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Figure 3 from: Hroneš M, Leong-Škorničková J, Niissalo MA, Dančák M (2021) Hanguana deflexa (Hanguanaceae), a new forest species from Sarawak, Borneo. PhytoKeys 181: 9-19. https://doi.org/10.3897/phytokeys.181.69045
Figure 3 Genomic analyses of Hanguana deflexa Hroneš & Dančák, using ddRADseq A maximum likelihood phylogenetic reconstruction using RAxML 7.2.8 (Stamatakis 2006). Sequences were added to a data matrix first published in Niissalo et al. (2020). Outgroups are not shown B allele balance, supporting tetraploid status of the species, measured using Smudgeplot v. 0.2.3dev (Ranallo-Benavidez et al. 2020), using kmer length of 21, minimum kmer coverage of 20 and maximum kmer coverage of 10,000.
Figure 2 from: Hroneš M, Leong-Škorničková J, Niissalo MA, Dančák M (2021) Hanguana deflexa (Hanguanaceae), a new forest species from Sarawak, Borneo. PhytoKeys 181: 9-19. https://doi.org/10.3897/phytokeys.181.69045
Figure 2 Hanguana deflexa Hroneš & Dančák A rhizome with fibre remnants of leaf sheaths B stem covered by leaf sheaths C floccose indumentum on abaxial side of pseudopetiole D peduncle with pale brown-grey floccose indumentum E structure of infructescence with sterile and fertile bracts F top view of fruit showing detail of stigma G side view of fruit H basal part of fruit with tepals I detail of inner tepals, staminodes and staminodial scales J longitudinal section of fruit K cross-section of fruit L side view of seed M top view of seed N bottom view of seed. The smallest grid (where applicable): 1×1 mm. Photographed by M. Hroneš (A, B, D, G–O from Hroneš & Dančák 422020, C, E, F from Hroneš & Dančák 452020).
FIGURE 181. Torotrogla calcarius Skoracki, female. A in Quill mites (Acari: Syringophilidae) of the Palaearctic region 2840
FIGURE 181. Torotrogla calcarius Skoracki, female. A, dorsal view; B, ventral view.
Figure 2 from: Luo X, Yang Q-Y, Zhang Z, Zhu P, Ma L, Chen X-Y, Lin S-Y, Chen S-P (2021) Pseudostellaria wuyishanensis, a new species of Caryophyllaceae from Fujian, China. PhytoKeys 181: 21-28. https://doi.org/10.3897/phytokeys.181.67436
Figure 2 Pseudostellaria wuyishanensis X. Luo, Q.Y. Yang A habitat B habit C tuber D plant E flowering plant F flower G all parts of flower.
Figure 1 from: Luo X, Yang Q-Y, Zhang Z, Zhu P, Ma L, Chen X-Y, Lin S-Y, Chen S-P (2021) Pseudostellaria wuyishanensis, a new species of Caryophyllaceae from Fujian, China. PhytoKeys 181: 21-28. https://doi.org/10.3897/phytokeys.181.67436
Figure 1 Pseudostellaria wuyishanensis sp. nov. A plant B stem with one line of hair C flower D flower in side view E calyx F petal G tuber H gynoecium of chasmogamous flower.
Figs. 180–184. Oedichirus neotropicus. 180. Aedeagus, right lateral. 181. Aedeagus, ventral. 182. Sternum IX, male. 183. Segment IX in Revision Of The New World Species Of Oedichirus (Coleoptera: Staphylinidae: Paederinae: Pinophilini: Procirrina)
Figs. 180–184. Oedichirus neotropicus. 180. Aedeagus, right lateral. 181. Aedeagus, ventral. 182. Sternum IX, male. 183. Segment IX, ventral, female. 184. Sternum VIII, male, black dots mark missing setae, right side of comb missing.
Figures 174–181. Vatellus haagi. 174 in Revision of the New World and south-east Asian Vatellini (Coleoptera: Dytiscidae: Hydroporinae) and phylogenetic analysis of the tribe
Figures 174–181. Vatellus haagi. 174, dorsal habitus; 175, elytral sculpture in area indicated on habitus by dotted square; 176, medial portion of metacoxae; 177, metatrochanter and metafemur, anterior aspect; 178–179, tarsomeres, dorsal aspect; 178, male; 179, female, A, protarsus; B, mesotarsus; 180, sternum VI, ventral aspect; 181, speleum abdominal sterna V, VI, dorsal aspect.
