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zenodo28/100

Supplementary material 1 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105

Key to the 26 species of the genus Bombus

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Figure 2 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105

Figure 2 Estimated phylogeny of Bombus based on six combined gene sequences (mitochondrial genes 16S rRNA and COI, nuclear genes Opsin, ArgK, EF-1α, and PEPCK) analyzed by Bayesian Inference and Maximum Likelihood. Subgeneric clades are noted at the right of the figure, values above branches are posterior probabilities (BI), values below branches are bootstrap values (ML). Species in bold font were collected by the authors in China and a black spot indicates species that were not included in the previous phylogeny of Bombus of Cameron et al. (2007). The outgroups are at the top of the tree. Abbreviations: SF, short-faced clade; LF, long-faced clade. Subgenera that were synonymized are in parentheses.

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Figure 3 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105

Figure 3 Estimated phylogeny of Bombus based on six combined gene sequences (mitochondrial genes 16S rRNA and COI, nuclear genes Opsin, ArgK, EF-1α, and PEPCK) analyzed by Maximum Parsimony. Subgeneric clades are noted at the right of the figure and values on branches are the bootstrap values. Species in bold font were collected in China and a black spot indicates species that were not included in the phylogeny of Bombus of Cameron et al. (2007). The outgroups are at the top of the tree. Abbreviations: SF, short-faced clade; LF, long-faced clade. Subgenera that were synonymized are in parentheses.

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Figure 5 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105

Figure 5 Estimated phylogeny of Bombus based on six combined gene sequences (mitochondrial genes 16S rRNA and COI, nuclear genes Opsin, ArgK, EF-1α, and PEPCK) analyzed by Neighbor Joining. Subgeneric clades are noted at the right of the Figure, and values on branches are the bootstrap values of NJ. Species in bold font were collected in China and a black spot indicates species that were not included in the phylogeny of Bombus of Cameron et al. (2007). The outgroups are at the bottom of the tree. Subgenera that were synonymized are in parentheses.

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Figure 4 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351

Figure 4 Ophiocordyceps musicaudata (HKAS 131911) a redrawn of Liang (2007)b habitat c, d stromata arising from host e fertile parts f, g reverse and front view of culture on PDA h, i perithecia j–l asci m ascus cap n–p ascospores, the arrows in the n, p indicating septate. Scale bars: 2 cm (c, d); 5 mm (e); 1 cm (f, g); 100 µm (h, i); 50 µm (j–l, n–p); 5 um (m).

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Figure 3 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351

Figure 3 Ophiocordyceps liangii (holotype HKAS 125845) a habitat b, c stromata arising from host d superficial perithecia e host f, g section of perithecia h–k asci h–i immature j, k mature l, m ascus cap n–p ascospores q–s reverse and front view of culture on PDA. Scale bars: 4 cm (b, c), 1 mm (d), 5 mm (e), 100 µm (f, g), 50 µm (h–k), 20 µm (l, m), 30 µm (n–p), 2 cm (q–s).

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Figure 2 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351

Figure 2 Ophiocordyceps fenggangensis (holotype HKAS 125848) a habitat b host imbedded into the soil with the stroma emerging from the ground c stroma arising from the larva of Lepidopterad host e, f reverse and front view of the culture on PDA g part of fertile head h part of fertile head with sterile tip (arrow indicate) i perithecia j–m asci n ascus cap o part of ascospores p secondary ascospores. Scale bars: 2 cm (c, e, f); 5 mm (d); 1 mm (g, h); 100 µm (i, j); 25 µm (k–m); 10 µm (n); 5 µm (o); 2 µm (p).

