Drought and small-bodied herbivores modify nutrient cycling in the semi-arid shortgrass steppe
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[1] Xuhua Du,et al. Alleviation of drought stress in Phyllostachys edulis by N and P application , 2018, Scientific Reports.
[2] Melinda D. Smith,et al. Precipitation and environmental constraints on three aspects of flowering in three dominant tallgrass species , 2017 .
[3] J. Parker,et al. Responses of plant phenology, growth, defense, and reproduction to interactive effects of warming and insect herbivory. , 2017, Ecology.
[4] Ava M. Hoffman,et al. Underappreciated problems of low replication in ecological field studies. , 2016, Ecology.
[5] Meghan L. Avolio,et al. Nutrient additions cause divergence of tallgrass prairie plant communities resulting in loss of ecosystem stability , 2016 .
[6] J. Derner,et al. Grazing intensity differentially regulates ANPP response to precipitation in North American semiarid grasslands. , 2016, Ecological applications : a publication of the Ecological Society of America.
[7] N. Lemoine,et al. Increased temperature causes protein limitation by reducing the efficiency of nitrogen digestion in the ectothermic herbivore Spodoptera exigua , 2016 .
[8] Melinda D. Smith,et al. Soil nutrient additions increase invertebrate herbivore abundances, but not herbivory, across three grassland systems , 2016, Oecologia.
[9] Meghan L. Avolio,et al. Characterizing differences in precipitation regimes of extreme wet and dry years: implications for climate change experiments , 2015, Global change biology.
[10] Louie H. Yang,et al. Grassland productivity limited by multiple nutrients , 2015, Nature Plants.
[11] Melinda D. Smith,et al. Invertebrate, not small vertebrate, herbivory interacts with nutrient availability to impact tallgrass prairie community composition and forb biomass , 2015 .
[12] S. Collins,et al. Differential sensitivity to regional-scale drought in six central US grasslands , 2015, Oecologia.
[13] N. Eisenhauer,et al. Increase of fast nutrient cycling in grassland microcosms through insect herbivory depends on plant functional composition and species diversity , 2015 .
[14] Yingjun Zhang,et al. The interaction between arbuscular mycorrhizal fungi and soil phosphorus availability influences plant community productivity and ecosystem stability , 2014 .
[15] Roberta E. Martin,et al. Herbivory makes major contributions to ecosystem carbon and nutrient cycling in tropical forests. , 2013, Ecology letters.
[16] Brian A. Nosek,et al. Power failure: why small sample size undermines the reliability of neuroscience , 2013, Nature Reviews Neuroscience.
[17] Meghan L. Avolio,et al. Mechanisms of selection: Phenotypic differences among genotypes explain patterns of selection in a dominant species , 2013 .
[18] Jacob E. Allgeier,et al. Nutrient supply from fishes facilitates macroalgae and suppresses corals in a Caribbean coral reef ecosystem , 2013, Scientific Reports.
[19] O. Sala,et al. Legacies of precipitation fluctuations on primary production: theory and data synthesis , 2012, Philosophical Transactions of the Royal Society B: Biological Sciences.
[20] A. Joern,et al. Not just the usual suspects: insect herbivore populations and communities are associated with multiple plant nutrients. , 2012, Ecology.
[21] Gaël Varoquaux,et al. The NumPy Array: A Structure for Efficient Numerical Computation , 2011, Computing in Science & Engineering.
[22] H. Olff,et al. Cross-site comparison of herbivore impact on nitrogen availability in grasslands: the role of plant nitrogen concentration , 2009 .
[23] M. Estiarte,et al. Drought and warming induced changes in P and K concentration and accumulation in plant biomass and soil in a Mediterranean shrubland , 2008, Plant and Soil.
[24] Lukas H. Meyer,et al. Summary for Policymakers , 2022, The Ocean and Cryosphere in a Changing Climate.
[25] J. Peñuelas,et al. Drought changes phosphorus and potassium accumulation patterns in an evergreen Mediterranean forest , 2007 .
[26] G. Sword,et al. Sustainable Management of Insect Herbivores in Grassland Ecosystems: New Perspectives in Grasshopper Control , 2006 .
[27] H. Olff,et al. Herbivore impact on grassland plant diversity depends on habitat productivity and herbivore size. , 2006, Ecology letters.
[28] S. Fonte,et al. The influence of a neotropical herbivore (Lamponius portoricensis) on nutrient cycling and soil processes , 2005, Oecologia.
[29] Ismail Cakmak,et al. The role of potassium in alleviating detrimental effects of abiotic stresses in plants , 2005 .
