Prescribed fire increases the number of ground‐nesting bee nests in tallgrass prairie remnants
暂无分享,去创建一个
[1] K. Oberhauser,et al. Divergent responses of butterflies and bees to burning and grazing management in tallgrass prairies , 2022, Ecology and evolution.
[2] M. Arduser,et al. A review of the Augochloropsis (Hymenoptera, Halictidae) and keys to the shiny green Halictinae of the midwestern United States , 2022, ZooKeys.
[3] Michael C. Orr,et al. A review of global trends in the study types used to investigate bee nesting biology , 2022, Basic and Applied Ecology.
[4] Abdullah Al Mamun,et al. The right to burn: barriers and opportunities for Indigenous-led fire stewardship in Canada , 2022, FACETS.
[5] C. Adlam,et al. Keepers of the Flame: Supporting the Revitalization of Indigenous Cultural Burning , 2021, Society & Natural Resources.
[6] C. Ruffner,et al. Patterns of Anthropogenic Fire within the Midwestern Tallgrass Prairie 1673–1905: Evidence from Written Accounts , 2021, Natural Areas Journal.
[7] D. Cariveau,et al. Differences in bee community composition between restored and remnant prairies are more strongly linked to forb community differences than landscape differences , 2021, Journal of Applied Ecology.
[8] Lauren C. Ponisio,et al. Responses from bees, butterflies, and ground beetles to different fire and site characteristics: A global meta-analysis , 2021 .
[9] Sean R. Griffin,et al. Variation in prescribed fire and bison grazing supports multiple bee nesting groups in tallgrass prairie , 2021 .
[10] T. Marks-Block,et al. Facilitating Prescribed Fire in Northern California through Indigenous Governance and Interagency Partnerships , 2021, Fire.
[11] Zachary M. Portman,et al. Intensive monitoring for bees in North America: indispensable or improvident? , 2021 .
[12] J. Hiers,et al. Frequent prescribed fires favour ground‐nesting bees in southeastern U.S. forests , 2021, Insect Conservation and Diversity.
[13] Sean R. Griffin,et al. Bee communities in restored prairies are structured by landscape and management, not local floral resources , 2021 .
[14] N. Koper,et al. Effects of Natural Habitat Loss and Edge Effects on Wild Bees and Pollination Services in Remnant Prairies , 2021, Environmental Entomology.
[15] J. Forrest,et al. Nesting habitat of ground‐nesting bees: a review , 2020 .
[16] Hojun Song,et al. A molecular phylogeny of the long-horned bees in the genus Melissodes Latreille (Hymenoptera: Apidae: Eucerinae) , 2020, Insect Systematics & Evolution.
[17] D. Larson,et al. Management of remnant tallgrass prairie by grazing or fire: effects on plant communities and soil properties , 2020, Ecosphere.
[18] M. Tfaily,et al. Soil properties and biochemical composition of ground‐dwelling bee nests in agricultural settings , 2020, Soil Science Society of America Journal.
[19] D. Cariveau,et al. The State of Bee Monitoring in the United States: A Call to Refocus Away From Bowl Traps and Towards More Effective Methods , 2020, Annals of the Entomological Society of America.
[20] Lauren C. Ponisio. Pyrodiversity promotes interaction complementarity and population resistance , 2020, Ecology and evolution.
[21] S. Wagenius,et al. Fire synchronizes flowering and boosts reproduction in a widespread but declining prairie species , 2020, Proceedings of the National Academy of Sciences.
[22] Alexandra N. Harmon‐Threatt. Influence of Nesting Characteristics on Health of Wild Bee Communities. , 2020, Annual review of entomology.
[23] F. Requier,et al. Beyond flowers: including non-floral resources in bee conservation schemes , 2020, Journal of Insect Conservation.
[24] D. Goulson,et al. Methods for creating bare ground on farmland in Hampshire, UK, and their effectiveness at recruiting ground-nesting solitary bees , 2020 .
