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1,918 results for “molecular evidence”
FIGUERE 3 in Thyrocarpus fujianensis (Boraginaceae; Cynoglosseae), a new species from China: evidence from morphological and molecular analyses
FIGUERE 3. Thyrocarpus fujianensis (A) Pedicel; (B) Calyx in flowering; (C) Flower; (D) Fruit longitudinal section; (E) Side view of fruit; (F) Floral anatomy; (G) Fruit; (H) Plant; (I–J) Stem leaves; (K–L) Basal leaves.
FIGURE 4. Weizhia pentaphylla G. Y. Li, Z. H. Chen, K. W. Jiang & B in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE 4. Weizhia pentaphylla G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis, gen. & sp. nov. A. Flowering and Fruiting branch; B. Stipules; C. Stipels; D. Calyx; E. Standard; F. Wing petal; G. Keel petal; H. Pistil; I. Stamens; J. Seed. Illustration by Bo-Heng Li.
FIGURE 1 in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE 1. The Maximum likelihood phylogenetic tree of the new monotypic genus Weizhia and its allies based on a combined ITS and matK dataset. The green shade shows subtr. Glycininae (tr. Psoraleeae not included) and the sky-blue shade shows the putative new genus, Weizhia G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis. Values above branches indicate ML bootstrap percentages (BP) and Bayesian posterior probabilities (PP), double dash (--) indicates that the topological structure is not supported in the Bayesian phylogenetic tree. Branches in bold indicate nodes with ≥ 70% BP and ≥ 0.95 PP support. The inserted phylogram (a) shows the different topological structure of the DTW clade in the Bayesian tree.
FIGURE 5 in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE 5. Distribution map of Weizhia pentaphylla G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis in Zhejiang Province (red star). The map was drawn using the software ArcMap 10.5.
FIGURE 2 in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE 2. Close relatives of Weizhia: A–C. Toxicopueraria peduncularis (Benth.) A. N. Egan & B. Pan bis A. Habit; B. Part of an inflorescence; C. Leaf. D–E. Dumasia villosa DC. D. Habit; E. Inflorescence. F. Pods and seeds of (a) T. peduncularis; (b) D. villosa; (c) D. cordifolia Benth. ex Baker, A, B & E by Bing Liu, C & D by Qin Tian, F by Kai-Wen Jiang from (a) W. L. Zhao, P. Yang & X. Q. Tao BSGLGSly3158 (fruits and seeds in NPH); (b) L. Qu s. n. (fruits and seeds in NPH) and (c) s. coll. s. n. (fruits and seeds in NPH).
FIGURE 3. Weizhia pentaphylla G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis. A & B in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE 3. Weizhia pentaphylla G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis. A & B. Habit (B shows the occasional 7-foliolate pinnate leaves); C. Stipules; D. Leaf, showing the adaxial surface; E. Leaf, showing the abaxial surface; F. Leaf with 3 leaflets; G. Flowers; H. Flowers with young pods; I. Unmature pods; J. Anatomy of flowers, mature pods and seeds: (a) Flower; (b) Calyx; (c) Standard; (d) Wing petals; (e) Keel petals; (f) Pistil; (g) Stamens; (h) Mature and dehiscent pod; (i) Seeds. A–I by Hua-Dong Li, J (a–g) by Dan-Dan Ma, J (h & f) by Kai-Wen Jiang.
FIGURE S1 in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE S1. The Maximum likelihood phylogenetic tree of the new monotypic genus Weizhia and its allies based on ITS sequences. The green shade shows subtr. Glycininae (tr. Psoraleeae not included) and the skyblue shade shows the putative new genus, Weizhia G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis. Values above branches indicate ML bootstrap percentages (BP) and Bayesian posterior probabilities (PP), double dash (--) indicates that the topological structure is not supported in the Bayesian resulting phylogenetic tree. Branches in bold indicate nodes with ≥ 70% BP and ≥ 0.95 PP support.
FIGURE S2 in Weizhia (Fabaceae: Phaseoleae), a new endemic genus from East China supported by morphological and molecular evidence
FIGURE S2. The Maximum likelihood phylogenetic tree of the new monotypic genus Weizhia and its allies based on matK sequences. The green shade shows subtr. Glycininae (tr. Psoraleeae not included) and the sky-blue shade shows the putative new genus, Weizhia G. Y. Li, Z. H. Chen, K. W. Jiang & B. Pan bis. Values above branches indicate ML bootstrap percentages (BP) and Bayesian posterior probabilities (PP), double dash (--) indicates that the topological structure is not supported in the Bayesian resulting phylogenetic tree. Branches in bold indicate nodes with ≥ 70% BP and ≥ 0.95 PP support.
FIGURE 2 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 2. Phylogenetic relationships of C. × fugongense based on combined plastid sequence (matK and rbcL). Galeandra devoniana and Eulophia graminea were used as outgroups. The numbers near the nodes are Bayesian posterior probabilities (PP), maximum likelihood bootstrap percentages (BP), and maximum parsimony bootstrap percentages (BP), respectively. "-" indicates that the node ML MP is incongruent between the topology of the Bayesian and MP/ML trees.
