Knowledge remains limited on how the structure of microbial community in paddy soils changes in relation to different types of fertilizers with same amount of nutrients. Thus, here, soil samples were collected at 0–10, 10–20, 20–30, and 30–40 cm depths from a paddy field subjected to four long-term fertilization treatments (no fertilization, mineral fertilization, mineral fertilization combined with rice straw, and chicken manure) and analyzed for microbial biomass and community composition. In unfertilized soils, microbial biomass decreased from 0 to 40 cm (with actinomycetes < gram-positive (G+) bacteria < gram-negative (G􀀀 ) bacteria < fungi). This ordering was retained after fertilization, but the decline with depth was less pr...
Cultivation patterns can cause soil structure alteration. However, few studies have clarified the in...
Impact of environmental perturbations i.e., nitrogen (N), phosphorus (P), potassium (K), and rice st...
To investigate the stabilization mechanism of microbial necromass carbon (C) in rice paddy soil, the...
[Objectives] Paddy field is regarded as one of the important terrestrial nitrogen (N) reservoirs. Mi...
Soil microbial communities play an important role in nutrient cycling; however, their response under...
Soil microbial communities play an important role in nutrient cycling; however, their response under...
Understanding microbial community succession is key to uncover the mechanisms driving variation in s...
© 2017 Elsevier B.V. An understanding of microbial community assembly and succession are keys to unc...
The effects of long-term fertilization on soil biological properties and microbial community structu...
The effects of fertilization on activity and composition of soil microbial community depend on nutri...
Microbes play vital roles in soil quality; however, it remains poorly understood about their respons...
Most current microbial studies in paddy soils have focused on the top (0–20 cm) layer where rice roo...
Mineral fertilisers differ in changing soil properties, and revealing how the rhizosphere and non-rh...
Fertilizer regimes have profound effects on crop yield, soil fertility, and microbial community stru...
Bacterial communities in soil play a key role in carbon (C) and nutrient cycling. Unravelling how ba...
Cultivation patterns can cause soil structure alteration. However, few studies have clarified the in...
Impact of environmental perturbations i.e., nitrogen (N), phosphorus (P), potassium (K), and rice st...
To investigate the stabilization mechanism of microbial necromass carbon (C) in rice paddy soil, the...
[Objectives] Paddy field is regarded as one of the important terrestrial nitrogen (N) reservoirs. Mi...
Soil microbial communities play an important role in nutrient cycling; however, their response under...
Soil microbial communities play an important role in nutrient cycling; however, their response under...
Understanding microbial community succession is key to uncover the mechanisms driving variation in s...
© 2017 Elsevier B.V. An understanding of microbial community assembly and succession are keys to unc...
The effects of long-term fertilization on soil biological properties and microbial community structu...
The effects of fertilization on activity and composition of soil microbial community depend on nutri...
Microbes play vital roles in soil quality; however, it remains poorly understood about their respons...
Most current microbial studies in paddy soils have focused on the top (0–20 cm) layer where rice roo...
Mineral fertilisers differ in changing soil properties, and revealing how the rhizosphere and non-rh...
Fertilizer regimes have profound effects on crop yield, soil fertility, and microbial community stru...
Bacterial communities in soil play a key role in carbon (C) and nutrient cycling. Unravelling how ba...
Cultivation patterns can cause soil structure alteration. However, few studies have clarified the in...
Impact of environmental perturbations i.e., nitrogen (N), phosphorus (P), potassium (K), and rice st...
To investigate the stabilization mechanism of microbial necromass carbon (C) in rice paddy soil, the...