[30] F. Davies,et al. Drought stress influences leaf water content, photosynthesis, and water-use efficiency of Hibiscus rosa-sinensis at three potassium concentrations , 2005, Photosynthetica.
[31] J. Peñuelas,et al. Increasing drought decreases phosphorus availability in an evergreen Mediterranean forest , 2004, Plant and Soil.
[32] M. Hunter,et al. INSECT CANOPY HERBIVORY AND FRASS DEPOSITION AFFECT SOIL NUTRIENT DYNAMICS AND EXPORT IN OAK MESOCOSMS , 2004 .
[33] W. Pockman,et al. Precipitation pulses and carbon fluxes in semiarid and arid ecosystems , 2004, Oecologia.
[34] J. Zak,et al. Convergence across biomes to a common rain-use efficiency , 2004, Nature.
[35] N. Slade,et al. LONG-TERM DYNAMICS OF A GRASSLAND RODENT COMMUNITY , 2004 .
[36] J. Elser,et al. Stoichiometric tracking of soil nutrients by a desert insect herbivore , 2003 .
[37] O. Sala,et al. A rainout shelter design for intercepting different amounts of rainfall , 2002, Oecologia.
[38] R. Augé. Water relations, drought and vesicular-arbuscular mycorrhizal symbiosis , 2001, Mycorrhiza.
[39] Osvaldo E. Sala,et al. Inter-annual variation in primary production of a semi-arid grassland related to previous-year production , 2001 .
[40] Bingru Huang,et al. Effects of calcium on antioxidant activities and water relations associated with heat tolerance in two cool-season grasses. , 2001, Journal of experimental botany.
[41] G. Belovsky,et al. Insect herbivory accelerates nutrient cycling and increases plant production. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[42] G. Kulandaivelu,et al. Differential Responses of Iron, Magnesium, and Zinc Deficiency on Pigment Composition, Nutrient Content, and Photosynthetic Activity in Tropical Fruit Crops , 2000, Photosynthetica.
[43] J. H. Bock,et al. Habitat Relationships Among Grasshoppers (Orthoptera:Acrididae) at the Western Limit of the Great Plains in Colorado , 1999 .
[44] E. Maréchal,et al. Lipid synthesis and metabolism in the plastid envelope , 1997 .
[45] G. Belovsky,et al. Dynamics of two Montana grasshopper populations: relationships among weather, food abundance and intraspecific competition , 1995, Oecologia.
[46] D. Horton,et al. Geographic Variation in Effects of Weather on Grasshopper Infestation , 1989 .
[47] David C. Thompson,et al. DYNAMICS AND STRUCTURE OF GRASSHOPPER ASSEMBLAGES IN SHORTGRASS PRAIRIE , 1987, The Canadian Entomologist.
[48] W. Parton,et al. Plant recovery following prolonged drought in a shortgrass steppe , 1982 .
[49] E. Birney,et al. Structure and Productivity of Grassland Small Mammal Communities Related to Grazing-Induced Changes in Vegetative Cover , 1982 .
[50] Armando Garsd,et al. A 19-Year Study of Microtine Population Fluctuations Using Time-Series Analysis , 1981 .
[51] H. Mcculloch,et al. THE NEW CELL PROLIFERANT , 1912 .
[52] R. Rondeau,et al. Potential Consequences of Repeated Severe Drought for Shortgrass Steppe Species☆ , 2018, Rangeland Ecology & Management.
[53] Andrew A Shantz,et al. Nutrient loading alters the performance of key nutrient exchange mutualisms. , 2016, Ecology letters.
[54] J. Blair,et al. Rainfall variability has minimal effects on grassland recovery from repeated grazing , 2014 .
[55] I. Burke,et al. Carbon and Nitrogen Decoupling Under an 11-Year Drought in the Shortgrass Steppe , 2012, Ecosystems.
[56] T. Stocker,et al. Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation. A Special Report of Working Groups I and II of IPCC Intergovernmental Panel on Climate Change , 2012 .
[57] Wes McKinney,et al. Data Structures for Statistical Computing in Python , 2010, SciPy.
[58] I. Burke,et al. Soil carbon flux following pulse precipitation events in the shortgrass steppe , 2009, Ecological Research.
[59] Eric Jones,et al. SciPy: Open Source Scientific Tools for Python , 2001 .
[60] M. Hunter,et al. Effects of Canopy Herbivory on Nutrient Cycling in a Northern Hardwood Forest in Western North Carolina , 2000 .