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Influence of Local and Landscape Characteristics on Avian Richness and Density in Wet Playas of the Southern Great Plains, USA

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Abstract

Playa wetlands (shallow, circular, depressional wetlands) in the Southern Great Plains are essential to the maintenance of regional biodiversity. However, the relative importance of habitat characteristics for maintaining avian species richness and density in playas is unknown. We examined influences of local- and landscape-scale characteristics on avian communities in wet playas. We conducted biweekly avian surveys on 80 playas (40 playas/year) from summer 2003 through spring 2005. Avian species richness was positively related to playa area and hydroperiod. More avian species and greater densities of birds were found at wetlands when water depths were intermediate (30–80 cm) during fall, winter and spring. Increased cultivation in playa watersheds increased total-, native-, and exotic-avian species richness. However, unsustainable sediment accumulation caused by cultivation can fill the playa basin and result in the loss of playa function, which will not benefit future bird populations. Landscape variables generally were less consistent with avian communities among seasons compared to local variables. Playas with greater numbers of other playas within 1 and 10 km had lower bird densities than those with fewer surrounding playas, likely due to the increase of habitat availability. Larger playas within predominantly uncultivated watersheds, that have an intermediate water depth, longer hydroperiod (within a season), and 26–50% vegetation cover are likely to maximize seasonal native avian richness. However, manipulating static water depths and maintaining long hydroperiods over extended periods will not meet avian objectives over the long term because playas must go through natural wet/dry fluctuations between years to maintain the desired plant community and productivity that supports diverse avian populations.

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References

  • Allen BL, Harris BL, Davis KR, Miller GB (1972) The mineralogy and chemistry of High Plains playa lake soils and sediments. Texas Tech University Report 14-01-0001-1551, Lubbock

  • Babbitt KJ, Baber MJ, Tarr TL (2003) Patterns of larval amphibian distribution along a wetland hydroperiod gradient. Canadian Journal of Zoology 81:1539–1552

    Article  Google Scholar 

  • Batzer DP, Resh VH (1992) Macroinvertebrates of a California seasonal wetland and responses to experimental habitat manipulation. Wetlands 12:1–7

    Article  Google Scholar 

  • Belsley DA, Kuh E, Welsch RE (1980) Regression diagnostics: identifying influential data and sources of collinearity. Wiley, New York

    Book  Google Scholar 

  • Bethke RW, Nudds TD (1995) Effects of climate change and land use on duck abundance in Canadian prairie-parklands. Ecological Applications 5:588–600

    Article  Google Scholar 

  • Bolduc F, Afton AD (2004) Relationships between wintering waterbirds and invertebrates, sediments and hydrology of coastal marsh ponds. Waterbirds 27:333–341

    Article  Google Scholar 

  • Bolduc F, Afton AD (2008) Monitoring waterbird abundance in wetlands: the importance of controlling results for variation in water depth. Ecological Modelling 216:402–408

    Article  Google Scholar 

  • Bolen EG, Smith LM, Schramm HL Jr (1989) Playa lakes: prairie wetlands of the Southern High Plains. BioScience 39:615–623

    Article  Google Scholar 

  • Brown M, Dinsmore JJ (1986) Implications of marsh size and isolation for marsh bird management. Journal of Wildlife Management 50:392–397

    Article  Google Scholar 

  • Burnham KP, Anderson DR (2002) Model selection and multimodel inference: a practical information-theoretic approach, 2nd edn. Springer, New York

    Google Scholar 

  • Colwell MA, Taft OW (2000) Waterbird communities in managed wetlands of varying water depth. Waterbirds 23:45–55

    Google Scholar 

  • Connor EF, McCoy ED (1979) The statistics and biology of the species-area relationship. American Naturalist 113:791–833

    Article  Google Scholar 

  • Conway WC, Smith LM, Ray JD (2005) Shorebird habitat use and nest-site selection in the playa lakes region. Journal of Wildlife Management 69:174–184

