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Type: Article
Published: 2019-04-16
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Redescription of Milnesium alpigenum Ehrenberg, 1853 (Tardigrada: Apochela) and a description of Milnesium inceptum sp. nov., a tardigrade laboratory model

Institute of Zoology and Biomedical Research, Jagiellonian University, Gronostajowa 9, 30-387 Kraków, Poland
Department of Biology, Keio University School of Medicine, Hiyoshi, Yokohama 223-8521, Japan
Department of Zoology, Institute of Biomaterials and Biomolecular Systems, Stuttgart University, Stuttgart, Germany
Department of Ecology and Environmental Conservation, University of Plovdiv, 24 Tzar Assen Street, 4000 Plovdiv, Bulgaria
Department of Ecology and Environmental Conservation, University of Plovdiv, 24 Tzar Assen Street, 4000 Plovdiv, Bulgaria
Marine Biology & Ecology Research Centre, University of Plymouth, Drake Circus, Plymouth, PL4 8AA, United Kingdom
Institute of Zoology and Biomedical Research, Jagiellonian University, Gronostajowa 9, 30-387 Kraków, Poland
Tardigrada barcoding cryptic species integrative taxonomy M. tardigradum s.s. phylogeny pseudocryptic species

Abstract

Intra- and interspecific variability, being at the very core of alpha taxonomy, has been a long-standing topic of debate among tardigrade taxonomists. Early studies tended to assume that tardigrades exhibit wide intraspecific variation. However, with more careful morphological studies, especially those incorporating molecular tools that allow for an independent verification of species identifications based on phenotypic traits, we now recognise that ranges of tardigrade intraspecific variability are narrower, and that differences between species may be more subtle than previously assumed. The taxonomic history of the genus Milnesium, and more specifically that of the nominal species, M. tardigradum described by Doyère in 1840, is a good illustration of the evolution of views on intraspecific variability in tardigrades. The assumption of wide intraspecific variability in claw morphology led Marcus (1928) to synonymise two species with different claw configurations, M. alpigenum and M. quadrifidum, with M. tardigradum. Currently claw configuration is recognised as one of the key diagnostic traits in the genus Milnesium, and the two species suppressed by Marcus have recently been suggested to be valid. In this study, we clarify the taxonomic status of M. alpigenum, a species that for nearly a century was considered invalid. We redescribe M. alpigenum, using a population collected from the locus typicus, by the means of integrative taxonomy, i.e. including light microscopy, scanning electron microscopy, ontogenetic observations, and genetic barcoding. Moreover, the redescription of M. alpigenum allowed us to verify the uncertain taxonomic status of two popular laboratory models that were originally considered to be M. tardigradum; though one was recently reidentified as M. cf. alpigenum. Our analysis showed that both laboratory strains, despite being morphologically and morphometrically nearly identical to M. alpigenum, in fact represent a new species, M. inceptum sp. nov.  The two species, being disnguishable only by statistical morphometry and/or DNA sequences, are the first example of pseudocryptic species in tardigrades.

 

References

  1. Bartels, P.J., Nelson, D.R., Kaczmarek, Ł. & Michalczyk, Ł. (2014) The genus Milnesium (Tardigrada: Eutardigrada: Milnesiidae) in the Great Smoky Mountains National Park (North Carolina and Tennessee, USA), with the description of Milnesium bohleberi sp. nov. Zootaxa, 3826 (2), 356–368.

    https://doi.org/10.11646/zootaxa.3826.2.5

    Beasley, C.W. & Miller, W.R. (2007) Tardigrada of Xinjiang Uygur Autonomous Region, China. Journal of Limnology, 66, 49–55.

    https://doi.org/10.4081/jlimnol.2007.s1.49

    Beisser, D., Grohme, M.A., Kopka, J., Frohme, M., Schill, R.O., Hengherr, S., Dandekar, T., Klau, G.W., Dittrich, M. & Müller, T. (2012) Integrated pathway modules using time-course metabolic profiles and EST data from Milnesium tardigradum. BMC Systems Biology, 6 (1), 72.

    https://doi.org/10.1186/1752-0509-6-72

    Binda, M.G. & Pilato, G. (1990) Tardigradi di Terra del Fuoco e Magallanes. I. Milnesium brachyungue, nuova specie di Tardigrado Milnesiidae. Animalia, 17, 105–110.

