum likelihood/ Bayesian method. Note: The ML tree presented here, and the node support rate of the two methods is displayed on the branches. The maximum likelihood support values /Bayesian posterior probabilities value (≥75%/0.75) are shown, and bold lines mean support for the two analyses were 98%. The typical strain of the species is marked with the superscript "T"
Figure 4 from: Wang T, Li J, Chang X, Li Z, Hywel-Jones NL, Huang B, Chen M (2024) Morphology and multigene phylogeny reveal three new species of Samsoniella (Cordycipitaceae, Hypocreales) from spiders in China. MycoKeys 101: 329-346. https://doi.org/10.3897/mycokeys.101.111882
Figure 4 Samsoniella fusiformisporaA fungus on spider B colony on SDAY/4 C colony on PDAD, F conidiophores structure and conidia on SDAY/4 E, G conidiophores structure and conidia on PDA. Scale bars: 15 mm (B, C); 10 μm (D–G).
Figure 3 from: Wang T, Li J, Chang X, Li Z, Hywel-Jones NL, Huang B, Chen M (2024) Morphology and multigene phylogeny reveal three new species of Samsoniella (Cordycipitaceae, Hypocreales) from spiders in China. MycoKeys 101: 329-346. https://doi.org/10.3897/mycokeys.101.111882
Figure 3 Samsoniella araneaA fungus on spider B colony on SDAY/4 C colony on PDAD, G conidiophores structure and conidia on SDAY/4 E, F conidiophores structure and conidia on PDA. Scale bars: 15 mm (B, C); 10 μm (D–G).
Figure 2 from: Wang T, Li J, Chang X, Li Z, Hywel-Jones NL, Huang B, Chen M (2024) Morphology and multigene phylogeny reveal three new species of Samsoniella (Cordycipitaceae, Hypocreales) from spiders in China. MycoKeys 101: 329-346. https://doi.org/10.3897/mycokeys.101.111882
Figure 2 Samsoniella anhuiensisA fungus on spider B colony on SDAY/4 C colony on PDAD, F conidiophores structure and conidia on SDAY/4 E, G conidiophores structure and conidia on PDA. Scale bars: 15 mm (B, C); 10 μm (D–G).
Figure 4 from: Karimi O, Chethana KWT, de Farias ARG, Asghari R, Kaewchai S, Hyde KD, Li Q (2024) Morphology and multigene phylogeny reveal three new species of Distoseptispora (Distoseptisporales, Distoseptisporaceae) on palms (Arecaceae) from peatswamp areas in southern Thailand. MycoKeys 102: 55-81. https://doi.org/10.3897/mycokeys.102.112815
Figure 4 Distoseptispora narathiwatensis (MFLU 23-0278, holotype) a host material b colonies on the substrate c–e conidiophores and conidia f conidiogenous cell g–j conidia k, l culture on PDA. Scale bars: 100 μm (b); 50 μm (c–e); 10 μm (f–j).
Figure 1 from: Karimi O, Chethana KWT, de Farias ARG, Asghari R, Kaewchai S, Hyde KD, Li Q (2024) Morphology and multigene phylogeny reveal three new species of Distoseptispora (Distoseptisporales, Distoseptisporaceae) on palms (Arecaceae) from peatswamp areas in southern Thailand. MycoKeys 102: 55-81. https://doi.org/10.3897/mycokeys.102.112815
Figure 1 Maximum Likelihood tree generated from combined ITS, LSU, rpb2 and tef1-α sequence data. Bootstrap support values ≥ 65% and Bayesian posterior probabilities ≥ 0.95 are demonstrated at the nodes. The new taxa are indicated in red bold. Ex-type strains are in black bold.
Figure 3 from: Karimi O, Chethana KWT, de Farias ARG, Asghari R, Kaewchai S, Hyde KD, Li Q (2024) Morphology and multigene phylogeny reveal three new species of Distoseptispora (Distoseptisporales, Distoseptisporaceae) on palms (Arecaceae) from peatswamp areas in southern Thailand. MycoKeys 102: 55-81. https://doi.org/10.3897/mycokeys.102.112815
Figure 3 Distoseptispora eleiodoxae (MFLU 23-0277, holotype) a host material b, c colonies on the substrate d–f conidiophores and conidia g conidiogenous cell h–j conidia k culture on PDA (top and reverse). Scale bars: 100 µm (b, c); 30 µm (d–f); 10 µm (g–j).
Figure 2 from: Karimi O, Chethana KWT, de Farias ARG, Asghari R, Kaewchai S, Hyde KD, Li Q (2024) Morphology and multigene phylogeny reveal three new species of Distoseptispora (Distoseptisporales, Distoseptisporaceae) on palms (Arecaceae) from peatswamp areas in southern Thailand. MycoKeys 102: 55-81. https://doi.org/10.3897/mycokeys.102.112815
Figure 2 Distoseptispora arecacearum (MFLU 23-0276, holotype) a host material b colonies on the substrate c–e conidiophores and conidia f–i conidia j, k culture on PDA. Scale bars: 200 µm (b); 50 µm (c–e); 10 µm (f–i).
Figure 1 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 1 Map of the sampling location A location of Lake Van in Turkey. The red frame indicates the position of Lake Van B general view of the lake. The pin indicates the position of the sampling area C photo of the epilithic sampling area on the rock (Esri. (2023). ArcGIS Pro 3.1.0. Environmental Systems Research Institute).
