Identifying and prioritizing aquatic habitats for conservation in a poorly studied region

Journal for Nature Conservation - Tập 63 - Trang 126043 - 2021
Mohammed A. Al-Saffar1, Azzam J. Alwash2, David J. Berg3
1Department of Biology, Miami University, Oxford, OH 45056, USA
2Nature Iraq, Sulaimani, Kurdistan Region, Iraq
3Department of Biology, Miami University, Hamilton, OH 45011, USA

Tài liệu tham khảo

Albuquerque, 2015, Global patterns and environmental correlates of high priority conservation areas for vertebrates, Journal of Biogeography, 42, 1397, 10.1111/jbi.12498 Al-Saffar, M.A. (2007). Interaction between the environmental variables and benthic macroinvertebrates community structure in Abu Zirig Marsh, Southern Iraq. M.Sc. Thesis, University of Baghdad, College of Science, Baghdad, Iraq. X +156 pp. Al-Saffar, M. A. (2016). Conservation biology in poorly studied freshwater ecosystems: from accelerated identification of water quality bioindicators to conservation planning. Doctoral Dissertation, Miami University, Oxford, Ohio, USA. XIII + 197 pp. Al-Saffar, 2021, Checklist and key to the families, subfamilies, genera, and subgenera of mayfly larvae (Insecta: Ephemeroptera) from northern Iraq, Proceedings of the Entomological Society of Washington, 123, 10.4289/0013-8797.123.3.474 Barber-James, 2008, Global diversity of mayflies (Ephemeroptera, Insecta) in freshwater, Hydrobiologia, 595, 339, 10.1007/s10750-007-9028-y BirdLife International (2015). Neophron percnopterus. The IUCN Red List of Threatened Species 2015: e.T22695180A85062680. Downloaded on 20 November 2015. Benito, 2014, Modelling habitat distribution of Mediterranean coastal wetlands: The Ebro Delta as case study, Wetlands, 34, 775, 10.1007/s13157-014-0541-2 Boyle, 2014, High-resolution satellite imagery is an important yet underutilized resource in conservation biology, PLOS ONE, 9, 10.1371/journal.pone.0086908 Brown, 2014, SDMtoolbox: a python-based GIS toolkit for landscape genetic, biogeographic and species distribution model analyses, Methods in Ecology and Evolution, 5, 694, 10.1111/2041-210X.12200 Brown, J.L. (2014b). SDMtoolbox: a GIS toolkit for landscape genetic, biogeographic and species distribution model analyses. http://www.sdmtoolbox.org. Brown, 2016, Predicting the genetic consequences of future climate change: The power of coupling spatial demography, the coalescent, and historical landscape changes, American Journal of Botany, 103, 153, 10.3732/ajb.1500117 Cardoso, 2011, The seven impediments in invertebrate conservation and how to overcome them, Biological Conservation, 144, 2647, 10.1016/j.biocon.2011.07.024 Chadés, 2015, Benefits of integrating complementarity into priority threat management, Conservation Biology, 29, 1523, 10.1111/cobi.12413 Cuyckens, 2016, Climate change and the distribution and conservation of the world's highest elevation woodlands in the South American Altiplano, Global and Planetary Change, 137, 79, 10.1016/j.gloplacha.2015.12.010 Daru, 2015, Spatial incongruence among hotspots and complementary areas of tree diversity in southern Africa, Diversity and Distributions, 21, 769, 10.1111/ddi.12290 Eden Again Group, 2004 Eden Again Group (2005). Water and Energy Project. Book 1: Abu Zirig Marshland Restoration Project. Baghdad, Iraq: Italian Ministry of Environment and Free Iraq Foundation Reports http://www.iraqfoundation.org. Elith, 2011, A statistical explanation of MaxEnt for ecologists, Diversity and Distributions, 17, 43, 10.1111/j.1472-4642.2010.00725.x Everall, 2015, Detecting phenology change in the mayfly Ephemera danica: Responses to spatial and temporal water temperature variations, Ecological Entomology, 40, 95, 10.1111/een.12164 Faith, 1996, How do indicator groups provide information about the relative biodiversity of different sets of areas? On hotspots, complementarity and pattern-based approaches, Biodiversity Letters, 3, 8, 10.2307/2999706 Fochetti, 2006, Notes on diversity and conservation of the European fauna of