[25] C. Sorenson,et al. The Impact of Prescribed Burning on Native Bee Communities (Hymenoptera: Apoidea: Anthophila) in Longleaf Pine Savannas in the North Carolina Sandhills , 2019, Environmental Entomology.
[26] Kohske Takahashi,et al. Welcome to the Tidyverse , 2019, J. Open Source Softw..
[27] J. Nippert,et al. Browsing and fire decreases dominance of a resprouting shrub in woody encroached grassland. , 2019, Ecology.
[28] Alexandra N. Harmon‐Threatt,et al. Bee diversity in tallgrass prairies affected by management and its effects on above‐ and below‐ground resources , 2019, Journal of Applied Ecology.
[29] J. Pausas,et al. A global synthesis of fire effects on pollinators , 2019, Global Ecology and Biogeography.
[30] Alexandra N. Harmon‐Threatt,et al. Growing or dormant season burns: the effects of burn season on bee and plant communities , 2019, Biodiversity and Conservation.
[31] Lauren A. Smith DiCarlo,et al. Short-Term Response of Two Beneficial Invertebrate Groups to Wildfire in an Arid Grassland System, United States ☆ , 2019, Rangeland Ecology and Management.
[32] S. Grodsky,et al. Evaluation of nest-site selection of ground-nesting bees and wasps (Hymenoptera) using emergence traps , 2019, The Canadian Entomologist.
[33] Tyler J. Lark,et al. Accelerated Conversion of Native Prairie to Cropland in Minnesota , 2018, Environmental Conservation.
[34] P. Gowda,et al. Tallgrass Prairie Responses to Management Practices and Disturbances: A Review , 2018, Agronomy.
[35] A. Moldenke,et al. Wild bee diversity is enhanced by experimental removal of timber harvest residue within intensively managed conifer forest , 2018, GCB Bioenergy.
[36] Joshua W. Campbell,et al. The effects of repeated prescribed fire and thinning on bees, wasps, and other flower visitors in the understory and midstory of a temperate forest in North Carolina , 2018 .
[37] J. Pausas,et al. Towards an understanding of the evolutionary role of fire in animals , 2018, Evolutionary Ecology.
[38] N. Williams,et al. Fire‐induced change in floral abundance, density, and phenology benefits bumble bee foragers , 2018 .
[39] R. Isaacs,et al. The bees of Michigan (Hymenoptera: Apoidea: Anthophila), with notes on distribution, taxonomy, pollination, and natural history. , 2017, Zootaxa.
[40] R. Limb,et al. Arthropods and Fire: Previous Research Shaping Future Conservation☆ , 2017, Rangeland Ecology and Management.
[41] Rebecca S. Barak,et al. Restored tallgrass prairies have reduced phylogenetic diversity compared with remnants , 2017 .
[42] Alexandra N. Harmon‐Threatt,et al. An assessment of the efficacy and peak catch rates of emergence tents for measuring bee nesting1 , 2017, Applications in Plant Sciences.
[43] M. McCarthy,et al. Effects of fire on pollinators and pollination , 2017 .
[44] Alexandra N. Harmon‐Threatt,et al. Common Methods for Tallgrass Prairie Restoration and Their Potential Effects on Bee Diversity , 2016, Natural Areas Journal.
[45] Lauren C. Ponisio,et al. Hedgerow presence does not enhance indicators of nest‐site habitat quality or nesting rates of ground‐nesting bees , 2016 .
[46] J. Harrington,et al. The pace of plant community change is accelerating in remnant prairies , 2016, Science Advances.
[47] J. Dukes,et al. Relationships among land use, soil texture, species richness, and soil carbon in Midwestern tallgrass prairie, CRP and crop lands , 2016 .
[48] Lori R. Spears,et al. Learning to love leftovers: using by-catch to expand our knowledge in entomology , 2015 .
[49] S. Roberts,et al. Evidence of forage distance limitations for small bees (Hymenoptera: Apidae) , 2015 .
[50] E. Elle,et al. Flowering phenology and nesting resources influence pollinator community composition in a fragmented ecosystem , 2015, Landscape Ecology.