FIGURE 4 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 4. Cymbidium × fugongense S.Ke, S.R.Lan & Z.J.Liu. A. Habit. B. Flowers, front view. C. Structure of the flower. D-E. Pollinarium. F. C. maguanense flower. G. C. wenshanense flower. H. C. eburneum flowers.
FIGURE 3 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 3. Cymbidium × fugongense. A. Habit. B. Flower, front view. C. Lip. D–E. Column. F. Dorsal sepal. G. Petal. H. Lateral sepal. I. Pollinarium.
FIGURE 1 in Cymbidium × fugongense (Orchidaceae; Epidendroideae), a new natural hybrid from China: evidence from morphology and molecular analyses
FIGURE 1. Phylogenetic relationships of C. × fugongense based on the nuclear DNA (ITS). Galeandra devoniana and Eulophia graminea were used as outgroups. The numbers near the nodes are Bayesian posterior probabilities (PP), maximum likelihood bootstrap percentages (BP ML), and maximum parsimony bootstrap percentages (BP MP), respectively. "-" indicates that the node is incongruent between the topology of the Bayesian and MP/ML trees.
FIGURE 4 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 4. Anteaeolidiella decorus sp. nov. (MBM Op-21092901). A. Jaw; B. detailed view of the masticatory border; C, D. radular teeth. Scale bar = 100 μm.
FIGURE 3 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 3. Anteaeolidiella decorus sp. nov. A. Holotype, Op-21092901, live animal, 2.5 cm in length; B. In situ photo of holotype; C. Op-21100301, 2.0 cm; D. Op-21101301, 2.5 cm; E. In situ photo of spawning; F. Egg mass.
FIGURE 1 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 1. Sampling site (red triangle) of Anteaeolidiella decorus sp. nov. in the Bohai Sea, 35°58′N 120°16′E.
FIGURE 2 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 2. Phylogenetic tree inferred by Bayesian analysis (BI) and maximum likelihood (ML) based on concatenated dataset of COI, 16S and H3 genes. Numbers adjacent to nodes refer to BI posterior probability (PP> 0.5) and ML bootstrap scores (BS> 50). Vertical green and blue bars indicate the results of ABGD and ASAP species delimitation, respectively.
FIGURE 5 in Morphological and molecular evidence reveals a new species of Anteaeolidiella (Mollusca, Nudibranchia, Aeolidiidae) from the Yellow Sea, China
FIGURE 5. Anteaeolidiella decorus sp. nov. (MBM Op-21092901). A. oral gland; B. reproductive system. Abbreviations: an, anus; am, ampulla; fgm, female gland mass; ps, penial sac; rs, receptaculum seminalis; sc, secretory cell; va, vagina; vd, vas deferens.
FIGURE 6. Principal component analysis of the nine call measurements for various species selections. A: all small Anthus species except A. cervinus; B: two types of calls of A. r. rubescens and A. [r.] japonicus. C: only common-type calls of A. r. rubescens and A. [r.] japonicus; D: A. petrosus and different A. spinoletta subspecies; E: A. petrosus and A. s. spinoletta. in --Molecular--and--acoustic--evidence--support--the--species--status--of--Anthus rubescens rubescens and--Anthus [rubescens] japonicus--(Passeriformes:--Motacillidae)
FIGURE 6. Principal component analysis of the nine call measurements for various species selections. A: all small Anthus species except A. cervinus; B: two types of calls of A. r. rubescens and A. [r.] japonicus. C: only common-type calls of A. r. rubescens and A. [r.] japonicus; D: A. petrosus and different A. spinoletta subspecies; E: A. petrosus and A. s. spinoletta.
FIGURE5. Sonograms of various calls from Anthus [rubescens] japonicus: A) M-shaped calls (xeno-canto.org: XC267502); B) and C) common calls (xeno-canto.org: XC437043 & The Sound Approach: 02.050. MR. 01938.02) and A. r. rubescens: D and E common calls (xeno-canto.org: XC598639, XC599314). in --Molecular--and--acoustic--evidence--support--the--species--status--of--Anthus rubescens rubescens and--Anthus [rubescens] japonicus--(Passeriformes:--Motacillidae)
FIGURE5. Sonograms of various calls from Anthus [rubescens] japonicus: A) M-shaped calls (xeno-canto.org: XC267502); B) and C) common calls (xeno-canto.org: XC437043 & The Sound Approach: 02.050. MR. 01938.02) and A. r. rubescens: D and E common calls (xeno-canto.org: XC598639, XC599314).
FIGURE4. Maximum-likelihood tree inferred from 694 bp of COI using a HKY+G substitution model implemented in MEGAX (Kumar et al. 2018). Bootstrap values are indicated on the nodes. in --Molecular--and--acoustic--evidence--support--the--species--status--of--Anthus rubescens rubescens and--Anthus [rubescens] japonicus--(Passeriformes:--Motacillidae)
FIGURE4. Maximum-likelihood tree inferred from 694 bp of COI using a HKY+G substitution model implemented in MEGAX (Kumar et al. 2018). Bootstrap values are indicated on the nodes.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.