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1 l are conserved in the entire metazoa except nematoda.
2 tor diversity and function across the phylum Nematoda.
3 ely sequence 959 genomes spanning the phylum Nematoda.
4 biological data available across the phylum Nematoda.
5 tiple phyla but is particularly prevalent in Nematoda.
6 . pachtaicum is the smallest genome found in Nematoda.
8 ransferase, fcmt-1, that is conserved across Nematoda and likely originates from bacterial cyclopropa
10 Additionally, Isopoda, Hemiptera, Hirudinea, Nematoda, and Cyprinodontiformes contribution to diets v
11 nce conservation and diversity in the phylum Nematoda, and preliminary work has begun to identify the
12 re identified in six species from across the Nematoda, and they show that rapid homeodomain sequence
16 ll contribute to genome evolution studies of Nematoda as well as strategies to combat global parasite
17 species-rich and trophically diverse phylum Nematoda, at least four independent major lineages of pl
18 ilability of many novel genome assemblies in Nematoda, especially from taxonomic groups that had not
22 atus, which together are the sister taxon of Nematoda; however, long branches and/or base composition
23 nal (whipworm and hookworm) and 6 pan-Phylum Nematoda (intestinal and filarial species) small molecul
25 ncha, Loricifera, Priapulida) and Nematoida (Nematoda, Nematomorpha), together constituting the monop
26 nd Tardigrada) and the cycloneuralian worms (Nematoda, Nematomorpha, Priapulida, Loricifera and Kinor
31 molecular phylogenies supported a Tardigrada+Nematoda relationship over Tardigrada+Arthropoda, but ra
32 nomes of 80 species from all major clades of Nematoda to understand the evolution of this key set of
33 lutionary position at the base of the phylum Nematoda, unlike the free-living nematode Caenorhabditis
34 ancestral hermaphroditism), and roundworms (Nematoda) which have undergone independent translocation