Figure 4 from: Marinho LC, Fiaschi P, Amorim AM, Bittrich V (2021) Clarifying the nomenclatural history of Tovomitopsis, a Brazilian endemic genus of Clusiaceae. PhytoKeys 181: 49-64. https://doi.org/10.3897/phytokeys.181.70745
Figure 4 Lectotype of Tovomita foliosa C.Presl (= Tovomitopsis paniculata (Spreng.) Planch. & Triana) published by Presl (1834) in "Symbolae botanicae, sive, Descriptiones et icones plantarum novarum aut minus cognitarum".
Figure 2 from: Marinho LC, Fiaschi P, Amorim AM, Bittrich V (2021) Clarifying the nomenclatural history of Tovomitopsis, a Brazilian endemic genus of Clusiaceae. PhytoKeys 181: 49-64. https://doi.org/10.3897/phytokeys.181.70745
Figure 2 Illustration of Tovomita paniculata Cambess. published by Cambessèdes (1828) in "Flora Brasiliae Meridionalis".
Figure 7 from: Marinho LC, Fiaschi P, Amorim AM, Bittrich V (2021) Clarifying the nomenclatural history of Tovomitopsis, a Brazilian endemic genus of Clusiaceae. PhytoKeys 181: 49-64. https://doi.org/10.3897/phytokeys.181.70745
Figure 7 General morphology of Tovomitopsis. A habit B prop roots; C leaf undersurface D detail of leaf showing the veins E branch with leaves and staminate flowers F, G staminate flower H pistillate flower in the beginning of anthesis I pistillate flower in anthesis J open (left) and closed fruit (right). A–D, I, JT. paniculataE–HT. saldanhae. Photos A and J Marcelo Mig B Lucas Marinho C, D Ana Cláudia Alencar E–G Rodrigo Penati H Luciano Pedrosa I Rodrigo Castro.
Figure 1 from: Marinho LC, Fiaschi P, Amorim AM, Bittrich V (2021) Clarifying the nomenclatural history of Tovomitopsis, a Brazilian endemic genus of Clusiaceae. PhytoKeys 181: 49-64. https://doi.org/10.3897/phytokeys.181.70745
Figure 1 Lectotype (1–4b) of Bertolonia paniculata Spreng. (≡ Tovomitopsis paniculata (Spreng.) Planch. & Triana) published by Sprengel (1821) in "Neue Entdeckungen im ganzen Umfang der Pflanzenkunde II".
Figure 6 from: Marinho LC, Fiaschi P, Amorim AM, Bittrich V (2021) Clarifying the nomenclatural history of Tovomitopsis, a Brazilian endemic genus of Clusiaceae. PhytoKeys 181: 49-64. https://doi.org/10.3897/phytokeys.181.70745
Figure 6 Lectotype of Clusia angustifolia Engl. housed at R. The long branch in the center belongs to a different species not yet identified. Photographed by V. Bittrich.
Figure 2 from: Duan L, Han L-N, Sirichamorn Y, Wen J, Compton JA, Deng S-W, Arslan E, Ertuğrul K, Schrire B, Chen H-F (2021) Proposal to recognise the tribes Adinobotryeae and Glycyrrhizeae (Leguminosae subfamily Papilionoideae) based on chloroplast phylogenomic evidence. PhytoKeys 181: 65-77. https://doi.org/10.3897/phytokeys.181.71259
Figure 2 Bayesian maximum clade credibility tree of the GAW clade and related groups based on chloroplast CDSs. Bayesian posterior probabilities are given above branches, Maximum Likelihood bootstrap values below branches. Asterisks indicate PP = 1 and LBS = 100%. W. nieuwenhuisii indicates Whitfordiodendron nieuwenhuisii.