    Bryce, D. (1892) On the Macrotrachelous Callidinae. Journal of the Quekett Microscopical Club, 2, 15–23.

    Casquet, J., Thebaud, C. & Gillespie, R.G. (2012) Chelex without boiling, a rapid and easy technique to obtain stable amplifiable DNA from small amounts of ethanol-stored spiders. Molecular Ecology Resources, 12, 136–141.

    https://doi.org/10.1111/j.1755-0998.-2011.03073.x

    Ciobanu, D.A., Zawierucha, K., Moglan, I. & Kaczmarek, Ł. (2014) Milnesium berladnicorum sp. n. (Eutardigrada, Apochela, Milnesiidae), a new species of water bear from Romania. ZooKeys, 429, 1–11.

    https://doi.org/10.3897/zookeys.429.7755

    Ciobanu, D.A., Roszkowska, M. & Kaczmarek, Ł. (2015) Two new tardigrade species from Romania (Eutardigrada: Milnesiidae, Macrobiotidae), with some remarks on secondary sex characters in Milnesium dornensis sp. nov. Zootaxa, 3941 (4), 542–564.

    https://doi.org/10.11646/zootaxa.3941.4.4

    Dastych, H. (1988) The Tardigrada of Poland. Monografie Fauny Polski, 16, 1–255.

    Doyère, M. (1840) Mémoire sur les Tardigrades. Annales des Sciences Naturalles, Zoologia, Paris, Series 2, 14, 269–362.

    Ehrenberg, C.G. (1853) Diagnoses novarum formarum. Verhandlungen der Königlich Preussische Akademie der Wissenschaften zu Berlin, 8, 526–533.

    Förster, F., Liang, C., Shkumatov, A., Beisser, D., Engelmann, J.C., Schnölzer, M., Frohme, M., Müller, T., Schill, R.O. & Dandekar, T. (2009) Tardigrade workbench: comparing stress-related proteins, sequence-similar and functional protein clusters as well as RNA elements in tardigrades. BMC Genomics, 10, 469.

    https://doi.org/10.1186/1471-2164-10-469.

    Förster, F., Beisser, D., Frohme, M, Schill, R.O. & Dandekar, T. (2011) Bioinformatics identifies tardigrade molecular adaptations including the DNA-j family and first steps towards dynamical modelling. Journal of Zoological Systematics and Evolutionary Research, 49 (1), 120–126.

    https://doi.org/10.1111/j.1439-0469.2010.00609.x

    Förster, F., Beisser, D., Grohme, M.A., Liang, C., Mali, B., Siegl, A.M., Engelmann, J.C., Shkumatov, A.V., Schokraie. E., Müller, T., Schnölzer, M., Schill, R.O., Frohme, M. & Dandekar, T. (2012) Transcriptome Analysis in Tardigrade Species Reveals Specific Molecular pathways for stress Adaptations. Bioinformatics and Biology Insights, 6, 69–96.

    https://doi.org/10.4137/BBI.S9150

    Gąsiorek, P., Stec, D., Morek, W. & Michalczyk, Ł. (2017a) An integrative redescription of Echiniscus testudo (Doyère, 1840), the nominal taxon for the class Heterotardigrada (Ecdysozoa: Panarthropoda: Tardigrada). Zoologischer Anzeiger, 270, 107–122.

    https://doi.org/10.1016/j.jcz.2017.09.006

    Gąsiorek, P., Morek, W., Stec, D., Marnissi, J. & Michalczyk, Ł. (2017b) The tardigrade fauna of Tunisia, with an integrative description of Bryodelphax maculatus sp. nov. (Heterotardigrada: Echiniscidae). African Zoology, 52 (2), 77–89.

    https://doi.org/10.1080/15627020.2017.1297688

    Gąsiorek, P., Stec, D., Morek, W. & Michalczyk, Ł. (2018) An integrative redescription of Hypsibius dujardini (Doyère, 1840), the nominal taxon for Hypsibioidea (Tardigrada: Eutardigrada). Zootaxa, 4415 (1), 45-–75.

