This work is licensed under the Creative Commons Attribution 4.0 International License.
Dieterich C, Clifton SW, Schuster L, Chinwalla A, Delehaunty K, Dinkelacker I, et al. The Pristionchus pacificus genome provides a unique perspective on nematode lifestyle and parasitism. Nature Genetics 2008;40:1193–1198. doi: 10.1038/ng.227DieterichCCliftonSWSchusterLChinwallaADelehauntyKDinkelackerIThe Pristionchus pacificus genome provides a unique perspective on nematode lifestyle and parasitismNature Genetics2008401193119810.1038/ng.227Open DOISearch in Google Scholar
Fedorko A, Stanuszek S. Pristionchus uniformis sp. n. (Nematoda, Rhabditida, Diplogastridae) a facultative parasite of Leptinotarsa decemlineata Say and Melolontha melolontha L. in Poland. Morphology and biology, Acta Parasitologica Polanica. 1971;19:95–112.FedorkoAStanuszekSPristionchus uniformis sp. n. (Nematoda, Rhabditida, Diplogastridae) a facultative parasite of Leptinotarsa decemlineata Say and Melolontha melolontha L. in Poland. Morphology and biologyActa Parasitologica Polanica19711995112Search in Google Scholar
Fonderie P, Steel H, Moens T, Bert W. Experimental induction of intraspecific morphometric variability in a single population of Halicephalobus cf. gingivalis may surpass total interspecific variability. Nematology. 2013;15:529–544. doi: 10.1163/15685411-00002699FonderiePSteelHMoensTBertWExperimental induction of intraspecific morphometric variability in a single population of Halicephalobus cfgingivalis may surpass total interspecific variability. Nematology20131552954410.1163/15685411-00002699Open DOISearch in Google Scholar
Herrmann M, Mayer WE, Sommer RJ. Nematodes of the genus Pristionchus are closely associated with scarab beetles and the Colorado potato beetle in Western Europe. Zoology. 2006;109:96–108. doi: 10.1016/j.zool.2006.03.001HerrmannMMayerWESommerRJNematodes of the genus Pristionchus are closely associated with scarab beetles and the Colorado potato beetle in Western EuropeZoology20061099610810.1016/j.zool.2006.03.001Open DOISearch in Google Scholar
Herrmann M, Mayer WE, Sommer RJ. Sex, bugs and Haldane’s rule: The nematode genus Pristionchus in the United States. Frontiers in Zoology. 2006;3:14. doi: 10.1186/1742-9994-3-14HerrmannMMayerWESommerRJSex, bugs and Haldane’s rule: The nematode genus Pristionchus in the United StatesFrontiers in Zoology200631410.1186/1742-9994-3-14Open DOISearch in Google Scholar
Herrmann M, Mayer WE, Hong RL, Kienle S, Minasaki R, Sommer RJ. The nematode Pristionchus pacificus (Nematoda: Diplogastridae) is associated with the Oriental beetle Exomala orientalis (Coleoptera: Scarabaeidae) in Japan. Zoological Science. 2007;24:883–889. doi: 10.2108/zsj.24.883HerrmannMMayerWEHongRLKienleSMinasakiRSommerRJThe nematode Pristionchus pacificus (Nematoda: Diplogastridae) is associated with the Oriental beetle Exomala orientalis (Coleoptera: Scarabaeidae) in JapanZoological Science20072488388910.2108/zsj.24.883Open DOISearch in Google Scholar
Herrmann M, Weiler C, Rödelsperger C, Kanzaki N, Sommer RJ. Two new Pristionchus species (Nematoda: Diplogastridae) from Taiwan are part of a species-cluster representing the closest known relatives of the model organism P. pacificus. Zoological Studies. 2016;55:48. doi: 10.6620/ZS.2016.55-48HerrmannMWeilerCRödelspergerCKanzakiNSommerRJTwo new Pristionchus species (Nematoda: Diplogastridae) from Taiwan are part of a species-cluster representing the closest known relatives of the model organism P. pacificusZoological Studies2016554810.6620/ZS.2016.55-48Open DOISearch in Google Scholar
