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39 results for “Metazoa”
literature body sizes, metazoa
masses and lengths, amphibians and invertebrates, various sources<p></p>
FIGURE 2 Pentatrocha gigantea n. gen., n in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 2 Pentatrocha gigantea n. gen., n. sp., trophi SEM pictures. 2a: frontal, detail; 2b: frontal, 2c: caudal view. Scale bars: 10 µm.
FIGURE 6.Floscularia wallacei n in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 6.Floscularia wallacei n. sp., trophi SEM pictures. 6a: frontal view, 6b: caudal view, 6c: detail. Scale bars: 10 µm.
FIGURE 5. Floscularia wallacei n in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 5. Floscularia wallacei n. sp., neck spines, SEM pictures. 5a: dorsal, 5b: lateral. Scale bar10 µm.
FIGURE 3. Octotrocha speciosa Thorpe, trophi SEM pictures. 3a in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 3. Octotrocha speciosa Thorpe, trophi SEM pictures. 3a: caudal; 3b: frontal, 3c: frontal, detail with left ramus, uncus and manubrium view. Scale bars: 10 µm.
FIGURE 4. Floscularia wallacei n in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 4. Floscularia wallacei n. sp. 4a: habitus, young (left) and adult (right) specimen, 4b: head and corona, lateral view, 4c: head and corona, dorsal view.
Data from: Endosymbiotic calcifying bacteria: a new cue for the origin of calcification in Metazoa?
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Data from: Extracting phylogenetic signal and accounting for bias in whole-genome data sets supports the Ctenophora as sister to remaining Metazoa
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Data from: Assessing the effects of a sequestered germline on interdomain lateral gene transfer in Metazoa
A sequestered germline in Metazoa has been argued to be an obstacle to lateral gene transfer (LGT), though few studies have specifically assessed this claim. Here we test the hypothesis that the origin of a sequestered germline reduced LGT events in Bilateria (i.e. triploblast lineages) as compared to early-diverging Metazoa (i.e. Ctenophora, Cnidaria, Porifera, and Placozoa). We analyze single-gene phylogenies generated with over 900 species, sampled from among Bacteria, Archaea and Eukaryota to identify well-supported interdomain LGTs. We focus on interdomain LGT (i.e. those between prokaryotes and Metazoa) as systematic errors in single gene tree reconstruction create uncertainties for interpreting eukaryote-to-eukaryotes transfers. The breadth of the sampled Metazoa enables us to estimate the timing of LGTs, and to examine the pattern before vs. after the evolution of a sequestered germline. We identified 58 LGTs found only in Metazoa and prokaryotes (i.e. bacteria and/or archaea), and 7 genes transferred from prokaryotes into Metazoa plus one other eukaryotic clade. Our analyses indicate that more interdomain transfers occurred before the development of a sequestered germline, consistent with the hypothesis that this feature is an obstacle to LGT.
Supplementary material 4 from: Hintikka S, Carlsson JE, Carlsson J (2022) The bacterial hitchhiker's guide to COI: Universal primer-based COI capture probes fail to exclude bacterial DNA, but 16S capture leaves metazoa behind. Metabarcoding and Metagenomics 6: e80416. https://doi.org/10.3897/mbmg.6.80416
COI library ASV tax
Supplementary material 1 from: Hintikka S, Carlsson JE, Carlsson J (2022) The bacterial hitchhiker's guide to COI: Universal primer-based COI capture probes fail to exclude bacterial DNA, but 16S capture leaves metazoa behind. Metabarcoding and Metagenomics 6: e80416. https://doi.org/10.3897/mbmg.6.80416
File S1
Supplementary material 3 from: Hintikka S, Carlsson JE, Carlsson J (2022) The bacterial hitchhiker's guide to COI: Universal primer-based COI capture probes fail to exclude bacterial DNA, but 16S capture leaves metazoa behind. Metabarcoding and Metagenomics 6: e80416. https://doi.org/10.3897/mbmg.6.80416
16S library ASV tax
Supplementary material 5 from: Hintikka S, Carlsson JE, Carlsson J (2022) The bacterial hitchhiker's guide to COI: Universal primer-based COI capture probes fail to exclude bacterial DNA, but 16S capture leaves metazoa behind. Metabarcoding and Metagenomics 6: e80416. https://doi.org/10.3897/mbmg.6.80416
Unassigned COIASVs krona
Supplementary material 2 from: Hintikka S, Carlsson JE, Carlsson J (2022) The bacterial hitchhiker's guide to COI: Universal primer-based COI capture probes fail to exclude bacterial DNA, but 16S capture leaves metazoa behind. Metabarcoding and Metagenomics 6: e80416. https://doi.org/10.3897/mbmg.6.80416
Metadata all
FIGURE 1. Pentatrocha gigantea n. gen., n in Diversity of cryptic Metazoa in Australian freshwaters: a new genus and two new species of sessile rotifer (Rotifera, Monogononta, Gnesiotrocha, Flosculariidae)
FIGURE 1. Pentatrocha gigantea n. gen., n. sp. a: dorsal, b: lateral view.
Data from: Not all are free-living: high-throughput DNA metabarcoding reveals a diverse community of protists parasitizing soil metazoa
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Data from: Assessing the effects of a sequestered germline on interdomain lateral gene transfer in Metazoa
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Angel2 phosphatase activity is required for non-canonical mitochondrial RNA processing in metazoa
GEO Series GSE189750. Drosophila melanogaster. 4 samples. Type: Expression profiling by high throughput sequencing.
TSC22D, WNK and NRBP gene families exhibit functional buffering and evolved with Metazoa for cell volume regulation
GEO Series GSE269526. Homo sapiens. 55 samples. Type: Other.
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