    https://doi.org/10.11646/zootaxa.4415.1.2

    Grohme, M.A., Mali, B., Schill, R.O. & Frohme, M. (2011) cDNA representational difference analysis for identifying transcripts regulated under anhydrobiosis in the tardigrade Milnesium tardigradum. Journal of Zoological Systematics and Evolutionary Research, 49, (1), 127–132.

    https://doi.org/10.1111/j.1439-0469.2010.00610.x

    Grohme, M.A., Mali, B., Wełnicz, W., Michel, S., Schill, R.O. & Frohme, M. (2013) The Aquaporin Channel Repertoire of the Tardigrade Milnesium tardigradum. Bioinformatics and Biology Insights, 7, 153–165.

    https://doi.org/10.4137/BBI.S11497

    Guil, N. & Giribet, G. (2012) A comprehensive molecular phylogeny of tardigrades adding genes and taxa to a poorly resolved phylum-level phylogeny. Cladistics, 28, 21–49.

    https://doi.org/0.1111/j.1096-0031.2011.00364.

    Hall, T.A. (1999). BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. Nucleic Acids Symposium Series, 41, 95–98.

    Hengherr, S., Brümmer, F. & Schill, R.O. (2008a) Anhydrobiosis in tardigrades and its effects on longevity traits. Journal of Zoology, 275, 216–220.

    https://doi.org/10.1111/j.1469-7998.2008.00427.x

    Hengherr, S., Heyer, A.G., Köhler, H.R. & Schill, R.O. (2008b) Trehalose and anhydrobiosis in tardigrades—evidence for divergence in responses to dehydration. The FEBS Journal, 275 (2), 281–288.

    https://doi.org/10.1111/j.1742-4658.2007.06198.x

    Hengherr, S., Worland, M.R., Reuner, A., Brümmer, F. & Schill, R.O. (2009a) Freeze tolerance, supercooling points and ice formation: comparative studies on the subzero temperature survival of limno-terrestrial tardigrades. The Journal of Experimental Biology, 212, 802–807.

    https://doi.org/10.1242/jeb.025973

    Hengherr, S., Worland, M.R., Reuner, A., Brümmer, F. & Schill, R.O. (2009b) High-temperature tolerance in anhydrobiotic tardigrades is limited by glass transition. Physiological and Biochemical Zoology, 82 (6), 749–755.

    https://doi.org/10.1086/605954

    Hengherr, S., Reuner, A., Brümmer, F. & Schill, R.O. (2010) Ice crystallization and freeze tolerance in embryonic stages of the tardigrade Milnesium tardigradum. Comparative Biochemistry and Physiology, Part A, 156, 151–155.

    https://doi.org/10.1016/j.cbpa.2010.01.015

    Jönsson, K.I., Rabbow, E., Schill, R.O., Harms-Ringdah, M. & Rettberg, P. (2008) Tardigrades survive exposure to space in low Earth orbit. Current Biology, 18 (17), R729–R731.

    https://doi.org/10.1016/j.cub.2008.06.048

    Jönsson, K.I., Schill, R.O., Rabbow, E., Rettberg, P. & Harms-Ringdahl, M. (2016) The fate of the TARDIS offspring: no intergenerational effects of space exposure. Zoological Journal of the Linnean Society, 178 (4), 924–930.

    https://doi.org/10.1111/zoj.12499

    Kaczmarek, Ł. & Michalczyk, Ł. (2006) The Tardigrada Fauna of Mongolia (Central Asia) with a Description of Isohypsibius altai sp. nov. (Eutardigrada: Hypsibiidae). Zoological Studies, 45(1), 11–23.