[51] D. Bates,et al. Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.
[52] C. Kremen,et al. Evaluating nesting microhabitat for ground-nesting bees using emergence traps , 2014 .
[53] G. Dauby,et al. Sampled-based estimation of diversity sensu stricto by transforming Hurlbert diversities into effective number of species , 2012 .
[54] S. Collins,et al. Effects of fire, grazing and topographic variation on vegetation structure in tallgrass prairie , 2012 .
[55] J. Cane,et al. Predicted fates of ground-nesting bees in soil heated by wildfire: Thermal tolerances of life stages and a survey of nesting depths , 2011 .
[56] J. Gibbs. Revision of the metallic Lasioglossum (Dialictus) of eastern North America (Hymenoptera: Halictidae: Halictini) , 2011 .
[57] Sandra M. Rehan,et al. Morphological and molecular delineation of a new species in the Ceratina dupla species-group (Hymenoptera: Apidae: Xylocopinae) of eastern North America , 2011 .
[58] S. Potts,et al. Ecological and life-history traits predict bee species responses to environmental disturbances , 2010 .
[59] R. Grundel,et al. Floral and nesting resources, habitat structure, and fire influence bee distribution across an open-forest gradient. , 2010, Ecological applications : a publication of the Ecological Society of America.
[60] J. Gibbs. Revision of the metallic species of Lasioglossum (Dialictus) in Canada (Hymenoptera, Halictidae, Halictini) , 2010 .
[61] Chris Helzer. The Ecology and Management of Prairies in the Central United States , 2009 .
[62] G. Nowacki,et al. The Demise of Fire and “Mesophication” of Forests in the Eastern United States , 2008 .
[63] A. Swengel,et al. Benefit of permanent non-fire refugia for Lepidoptera conservation in fire-managed sites , 2007, Journal of Insect Conservation.
[64] N. Williams,et al. Effects of Cultivation and Proximity to Natural Habitat on Ground-nesting Native Bees in California Sunflower Fields , 2006 .
[65] E. Strohm,et al. The influence of soil temperature on the nesting cycle of the halictid bee Lasioglossum malachurum , 2006, Insectes Sociaux.
[66] S. Potts,et al. Role of nesting resources in organising diverse bee communities in a Mediterranean landscape , 2005 .
[67] L. Packer,et al. An analysis of variation in the nest architecture ofHalictus ligatus in Ontario , 1986, Insectes Sociaux.
[68] B. Coelho. A review of the bee genus Augochlorella (Hymenoptera: Halictidae: Augochlorini) , 2004 .
[69] Achim Gathmann,et al. Foraging ranges of solitary bees , 2002 .
[70] H. Howe,et al. Fire Season and Dominance in an Illinois Tallgrass Prairie Restoration , 2002 .
[71] Frank K. Lake,et al. The Role of Indigenous Burning in Land Management , 2001, Journal of Forestry.
[72] C. T. Wuellner,et al. Nest site preference and success in a gregarious, ground‐nesting bee Dieunomia triangulifera , 1999 .
[73] S. Potts,et al. Abiotic and biotic factors influencing nest‐site selection by Halictus rubicundus, a ground‐nesting halictine bee , 1997 .
[74] J. Briggs,et al. Interannual variability in primary production in tallgrass prairie: climate, soil moisture, topographic position, and fire as determinants of aboveground biomass , 1995 .
[75] H. Howe. Response of Early‐ and Late‐Flowering Plants to Fire Season in Experimental Prairies , 1994 .
[76] J. Cane. Soils of ground-nesting bees (Hymneoptera: Apoidea): Texture, moisture, cell depth and climate , 1991 .
[77] K. L. Anderson,et al. Time Of Burning As It Affects Soil Moisture in an Ordinary Upland Bluestem Prairie in the Flint Hills. , 1965 .
[78] J. Ehrenreich,et al. An Ecological Study of the Effect of Certain Management Practices on Native Prairie in Iowa , 1963 .