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Figure 1 from: Peng X-C, Wen T-C, Wei D-P, Liao Y-H, Wang Y, Zhang X, Wang G-Y, Zhou Y, Tangtrakulwanich K, Liang J-D (2024) Two new species and one new combination of Ophiocordyceps (Hypocreales, Ophiocordycipitaceae) in Guizhou. MycoKeys 102: 245-266. https://doi.org/10.3897/mycokeys.102.113351

Figure 1 Phylogram generated from Maximum Likelihood analysis, based on combined LSU, ITS, SSU, tef1-α, rpb1 and rpb2 sequence data. ML bootstrap values equal to or greater than 95% and the PP equal to or greater than 0.90 are given above each node. The newly-generated sequences are indicated in blue. Type strain, type specimens or neotype are denoted in black bold.

opencc-by-4.0Feb 2024View details →
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Figure 2 from: Li L, Nong Q-Z, Chen C-P, Li Y-H, Lai J-X (2024) Two new diatom species of the genus Gomphonemopsis (Bacillariophyceae) from the coast of China and two new combinations for the genus. PhytoKeys 239: 255-266. https://doi.org/10.3897/phytokeys.239.114018

Figure 2 Gomphonemopsis gaoiA–I light micrographs (I phase contrast), note the Voigt faults on the secondary side (black arrowheads) J–P scanning electron micrographs J external view of an entire valve, iconotype specimen K external detail of the apex, showing the slit-like pores L external detail of the central area M internal view of an entire valve N internal detail of the apex, showing the slit-like pores O internal detail of the central area P valvocopula with two rows of subcircular poroids. Scale bars: 10 μm (A–I); 5 μm (J, M); 1 μm (K, L, N–P).

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Figure 1 from: Li L, Nong Q-Z, Chen C-P, Li Y-H, Lai J-X (2024) Two new diatom species of the genus Gomphonemopsis (Bacillariophyceae) from the coast of China and two new combinations for the genus. PhytoKeys 239: 255-266. https://doi.org/10.3897/phytokeys.239.114018

Figure 1 Gomphonemopsis nanaA–J light micrographs (differential interference contrast, DIC) K–P scanning electron micrographs K external view of an entire valve with hymenes covering areolae, iconotype specimen L external view of an entire valve without hymenes covering areolae, note the girdle bands perforated with two rows of pores (white arrowhead) M external detail of the central area, note the presence of two areolae on the primary side (white arrows) N external detail of the foot pole O internal view of an entire valve P internal detail of the central area. Scale bars: 5 μm (A–J); 1 μm (K–O); 0.5 μm (P).

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Figure 6 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 6 Comparison of Ixeridium dimorphifolium and I. beauverdianumA–EIxeridium dimorphifolium sp. nov. A habit B basal part (showing dimorphic leaves and stolon) C cauline leaves D capitula (showing involucre) E capitula (showing florets) F–JIxeridium beauverdianumF habit G basal part (showing monomorphic leaves) H cauline leaves I capitula (showing involucre) J capitula (showing florets).

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Figure 2 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 2 Comparison of Cerastium huadingense and C. qingliangfengicumA–ECerastium huadingense sp. nov. A habitat B habit C indumentum on stem D flower E capsule F–ICerastium qingliangfengicumF habitat G indumentum on stem H flower I capsule.

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Figure 7 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 7 Micromorphology of achenes and pollen grains of Ixeridium dimorphifolium and I. beauverdianumA–EIxeridium dimorphifolium sp. nov. (from Suichang) F–JIxeridium dimorphifolium sp. nov. (from Qingyuan) A and F achene shape (scale bar: 1mm) B and G middle part (scale bar: 200μm) C and H spicules on surfaces and ribs (scale bar: 50μm) D and I pollen grains (scale bar: 20μm) E and J surface sculpture (scale bar: 5μm) K–OIxeridium beauverdianumK achene shape (scale bar: 1mm) L middle part (scale bar: 200μm) M spicules on surfaces and ribs (scale bar: 50μm) N pollen grains (scale bar: 20μm) O surface sculpture (scale bar: 5μm).

