187 results on '"Chen, Xiangbi"'
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2. Shifts in organic carbon protection mechanism in agricultural soils across climatic gradients
3. Contrasting processes of microbial anabolism and necromass formation between upland and paddy soils across regional scales
4. Intensive N2 fixation accelerates microbial turnover in cropland soils
5. Role of environmental factors on concentrations and ratios of subsoil C–N–P in subtropical paddy fields
6. Correction to: Type I methanotrophs dominated methane oxidation and assimilation in rice paddy fields by the consequence of niche differentiation
7. Soil acidification induced by intensive agricultural use depending on climate
8. Stronger aggregation reduces temperature sensitivity of soil organic carbon decomposition in croplands.
9. Flooding and straw returning regulates the partitioning of soil phosphorus fractions and phoD-harboring bacterial community in paddy soils
10. Microbial Metabolic Limitation and Soil Multifunctionality Changes across Subtropical Woodlands in Southern China
11. Plant residue-derived hydrophilic and hydrophobic fractions contribute to the formation of soil organic matter
12. Stoichiometry of carbon, nitrogen, and phosphorus in soil: Effects of agricultural land use and climate at a continental scale
13. A few key nirK- and nosZ-denitrifier taxa play a dominant role in moisture-enhanced N2O emissions in acidic paddy soil
14. Higher microbial C use efficiency in paddy than in adjacent upland soils: evidence from continental scale
15. Diazotrophic Community Variation Underlies Differences in Nitrogen Fixation Potential in Paddy Soils Across a Climatic Gradient in China
16. Divergent mineralization of hydrophilic and hydrophobic organic substrates and their priming effect in soils depending on their preferential utilization by bacteria and fungi
17. Soil moisture and activity of nitrite- and nitrous oxide-reducing microbes enhanced nitrous oxide emissions in fallow paddy soils
18. Iron‑carbon complex types and bonding forms jointly control organic carbon mineralization in paddy soils
19. Contrasting responses of gross N transformation to oxalic acid and glucose supplement in paddy soil
20. Contrasting contribution of fungal and bacterial residues to organic carbon accumulation in paddy soils across eastern China
21. Effects of long-term straw incorporation on lignin accumulation and its association with bacterial laccase-like genes in arable soils
22. Cellulose and lignin regulate partitioning of soil phosphorus fractions and alkaline phosphomonoesterase encoding bacterial community in phosphorus-deficient soils
23. Abundance of transcripts of functional gene reflects the inverse relationship between CH4 and N2O emissions during mid-season drainage in acidic paddy soil
24. Effect of nitrogen fertilization on the fate of rice residue-C in paddy soil depending on depth: 13C amino sugar analysis
25. Iron–organic carbon associations stimulate carbon accumulation in paddy soils by decreasing soil organic carbon priming
26. Consequence of Competition between Type I and Ii Methanotrophs Determines Methane Oxidation and Assimilation in Rice Paddy Fields
27. Abundance and Diversity of CO 2 -Assimilating Bacteria and Algae Within Red Agricultural Soils Are Modulated by Changing Management Practice
28. Modified method for the extraction of mRNA from paddy soils
29. Rapid, sensitive analysis method for determining the nitrogen stable isotope ratio of total free amino acids in soil
30. Responses of root morphology and architecture to phosphorus deficiency at seedling stage of tobacco ('Nicotiana tabacum') growth
31. Irrigation management and phosphorus addition alter the abundance of carbon dioxide-fixing autotrophs in phosphorus-limited paddy soil
32. Laccase activity is proportional to the abundance of bacterial laccase-like genes in soil from subtropical arable land
33. Comparative analysis of basidiomycetous lacease genes in forest soils reveals differences at the cDNA and DNA levels
34. Abundance and Diversity of CO2-Assimilating Bacteria and Algae Within Red Agricultural Soils Are Modulated by Changing Management Practice
35. Correction to: Effects of long-term straw incorporation on lignin accumulation and its association with bacterial laccase-like genes in arable soils
36. Network analysis reveals bacterial and fungal keystone taxa involved in straw and soil organic matter mineralization
37. Rice straw carbon mineralization is affected by the timing of exogenous glucose addition in flooded paddy soil
38. Low Frequency of Plants Associated with Symbiotic Nitrogen-Fixers Exhibits High Frequency of Free-Living Nitrogen Fixing Bacteria: A Study in Karst Shrub Ecosystems of Southwest China
39. Links between Arbuscular Mycorrhizal Fungal and Nitrogen-Fixing Bacterial Communities from Plant Rhizosphere Soils in the Karst Region of Southwest China
40. Soil Microbial Resource Limitations and Community Assembly Along a Camellia oleifera Plantation Chronosequence
41. Biochar protects hydrophilic dissolved organic matter against mineralization and enhances its microbial carbon use efficiency
42. Characterization of nirS- and nirK-containing communities and potential denitrification activity in paddy soil from eastern China
43. Manure application accumulates more nitrogen in paddy soils than rice straw but less from fungal necromass
44. Organic phosphorus availability shapes the diversity of phoD-harboring bacteria in agricultural soil
45. Contrasting pathways of carbon sequestration in paddy and upland soils
46. Soil bacterial community composition and diversity respond to cultivation in Karst ecosystems
47. Contrasting pathways of carbon sequestration in paddy and upland soils
48. Stabilization of exogenous carbon in soil density fractions is affected by its chemical composition and soil management
49. Fungi Outcompete Bacteria for Straw and Soil Organic Matter Mineralization
50. Diazotrophic Community Variation Underlies Differences in Nitrogen Fixation Potential in Paddy Soils Across a Climatic Gradient in China
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