Herrmann M, Kanzaki N, Weiler C, Yoshia K, Rödelsperger C, Sommer RJ. Two new Species of Pristionchus (Nematoda: Diplogastridae) include the Gonochoristic Sister Species of P. fissidentatus. Journal of Nematology. 2009;51:1–14.HerrmannMKanzakiNWeilerCYoshiaKRödelspergerCSommerRJTwo new Species of Pristionchus (Nematoda: Diplogastridae) include the Gonochoristic Sister Species of P. fissidentatusJournal of Nematology200951114Search in Google Scholar
Hooper DJ. Handling, fixing, staining and mounting nematodes. In: Southey JF, editor. Methods for work with plant and soil nematodes. London: Her Majesty’s Stationary Office; 1986. p. 59–80.HooperDJHandling, fixing, staining and mounting nematodesIn:SoutheyJFeditorMethods for work with plant and soil nematodesLondonHer Majesty’s Stationary Office19865980Search in Google Scholar
Kanzaki N, Ragsdale EJ, Herrmann M, Mayer WE, Sommer RJ. Description of three Pristionchus species (Nematoda: Diplogastridae) from Japan that form a cryptic species complex with the model organism P. pacificus. Zoological Science. 2012;29:403–417. doi: 10.2108/zsj.29.403KanzakiNRagsdaleEJHerrmannMMayerWESommerRJDescription of three Pristionchus species (Nematoda: Diplogastridae) from Japan that form a cryptic species complex with the model organism P. pacificusZoological Science20122940341710.2108/zsj.29.403Open DOISearch in Google Scholar
Kanzaki N, Ragsdale EJ, Herrmann M, Röseler W, Sommer RJ. Two new species of Pristionchus (Nematoda: Diplogastridae) support the biogeographic importance of Japan for the evolution of the genus Pristionchus and the model system P. pacificus. Zoological Science. 2013;30:680–692. doi: 10.2108/zsj.30.680KanzakiNRagsdaleEJHerrmannMRöselerWSommerRJTwo new species of Pristionchus (Nematoda: Diplogastridae) support the biogeographic importance of Japan for the evolution of the genus Pristionchus and the model system P. pacificusZoological Science20133068069210.2108/zsj.30.680Open DOISearch in Google Scholar
Kanzaki N, Herrmann M, Yoshida K, Weiler C, Rödelsperger C, Sommer RJ. Samplings of millipedes in Japan and scarab beetles in Hong Kong result in five new Species of Pristionchus (Nematoda: Diplogastridae). Journal of Nematology. 2018;50:517–610. doi: 10.21307/jofnem-2018-044KanzakiNHerrmannMYoshidaKWeilerCRödelspergerCSommerRJSamplings of millipedes in Japan and scarab beetles in Hong Kong result in five new Species of Pristionchus (Nematoda: Diplogastridae)Journal of Nematology20185051761010.21307/jofnem-2018-044Open DOISearch in Google Scholar
Kanzaki N, Herrmann M, Weiler C, Röseler W, Theska T, Berger J, et al. Nine new Pristionchus (Nematoda: Diplogastridae) species from China. Zootaxa. 2021;4943:1–66. doi: 10.11646/zootaxa.4943.1KanzakiNHerrmannMWeilerCRöselerWTheskaTBergerJNine new Pristionchus (Nematoda: Diplogastridae) species from ChinaZootaxa2021494316610.11646/zootaxa.4943.1Open DOISearch in Google Scholar
Kanzaki N, Fujimori Y, Ekino T, Degawa Y. Pristionchus seladoniae n. sp. (Diplogastridae) isolated from a eusocial soil-dwelling bee, Halictus (Seladonia) aerarius, in Nagano, Japan. Nematology. 2024; 26:in press. doi: 10.1163/15685411-bja10326KanzakiNFujimoriYEkinoTDegawaYPristionchus seladoniae n. sp. (Diplogastridae) isolated from a eusocial soil-dwelling bee, Halictus (Seladonia) aerarius, in Nagano, JapanNematology202426in press10.1163/15685411-bja10326Open DOISearch in Google Scholar
