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Research Article

An integrated approach to explore the monophyletic status of the cosmopolitan genus Hexabathynella (Crustacea, Bathynellacea, Parabathynellidae): two new species from Rottnest Island (Wadjemup), Western Australia

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References

  • Abrams, K. M., Guzik, M. T., Cooper, S. J. B., Humphreys, W. F., King, R. A., Cho, J.-L., & Austin, A. D. (2012). What lies beneath: Molecular phylogenetics and ancestral state reconstruction of the ancient subterranean Australian parabathynellidae (Syncarida, Crustacea). Molecular Phylogenetics and Evolution, 64, 130–144. https://doi.org/10.1016/j.ympev.2012.03.010
  • Alda, F., Rey, I., & Doadrio, I. (2007). An improved method of extracting degraded DNA samples from birds and other species. Ardeola, 54, 331–334.
  • Asmyhr, M. G., Hose, G., Graham, P., & Stow, A. J. (2014). Fine-scale genetics of subterranean syncarids. Freshwater Biology, 59, 1–11. https://doi.org/10.1111/fwb.12239
  • Boulton, A. J., Fenwick, G. D., Hancock, P. J., & Harvey, M. S. (2008). Biodiversity, functional roles and ecosystem services of groundwater invertebrates. Invertebrate Systematics, 22, 103–116. https://doi.org/10.1071/IS07024
  • Boulton, A. J., Humphreys, W. F., & Eberhard, S. M. (2003). Imperilled subsurface waters in Australia: biodiversity, threatening processes and conservation. Aquatic Ecosystem Health & Management, 6, 41–54. https://doi.org/10.1080/14634980301475
  • Boutin, C., & Coineau, N. (1990). “Regression model”, “Mode le Biphase”d’e volution et origine des micro-organismes stygobies interstitiels continentaux. Revue de Micropaleontologie, 33, 303–322.
  • Brooks, H. K. (1962). On the fossil anaspidacea, with a revision of the classification of the Syncarida. Crustaceana, 4, 229–242. https://doi.org/10.1163/156854062X00364
  • Bryan, E., Meredith, K. T., Baker, A., Andersen, M. S., & Post, V. E. A. (2017). Carbon dynamics in a Late Quaternary-age coastal limestone aquifer system undergoing saltwater intrusion. The Science of the Total Environment, 607-608, 771–785. https://doi.org/10.1016/j.scitotenv.2017.06.094
  • Bryan, E., Meredith, K. T., Baker, A., Post, V. E. A., & Andersen, M. S. (2016). Island groundwater resources, impacts of abstraction and a drying climate: Rottnest Island, Western Australia. Journal of Hydrology, 542, 704–718. https://doi.org/10.1016/j.jhydrol.2016.09.043
  • Camacho, A. (1986). A new species of the genus Hexabathynella (Syncarida, Bathynellacea, Parabathynellidae) from Spain. Bijdragen Tot de Dierkunde, 56, 123–131. https://doi.org/10.3897/zookeys.386.6296
  • Camacho, A. I. (2003). Historical biogeography of Hexabathynella, a cosmopolitan genus of groundwater Syncarida (Crustacea, Bathynellacea, Parabathynellidae). Biological Journal of the Linnean Society, 78, 457–466. https://doi.org/10.1046/j.0024-4066.2002.00149.x
  • Camacho, A. I. (2004). An overview of Hexabathynella (Crustacea, Syncarida, Parabathynellidae) with the description of a new species. Journal of Natural History, 38, 1249–1261. https://doi.org/10.1080/0022293031000079606
  • Camacho, A. I. (2005a). Expanding the taxonomic conundrum: Three new species of groundwater crustacean (Syncarida, Bathynellacea, Parabathynellidae) endemic to the Iberian Peninsula. Journal of Natural History, 39(21), 1819–1838.
  • Camacho, A. I. (2005b). Disentangling an Asian puzzle: Two new bathynellid (Crustácea, Syncarida, Parabathynellidae) genera from Vietnam. Journal of Natural History, 39(31), 2861–2886. https://doi.org/10.1080/00222930500218524
  • Camacho, A., & Coineau, N. (1989). Les Parabathynellaces (Crustacés syncarides) de la Péninsule Ibérique, répartition et paléobiogéographie. Mémoires de Biospéologie, 16, 111–124.
