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Journal Abstract Search
196 related items for PubMed ID: 36200520
1. Large-scale genetic investigation of nematode diversity and their phylogenetic patterns in New Zealand's marine animals. Bennett J, Poulin R, Presswell B. Parasitology; 2022 Nov; 149(13):1794-1809. PubMed ID: 36200520 [Abstract] [Full Text] [Related]
5. Marine biodiversity of Aotearoa New Zealand. Gordon DP, Beaumont J, MacDiarmid A, Robertson DA, Ahyong ST. PLoS One; 2010 Aug 02; 5(8):e10905. PubMed ID: 20689846 [Abstract] [Full Text] [Related]
8. Environmental filtering along a bathymetric gradient: A metabarcoding meta-analysis of free-living nematodes. Macheriotou L, Derycke S, Vanreusel A. Mol Ecol; 2023 Dec 02; 32(23):6177-6189. PubMed ID: 37971160 [Abstract] [Full Text] [Related]
9. Improved phylogenomic sampling of free-living nematodes enhances resolution of higher-level nematode phylogeny. Smythe AB, Holovachov O, Kocot KM. BMC Evol Biol; 2019 Jun 13; 19(1):121. PubMed ID: 31195978 [Abstract] [Full Text] [Related]
10. Nematode-associated microbial taxa do not correlate with host phylogeny, geographic region or feeding morphology in marine sediment habitats. Schuelke T, Pereira TJ, Hardy SM, Bik HM. Mol Ecol; 2018 Apr 13; 27(8):1930-1951. PubMed ID: 29600535 [Abstract] [Full Text] [Related]
11. Six new species of free-living nematodes (Nematoda: Enoplida) from deep-sea cold seeps on Hikurangi Margin, New Zealand. Leduc D. PeerJ; 2023 Apr 13; 11():e14867. PubMed ID: 36908816 [Abstract] [Full Text] [Related]
12. Agriculture erases climate constraints on soil nematode communities across large spatial scales. Li X, Zhu H, Geisen S, Bellard C, Hu F, Li H, Chen X, Liu M. Glob Chang Biol; 2020 Feb 13; 26(2):919-930. PubMed ID: 31479174 [Abstract] [Full Text] [Related]
13. Widespread prevalence but contrasting patterns of intragenomic rRNA polymorphisms in nematodes: Implications for phylogeny, species delimitation and life history inference. Qing X, Bik H, Yergaliyev TM, Gu J, Fonderie P, Brown-Miyara S, Szitenberg A, Bert W. Mol Ecol Resour; 2020 Jan 13; 20(1):318-332. PubMed ID: 31721426 [Abstract] [Full Text] [Related]
14. Low genetic but high morphological variation over more than 1000 km coastline refutes omnipresence of cryptic diversity in marine nematodes. Apolônio Silva de Oliveira D, Decraemer W, Moens T, Dos Santos GA, Derycke S. BMC Evol Biol; 2017 Mar 07; 17(1):71. PubMed ID: 28270090 [Abstract] [Full Text] [Related]
15. Molecular diversity of fungal phylotypes co-amplified alongside nematodes from coastal and deep-sea marine environments. Bhadury P, Bik H, Lambshead JD, Austen MC, Smerdon GR, Rogers AD. PLoS One; 2011 Mar 07; 6(10):e26445. PubMed ID: 22046287 [Abstract] [Full Text] [Related]
16. Status assessment of New Zealand's naturally uncommon ecosystems. Holdaway RJ, Wiser SK, Williams PA. Conserv Biol; 2012 Aug 07; 26(4):619-29. PubMed ID: 22731663 [Abstract] [Full Text] [Related]
17. Monophyly of clade III nematodes is not supported by phylogenetic analysis of complete mitochondrial genome sequences. Park JK, Sultana T, Lee SH, Kang S, Kim HK, Min GS, Eom KS, Nadler SA. BMC Genomics; 2011 Aug 03; 12():392. PubMed ID: 21813000 [Abstract] [Full Text] [Related]
18. Phylogeny of the nematode genus Pristionchus and implications for biodiversity, biogeography and the evolution of hermaphroditism. Mayer WE, Herrmann M, Sommer RJ. BMC Evol Biol; 2007 Jul 02; 7():104. PubMed ID: 17605767 [Abstract] [Full Text] [Related]
19. Genomic Analyses Identify Novel Molecular Signatures Specific for the Caenorhabditis and other Nematode Taxa Providing Novel Means for Genetic and Biochemical Studies. Khadka B, Chatterjee T, Gupta BP, Gupta RS. Genes (Basel); 2019 Sep 24; 10(10):. PubMed ID: 31554175 [Abstract] [Full Text] [Related]
20. In silico assessment of 18S rDNA metabarcoding markers for the characterization of nematode communities. Ficetola GF, Guerrieri A, Cantera I, Bonin A. PLoS One; 2024 Sep 24; 19(4):e0298905. PubMed ID: 38578734 [Abstract] [Full Text] [Related] Page: [Next] [New Search]