Figure 2 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 2 Navicula vanseea sp. nov. LM micrographs A–Hin vivo pictures of Navicula vanseea sp. nov. SZCZEY2172 ILM image of a cleaned valve from wild material J–P cleaned valves of Navicula vanseea sp. nov. SZCZEY2172 Q–Y cleaned valves of Navicula vanseea sp. nov. SZCZEY2262 Scale bar: 10 μm.
Figure 9 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 9 Maximum Likelihood phylogenetic tree inferred from the alignment of the putative LAGLIDADG endonuclease proteins found in the group I introns of Navicula vanseea sp. nov. and other taxa. The type of genome is indicated between brackets: cp – plastome, mt – mitogenome, bact – bacteria, cyan – cyanobacteria.
Figure 8 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 8 Maximum Likelihood phylogenetic tree obtained from concatenated alignments of psbC, rbcL and 18S.
Figure 3 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 3 SEM micrographs of Navicula vanseea sp. nov. SZCZEY2172 A external view of the entire valve B details of central area showing simple, slightly drop-shaped proximal raphe endings and shortened striae C, D details of the two apices of a single valve showing the terminal fissures E internal view of the entire valve F details of central area showing filiform proximal raphe endings in a fusiform expansion of the raphe-sternum G, H details of apices showing well-developed helictoglossae showing two isolated lineolae (white arrows). Scale bars: 10 μm (A, E); 3 μm (B–D, F–H).
Figure 4 from: Yılmaz E, Mann DG, Gastineau R, Trobajo R, Solak CN, Górecka E, Turmel M, Lemieux C, Ertorun N, Witkowski A (2024) Description of Navicula vanseea sp. nov. (Naviculales, Naviculaceae), a new species of diatom from the highly alkaline Lake Van (Republic of Türkiye) with complete characterisation of its organellar genomes and multigene phylogeny. PhytoKeys 241: 27-48. https://doi.org/10.3897/phytokeys.241.118903
Figure 4 SEM micrographs of Navicula vanseea sp. nov. SZCZEY2262 A external view of the entire valve B details of central area showing simple proximal raphe endings and shortened striae C details of apex showing the terminal fissure D, E internal view of two entire valves, showing the central area and filiform proximal raphe endings F details of apex showing well-developed helictoglossae G, H girdle view of valves showing continuous areolation on mantle and two isolated lineolae (white arrows). Scale bars: 5 μm (A, D, E, G, H); 3 μm (B, C, F).
Figure 1 in A multigene phylogeny of the eristaline flower flies (Diptera: Syrphidae), with emphasis on the subtribe Criorhinina
Figure 1. Multigene phylogeny of Syrphidae (ML).
Figure 3 in A multigene phylogeny of the eristaline flower flies (Diptera: Syrphidae), with emphasis on the subtribe Criorhinina
Figure 3. Multigene phylogeny of Criorhinina (Zoomed).(Bars represent monophyletic groups.)
Figure 2 in A multigene phylogeny of the eristaline flower flies (Diptera: Syrphidae), with emphasis on the subtribe Criorhinina
Figure 2. Multigene phylogeny of Syrphidae (Bayesian).
Figure 3 from: Rajeshkumar KC, Yilmaz N, Marathe SD, Seifert KA (2019) Morphology and multigene phylogeny of Talaromyces amyrossmaniae, a new synnematous species belonging to the section Trachyspermi from India. MycoKeys 45: 1-16. https://doi.org/10.3897/mycokeys.45.32549
Figure 3 Talaromycesamyrossmaniae (NFCCI 1919) A Colonies on CYA, MEAbl (obverse and reverse), Colonies obverse on YES, OA, DG18, CREAB Synnemata on Terminalia bellerica fruit in nature C Synnema formation on MEAbl after 14 d at 25 °C D–F Biverticillate penicilli G Biverticillate penicilli with subterminal branches H Conidia. Scale bar: 10 µm.
Figure 1 from: Rajeshkumar KC, Yilmaz N, Marathe SD, Seifert KA (2019) Morphology and multigene phylogeny of Talaromyces amyrossmaniae, a new synnematous species belonging to the section Trachyspermi from India. MycoKeys 45: 1-16. https://doi.org/10.3897/mycokeys.45.32549
Figure 1 Maximum likelihood (ITS) phylogenetic trees of ITS region, BenA, CaM and RPB2 genes of strains belong TalaromycessectionTrachyspermi. Talaromycespinophilus (CBS 631.66T) was chosen as outgroup. Bootstrap values above 70% are indicated. Purple names indicate T.amyrossmaniae strains. T: ex-type.
Figure 2 from: Rajeshkumar KC, Yilmaz N, Marathe SD, Seifert KA (2019) Morphology and multigene phylogeny of Talaromyces amyrossmaniae, a new synnematous species belonging to the section Trachyspermi from India. MycoKeys 45: 1-16. https://doi.org/10.3897/mycokeys.45.32549
Figure 2 Maximum likelihood (ITS) combined phylogenetic trees using ITS region, BenA, CaM and RPB2 genes of strains belong TalaromycessectionTrachyspermi. Talaromycespinophilus (CBS 631.66T) was chosen as outgroup. Bootstrap values above 70% are indicated. Purple names indicate T.amyrossmaniae strains. T: ex-type.
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