  • Camacho, A., Mas-Peinado, P., Hutchins, B., Schwartz, B. F., Dorda, B. A., Casado, A., & Rey, I. (2021a). New stygofauna from Texas, USA: three new species of parabathynellidae (Crustacea: Bathynellacea). Journal of Natural History, 55, 979–1007. https://doi.org/10.1080/00222933.2021.1928316
  • Camacho, A. I., Mas-Peinado, P., López-Estrada, E. K., Dorda, B. A., & Rey, I. (2022). Split distribution, biogeography and morphological and genetic diversity of the Iberobathynellini Tribe in the family Parabathynellidae (Crustacea, Malacostraca, Bathynellacea). Contributions to Zoology, 91, 1–61. https://doi.org/10.1163/18759866-bja10024
  • Camacho, A., Mas-Peinado, P., Reddy, Y. R., Bandari, E., Shaik, S., Perina, G., Dorda, B. A., Casado, A., & Rey, I. (2021b). An integrated approach to re-evaluate the validity of the family leptobathynellidae (Crustacea: Bathynellacea). Zoological Journal of the Linnean Society, 192, 853–895. https://doi.org/10.1093/zoolinnean/zlaa121
  • Camacho, A., Mas-Peinado, P., Watiroyram, S., Brancelj, A., Bandari, E., Dorda, B. A., Casado, A., & Rey, I. (2018). Molecular phylogeny of parabathynellidae (Crustacea, Bathynellacea), and three new species from Thai caves contribution to. Zoology, 87, 227–260.
  • Camacho, A. I., Rey, I., Dorda, B. A., Machordom, A., & Valdecasas, A. G. (2002). A note on the systematic position of the Bathynellacea (Crustacea, Malacostraca) using molecular evidence. Contributions to Zoology, 71, 123–129. https://doi.org/10.1163/18759866-07104002
  • Camacho, A., Serban, E., & Guil, N. (2000). Phylogenetical review and biogeographic remarks on the interstitial and subterranean freshwater Iberobathynella (Crustacea, Syncarida, Parabathynellidae). Journal of Natural History, 34, 563–585. https://doi.org/10.1080/002229300299444
  • Campbell, M. A., Laini, A., White, N. E., & Saccò, M. (2022). When nets meet environmental DNA metabarcoding: integrative approach to unveil invertebrate community patterns of hypersaline lakes. Journal of Oceanology and Limnology, in Press, https://doi.org/10.1007/s00343-022-2151-9
  • Cho, J. L. (2001). Phylogeny and zoogeography of three new species of the genus Hexabathynella (Crustacea, Malacostraca, Bathynellacea) from North America. Zoologica Scripta, 30, 145–157. https://doi.org/10.1046/j.1463-6409.2001.00059.x
  • Cho, J.-L., & Schminke, H. K. (2006). A phylogenetic review of the genus Hexabathynella Schminke, 1972 (Crustacea, Malacostraca, Bathynellacea): with a description of four new species. Zoological Journal of the Linnean Society, 147, 71–96. https://doi.org/10.1111/j.1096-3642.2006.00215.x
  • Coineau, N. (1965). Recherches sur la faune des Iles Mediterraneennes. I. Le genre Parabathynella. (Crust. Syncar.) en Corse. Vie et Milieu, 15, 993–1005.
  • Coineau, N. (1996). Sous-classe des eumalacostracés (Eumalacostraca Grobben, 1892). Super-ordre des syncarides (Syncarida Packard, 1885). In J. Forest (Ed.), Traité de zoologie, crustacés (Vol. 7). Masson.
  • Coineau, N., & Boutin, C. (1992). Biological processes in space and time: colonization. Evolution and speciation in interstitial stygobionts. In C. A. I. (Ed.), The natural history of biospeleology (pp. 423–451). Consejo Superior de Investigaciones Científicas.
  • Culver, D. C., & Pipan, T. (2009). The biology of caves and other subterranean habitats. Oxford University Press.
  • Cvetkov, L. (1968). Nouvelle forme du groupe de Parabathynella hebrica Cvetkov et Petrova (Crust. Bathynellacea). Comptes Rendus de L’Académie Bulgare Des Sciences, 21, 55–58.
  • Cvetkov, L. (1970a). Deux nouvelles especes de Parabathynella (Crust. Bathynellacea) en Bulgarie du sud. Comptes Rendus de L’Académie Bulgare Des Sciences, 23, 575–578.