Kreis HA. Beiträge zur Kenntnis pflanzenparasitischer Nematoden. Zeitschrift für Parasitenkunde. 1932;5:184–194.KreisHABeiträge zur Kenntnis pflanzenparasitischer NematodenZeitschrift für Parasitenkunde19325184194Search in Google Scholar
Mannerheim CG. Insectes coléopteres de la Sibérie orientale, nouveaux ou peu connus. Bulletin de la Société impériale des naturalistes de Moscou. 1849;22:220–249.MannerheimCGInsectes coléopteres de la Sibérie orientale, nouveaux ou peu connusBulletin de la Société impériale des naturalistes de Moscou184922220249Search in Google Scholar
Motschulski V. Insectes du Japon. Études Entomologiques. 1861;10:3–24.MotschulskiVInsectes du JaponÉtudes Entomologiques186110324Search in Google Scholar
Rödelsperger C, Röseler W, Prabh N, Yoshida K, Weiler C, Herrmann M, et al. Phylotransciptomics of Pristionchus nematodes reveals parallel gene loss in six hermaphroditic lineages. Current Biology. 2018;28:3123–3127. doi: 10.1016/j.cub.2018.07.041RödelspergerCRöselerWPrabhNYoshidaKWeilerCHerrmannMPhylotransciptomics of Pristionchus nematodes reveals parallel gene loss in six hermaphroditic lineagesCurrent Biology2018283123312710.1016/j.cub.2018.07.041Open DOISearch in Google Scholar
Ragsdale E, Kanzaki N, Roeseler W, Herrmann M, Sommer RJ. Three new species of Pristionchus (Nematoda: Diplogastridae) show morphological divergence through evolutionary intermediates of a novel feeding polymorphism. Zoological Journal of the Linnean Society. 2013;168:671–698. doi: 10.1111/zoj.12041RagsdaleEKanzakiNRoeselerWHerrmannMSommerRJThree new species of Pristionchus (Nematoda: Diplogastridae) show morphological divergence through evolutionary intermediates of a novel feeding polymorphismZoological Journal of the Linnean Society201316867169810.1111/zoj.12041Open DOISearch in Google Scholar
Ragsdale EJ, Kanzaki N, Herrmann M. 2015Taxonomy and natural history: the genus Pristionchus. In: Sommer RJ, Hunt DJ, Perry RN, editors. Pristionchus pacificus - a nematode model for comparative and evolutionary biology. Nematology Monographs and Perspectives vol. 11. Leiden: Brill; 2015. p. 77–120. doi: 10.1163/9789004260306_005RagsdaleEJKanzakiNHerrmannM2015Taxonomy and natural history: the genus PristionchusIn:SommerRJHuntDJPerryRNeditorsPristionchus pacificus - a nematode model for comparative and evolutionary biology. Nematology Monographs and Perspectives vol. 11LeidenBrill20157712010.1163/9789004260306_005Open DOISearch in Google Scholar
Schlager B, Wang X, Braach G, Sommer RJ. Molecular cloning of a dominant Roller mutant and establishment of DNA-mediated transformation in the nematode model Pristionchus pacificus. Genesis. 2009;47:300–304. doi: 10.1002/dvg.20499SchlagerBWangXBraachGSommerRJMolecular cloning of a dominant Roller mutant and establishment of DNA-mediated transformation in the nematode model Pristionchus pacificusGenesis20094730030410.1002/dvg.20499Open DOISearch in Google Scholar
Sommer RJ, Lightfoot JW. The genus Pristionchus: a model for phenotypic plasticity, predatory behavior, self-recognition and other complex traits. In: Glazer I, Shapiro-Ilan D, Sternberg PW, editors. Nematodes as biological models. Wallingford: CABI Publishing; 2022. p.1–23. doi: 10.1079/9781789248814.00SommerRJLightfootJWThe genus Pristionchus: a model for phenotypic plasticity, predatory behavior, self-recognition and other complex traitsIn:GlazerIShapiro-IlanDSternbergPWeditorsNematodes as biological modelsWallingfordCABI Publishing202212310.1079/9781789248814.00Open DOISearch in Google Scholar