    Article  Google Scholar 

  • Cox RR Jr, Davis BE (2002) Habitat use, movements, and survival of female northern pintails during spring migration in Nebraska and subsequent potential breeding-site selection in the Prairie Pothole Region. Progress report. U.S. Geological Survey, Northern Prairie Wildlife Research Center, Bismarck

    Google Scholar 

  • Craig RJ, Beal KG (1992) The influence of habitat variables on marsh bird communities of the Connecticut river estuary. Wilson Bulletin 104:295–311

    Google Scholar 

  • Cunningham MA, Johnson DH (2006) Proximate and landscape factors influence grassland bird distributions. Ecological Applications 16:1062–1075

    Article  PubMed  Google Scholar 

  • Davis CA, Smith LM (1998) Ecology and management of migrant shorebirds in the playa lakes region of Texas. Wildlife Monographs 140:1–45

    Google Scholar 

  • Donald PF, Green RE, Heath MF (2001) Agricultural intensification and the collapse of Europe’s farmland bird populations. Proceedings of the Royal Society B: Biological Sciences 268:25–29

    Article  Google Scholar 

  • Elphick CS, Oring LW (1998) Winter management of Californian rice fields for waterbirds. Journal of Applied Ecology 35:95–108

    Article  Google Scholar 

  • Euliss NH Jr, Mushet DM (1996) Water-level fluctuation in wetlands as a function of landscape condition in the Prairie Pothole Region. Wetlands 16:587–593

    Article  Google Scholar 

  • Euliss NH Jr, Smith LM, Wilcox DA, Browne BB (2008) Linking ecosystem processes with wetland management goals: charting a course for a sustainable future. Wetlands 28:553–562

    Article  Google Scholar 

  • Fairbairn SE, Dinsmore JJ (2001) Local and landscape-level influences on wetland bird communities of the Prairie Pothole Region of Iowa, USA. Wetlands 21:41–47

    Article  Google Scholar 

  • Farmer AH, Parent AH (1997) Effects of the landscape on shorebird movements at spring migration stopovers. Condor 99:698–707

    Article  Google Scholar 

  • Fernandez-Juricic E (2000) Avifaunal use of wooded streets in an urban landscape. Conservation Biology 14:513–521

    Article  Google Scholar 

  • Freemark K, Boutin C (1995) Impacts of agricultural herbicide use on terrestrial wildlife in temperate landscapes: a review with special reference to North America. Agriculture, Ecosystems and Environment 52:67–91

    Article  Google Scholar 

  • Freund RJ, Littell RC (1991) SAS system for regression, 2nd edn. SAS Institute Inc., Cary

    Google Scholar 

  • Freund RJ, Wilson WJ (1993) Statistical methods. Academic Press, Inc., San Diego

    Google Scholar 

  • Gawlik DE (2002) The effects of presy availability on the numerical response of wading birds. Ecological Monographs 72:329–346

    Article  Google Scholar 

  • Gleason RA, Euliss NH Jr (1998) Sedimentation of prairie wetlands. Great Plains Research 8:97–112

    Google Scholar 

  • Gleason RA, Euliss NH Jr, Hubbard DE, Duffy WG (2003) Effects of sediment load on emergence of aquatic invertebrates and plants from wetland soil egg and seed banks. Wetlands 23:26–34

    Article  Google Scholar 

  • Graham MH (2003) Confronting multicollinearity in ecological multiple regression. Ecology 84:2809–2815

    Article  Google Scholar 

  • Guadagnin DL, Maltchik L, Fonseca CR (2009) Species-area relationship of Neotropical waterbird assemblages in remnant wetlands: looking at the mechanisms. Diversity and Distributions 15:319–327

    Article  Google Scholar 

  • Guthery FS, Bryant FC (1982) Status of playas in the Southern Great Plains. Wildlife Society Bulletin 10:309–317

    Google Scholar 

  • Hardin JW, Hilbe JM (2003) Generalized estimating equations. Chapman & Hall, New York

    Google Scholar 

  • Haukos DA, Smith LM (1993) Moist-soil management of playa lakes for migrating and wintering ducks. Wildlife Society Bulletin 21:288–298