  • Cvetkov, L. (1970b). Parabathynella longiappendiculata n. sp. La cinquieme nouvelles espece de Parabathynella en Bulgarie du Sud. Comptes Rendus de L’Académie Bulgare Des Sciences, 23, 1409–1411.
  • Cvetkov, L., & Petrova, A. (1964). Un nouveau représentant des Syncarides, Parabathynella hebrica n.sp. Bulletin de l’institut de zoologie et musée, 16, 191–200.
  • Delamare Deboutteville, C. (1953). Une espéce nouvelle de Parabathynella à Madagascar: Parabathynella pauliani. Diagnose Préliminaire. Vie et Milieu, 4, 748.
  • Environmental Protection Authority. (2007). Guidance for the assessment of environmental factors. Sampling methods and survey considerations for subterranean fauna in Western Australia. Government of Western Australia
  • Environmental Protection Authority. (2013). Environmental Assessment Guideline for Consideration of subterranean fauna in environmental impact assessment in Western Australia. Government of Western Australia.
  • Environmental Protection Authority. (2016). Technical Guidance – Subterranean fauna survey. Government of Western Australia.
  • Giribet, G., Carranza, S., Baguñà, J., Riutort, M., & Ribera, C. (1996). First molecular evidence for the existence of a Tardigrada + Arthropoda clade. Molecular Biology and Evolution, 13, 76–84. https://doi.org/10.1093/oxfordjournals.molbev.a025573
  • Gouramanis, C., Dodson, J., Wilkins, D., De Deckker, P., & Chase, B. M. (2012). Holocene palaeoclimate and sea level fluctuation recorded from the coastal Barker Swamp, Rottnest Island, South-Western Western Australia. Quaternary Science Reviews, 54, 40–57. https://doi.org/10.1016/j.quascirev.2012.05.007
  • Griebler, C., & Avramov, M. (2015). Groundwater ecosystem services: a review. Freshwater Science, 34, 355–367. https://doi.org/10.1086/679903
  • Guindon, S., Dufayard, J.-F., Lefort, V., Anisimova, M., Hordijk, W., & Gascuel, O. (2010). New Algorithms and methods to estimate maximum-likelihood phylogenies: Assessing the performance of PhyML 3.0. Systematic Biology, 59, 307–321. https://doi.org/10.1093/sysbio/syq010
  • Harvey, M. S., Rix, M. G., Framenau, V. W., Hamilton, Z., Johnson, M. S., Teale, R., Humphreys, G., & Humphreys, W. F. (2011). Protecting the innocent: studying short-range endemic taxa enhances conservation outcomes. Invertebrate Systematics, 25, 1–10. https://doi.org/10.1071/IS11011
  • Hose, G. C., Chariton, A. A., Daam, M. A., Di Lorenzo, T., Galassi, D. M. P., Halse, S. A., Reboleira, A. S. P. S., Robertson, A. L., Schmidt, S. I., & Korbel, K. L. (2022). Invertebrate traits, diversity and the vulnerability of groundwater ecosystems. Functional Ecology, 36, 2200–2214. https://doi.org/10.1111/1365-2435.14125
  • Jakobi, H. (1972). Parabathynella paranaensis n.sp. (Syncarida Bathynellacea) aus der Bucht von Paranaguá (Brasilien). Studies on Neotropical Fauna, 7, 229–237. https://doi.org/10.1080/01650527209360446
  • Juan, C., Guzik, M. T., Jaume, D., & Cooper, S. J. B. (2010). Evolution in caves: Darwin’s ‘wrecks of ancient life’ in the molecular era. Molecular Ecology, 19, 3865–3880. https://doi.org/10.1111/j.1365-294X.2010.04759.x
  • Kakulas, B. A. (1961). Myopathy affecting the Rottnest quokka (Setonix brachyurus) reversed by α-tocopherol. Nature, 191, 402–403.