Sommer R J. Integrative evolutionary biology and mechanistic approaches in comparative biology. In: Sommer RJ, Hunt DJ, Perry RN, editors. Pristionchus pacificus - a nematode model for comparative and evolutionary biology. Nematology Monographs and Perspectives vol. 11. Leiden: Brill; 2015. p. 19–41. doi: 10.1163/9789004260306_003SommerR JIntegrative evolutionary biology and mechanistic approaches in comparative biologyIn:SommerRJHuntDJPerryRNeditorsPristionchus pacificus - a nematode model for comparative and evolutionary biology. Nematology Monographs and Perspectives vol. 11LeidenBrill2015194110.1163/9789004260306_003Open DOISearch in Google Scholar
Sommer RJ, Carta LK, Kim SY, Sternberg PW. Morphological, genetic and molecular description of Pristionchus pacificus n. sp. (Nematoda: Neodiplogastridae). Fundamental and Applied Nematology. 1996;19:511–521.SommerRJCartaLKKimSYSternbergPWMorphological, genetic and molecular description of Pristionchus pacificus n. sp. (Nematoda: Neodiplogastridae)Fundamental and Applied Nematology199619511521Search in Google Scholar
Susoy V, Ragsdale EJ, Kanzaki N, Sommer RJ. Rapid diversification associated with a macroevolutionary pulse of developmental plasticity. eLIFE. 2015;4:e05463.SusoyVRagsdaleEJKanzakiNSommerRJRapid diversification associated with a macroevolutionary pulse of developmental plasticityeLIFE20154e05463Search in Google Scholar
Susoy V, Herrmann M, Kanzaki N, Kruger M, Nguyen CN, Rödelsperger C, et al. Large-scale diversification without genetic isolation in nematode symbionts of figs. Science Advance. 2016;2:e1501031.SusoyVHerrmannMKanzakiNKrugerMNguyenCNRödelspergerCLarge-scale diversification without genetic isolation in nematode symbionts of figsScience Advance20162e1501031Search in Google Scholar
Tian H, Schlager B, Xiao H, Sommer RJ. Wnt signaling by differentially expressed Wnt ligands induces vulva development in Pristionchus pacificus. Current Biology. 2008;18:142–146. doi: 10.1016/j.cub.2007.12.048.TianHSchlagerBXiaoHSommerRJWnt signaling by differentially expressed Wnt ligands induces vulva development in Pristionchus pacificusCurrent Biology20081814214610.1016/j.cub.2007.12.048.Open DOISearch in Google Scholar
Wighard S, Witte H, Sommer R. Conserved switch genes that arose via whole-genome duplication regulate a cannibalistic nematode morph. Science Advances. 2024;10(15).WighardSWitteHSommerRConserved switch genes that arose via whole-genome duplication regulate a cannibalistic nematode morphScience Advances20241015Search in Google Scholar
Witte H, Moreno E, Rödelsperger C, Kim J, Kim J-S, Streit A, et al. 2015. Gene inactivation using the CRISPR/Cas9 system in the nematode Pristionchus pacificus. Development Genes & Evolution. 2015;225:55–62. doi: 10.1007/s00427-014-0486-8WitteHMorenoERödelspergerCKimJKimJ-SStreitA2015Gene inactivation using the CRISPR/Cas9 system in the nematode Pristionchus pacificusDevelopment Genes & Evolution2015225556210.1007/s00427-014-0486-8Open DOISearch in Google Scholar
Yoshida K, Herrmann M, Kanzaki N, Weiler C, Rödelsperger C, Sommer RJ. Two new species of Pristionchus (Nematoda: Diplogastridae) from Taiwan and the definition of the pacificus species-complex sensu stricto. Journal of Nematology. 2018;50:355–368. doi: 10.21307/jofnem-2018-019YoshidaKHerrmannMKanzakiNWeilerCRödelspergerCSommerRJTwo new species of Pristionchus (Nematoda: Diplogastridae) from Taiwan and the definition of the pacificus species-complex sensu strictoJournal of Nematology20185035536810.21307/jofnem-2018-019Open DOISearch in Google Scholar
