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Root trait plasticity and plant nutrient acquisition in phosphorus limited soil of root hairs plant growth is facilitated by traits with complementary functions, e.g., by higher root

Increased microbial biomass and turnover underpin efficient phosphorus acquisition by Brassica chinensis) as well as root morphological and exudation traits related to P acquisition in Brassica chinensis

Soil properties and root traits jointly shape fine-scale spatial patterns of bacterial community and metabolic functions within a Korean pine forest-largest variance in soil bacterial community composition, but root traits made no difference in metabolic functions

Priming effects in the rhizosphere and root detritusphere of two wet-grassland graminoidsAims: The rhizosphere and root detritusphere are hotspots of microbial activity, where root

Priming effects in the rhizosphere and root detritusphere of two wet-grassland graminoidsAims: The rhizosphere and root detritusphere are hotspots of microbial activity, where root

Root trait plasticity and plant nutrient acquisition in phosphorus limited soil of root hairs plant growth is facilitated by traits with complementary functions, e.g., by higher root

Dynamics of root–microbe interactions governing crop phosphorus acquisition after straw amendmentPhosphorus (P) mobilization by microorganisms influences root morphological and exudation traits

Root and mycorrhizal strategies for nutrient acquisition in forests under nitrogen deposition: A meta-analysis photosynthates and the formation of roots and rhizosphere-associated symbionts as well as soil nutrient

Carbon–Phosphorus Coupling Governs Microbial Effects on Nutrient Acquisition Strategies by Four CropsPlants adjust root morphological and/or exudation traits in response to phosphorus (P) mobilization

Plant intraspecific competition and growth stage alter carbon and nitrogen mineralization in the rhizosphere for resources. Root morphologic traits rather than root biomass per se were positively related to C- and N

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