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Root mucilage nitrogen for rhizosphere microorganisms under drought
Meisam Nazari
, Samuel Bickel
, Yakov Kuzyakov
, Nataliya Bilyera
,
Mohsen Zarebanadkouki
, Birgit Wassermann
, Michaela A. Dippold
Assistant Professorship of Soil Biophysics and Environmental Systems
Aarhus University
Graz University of Technology (TU Graz)
Georg August Universität Göttingen
University of Tübingen
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
Overview
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Keyphrases
Drought
100%
Mucilage
100%
Root mucilage
100%
Rhizosphere Microorganisms
100%
Secretion Rate
30%
Root Tip
23%
N Content
15%
Rhizosphere
15%
Drought Conditions
15%
Maize Varieties
15%
Germany
7%
Rate of Increase
7%
Microorganisms
7%
Microbial Community
7%
Kenya
7%
Bacterial Population
7%
Maize Roots
7%
Nitrogen N
7%
Isotopic Signature
7%
Plant Roots
7%
Rhizosphere Microbiome
7%
Model Linking
7%
Microbial Life
7%
Drought Stress
7%
15N Natural Abundance
7%
15N Isotope
7%
N-rich
7%
Biological N Fixation
7%
Aerial Roots
7%
Isotopic Signals
7%
N Release
7%
Biological Fixation
7%
Immunology and Microbiology
Secretion (Process)
100%
Microorganism
100%
Bacterial Population
16%
Plant Root
16%
Dilution
16%