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Figure 3 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 3 Sinopogonanthera setulosaA lower part of habit B upper part of habit C indumentum on stem D flower with bracteole E opened corolla F anther G stigma H dorsal section of nutlet I ventral section of nutlet (Illustrated by Xiao-Feng Jin; based on Yi-Fei Lu & Xiao-Feng Jin 242, ZM).

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Figure 1 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 1 Cerastium huadingense sp. nov. A habit B indumentum on stem C basal leaf D upper leaf E indumentum on peduncle F vertical section of flower (showing sepals, petals, stamens and pistil) G petal H stamen I capsule with sepals and petals J seed (Illustrated by Hong Wang; based on Xiao-Feng Jin & Yi-Fei Lu 4583, ZM).

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Figure 5 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 5 Ixeridium dimorphifolium sp. nov. A habit B bract C outer phyllary D inner phyllary E opened involucre (showing receptacle) F floret G achene (Illustrated by Xiao-Feng Jin; based on Xiao-Feng Jin 4568, ZM).

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Figure 4 from: Lu Y-F, Xu Y-L, Xie W-Y, Zhang H-W, Cai X, Jin X-F (2021) Two new species and a new combination from Zhejiang, East China. PhytoKeys 184: 111-126. https://doi.org/10.3897/phytokeys.184.73327

Figure 4 Comparison of Sinopogonanthera setulosa and S. intermediaA–FSinopogonanthera setulosaA habitat B rhizome C calyx D inflorescence E corolla F nutlet G–KSinopogonanthera intermediaG habit H inflorescence I nutlet J calyx K corolla.

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Figure 2 from: Liu D-H, Xu X-M, He Y, Liu Q-R (2021) A new combination in Pseudolappula (Boraginaceae, Rochelieae) based on morphological, molecular and palynological evidence. PhytoKeys 187: 77-92. https://doi.org/10.3897/phytokeys.187.75346

Figure 2 Maximum Likelihood tree of subtribe Eritrichiinae inferred from ITS + trnL-F. The tree topology was constructed using RAxML. Bootstrap values and Bayesian posterior probabilities are indicated above branches. Note that the Lappula occultata (Huang et al. 2013) is a misidentified voucher from previous studies (Huang et al. 2013).

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Figure 1 from: Liu D-H, Xu X-M, He Y, Liu Q-R (2021) A new combination in Pseudolappula (Boraginaceae, Rochelieae) based on morphological, molecular and palynological evidence. PhytoKeys 187: 77-92. https://doi.org/10.3897/phytokeys.187.75346

Figure 1 Nutlet morphology of Pseudolappula and LappulaA–DPseudolappula sinaicaA fruit lateral view B fruit polar view (growth direction of nutlets indicated by arrows) C nutlet abaxial view D nutlet adaxial view E–HLappula occultataE fruit lateral view F fruit polar view (arrangement of nutlets indicated by cross lines) G nutlet abaxial view H nutlet adaxial view I–LLappula patulaI fruit lateral view J fruit polar view (arrangement of nutlets indicated by cross lines) K nutlet abaxial view L nutlet adaxial view M adaxial keel of P. sinaica (adaxial view) N adaxial keel of L. occultata (lateral view) O attachment scar of Lappula balchaschensisP attachment scar of Lappula brachycentra. Scale bars: 1 mm.

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Figure 3 from: Liu D-H, Xu X-M, He Y, Liu Q-R (2021) A new combination in Pseudolappula (Boraginaceae, Rochelieae) based on morphological, molecular and palynological evidence. PhytoKeys 187: 77-92. https://doi.org/10.3897/phytokeys.187.75346

Figure 3 Scanning electron micrographs. A, BPseudolappula sinaicaC, DLappula occultataE, FL. shanhsiensisG, HL. redowskiiI, JL. macranthaK, LL. tianschanicaM, NRochelia bungeO, PPseudoheterocaryum rigidum. Scale bars: 5 μm.

opencc-by-4.0Dec 2021View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record