    Kaczmarek, Ł., Zawierucha, K., Smykla, J. & Michalczyk, Ł. (2012) Tardigrada of the Revdalen (Spitsbergen) with the descriptions of two new species: Bryodelphax parvuspolaris (Heterotardigrada) and Isohypsibius coulsoni (Eutardigrada). Polar Biology, 35, 1013–1026.

    https://doi.org/10.1007/s00300-011-1149-0

    Kaczmarek, Ł., Kosicki, J.Z. & Roszkowska, M. (2018) Tardigrada of Bory Tucholskie National Park, Zaborski Landscape Park, and their surroundings (Pomerania Province, Poland). Turkish Journal of Zoology, 42, 6–17.

    https://doi.org/10.3906/zoo-1705-44

    Katoh, K., Misawa, K., Kuma, K. & Miyata, T. (2002) MAFFT: a novel method for rapid multiple sequence alignment based on fast Fourier transform. Nucleic Acids Resources, 30, 3059–3066.

    https://doi.org/10.1093/nar/gkf436

    Katoh, K. & Toh, H. (2008) Recent developments in the MAFFT multiple sequence alignment program. Brief Bioinformatics, 9, 286–298.

    https://doi.org/10.1093/bib/bbn013

    Kosztyła, P., Stec, D., Morek, W., Gąsiorek, P., Zawierucha, K., Michno, K., Ufir, K., Małek, D., Hlebowicz, K., Laska, A., Dudziak, M., Frohme, M., Prokop, Z.M., Kaczmarek, Ł. & Michalczyk, Ł. (2016) Experimental taxonomy confirms the environmental stability of morphometric traits in a taxonomically challenging group of microinvertebrates. Zoological Journal of the Linnean Society, 178, 765–775.

    https://doi.org/10.1111/zoj.12409

    Kumar, S., Stecher, G. & Tamura, K. (2016). MEGA7: Molecular Evolutionary Genetics Analysis version 7.0 for bigger datasets. Molecular Biology and Evolution, 33, 1870–1874.

    https://doi.org/10.1093/molbev/msw054

    Lanfear, R., Hua, X. & Warren, D.L. (2016) Estimating the Effective Sample Size of tree topologies from Bayesian phylogenetic analyses. Genome Biology and Evolution, 8, 2319–2332.

    https://doi.org/10.1093/gbe/evw171

    Mali, B., Grohme, M.A., Förster, F., Dandekar, T., Schnölzer, M., Reuter, D., Wełnicz, W., Schill, R.O. & Frohme, M. (2010) Transcriptome survey of the anhydrobiotic tardigrade Milnesium tardigradum in comprison with Hypsibius dujardini and Richtersius coronifer. BMC Genomics, 11, 168.

    https://doi.org/10.1186/1471-2164-11-168

    Marcus, E. (1928) IV: Bartierchen (Tardigrada). Die Tierwelt Deutschlands und der angrenzenden Meeresteile nach ihren Merkmalen und nach ihrer Lebensweise, 12, 1–226.

    Maucci, W. (1991). Tre nuove specie di Eutardigradi della Groenlandia Meridionale. Bollettino del Museo Civico di Storia Naturale di Verona, 15, 279–289.

    Maucci, W. (1996) Tardigrada of the Arctic tundra with descriptions of two new species. Zoological Journal of the Linnean Society, 116, 185–204.

    https://doi.org/10.1111/j.1096-3642.1996.tb02343.x

    Meier, R. & Dikow, T. (2004) Significance of Specimen Databases from Taxonomic Revisions for Estimating and Mapping the Global Species Diversity of Invertebrates and Repatriating Reliable Specimen Data. Conservation Biology, 18, 378–488. https://doi.org/10.1111/j.1523-1739.2004.00233.x

    Meyer, H.A. (2015) Water bears (Phylum Tardigrada) of Oceania, with the description of a new species of Milnesium. New Zealand Journal of Zoology, 42, 173–186.

    https://doi.org/10.1080/03014223.2015.1062402

    Meyer, H.A. & Hinton, J.G. (2010) Milnesium zsalakoae and M. jacobi, two new species of Tardigrada (Eutardigrada: Apochela: Milnesiidae) from the southwestern United States. Proceedings of the Biological Society of Washington, 123, 113–120.

    https://doi.org/10.2988/09-29.1

    Meyer, H.A. & Hinton, J.G. (2012) Terrestrial Tardigrada of the Island of Barbados in the West Indies, with the Description of Milnesium barbadosense sp. n. (Eutardigrada: Apochela: Milnesiidae). Caribbean Journal of Science, 46, 194–202.

    https://doi.org/10.18475/cjos.v46i2.a8

    Michalczyk, Ł., Wełnicz, W., Frohme, M. & Kaczmarek, Ł. (2012a). Redescriptions of three Milnesium Doyère, 1840 taxa (Tardigrada: Eutardigrada: Milnesiidae), including the nominal species for the genus. Zootaxa, 3154, 1–20.