Plecoptera (Insecta), Journal of Natural History, 40, 2361, 10.1080/00222930601051386 Fox, 2005, Priority areas for conservation of Western Australian coastal fishes: A comparison of hotspot, biogeographical and complementarity approaches, Biological Conservation, 125, 399, 10.1016/j.biocon.2005.02.006 European Reptile & Amphibian Specialist Group (1996). Rafetus euphraticus. The IUCN Red List of Threatened Species 1996: e.T19070A8809367. Downloaded on 20 November 2015. Freyhof, J. (2014a). Capoeta barroisi. The IUCN Red List of Threatened Species 2014: e.T19025039A19222853. Downloaded on 20 November 2015. Freyhof, J. (2014b). Luciobarbus subquincunciatus. The IUCN Red List of Threatened Species 2014: e.T19383549A19849734. Downloaded on 20 November 2015. Geraci, 2011, DNA barcoding facilitates description of unknown faunas: A case study on Trichoptera in the headwaters of the Tigris River, Iraq, Journal of the North American Benthological Society, 30, 163, 10.1899/10-011.1 Guerold, 2000, Macroinvertebrate community loss as a result of headwater stream acidification in the Vosges Mountains (N-E France), Biodiversity and Conservation, 9, 767, 10.1023/A:1008994122865 Hanski, 1998, Metapopulation Dynamics, Nature, 396, 41, 10.1038/23876 Hardin, G. (1968). The Tragedy of the Commons. Science (AAAS) 162 (3859): 1243-1248. doi:10.1126/science.162.3859.1243. Harte, 2011 Hattam, J. (2013). Dammed, dirty, drained by war: can Iraq's Tigris River be restored? The Christian Science Monitor: Energy, Environment. Retrieved December 10th, 2015 from csmonitor.com. Hoekstra, 2010 Iraqi Ministries of the Environment, Water Resources & Municipalities, & Public Works (2006). New Eden Master Plan for integrated water resources management in the marshlands areas, Volume I: Overview of Present Conditions and Current Use of the Water in the Marshlands Area, Book 1: Water resources. New Eden Group, Italy-Iraq. Justus, 2002, The principle of complementarity in the design of reserve networks to conserve biodiversity: A preliminary history, Journal of Biosciences, 27, 421, 10.1007/BF02704970 Kati, 2004, Hotspots, complementarity or representativeness? Designing optimal small-scale reserves for biodiversity conservation, Biological Conservation, 120, 471, 10.1016/j.biocon.2004.03.020 Khorozyan, I. (2008). Panthera pardus ssp. saxicolor. The IUCN Red List of Threatened Species 2008: e.T15961A5334217. Downloaded on 20 November 2015. Kibaroglu, 2000, An institutional framework for facilitating cooperation in the Tigris-Euphrates river basin, International Negotiation, 5, 311, 10.1023/A:1009811703456 Kool, 2013, Population connectivity: Recent advances and new perspectives, Landscape Ecology, 28, 165, 10.1007/s10980-012-9819-z Leathwick, 2010, Complementarity-based conservation prioritization using a community classification, and its application to riverine ecosystems, Biological Conservation, 143, 984, 10.1016/j.biocon.2010.01.012 Lehner, 2013, Global river hydrography and network routing: Baseline data and new approaches to study the world’s large river systems, Hydrological Processes, 27, 2171, 10.1002/hyp.9740 Levins, 1969, Some demographic and genetic consequences of environmental heterogeneity for biological control, Bulletin of the Entomological Society of America, 15, 237, 10.1093/besa/15.3.237 Lubini, V., Knispel, S., & Vinçon, G. (2012a). Die Steinfliegen der Schweiz, Verbreitung und Bestimmung. Les Pleécoptères de Suisse. Identification et distribution. Fauna Helvetica 27, 270 pp., Centre suisse de cartographie de la faune, Schweizerische Entomologische Gesellschaft, Neuchâtel. Lubini, V., Knispel, S., Sartori, M., Vicentini, H., & Wagner, A. (2012b). Rote Listen Eintagsfliegen, Steinfliegen, Köcherfliegen. Gefährdete Arten der Schweiz, Stand 2010. Bundesamt für Umwelt, Bern, und Schweizer Zentrum für die Kartographie der Fauna, Neuenburg. Umwelt-Vollzug Nr. 1212: 111 S. Mahir, A. M., Radhi, A. G., Falih, H. A., Al-Obaidi, G. S., & Al-Saffar, M. A. (2009). Key