Sommer RJ, McGaughran A. The nematode Pristionchus pacificus as a model system for integrative studies in evolutionary biology. Molecular Ecology. 2013; 22, 2380–2393.SommerRJMcGaughranAThe nematode Pristionchus pacificus as a model system for integrative studies in evolutionary biologyMolecular Ecology20132223802393Search in Google Scholar
Sommer RJ. Phenotypic Plasticity: from theory and genetics to current and future challenges. Genetics. 2020; 215, 1–13.SommerRJPhenotypic Plasticity: from theory and genetics to current and future challengesGenetics2020215113Search in Google Scholar
Bento G, Ogawa A, Sommer RJ. Co-option of the hormone-signalling module dafachronic acid–DAF-12 in nematode evolution. Nature. 2010; 466, 494–497.BentoGOgawaASommerRJCo-option of the hormone-signalling module dafachronic acid–DAF-12 in nematode evolutionNature2010466494497Search in Google Scholar
Lightfoot JW, Wilecki M, Roedelsperger C, Moreno E, Susoy V, Witte H, Sommer, RJ. Small peptide mediated self-recognition prevents cannibalism in predatory nematodes. Science. 2019; 364, 86–89. doi:10.1126/science.aav9856LightfootJWWileckiMRoedelspergerCMorenoESusoyVWitteHSommerRJSmall peptide mediated self-recognition prevents cannibalism in predatory nematodesScience2019364868910.1126/science.aav9856Open DOISearch in Google Scholar
Lightfoot JW, Dardiry M, Kalirad A, Giaimo S, Eberhardt G, Witte H, Wilecki M, Roedelsperger C, Traulsen A, Sommer RJ. Sex or cannibalism: polyphenism and kin recognition control social action startegies in nematodes. Science Advances. 2021; 7, eabg8042.LightfootJWDardiryMKaliradAGiaimoSEberhardtGWitteHWileckiMRoedelspergerCTraulsenASommerRJSex or cannibalism: polyphenism and kin recognition control social action startegies in nematodesScience Advances20217eabg8042Search in Google Scholar
Herrmann M, Kanzaki N, Weiler C, Yoshida K, Rödelsperger C, Sommer RJ. Two new Species of Pristionchus (Nematoda: Diplogastridae) include the Gonochoristic Sister Species of P. fissidentatus. J. of Nematology. 2019; 51, 1–14.HerrmannMKanzakiNWeilerCYoshidaKRödelspergerCSommerRJTwo new Species of Pristionchus (Nematoda: Diplogastridae) include the Gonochoristic Sister Species of P. fissidentatusJ. of Nematology201951114Search in Google Scholar
Kanzaki N, Ragsdale EJ, Herrmann M, Mayer WE, Tanaka R, Sommer RJ. Parapristionchus giblindavisi n. gen., n. sp. (Rhabditida: Diplogastridae) isolated from stag beetles (Coleoptera: Lucanidae) in Japan. Nematology. 2012; 14(8), 933–947.KanzakiNRagsdaleEJHerrmannMMayerWETanakaRSommerRJParapristionchus giblindavisi n. gen., n. sp. (Rhabditida: Diplogastridae) isolated from stag beetles (Coleoptera: Lucanidae) in JapanNematology2012148933947Search in Google Scholar
Röseler W, Collenberg M, Yoshida K, Lanz C, Sommer RJ, Rödelsperger C. The improved genome of the nematode Parapristionchus giblindavisi provides insights into lineage-specific gene family evolution. G3 Volume 12, Issue 10, October 2022, jkac215, https://doi.org/10.1093/g3journal/jkac215RöselerWCollenbergMYoshidaKLanzCSommerRJRödelspergerCThe improved genome of the nematode Parapristionchus giblindavisi provides insights into lineage-specific gene family evolutionG31210October2022jkac215https://doi.org/10.1093/g3journal/jkac215Search in Google Scholar
Dardiry M, Piskobulu V, Kalirad A, Sommer RJ. Experimental and theoretical support for costs of plasticity and phenotype in a nematode cannibalistic trait. Evolution Letters. 2023; 7, 48–57.DardiryMPiskobuluVKaliradASommerRJExperimental and theoretical support for costs of plasticity and phenotype in a nematode cannibalistic traitEvolution Letters202374857Search in Google Scholar