    Michalczyk, Ł., Wełnicz, W., Frohme, M. & Kaczmarek, Ł. (2012b). Corrigenda of Zootaxa 3154: 1–20. Redescriptions of three Milnesium Doyère, 1840 taxa (Tardigrada: Eutardigrada: Milnesiidae), including the nominal species for the genus. Zootaxa, 3393, 66–68.

    Michalczyk, Ł. & Kaczmarek, Ł. (2013) The Tardigrada Register: a comprehensive online data repository for tardigrade taxonomy. Journal of Limnology, 72 (S1), 175–181.

    https://doi.org/10.4081/jlimnol.2013.s1.e22

    Mironov, S.V., Dabert, J. & Dabert, M. (2012) A new feather mite species of the genus Proctophyllodes Robin, 1877 (Astigmata: Proctophyllodidae) from the Long-tailed Tit Aegithalos caudatus (Passeriformes: Aegithalidae): morphological description with DNA barcode data. Zootaxa, 3253, 54–61.

    Morek, W., Gąsiorek, P., Stec, D., Blagden, B. & Michalczyk, Ł. (2016a). Experimental taxonomy exposes ontogenetic variability and elucidates the taxonomic value of claw configuration in Milnesium Doyère, 1840 (Tardigrada: Eutardigrada: Apochela). Contributions to Zoology, 85 (2), 173–200.

    Morek, W., Stec, D., Gąsiorek, P., Schill, R.O., Kaczmarek, Ł. & Michalczyk, Ł. (2016b). An experimental test of eutardigrade preparation methods for light microscopy. Zoological Journal of the Linnean Society, 178, 785–793.

    https://doi.org/10.1111/zoj.12457

    Morek, W., Stec, D., Gąsiorek, P., Surmacz, B. & Michalczyk, Ł. (2019) Milnesium tardigradum: the first integrative study of inter-population variability in a tardigrade species. Journal of Zoological Systematics and Evolutionary Research, 57, 1–23.

    https://doi.org/10.1111/jzs.12233

    Nederström, P. (1919). Die bis jetzt asu Finnland bekannten Tardigraden. Acta Societatis pro Fauna et Flora Fennica, 46 (8), 1–25.

    Nelson, D.R., Guidetti, R. & Rebecchi, L. (2015) Phylum Tardigrada. In: Thorp and Covich’s freshwater invertebrates, vol 1, Chap 17. Academic, Cambridge, pp. 347–380.

    https://doi.org/10.1016/B978-0-12-385026-3.00017-6

    Neumann, S., Reuner, A., Brümmer, F. & Schill, R.O. (2009) DNA damage in storage cells of anhydrobiotic tardigrades. Comparative Biochemistry and Physiology, Part A, 153, 425–429.

    https://doi.org/10.1016/j.cbpa.2009.04.611.

    Pfannkuchen, M., Brümmer, F. & Schill, R.O. (2007) 3-Dimensional reconstruction of fluorescent structures in tardigrades. Proceedings of the Tenth International Symposium on Tardigrada Journal of Limnology, 66 (Suppl. 1), 158–163.

    https://doi.org/10.4081/jlimnol.2007.s1.158

    Pilato, G. (1981) Analisi di nuovi caratteri nello studio degli Eutardigradi. Animalia, 8, 51–57.

    Pilato, G. & Binda, M.G. (1991) Milnesium tetralamellatum, New Species of Milnesiidae from Africa (Eutardigrada). Tropical Zoology, 4, 103–106.

    https://doi.org/10.1080/03946975.1991.10539480

    Pilato, G. & Lisi, O. (2016) Milnesium minutum and Milnesium sandrae, two new species of Milnesiidae (Tardigrada, Eutardigrada, Apochela). ZooKeys, 580, 1–12.

    https://doi.org/10.3897/zookeys.580.6603

    Pilato, G., Sabella, G. & Lisi, O. (2016) Two new species of Milnesium (Tardigrada: Milnesiidae). Zootaxa, 4132 (4), 575–587.

    https://doi.org/10.11646/zootaxa.4132.4.9

    Pilato, G., Sabella, G., D’Urso, V. & Lisi O. (2017) Two new species of Eutardigrada from Victoria Land, Antarctica. Zootaxa, 4317 (3), 541–558.

    https://doi.org/10.11646/zootaxa.4317.3.6

    R Core Team (2015) R: A language and environment for statistical computing. R Foundation for Statistical Computing. Austria, Vienna.

