| Literature DB >> 32581317 |
Danghui Xu1, Tianpeng Gao2,3, Xiangwen Fang4, Haiyan Bu4, Qiuxia Li4, Xiaona Wang4, Renyi Zhang4.
Abstract
Entities:
Year: 2020 PMID: 32581317 PMCID: PMC7314743 DOI: 10.1038/s41598-020-67333-7
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(A) Soil NH4+-N and (B) NO3−-N concentrations under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).
Figure 2(A) Soil total P and (B) available P concentrations under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).
Figure 3(A) Aboveground biomass and (B) abundance of grass PFTs under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).
Figure 4(A) Aboveground biomass and (B) abundance of legume PFTs under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).
Figure 5(A, B) Leaf N concentration and (C, D) leaf P concentration of grass (left) and legume (right) PFTs under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).
Figure 6(A) Grass:legume ratio of aboveground biomass and (B) abundance under fertilization by N with Si (N + Si) and without Si (N-only) expressed as 3-year averages (2011–2013, N = 6).