    Google Scholar 

  • Haukos DA, Smith LM (1994) The importance of playa wetlands to biodiversity of Southern High Plains. Landscape and Urban Planning 28:83–98

    Article  Google Scholar 

  • Hoffmann MD, Dodson SI (2005) Land use, primary productivity, and lake area as descriptors of zooplankton diversity. Ecology 86:255–261

    Article  Google Scholar 

  • Houlahan JE, Findlay CS (2003) The effects of adjacent land use on wetland amphibian species richness and community composition. Canadian Journal of Fisheries and Aquatic Sciences 60:1078–1094

    Article  Google Scholar 

  • Isola CR, Colwell MA, Taft OW, Safran RJ (2000) Interspecific differences in habitat use of shorebirds and waterfowl foraging in managed wetlands of California’s San Joaquin Valley. Waterbirds 23:196–203

    Google Scholar 

  • Johnson LA (2011) Occurrence, function, and conservation of playa wetlands: The key to biodiversity of the Southern Great Plains. Dissertation, Texas Tech University, Lubbock

  • Kaminski RM, Prince HH (1981) Dabbling duck and aquatic macroinvertebrate responses to manipulated wetland habitat. Journal of Wildlife Management 45:1–15

    Article  Google Scholar 

  • Knoll LB, Vanni MJ, Renwick WH (2003) Phytoplankton primary production and photosynthetic parameters in reservoirs along a gradient of watershed land use. Limnology and Oceanography 48:608–617

    Article  Google Scholar 

  • Kutner MH, Neter J, Nachtsheim CJ, Li W (2004) Applied linear statistical models, 5th edn. McGraw-Hill Companies, Inc, New York

    Google Scholar 

  • Littell RC, Stroup WW, Freund RJ (2002) SAS for linear models, 4th edn. SAS Institute Inc., Cary

    Google Scholar 

  • Luo H-R, Smith LM, Allen BL, Haukos DA (1997) Effects of sedimentation on playa wetland volume. Ecological Applications 7:247–252

    Article  Google Scholar 

  • Mason CF, Macdonald SM (2000) Influence of landscape and land-use on the distribution of breeding birds in farmland in eastern England. Journal of Zoology 251:339–348

    Article  Google Scholar 

  • McGarigal K, Marks BJ (1995) FRAGSTATS: spatial pattern analysis program for quantifying landscape structure. PNW-GTR-351. U. S. Department of Agriculture, Forest Service, Pacific Northwest Research Station, Portland

    Google Scholar 

  • Moreno-Mateos D, Pedrocchi C, Comín FA (2009) Avian communities’ preferences in recently created agricultural wetlands in irrigated landscapes of semi-arid areas. Biodiversity and Conservation 18:811–828

    Article  Google Scholar 

  • Murkin HR, Kaminski RM, Titman RD (1982) Responses by dabbling ducks and aquatic invertebrates to an experimentally manipulated cattail marsh. Canadian Journal of Zoology 60:2324–2332

    Article  Google Scholar 

  • Murkin HR, Murkin EJ, Ball JP (1997) Avian habitat selection and prairie wetland dynamics: a 10-year experiment. Ecological Applications 7:1144–1159

    Article  Google Scholar 

  • Nagarajan R, Thiyagesan K (1996) Waterbirds and substrate quality of the Pichavaram wetlands, southern India. Ibis 138:710–721

    Google Scholar 

  • National Oceanic and Atmospheric Administration (NOAA) (2006) Lubbock precipitation: from 1911-present. http://www.srh.noaa.gov/lub/climate/summaries/klbb/precip/index.php. Accessed 1 October 1 2007

  • Naugle DE, Higgins KF, Estey ME, Johnson RR, Nusser SM (2000) Local and landscape-level factors influencing black tern habitat suitability. Journal of Wildlife Management 64:253–260

    Article  Google Scholar 

  • Naugle DE, Johnson RR, Estey ME, Higgins KF (2001) A landscape approach to conserving wetland bird habitat in the Prairie Pothole Region of eastern South Dakota. Wetlands 21:1–17

