359 results on '"Zuo, Xiaoan"'
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2. Plant Functional Traits Modulate Effects of Drought on C:N:P Stoichiometry of Plant, Litter, and Soil Microbe in an Arid Grassland
3. The effect of nitrogen input on methane uptake in a wet and a dry year from a temperate desert steppe
4. Dominant species modulates nitrogen effects on the temporal stability of above- and below-ground biomass in a temperate desert steppe
5. Plant functional traits predict soil multifunctionality under increased precipitation and nitrogen addition in a desert steppe
6. Precipitation-induced biomass enhancement and differential allocation in Inner Mongolia's herbaceous and shrub communities
7. Effects of different grazing intensities on the plant reproductive traits and heterogeneous distributions of soil properties
8. Multi-trait functional diversity predicts ecosystem multifunctionality under nitrogen addition in a desert steppe
9. The effect of nitrogen input on N2O emission depends on precipitation in a temperate desert steppe
10. Plant functional traits mediate the response magnitude of plant-litter-soil microbial C: N: P stoichiometry to nitrogen addition in a desert steppe
11. Growing-season drought and nitrogen addition interactively impair grassland ecosystem stability by reducing species diversity, asynchrony, and stability
12. High nitrogen addition induces functional trait divergence of plant community in a temperate desert steppe
13. Extreme drought does not alter the stability of aboveground net primary productivity but decreases the stability of belowground net primary productivity in a desert steppe of northern China
14. Grazing impairs ecosystem stability through changes in species asynchrony and stability rather than diversity across spatial scales in desert steppe, Northern China
15. Responses of ecosystem respiration, methane uptake and nitrous oxide emission to drought in a temperate desert steppe
16. Biological Measures to Combat Aeolian Desertification
17. Contrasting relationships between plant-soil microbial diversity are driven by geographic and experimental precipitation changes
18. Effects of multi-resource addition on grassland plant productivity and biodiversity along a resource gradient
19. Plant traits and soil fertility mediate productivity losses under extreme drought in C₃ grasslands
20. Differential responses of grassland community nonstructural carbohydrate to experimental drought along a natural aridity gradient
21. Species diversity is a strong predictor of ecosystem multifunctionality under altered precipitation in desert steppes
22. Chronic and intense droughts differentially influence grassland carbon-nutrient dynamics along a natural aridity gradient
23. Precipitation changes regulate the annual methane uptake in a temperate desert steppe
24. Contrasting effects of plant inter- and intraspecific variation on community trait responses to nitrogen addition and drought in typical and meadow steppes
25. Factors controlling the contributions of bacterial and fungal residue carbon to soil organic carbon in grassland ecosystems
26. Direct and indirect effects of precipitation change and nutrients addition on desert steppe productivity in Inner Mongolia, northern China
27. Soil organic carbon (SOC) enrichment in aeolian sediments and SOC loss by dust emission in the desert steppe, China
28. Scale effects on spatial heterogeneity of herbaceous vegetation in desert steppe depend on plant community type
29. The driving effect of nitrogen-related functional microorganisms under water and nitrogen addition on N2O emission in a temperate desert
30. The effect of ecological characteristics on the domestication of sand rice (Agriophyllum squarrosum).
31. Spatiotemporal variations of drought in the Yunnan-Guizhou Plateau, southwest China, during 1960–2013 and their association with large-scale circulations and historical records
32. Observational and experimental evidence for the effect of altered precipitation on desert and steppe communities
33. Patterns and driving factors of functional traits of desert species with different elevational distributions in the Tibetan Plateau and adjacent areas
34. The response of photosynthetic rate of dominant species to extreme drought in Inner Mongolia grasslands
35. Long term experimental drought alters community plant trait variation, not trait means, across three semiarid grasslands
36. Context-dependent impact of changes in precipitation on the stability of grassland biomass
37. Extreme drought impacts have been underestimated in grasslands and shrublands globally
38. Extreme drought impacts have been underestimated in grasslands and shrublands globally
39. Drought intensity and post-drought precipitation determine vegetation recovery in a desert steppe in Inner Mongolia, China
40. Drought intensity and post-drought precipitation determine vegetation recovery in a desert steppe in Inner Mongolia, China
41. Context-dependent impact of changes in precipitation on the stability of grassland biomass
42. Drought of early time in growing season decreases community aboveground biomass, but increases belowground biomass in a desert steppe
43. Runoff variation characteristics, association with large-scale circulation and dominant causes in the Heihe River Basin, Northwest China
44. Statistical analyses of spatial and temporal variabilities in total, daytime, and nighttime precipitation indices and of extreme dry/wet association with large-scale circulations of Southwest China, 1961–2016
45. Wind erosion changes induced by different grazing intensities in the desert steppe, Northern China
46. Extreme drought impacts have been underestimated in grasslands and shrublands globally
47. Plant composition change mediates climate drought, nitrogen addition, and grazing effects on soil net nitrogen mineralization in a semi-arid grassland in North China
48. Effects of Different Grazing Intensities on the Plant Reproductive Traits and Heterogeneous Distributions of Soil Properties
49. Unexpected Diversity in Ecosystem Nutrient Responses to Experimental Drought in Temperate Grasslands
50. Response of plant functional traits of Leymus chinensis to extreme drought in Inner Mongolia grasslands
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