  • 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 Research, 30, 3059–3066. https://doi.org/10.1093/nar/gkf436
  • Kearse, M., Moir, R., Wilson, A., Stones-Havas, S., Cheung, M., Sturrock, S., Buxton, S., Cooper, A., Markowitz, S., Duran, C., Thierer, T., Ashton, B., Meintjes, P., & Drummond, A. (2012). Geneious basic: An integrated and extendable desktop software platform for the organization and analysis of sequence data. Bioinformatics (Oxford, England), 28, 1647–1649. https://doi.org/10.1093/bioinformatics/bts199
  • Korbel, K. L., & Hose, G. C. (2011). A tiered framework for assessing groundwater ecosystem health. Hydrobiologia, 661, 329–349. https://doi.org/10.1007/s10750-010-0541-z
  • 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., Calcott, B., Ho, S. Y. W., & Guindon, S. (2012). Partitionfinder: Combined selection of partitioning schemes and substitution models for phylogenetic analyses. Molecular Biology and Evolution, 29, 1695–1701. https://doi.org/10.1093/molbev/mss020
  • Lanfear, R., Frandsen, P. B., Wright, A. M., Senfeld, T., & Calcott, B. (2017). PartitionFinder 2: New methods for selecting partitioned models of evolution for molecular and morphological phylogenetic analyses. Molecular Biology and Evolution, 34, 772–773. https://doi.org/10.1093/molbev/msw260
  • Lopretto, E. C. (2014). Bathynellacea. http://www.accessscience.com/content/bathynellacea/074900
  • Martin, A. N., Meredith, K., Baker, A., Norman, M. D., & Bryan, E. (2021). The evolution of stable silicon isotopes in a coastal carbonate aquifer on Rottnest Island. Hydrology and Earth System Sciences, 25, 3837–3853. https://doi.org/10.5194/hess-25-3837-2021
  • Mather, S. (2020). Summer migrants – the importance of Rottnest Island for trans-equatorial bird species. Stilt, 73, 25–32.
  • Matthews, E. F., Abrams, K. M., Cooper, S. J. B., Huey, J. A., Hillyer, M. J., Humphreys, W. F., Austin, A. D., & Guzik, M. T. (2020). Scratching the surface of subterranean biodiversity: Molecular analysis reveals a diverse and previously unknown fauna of Parabathynellidae (Crustacea: Bathynellacea) from the Pilbara, Western Australia. Molecular Phylogenetics and Evolution, 142, 106643. https://doi.org/10.1016/j.ympev.2019.106643
  • Mendes Monteiro, J., Vogwill, R., Bischoff, K., & Gleeson, D. B. (2020). Comparative metagenomics of microbial mats from hypersaline lakes at Rottnest Island (WA, Australia), advancing our understanding of the effect of mat community and functional genes on microbialite accretion. Limnology and Oceanography, 65, S293–S309. https://doi.org/10.1002/lno.11323
  • Miller, M. A., Pfeiffer, W., & Schwartz, T. (2010 Creating the CIPRES Science Gateway for Inference of Large Phylogenetic Trees [Paper presentation]. Proceedings of the Gateway Computing Environments Workshop (GCE), New Orleans, LA. https://doi.org/10.1109/GCE.2010.5676129
  • Moreau, C. S., Wray, B. D., Czekanski-Moir, J. E., & Rubin, B. E. R. (2013). DNA preservation: a test of commonly used preservatives for insects. Invertebrate Systematics, 27, 81–86. https://doi.org/10.1071/IS12067
  • Noodt, W. (1963). Estudios sobre Crustáceos de aguas subterráneas, III.—Crustacea Syncarida de Chiile Central. Investigaciones Zoologicas Chilenas, 10, 151–167.
  • Noodt, W. (1965). Crustacea subterranea aus Argentinien Mit 215 abbildungen. Beitrage Zur Neotropischen Fauna, 4, 84–129. https://doi.org/10.1080/01650526509360381
  • Noodt, W. (1968). Deuten die Verbreitungsbilder reliktärer Grundwasser-Crustaceen alte Kontinentzusammenhänge an? Naturwissenschaftliche Rundschau, 21, 470–476.
  • Noodt, W., & Galhano, M. H. (1969). Studien an Crustacea Subterranea (Isopoda, Syncarida, Copepoda) aus dem Norden Portugals. Publicaçoes do Instituto de Zoología “Dr. Augusto Nobre”, 107, 9–75.