    Ramazzotti, G. (1962). Tardigradi del Cile–con descrizione di quattro nuove specie e di una nuova varietà. Atti della Società Italiana di Scienze Naturali e del Museo Civico di Storia Naturale in Milano, 101, 275–287.

    Ramazzotti, G. & Maucci, W. (1983) Il Phylum Tardigrada. Terza edizione riveduta e aggiornata. Memorie dell' Istituto Italiano di Idrobiologia, 41, 1–1012.

    Rambaut, A., Suchard, M.A., Xie, D. & Drummond, A.J. (2014) Tracer v1.6. Available from: http://beast.bio.ed.ac.uk/Tracer (Accessed 15 Apr. 2019)

    Reuner, A., Hengherr, S., Brümmer, F. & Schill, R.O. (2010a) Comparative studies on storage cells in tardigrades during starvation and anhydrobiosis. Current Zoology, 56 (2), 259–263.

    Reuner, A., Hengherr, S., Mali, B., Förster, F., Arndt, D., Reinhardt, R., Dandekar, T., Frohme, M., Brümmer, F. & Schill, R.O. (2010b) Stress response in tardigrades: differential gene expression of molecular chaperones. Cell Stress and Chaperones, 15, 423–430.

    https://doi.org/10.1007/s12192-009-0158-1

    Richters, F. (1903) Nordische Tardigraden. Zoologischer Anzeiger, 27, 168–172.

    Richters, F. (1926) Tardigrada. Handbuch der Zoologie, III, 58–61.

    Ronquist, F. & Huelsenbeck, J.P. (2003) MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics, 19 (12), 1572–1574.

    https://doi.org/10.1093/bioinformatics/btg180

    Roszkowska, M., Ostrowska, M. & Kaczmarek, Ł. (2015) The genus Milnesium Doyère, 1840 (Tardigrada) in South America with descriptions of two new species from Argentina and discussion of the feeding behaviour in the family Milnesiidae. Zoological Studies, 54, 1–17.

    https://doi.org/10.1186/s40555-014-0082-7

    Roszkowska, M., Stec, D., Ciobanu, D.A. & Kaczmarek Ł. (2016) Tardigrades from Nahuel Huapi National Park (Argentina, South America) with descriptions of two new Macrobiotidae species. Zootaxa, 4105 (3), 243–260.

    https://doi.org/10.11646/zootaxa.4105.3.2

    Sands, CJ., McInnes, S.J., Marley, M.J., Goodall-Copestake, WP., Convey, P. & Linse, K. (2008) Phylum Tardigrada: an ‘individual’ approach. Cladistics, 24, 1–11.

    https://doi.org/0.1111/j.1096-0031.2008.00219

    Schill, R.O., Steinbrück, G. & Köhler H.R. (2004) Stress gene (hsp70) sequences and quantitative expression in Milnesium tardigradum (Tardigrada) during active and cryptobiotic stages. The Journal of Experimental Biology, 207, 1607–1613.

    https://doi.org/10.1242/jeb.00935

    Schill, R.O. (2007) Comparison of different protocols for DNA preparation and PCR amplification of mitochondrial genes of tardigrades. Proceedings of the Tenth International Symposium on Tardigrada, Journal of Limnology, 66 (Suppl. 1), 164–170.

    https://doi.org/10.4081/jlimnol.2007.s1.164

    Schill, R.O. & Steinbruck, G. (2007) Identification and differentiation of Heterotardigrada and Eutardigrada species by riboprinting. Journal of Zoological Systematics and Evolutionary Research, 45 (3), 184–190.