Figure 1 from: Duan L, Han L-N, Sirichamorn Y, Wen J, Compton JA, Deng S-W, Arslan E, Ertuğrul K, Schrire B, Chen H-F (2021) Proposal to recognise the tribes Adinobotryeae and Glycyrrhizeae (Leguminosae subfamily Papilionoideae) based on chloroplast phylogenomic evidence. PhytoKeys 181: 65-77. https://doi.org/10.3897/phytokeys.181.71259
Figure 1 Representative plants of Adinobotryeae and Glycyrrhizeae. Inflorescences (A) and fruits (B) of Adinobotrys atropurpureus; inflorescence (C) and infructescence (D) of Glycyrrhiza pallidiflora; inflorescence (E) and infructescence (F) of Glycyrrhiza uralensis; fruits (G) of Glycyrrhiza inflata; inflorescence (H) and part of dried infructescence [I; photographed on herbarium specimen: A. Eustace 31 (E!)] of Glycyrrhizopsis flavescens.
Figure 1 from: Chiapella JO, Xue Z-Q, Greimler J (2021) The genus Deschampsia and the epithet " alpina". PhytoKeys 181: 95-103. https://doi.org/10.3897/phytokeys.181.69546
Figure 1 Comparison of selected morphological traits in Deschampsia cespitosa s.l. in North America (left panel) and North Central Europe (right panel): plant height A panicle length B panicle width C ligule length D lower glume length E lemma length F awn length G taxa codes: Deschampsia cespitosa subsp. septentrionalis (s); D. cespitosa subsp. orientalis (o); D. cespitosa subsp. glauca (g); D. cespitosa subsp. neoalpina (n); D. cespitosa subsp. cespitosa (c); D. cespitosa ssp. mackenzieana (m); D. cespitosa ssp. beringensis (b); D. cespitosa ssp. littoralis (l); D. cespitosa subsp. wibeliana (w); D. cespitosa subsp. parviflora (p). Redrawn from Chiapella (2000) and Chiapella et al. (2011). All in mm.
Figure 5 from: Yahara T, Hirota SK, Fuse K, Sato H, Tagane S, Suyama Y (2021) Validation of Hosta alata (Asparagaceae) as a new species and its phylogenetic affinity. PhytoKeys 181: 79-93. https://doi.org/10.3897/phytokeys.181.64245
Figure 5 Holotype of Hosta alata Hatusima ex Yahara. (Nogami s.n. KAG151816, available from https://dbs.kaum.kagoshima-u.ac.jp/musedb/s_plant/picture/KAG151816/KAG151816.jpg).
Figure 6 from: Yahara T, Hirota SK, Fuse K, Sato H, Tagane S, Suyama Y (2021) Validation of Hosta alata (Asparagaceae) as a new species and its phylogenetic affinity. PhytoKeys 181: 79-93. https://doi.org/10.3897/phytokeys.181.64245
Figure 6 Depiction of Hosta alata Hatusima ex Yahara in its natural habitat in Mt. Karasu-dake, Oita Pref., Japan. A leaves with winged petioles B flowering plant C front view of a flower. Scale bars: 2 cm (A); 10 cm (B); 1 cm (C). Photographs taken by K. Fuse on September 24, 2020.
Figure 4 from: Yahara T, Hirota SK, Fuse K, Sato H, Tagane S, Suyama Y (2021) Validation of Hosta alata (Asparagaceae) as a new species and its phylogenetic affinity. PhytoKeys 181: 79-93. https://doi.org/10.3897/phytokeys.181.64245
Figure 4 Population genetic structure of Hosta alata and its relatives at K = 4 and 5 inferred from MIG-seq data by setting R = 0.5.
Figure 1 from: Yahara T, Hirota SK, Fuse K, Sato H, Tagane S, Suyama Y (2021) Validation of Hosta alata (Asparagaceae) as a new species and its phylogenetic affinity. PhytoKeys 181: 79-93. https://doi.org/10.3897/phytokeys.181.64245
Figure 1 A molecular phylogeny of Hosta alata and its relatives reconstructed on the basis of MIG-seq data. Bootstrap values are shown on the internodes. The scale bar represents the average number of substitutions per SNP site.
Figure 3 from: Yahara T, Hirota SK, Fuse K, Sato H, Tagane S, Suyama Y (2021) Validation of Hosta alata (Asparagaceae) as a new species and its phylogenetic affinity. PhytoKeys 181: 79-93. https://doi.org/10.3897/phytokeys.181.64245
Figure 3 A split network of Hosta alata and its relatives reconstructed on the basis of MIG-seq data by setting R = 0.5.
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.