    Article  Google Scholar 

  • Oertli B, Joye DA, Castella E, Juge R, Cambin D, Lachavanne JB (2002) Does size matter? The relationship between pond area and biodiversity. Biological Conservation 104:59–70

    Article  Google Scholar 

  • Osterkamp WR, Wood WW (1987) Playa-lake basins on the Southern High Plains of Texas and New Mexico: part I. Hydrologic, geomorphic, and geologic evidence for their development. Geological Society of America Bulletin 99:215–223

    Article  Google Scholar 

  • Pan W (2001) Akaike’s information criterion in generalized estimating equations. Biometrics 57:120–125

    Article  PubMed  CAS  Google Scholar 

  • Pearson SM (1993) The spatial extent and relative influence of landscape-level factors on wintering bird populations. Landscape Ecology 8:3–18

    Article  Google Scholar 

  • Riffell SK, Keas BE, Burton TM (2001) Area and habitat relationships of birds in Great Lake coastal wet meadows. Wetlands 21:492–507

    Article  Google Scholar 

  • Rivers JW, Cable TT (2003) Evaluation of farmed playa wetlands as avian habitat using survey data and two rapid assessment techniques. Transactions of the Kansas Academy of Science 106:155–165

    Article  Google Scholar 

  • Rodenhouse NL, Best LB, O’Connor RJ, Bollinger EK (1995) Effects of agricultural practices and farmland structures. In: Martin TE, Finch DM (eds) Ecology and management of neotropical migratory birds: a synthesis and review of critical issues. Oxford University Press, New York, pp 269–293

    Google Scholar 

  • Rosenzweig ML (1995) Species diversity in space and time. Cambridge University Press, New York

    Book  Google Scholar 

  • Shaffer TL, Thompson FR (2007) Making meaningful estimates of nest survival with model-based methods. Studies in Avian Biology 34:84–95

    Google Scholar 

  • Shay J, de Geus P, Kapinga M (1999) Changes in shoreline vegetation over a 50-year period in the Delta Marsh, Manitoba in response to water levels. Wetlands 19:413–425

    Article  Google Scholar 

  • Shutler D, Mullie A, Clark RG (2000) Bird communities of prairie uplands and wetlands in relation to farming practices in Saskatchewan. Conservation Biology 14:1441–1451

    Article  Google Scholar 

  • Skagen SK, Melcher CP, Haukos DA (2008) Reducing sedimentation of depressional wetlands in agricultural landscapes. Wetlands 28:594–604

    Article  Google Scholar 

  • Smallwood KS (1994) Site invasibility by exotic birds and mammals. Biological Conservation 69:251–259

    Article  Google Scholar 

  • Smith LM (2003) Playas of the Great Plains. University of Texas Press, Austin

    Google Scholar 

  • Smith LM, Haukos DA (2002) Floral diversity in relation to playa wetland area and watershed disturbance. Conservation Biology 16:964–974

    Article  Google Scholar 

  • Smith LM, Haukos DA, Prather RM (2004) Avian response to vegetative pattern in playa wetlands during winter. Wildlife Society Bulletin 32:474–480

    Article  Google Scholar 

  • Smith LM, Euliss NH Jr, Wilcox DA, Brison MM (2008) Application of a geomorphic and temporal perspective to wetland management in North America. Wetlands 28:563–577

    Article  Google Scholar 

  • Smith LM, Haukos DA, McMurry ST, LaGrange T, Willis D (2011) Ecosystem services provided by playas in the High Plains: potential influences of USDA conservation programs. Ecological Applications 21:S82–S92

    Article  Google Scholar 

  • Snodgrass JW, Ackerman JW, Bryan AL Jr, Burger J (1999) Influence of hydroperiod, isolation, and heterospecifics on the distribution of aquatic salamanders (Siren and Amphiuma) among depression wetlands. Copeia 1999:107–113

    Article  Google Scholar 

  • Texas Natural Resources Information System (TNRIS) (2006) TNRIS data distribution system. http://www.tnris.state.tx.us/digital.htm. Accessed 15 September 2006