    https://doi.org/10.1111/j.1439-0469.2007.00409.x

    Schill, R.O. & Fritz, G.B. (2008) Desiccation tolerance in embryonic stages of the tardigrade. Journal of Zoology, 276, 103–107.

    https://doi.org/10.1111/j.1469-7998.2008.00474.x

    Schlabach, S., Donaldson, E., Hobelman, K., Miller, W.R. & Lowman, M.D. (2018) Tardigrades of the Canopy: Milnesium burgessi nov. sp. (Eutardigrada: Apochela: Milnesiidae) a new species from Kansas, U.S.A. Transactions of the Kansas Academy of Science, 121, 39–48.

    https://doi.org/10.1660/062.121.0204

    Schökraie, E., Hotz-Wagenblatt, A., Warnken, U., Mali, B., Frohme, M., Forster, F., Dandekar, T., Hengherr, S., Schill, R.O. & Schnölzer M. (2010) Proteomic analysis of tardigrades: towards a better understanding of molecular mechanisms by anhydrobiotic organisms. PLoS ONE, 5 (3), e9502.

    https://doi.org/10.1371/journal.pone.0009502

    Schökraie, E., Hotz-Wagenblatt, A., Warnken, U., Frohme, M., Dandekar, T., Schill, R.O. & Schnölzer, M. (2011) Investigating heat shock proteins of tardigrades in active versus anhydrobiotic state using shotgun proteomics. Journal of Zoological Systematics and Evolutionary Research, 49 (1), 111–119.

    https://doi.org/10.1111/j.1439-0469.2010.00608.x

    Schökraie, E., Warnken, U., Hotz-Wagenblatt, A., Grohme, M.A., Hengherr, S., Forster, F., Schill, R.O., Frohme, M., Dandekar, T. & Schnölzer, M. (2012) Comparative proteome analysis of Milnesium tardigradum in early embryonic state versus adults in active and anhydrobiotic state. PLoS ONE, 7 (9), e45682.

    https://doi.org/10.1371/journal.pone.0045682

    Schuster, R.O., Nelson, D.R., Grigarick, A.A. & Christenberry, D. (1980) Systematic criteria of the Eutardigrada. Transactions of the American Microscopical Society, 99, 284–303.

    https://doi.org/10.2307/3226004

    Shcherbakov, D., Schill, R.O., Brümmer, F. & Blum, M. (2010) Movement behaviour and video tracking of Milnesium tardigradum Doyère, 1840 (Eutardigrada, Apochela). Contributions to Zoology, 79 (1), 33–38.

    Smykla, J., Iakovenko, N., Devetter, M. & Kaczmarek, Ł. (2012) Diversity and distribution of tardigrades in soils of Edmonson Point (Northern Victoria Land, continental Antarctica). Czech Polar Reports, 2 (2), 61–70.

    https://doi.org/10.5817/CPR2012-2-6

    Stamatakis, A. (2014) RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics, 30, 1312–1313.

    https://doi.org/10.1093/bioinformatics/btu033

    Stec, D., Gąsiorek, P., Morek, W., Kosztyła, P., Zawierucha, K., Michno, K., Kaczmarek, Ł., Prokop, Z.M. & Michalczyk, Ł. (2016) Estimating optimal sample size for tardigrade morphometry. Zoological Journal of the Linnean Society, 178, 776–784.

    https://doi.org/10.1111/zoj.12404

    Stec, D., Morek, W., Gąsiorek, P. & Michalczyk, Ł. (2018) Unmasking hidden species diversity within the Ramazzottius oberhaeuseri complex, with an integrative redescription of the nominal species for the family Ramazzottiidae (Tardigrada: Eutardigrada: Parachela). Systematics and Biodiversity, 16 (4), 357–376.

    https://doi.org/10.1080/14772000.2018.1424267

    Stec, D., Smolak, R., Kaczmarek, Ł. & Michalczyk, Ł. (2015) An integrative description of Macrobiotus paulinae sp. nov. (Tardigrada: Eutardigrada: Macrobiotidae: hufelandi group) from Kenya. Zootaxa, 4052 (5), 501–526.

    https://doi.org/10.11646/zootaxa.4052.5.1

    Suzuki, A.C. (2003) Life history of Milnesium tardigradum Doyère (Tardigrada) under a rearing environment. Zoological Science, 20, 49–57.