  • Oversby, W., Ferguson, S. M., Davis, R. A., & Bateman, P. W. (2018). Bad news for bobtails: understanding predatory behaviour of a resource-subsidised corvid towards an island endemic reptile. Wildlife Research, 45, 595–601. https://doi.org/10.1071/WR18051
  • Pattengale, N. D., Alipour, M., Bininda-Emonds, O. R. P., Moret, B. M. E., & Stamatakis, A. (2009 How Many Bootstrap Replicates Are Necessary? In S. Batzoglou (Ed.), Research in Computational Molecular Biology: 13th Annual International Conference, RECOMB 2009, Tucson, AZ, USA, May 18-21, 2009. Proceedings (pp. 184–200). Springer Berlin Heidelberg. https://doi.org/10.1007/978-3-642-02008-7_13
  • Pen, L. J., & Green, J. W. (1983). Botanical exploration and vegetational changes on Rottnest Island. Journal of Royal Society of Western Australia, 66, 20–24.
  • Perina, G., & Camacho, A. I. (2016). Permanent slides for morphological studies of small crustaceans: Serban’s method and its variation applied on Bathynellacea (Malacostraca). Crustaceana, 89, 1161–1173. https://doi.org/10.1163/15685403-00003576
  • Perina, G., Camacho, A. I., Huey, J., Horwitz, P., & Koenders, A. (2018). Understanding subterranean variability: the first genus of Bathynellidae (Bathynellacea, Crustacea) from Western Australia described through a morphological and multigene approach. Invertebrate Systematics, 32, 423–447. https://doi.org/10.1071/IS17004
  • Perina, G., Camacho, A. I., Huey, J., Horwitz, P., & Koenders, A. (2019a). New Bathynellidae (Crustacea) taxa and their relationships in the Fortescue catchment aquifers of the Pilbara region, Western Australia. Systematics and Biodiversity, 17, 148–164. https://doi.org/10.1080/14772000.2018.1559892
  • Perina, G., Camacho, A. I., Huey, J., Horwitz, P., & Koenders, A. (2019b). The role of allopatric speciation and ancient origins of Bathynellidae (Crustacea) in the Pilbara (Western Australia): two new genera from the De Grey River catchment. Contributions to Zoology, 88, 452–497. https://doi.org/10.1163/18759866-20191412
  • Phillips, V. F., Chambers, B. K., & Bencini, R. (2020). Habitats modified for tourism affect the movement patterns of an endemic marsupial, the Rottnest Island quokka (Setonix brachyurus). Australian Mammalogy, 42, 48–57. https://doi.org/10.1071/AM17063
  • Quoy, J., & Gaimard, J. (1830). Zoologie. In JSC Dumont d’Urville (1830-1835) Voyage de Decouvertes de l’Astrolabe. Execute par ordre du Roi pendant les anees 1826-1827-1828-1829 sous le commandment de M.J. Dumont d’Urville (Vol. 1. pp. 1–268). J. Tastu.
  • Rambaut, A., Drummond, A. J., Xie, D., Baele, G., & Suchard, M. A. (2018). Posterior Summarization in Bayesian Phylogenetics Using Tracer 1.7. Systematic Biology, 67, 901–904. https://doi.org/10.1093/sysbio/syy032
  • Rambaut, A. (2009). FigTree v131. Available at http://tree.bio.ed.ac.uk/software/figtree/.
  • Ronquist, F., Teslenko, M., van der Mark, P., Ayres, D. L., Darling, A., Höhna, S., Larget, B., Liu, L., Suchard, M. A., & Huelsenbeck, J. P. (2012). MrBayes 3.2: Efficient bayesian phylogenetic inference and model choice across a large model space. Systematic Biology, 61, 539–542. https://doi.org/10.1093/sysbio/sys029
  • Saccò, M., Blyth, A., Bateman, P. W., Hua, Q., Mazumder, D., White, N., Humphreys, W. F., Laini, A., Griebler, C., & Grice, K. (2019). New light in the dark-a proposed multidisciplinary framework for studying functional ecology of groundwater fauna. The Science of the Total Environment, 662, 963–977. https://doi.org/10.1016/j.scitotenv.2019.01.296
  • Saccò, M., Blyth, A. J., Douglas, G., Humphreys, W. F., Hose, G. C., Davis, J., Guzik, M. T., Martínez, A., Eberhard, S. M., & Halse, S. A. (2022b). Stygofaunal diversity and ecological sustainability of coastal groundwater ecosystems in a changing climate: The Australian paradigm. Freshwater Biology, in Press, 67, 2007–2023. https://doi.org/10.1111/fwb.13987
  • Saccò, M., Blyth, A. J., Venarsky, M., & Humphreys, W. F. (2022c). Trophic interactions in subterranean environments. In Reference Module in Earth Systems and Environmental Sciences., 3, 537–547 Elsevier. https://doi.org/10.1016/B978-0-12-819166-8.00064-5
  • Saccò, M., Guzik, M. T., van der Heyde, M., Nevill, P., Cooper, S. J. B., Austin, A. D., Coates, P. J., Allentoft, M. E., & White, N. E. (2022a). eDNA in subterranean ecosystems: Applications, technical aspects, and future prospects. The Science of the Total Environment, 820, 153223. https://doi.org/10.1016/j.scitotenv.2022.153223
  • Schminke, H. K. (1972). Hexabathynella halophila gen. n., sp. n. und die Frage nach der marinen Abkunft der Bathynellacea (Cructacea: Malacostraca). Marine Biology, 15, 282–287. https://doi.org/10.1007/BF00383559
  • Schminke, H. K. (1973). Evolution, System und Verbreitungsgeschichte der Familie Parabathynellidae (Bathynellacea, Malacostraca). Akademie der Wissenschaften und der Literatur Mainz, Mathematisch-Naturwissenschaftliche Klasse. Mikrofauna Des Meeresbodens, 24, 1–192.
