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The impact of stand age and fertilization on the soil microbiome of miscanthus × giganteus
Lanying Ma
, Fernando Igne Rocha
, Jaejin Lee
, Jinlyung Choi
, Mauricio Tejera
, Thanwalee Sooksa-Nguan
, Nicholas Boersma
, Andy VanLoocke
,
Emily Heaton
, Adina Howe
Research output
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peer-review
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Keyphrases
Miscanthus × Giganteus
100%
Fertilization
100%
Soil Microbiome
100%
Microbial Community Structure
50%
Nitrogen Fertilizer
25%
Plant Age
25%
Soil Microbial Community
25%
Microbial Community
12%
Proteobacteria
12%
Significant Relationship
12%
Soil Samples
12%
Relative Abundance
12%
Fertilization Rate
12%
Perennial Grasses
12%
N Availability
12%
Plant Productivity
12%
Environmental Sustainability
12%
Economic Sustainability
12%
Alphaproteobacteria
12%
Gammaproteobacteria
12%
N Fertilizer Rate
12%
Chronosequence
12%
Acidobacteria
12%
Plant Fertilization
12%
Agricultural and Biological Sciences
Miscanthus giganteus
100%
Soil Microbiome
100%
Microbial Community
62%
Plant Age
25%
Soil Microbial Community
25%
Perennials
12%
Fertilizer Rates
12%
Purple Bacteria
12%
Economic Sustainability
12%
Environmental Sustainability
12%
Chronosequence
12%
Acidobacterium
12%