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Interkingdom plant-microbial ecological networks under selective and clear cutting of tropical rainforest and nitrogen content. Overall, the responses of bacterial-fungal and plant–microbe interactions to selective

Pathogen-induced conditioning of the primary xylem vessels – a prerequisite for the formation of bacterial emboli by Pectobacterium atrosepticum elucidated novel aspects of plant–Pectobacterium atrosepticum interactions. This bacterium was recently

Pathogen-induced conditioning of the primary xylem vessels – a prerequisite for the formation of bacterial emboli by Pectobacterium atrosepticum elucidated novel aspects of plant–Pectobacterium atrosepticum interactions. This bacterium was recently

Complete genome sequence of the abscisic acid-utilizing strain Novosphingobium sp. P6W phytopathogenic fungi synthesize ABA in the course of plant–microbe interactions. The accumulation of soil ABA can

Pectobacterium atrosepticum exopolysaccharides: Identification, molecular structure, formation under stress and in planta conditions of exopolysaccharides occurred during the colonization by bacteria of the xylem vessels of infected plants, where

Transcriptome profiling helps to identify potential and true molecular switches of stealth to brute force behavior in Pectobacterium atrosepticum during systemic colonization of tobacco plants monitored the process of systemic plant colonization by the plant pathogenic bacterium Pectobacterium

Increased microbial biomass and turnover underpin efficient phosphorus acquisition by Brassica chinensisRoot-microbe interactions are critical in influencing crop productivity. Microbial phosphorus (P

Grazing exclusion increases soil organic C through microbial necromass of root-derived C as traced by 13C labelling photosynthate (SOC) sequestration from plant and microbial residues in temperate grasslands after long-term (~ 40

DNA stable-isotope probing delineates carbon flows from rice residues into soil microbial communities depending on fertilization and interactions involved in plant residue utilization are key questions to elucidate the transformation of soil

Dynamics of root–microbe interactions governing crop phosphorus acquisition after straw amendment evaluated root–microbe interactions governing P uptake by Brassica chinensis and Solanum lycopersicum grown

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