  • Schminke, H. K. (1974). Mesozoic intercontinental relationships as evidenced by bathynellid Crustacea (Syncarida: Malacostraca). Systematic Zoology, 23, 157–164. https://doi.org/10.2307/2412129
  • Schminke, H. K. (1976). Systematische Untersuchungen an Grundwasserkrebseneine Bestandsaufnahme (mit der Beschreibung zweier neuer Gattungen der Familie Parabathynellidae, Bathynellacea). International Journal of Speleology, 8, 195–216. https://doi.org/10.5038/1827-806X.8.1.18
  • Schram, F. R. (1977). Paleozoogeography of Late Paleozoic and Triassic Malacostraca. Systematic Zoology, 26, 367. https://doi.org/10.2307/2412793
  • Schram, F. R. (1981). Late Paleozoic crustacean communities. Journal of Paleontolgy, 55, 126–137.
  • Schram, F. R. (1984). Fossil Syncarida. Transaction of the San Diego Society of Natural History, 20, 189–246.
  • Serban, E. (1972). Bathynella (Podophallocarida, Bathynellacea). Travaux de l’Institut de Spéléologie “Émile Racovitza”, 11, 11–225.
  • Simon, C., Frati, F., Beckenbach, A., Crespi, B., Liu, H., & Flook, P. (1994). Evolution, weighting, and phylogenetic utility of mitochondrial gene-sequences and a compilation of conserved polymerase chain-reaction primers. Annals of the Entomological Society of America, 87, 651–701. https://doi.org/10.1093/aesa/87.6.651
  • Stumpp, C., & Hose, G. C. (2013). The impact of water table drawdown and drying on subterranean Aquatic Fauna in In-Vitro experiments. PloS One, 8, e78502. https://doi.org/10.1371/journal.pone.0078502
  • Thomson, G. M. (1893). Notes on Tasmania Crustacea, with description of new species. Papers and Proceedings of the Royal Society of Tasmania (pp. 45–76).
  • Venarsky, M., Kevin, S., Saccò, M., François, C., Simon, L., & Griebler, C. (2022). Groundwater Food Webs. In F. Malard, C. Griebler, & S. Retaux (Eds.), Groundwater Ecology (2nd Ed). Elsevier.
  • Wada, Y., Beek, L. P. H. v., van Kempen, C. M., Reckman, J. W. T. M., Vasak, S., & Bierkens, M. F. P. (2010). Global depletion of groundwater resources. WorldCat.org database. American Geophysical Union.
  • Wetzer, R. (2001). Hierarchical analysis of mtDNA variation and the use of mtDNA for isopod (Crustacea: Peracarida: Isopoda) systematics. Contributions to Zoology, 70, 23–39. https://doi.org/10.1163/18759866-07001002
  • Whiting, M. F., Carpenter, J. C., Wheeler, Q. D., & Wheeler, W. C. (1997). The stresiptera problem: Phylogeny of the holometabolous insect orders inferred from 18s and 28s ribosomal DNA sequences and morphology. Systematic Biology, 46, 1–68. https://doi.org/10.2307/2413635

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