  • Tsai J-S (2007) Local and landscape factor influences on avian community composition in playas of the Southern High Plains. Dissertation, Texas Tech University, Lubbock

  • Tsai J-S, Venne LS, McMurry ST, Smith LM (2007) Influences of land use and wetland characteristics on water loss rates and hydroperiods of playas in the Southern High Plains, USA. Wetlands 27:683–692

    Article  Google Scholar 

  • Tsai J-S, Venne LS, McMurry ST, Smith LM (2010) Vegetation and land use impact on water loss rate in playas of the Southern High Plains, USA. Wetlands 30:1107–1116

    Article  Google Scholar 

  • Tsai J-S, Venne LS, McMurry ST, Smith LM (2012) Local and landscape influences on plant communities in playa wetlands. Journal of Applied Ecology 49:174–181

    Article  Google Scholar 

  • van der Kamp G, Hayashi M, Gallen D (2003) Comparing the hydrology of grassed and cultivated catchments in the semi-arid Canadian prairies. Hydrological Processes 17:559–575

    Article  Google Scholar 

  • Webb EB, Smith LM, Vrtiska MP, Lagrange TG (2010) Effects of local and landscape variables on wetland bird habitat use during migration through the Rainwater Basin. Journal of Wildlife Management 74:109–119

    Article  Google Scholar 

  • Weller MW, Fredrickson LH (1974) Avian ecology of a managed glacial marsh. Living Bird 12:269–291

    Google Scholar 

  • Weller MW, Spatcher CS (1965) Role of habitat in the distribution and abundance of marsh birds. Agricultural and Home Economic Experiment Station, Iowa State University, Ames

    Google Scholar 

  • Whited D, Galatowitsch S, Tester JR, Schik K, Lehtinen R, Husveth J (2000) The importance of local and regional factors in predicting effective conservation: planning strategies for wetland bird communities in agricultural and urban landscapes. Landscape and Urban Planning 49:49–65

    Article  Google Scholar 

  • Wiens JA (2001) Predicting species occurrences: progress, problems, and prospects. In: Scott, JM, Heglund PJ, Haufler, JB, Morrison M, Raphael MG, Wall WB, Samson F (eds) Predicting species occurrences: issues of accuracy and scale. Island Press, Washington, D.C., pp 739–749

  • Wiens JA, Addicott JF, Case TJ, Diamond J (1986) Overview: the importance of spatial and temporal scale in ecological investigations. In: Diamond JM, Case TJ (eds) Community ecology. Harper Collins College Division, Glenview, pp 145–153

    Google Scholar 

  • Wiens JA, Schooley RL, Weeks RD Jr (1997) Patchy landscapes and animal movements: do beetles percolate? Oikos 78:257–264

    Article  Google Scholar 

  • Williams CB (1964) Patterns in the balance of nature. Academic, London

    Google Scholar 

  • Winter M, Johnson DH, Shaffer JA, Donovan TM, Svedarsky WD (2006) Patch size and landscape effects on density and nesting success of grassland birds. Journal of Wildlife Management 70:158–172

    Article  Google Scholar 

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Acknowledgments

Funding for this project was provided by U. S. Environmental Protection Agency (project number R-2964101-0). L. M. Smith was supported by the Caesar Kleberg Foundation for Wildlife Conservation. We thank the numerous private landowners that allowed us access to their properties. The Natural Resources Conservation Service, U.S. Department of Agriculture, provided information of study playas. We thank everyone who assisted with field data collection and the GIS and remote sensing work.

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Correspondence to Jo-Szu Tsai.

Appendix

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Table 4 Birds occurring in wet playas in the Southern Great Plains, USA, from June 2003 to May 2005. Symbol “V” means bird was found in that year and numbers appearing in parentheses represented the number of playas in each year in which the bird species was detected. Nomenclature follows the American Ornithologists’ Union (1998)

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Tsai, JS., Venne, L.S., Smith, L.M. et al. Influence of Local and Landscape Characteristics on Avian Richness and Density in Wet Playas of the Southern Great Plains, USA. Wetlands 32, 605–618 (2012). https://doi.org/10.1007/s13157-012-0280-1

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