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FIGURE 2 in A new species of barred frog, Mixophyes (Anura: Myobatrachidae) from south-eastern Australia identified by molecular genetic analyses
FIGURE 2. Bayesian phylogram of relationships among mitochondrial ND2 haplotypes in Mixophyes. Values at nodes represent ML bootstrap proportions (left) and Bayesian posterior probabilities (right). The tree was rooted with sequences from the outgroups and Lechriodus melanopyga, Limnodynastes salmini and Neobatrachus pictus (Table 1). Alphanumeric codes refer to collection location details and ABTC numbers in Table 1.
FIGURE 8 in A new species of barred frog, Mixophyes (Anura: Myobatrachidae) from south-eastern Australia identified by molecular genetic analyses
FIGURE 8. Mixophyes australis sp. nov. in life. A) Holotype AMS R188750, Sharpes Creek, Gloucester Top NP, Ross Knowles, B) Sharpes Creek, Gloucester Top NP, C) Gap Creek, Watagan NP, Stephen Mahony, D) Abbots Ck, Olney SF, Stephen Mahony, E) Cockerawombeeba Ck, Hastings Range, Michael Mahony, F) Cockerawombeeba Ck, Hastings Range, Michael Mahony.
FIGURE 1 in A new species of barred frog, Mixophyes (Anura: Myobatrachidae) from south-eastern Australia identified by molecular genetic analyses
FIGURE 1. Map showing collection locations sampled for molecular genetic analysis of Mixophyes in eastern Australia. Alphanumeric codes refer to collection location details in Table 1. Small black dots are voucher records from the Atlas of Living Australia, yellow triangles—M. fleayi, blue circles—M. balbus northern group, red squares—M. balbus southern group.
FIGURE 9 in A new species of barred frog, Mixophyes (Anura: Myobatrachidae) from south-eastern Australia identified by molecular genetic analyses
FIGURE 9. Reproductive calls of Mixophyes balbus and Mixophyes australis sp. nov. A) Oscillogram and spectrogram of a series of advertisement calls and encounter calls of Mixophyes australis sp. nov. over 40 seconds duration, B) a single call with the time axis expanded (1.5 seconds duration), C) oscillogram and spectrogram of a series of advertisement calls and encounter calls of Mixophyes balbus over 40 seconds duration, D) a single call with the time axis expanded (1.5 seconds duration), E) oscillogram and spectrogram of an encounter call of Mixophyes australis sp. nov., (0.4 second time axis), and F) oscillogram and spectrogram of an encounter call Mixophyes balbus (0.4 second time axis). a = advertisement call, e = encounter call, and kHz is kilohertz.
FIGURE 2 in Molecular systematics of Jania species (Corallinales, Rhodophyta) from south-eastern Australia based on cox1 and psbA DNA sequence analyses
FIGURE 2. Bayesian phylogenetic tree of Jania species (Rhodophyta) based on cox1 gene with focus on specimens from south-eastern Australia. Numbers above branches represent posterior probabilities (values <0.5 were omitted). Some branches were shortened to fit the figure. Specimens sequenced in this study marked in bold and have their herbarium code identified. Colored columns indicate species delimitation methods results: ABGD; ASAP P (p-value partition), ASAP W (w rank partition); GMYC S (single-threshold), GMYC M (multiple-threshold); PTP B (Bayesian inference), PTP M (Heuristic or Maximum Likelihood); and SPN 95% and 99% of parsimony probability limit. Black column indicates the consensus across all species delimitation results. Numbers below to each column indicate the total number of species partitions for each method or the consensus. Jania squamata in the PTP B result was divided into three different species.
FIGURE 3 in Molecular systematics of Jania species (Corallinales, Rhodophyta) from south-eastern Australia based on cox1 and psbA DNA sequence analyses
FIGURE 3. Maximum likelihood phylogeny of Jania species based on psbA gene focusing on specimens from south-eastern Australia. Numbers above branches represent non-parametric bootstrap support (values <70 omitted). Species names are followed by GenBank accession number and specimen locality (for sequences downloaded from GenBank), or species name, herbarium codes for all specimens sharing that particular haplotype, and specimen locality (marked in bold for sequences produced in this study). Scale bar = substitutions per site.
FIGURE 1 in Molecular systematics of Jania species (Corallinales, Rhodophyta) from south-eastern Australia based on cox1 and psbA DNA sequence analyses
FIGURE 1. Maximum likelihood phylogenetic tree of Jania species (Rhodophyta) based on cox1 gene with focus on specimens from south-eastern Australia. Numbers above branches represent non-parametric bootstrap support (values <70 omitted). Tree tip names are composed by species name, GenBank accession number and specimen locality (for sequences downloaded from GenBank), or species name, herbarium code for all sequenced specimens presented by that sequence, and specimen locality (for sequences produced in this study, all marked in bold). Scale bar = substitutions per site.
FIGURE 4 in Molecular systematics of Jania species (Corallinales, Rhodophyta) from south-eastern Australia based on cox1 and psbA DNA sequence analyses
FIGURE 4. Bayesian phylogenetic tree of Jania species based on psbA gene with focus on specimens from south-eastern Australia. Numbers above branches represent posterior probabilities (values <0.5 omitted). Specimens sequenced in this study are marked in bold and have their herbarium code identified. Colored columns indicate species delimitation results: ABGD; ASAP P (p-value partition), ASAP W (w rank partition); GMYC S (single-threshold), GMYC M (multiple-threshold); PTP B (Bayesian inference), PTP M (Heuristic or Maximum Likelihood); and SPN 95% and 99% of parsimony probability limit. Black column indicates the consensus across all species delimitation results. Numbers below each column indicate the total number of species partitions for each method, including the consensus.
FIGURE 5 in Molecular systematics of Jania species (Corallinales, Rhodophyta) from south-eastern Australia based on cox1 and psbA DNA sequence analyses
FIGURE 5. Maximum likelihood phylogenetic tree of Corallina species based on psbA DNA sequences. Numbers above branches represent non-parametric bootstrap support. Values <50 were omitted. Species names are followed by GenBank accession number. South-eastern Australian sequences produced in this study are marked in bold. Bossiella, Calliarthron and Arthrocardia were used as outgroups.
Data from: Comparative analysis indicates historical persistence and contrasting contemporary structure in sympatric woody perennials of semi-arid south-west Western Australia
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Responding to the biodiversity impacts of a megafire: a case study from south-eastern Australia’s Black Summer
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Data from: Atypical residency of short-beaked common dolphins (Delphinus delphis) to a shallow, urbanized embayment in south-eastern Australia
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Data from: Persistence with episodic range expansion from the early Pleistocene: the distribution of genetic variation in the forest tree Corymbia calophylla (Myrtaceae) in south-western Australia
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The post-embryonic ontogeny of the early Cambrian trilobite Estaingia bilobata from South Australia: trunk development and phylogenetic implications
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Data from: Hydrological conditions explain wood density in riparian plants of south-eastern Australia
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Data from: Functional responses of an apex predator and a mesopredator to an invading ungulate: Dingoes, red foxes and sambar deer in south-east Australia
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Year-round at-sea movements of fairy prions from south-eastern Australia
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Predicting habitat suitability for wild deer in relation to threatened ecological communities in south-eastern New South Wales, Australia
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Data from: An early Cambrian chelicerate from the Emu Bay Shale, South Australia
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Data from: A multigene molecular assessment of cryptic biodiversity in the iconic freshwater blackfishes (Teleostei: Percichthyidae: Gadopsis) of south-eastern Australia
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Allen Brain Atlas
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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.