Biodiversity Areas Survey of the Kurdistan, Northern Iraq: Water Quality Review-winter and summer 2008 Survey. Sulaimani, Iraq: Nature Iraq. Publication No. NI-0209-004. Malzacher, 1998, Rote Liste der Eintagsfliegen (Ephemeroptera), 264 Margules, 2000, Systematic conservation planning, Nature, 405, 243, 10.1038/35012251 1998 Merriam, 1984, Connectivity: a fundamental ecological characteristic of landscape pattern, 5 2019, 1498 Moilanen, 2007, Landscape zonation, benefit functions and target-based planning: Unifying reserve selection strategies, Biological Conservation, 134, 571, 10.1016/j.biocon.2006.09.008 Moilanen, 2009 Morse, 2007, Freshwater biomonitoring with macroinvertebrates in East Asia, Frontiers in Ecology and the Environment, 5, 33, 10.1890/1540-9295(2007)5[33:FBWMIE]2.0.CO;2 Mulder, 2015, Identifying water mass depletion in northern Iraq observed by GRACE, Hydrology and Earth System Sciences, 19, 1487, 10.5194/hess-19-1487-2015 Myers, 2000, Biodiversity hotspots for conservation priorities, Nature, 403, 853, 10.1038/35002501 Nair, 2015, Aquatic insects and their societal benefits and risks, Journal of Entomology and Zoology Studies, 3, 171 2008 Nature Iraq (2017). Key Biodiversity Areas of Iraq: Priority Sites for Conservation & Protection. Tablet House Publishing, 297 pp. ISBN: 9780988651463. Ochoa-Ochoa, 2016, Using one vs. many, sensitivity and uncertainty analyses of species distribution models with focus on conservation area networks, Ecological Modelling, 320, 372, 10.1016/j.ecolmodel.2015.10.031 Pearson, 2007, Predicting species distributions from small numbers of occurrence records: A test case using cryptic geckos in Madagascar, Journal of Biogeography, 34, 102, 10.1111/j.1365-2699.2006.01594.x Phillips, S.J., Dudík, M., & Schapire, R. E. (2005). Maxent software for species distribution modeling. Version 3.3.3k. http://www.cs.princeton.edu/~schapire/maxent/. Pimm, 2015, Emerging Technologies to Conserve Biodiversity, Trends in Ecology and Evolution, 30, 685, 10.1016/j.tree.2015.08.008 Ratnasingham, 2007, BOLD: The Barcode of Life Data System, Molecular Ecology Notes, 7, 355, 10.1111/j.1471-8286.2007.01678.x Rubec, 2009, The Key Biodiversity Areas Project in Iraq: Objectives and scope 2004–2008, vol. 3, 39 Sánchez-Bayo, 2019, Worldwide decline of the entomofauna: A review of its drivers, Biological Conservation, 232, 8, 10.1016/j.biocon.2019.01.020 Sharifi, M., Bafti, S. S., Papenfuss, T., Anderson, S., Kuzmin, S., & Rastegar-Pouyani, N. (2009). Neurergus microspilotus. The IUCN Red List of Threatened Species 2009: e.T59451A11944058. Downloaded on 20 November 2015. Smith, K. G., Barrios, V., Darwall, W. R. T. & Numa, C. (Eds.) (2014). The Status and Distribution of Freshwater Biodiversity in the Eastern Mediterranean. Cambridge, UK, Malaga, Spain and Gland, Switzerland: IUCN. xiv + 132pp. Snyder, 1999, An optimization approach to selecting research natural areas in national forests, Forest Science, 45, 458 Suter, 2014, Why care about aquatic insects: Uses, benefits, and services, Integrated Environmental Assessment and Management, 11, 188, 10.1002/ieam.1600 Terrado, 2016, Model development for the assessment of terrestrial and aquatic habitat quality in conservation planning, Science of the Total Environment, 540, 63, 10.1016/j.scitotenv.2015.03.064 IUCN (2020). The IUCN Red List of Threatened Species. Version 2020-3. ISSN 2307-8235. https://www.iucnredlist.org. Tolimieri, 2015, Can we increase our confidence about the locations of biodiversity ‘hotspots’ by using multiple diversity indices?, Ecosphere, 6, art290, 10.1890/ES14-00363.1 Weinberg, P., Jdeidi, T., Masseti, M., Nader, I., de Smet, K., & Cuzin, F. (2008). Capra aegagrus. The IUCN Red List of Threatened Species 2008: e.T3786A10076632. Downloaded on 20 November 2015. Williams, 1996, A comparison of richness hotspots, rarity hotspots, and complementary areas for conserving diversity of British birds, Conservation Biology, 10, 155, 10.1046/j.1523-1739.1996.10010155.x