    https://doi.org/10.2108/zsj.20.49

    Suzuki, A.C. (2006) Ovarian structure in Milnesium tardigradum (Tardigrada, Milnesiidae) during early vitellogenesis. Hydrobiologia, 558, 61–66.

    https://doi.org/10.1007/s10750-005-1416-6

    Suzuki, A.C. (2008) Appearance of males in a thelytokous strain of Milnesium cf. tardigradum (Eutardigrada: Apochela). Zoological Science, 25, 849–853

    https://doi.org/10.2108/zsj.25.849.

    Tang, Y., Horikoshi, M. & Li, W. (2016) ggfortify: Unified Interface to Visualize Statistical Result of Popular R Packages. The R Journal, 8 (2), 474–485.

    https://doi.org/10.32614/RJ-2016-060

    Takahashi, H., Kamiya., A., Ishiguro, A., Suzuki, A.C., Saitou, N., Toyoda, A. & Aruga, J. (2008) Conservation and diversification of Msx protein in metazoan evolution. Molecular Biology and Evolution, 25, 69–82.

    https://doi.org/10.1093/molbev/msm228

    Tumanov, D.V. (2006) Five new species of the genus Milnesium (Tardigrada, Eutardigrada, Milnesiidae). Zootaxa, 1122, 1–23.

    Vaidya, G., Lohman, J.D. & Meier, R. (2010) SequenceMatrix: concatenation software for the fast assembly of multigene datasets with character set and codon information. Cladistics, 27, 171–180.

    https://doi.org/10.1111/j.1096-0031.2010.00329.x

    Velasco-Castrillón, A., McInnes, S.J., Schultz, MB., Arróniz-Crespo, M., D’Haese, C.A., Gibson, J.A.E., Adams, B.J., Page, T.J., Austin, A.D., Cooper, S.B.J. & Stevens, M.I. (2015). Mitochondrial DNA analyses reveal widespread tardigrade diversity in Antarctica. Invertebrate Systematics, 29, 578–590.

    https://doi.org/10.1071/IS14019

    Vicente, F., Cesari, M., Serrano, A. & Bertolani, R. (2013) The impact of fire on terrestrial tardigrade biodiversity: a first case-study from Portugal. Journal of Limnology, 72, 152–159.

    https://doi.org/10.4081/jlimnol.2013.s1.e19

    Wang, C., Grohme, M.A., Mali, B., Schill, R.O. & Frohme, M. (2014) Towards decrypting cryptobiosis—analyzing anhydrobiosis in the tardigrade Milnesium tardigradum using transcriptome sequencing. PLoS ONE, 9 (3), e92663.

    https://doi.org/10.1371/journal.pone.0092663

    Wełnicz, W., Grohme, M.A., Kaczmarek, Ł., Schill, R.O. & Frohme, M. (2011) ITS-2 and 18S rRNA data from Macrobiotus polonicus and Milnesium tardigradum (Eutardigrada, Tardigrada). Journal of Zoological Systematics and Evolutionary Research, 49, 34–39.

    https://doi.org/10.1111/j.1439-0469.2010.00595

    Young, A., Chappell, B., Miller, W. & Lowman, M. (2016) Tardigrades of the tree canopy: Milnesium swansoni sp. nov. (Eutardigrada: Apochela: Milnesiidae) a new species from Kansas, U.S.A. Zootaxa, 4072 (5), 559–568.

    https://doi.org/10.11646/zootaxa.4072.5.3

    Zawierucha, K., Dziamięcki, J., Jakubowska, N., Michalczyk, Ł. & Kaczmarek, Ł. (2014) New tardigrade records for the Baltic states with a description of Minibiotus formosus sp. n. (Eutardigrada, Macrobiotidae). ZooKeys, 408, 81–105.

    https://doi.org/10.3897/zookeys.408.6612

    Zeller, C. (2010) Untersuchung der Phylogenie von Tardigraden anhand der Genabschnitte 18S rDNA und Cytochrom c Oxidase Untereinheit 1 (COX I). MSc Thesis, Technische Hochschule Wildau, 105 pp.