Soil microbiota plays fundamental roles in maintaining ecosystem functions and services, including biogeochemical processes and plant productivity. Despite the ubiquity of soil microorganisms from the topsoil to deeper layers, their vertical distribution and contribution to element cycling in subsoils remain poorly understood. Here, nine soil profiles (0 to 135 cm) were collected at the local scale (within 300 km) from two canonical paddy soil types (Fe-accumuli and Hapli stagnic anthrosols), representing redoximorphic and oxidative soil types, respectively. Variations with depth in edaphic characteristics and soil bacterial and diazotrophic community assemblies and their associations with element cycling were explored. The results revealed...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Purpose: The aim of this study is to investigate the abundance, diversity, and distribution of archa...
Biological nitrogen fixation plays an important role in nitrogen cycling by transferring atmospheric...
Soil microbiota plays fundamental roles in maintaining ecosystem functions and services, including b...
Bacterial communities in soil play a key role in carbon (C) and nutrient cycling. Unravelling how ba...
Rice paddy soil-associated microbiota participate in biogeochemical processes that underpin rice yie...
Paddy soils make up the largest anthropogenic wetlands on earth. They may originate from any type of...
Paddy soils make up the largest anthropogenic wetlands on earth. They may originate from any type of...
Paddy rice fields occupy broad agricultural area in China and cover diverse soil types. Microbial co...
International audienceLowland rice fields of West Africa (Ivory Coast) and South Asia (Thailand) are...
Paddy rice fields occupy broad agricultural area in China and cover diverse soil types. Microbial co...
Most current microbial studies in paddy soils have focused on the top (0–20 cm) layer where rice roo...
© 2017 Elsevier B.V. An understanding of microbial community assembly and succession are keys to unc...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Cultivation patterns can cause soil structure alteration. However, few studies have clarified the in...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Purpose: The aim of this study is to investigate the abundance, diversity, and distribution of archa...
Biological nitrogen fixation plays an important role in nitrogen cycling by transferring atmospheric...
Soil microbiota plays fundamental roles in maintaining ecosystem functions and services, including b...
Bacterial communities in soil play a key role in carbon (C) and nutrient cycling. Unravelling how ba...
Rice paddy soil-associated microbiota participate in biogeochemical processes that underpin rice yie...
Paddy soils make up the largest anthropogenic wetlands on earth. They may originate from any type of...
Paddy soils make up the largest anthropogenic wetlands on earth. They may originate from any type of...
Paddy rice fields occupy broad agricultural area in China and cover diverse soil types. Microbial co...
International audienceLowland rice fields of West Africa (Ivory Coast) and South Asia (Thailand) are...
Paddy rice fields occupy broad agricultural area in China and cover diverse soil types. Microbial co...
Most current microbial studies in paddy soils have focused on the top (0–20 cm) layer where rice roo...
© 2017 Elsevier B.V. An understanding of microbial community assembly and succession are keys to unc...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Cultivation patterns can cause soil structure alteration. However, few studies have clarified the in...
Iron is among the most abundant elements in the soil of paddy fields, and its valence state and part...
Purpose: The aim of this study is to investigate the abundance, diversity, and distribution of archa...
Biological nitrogen fixation plays an important role in nitrogen cycling by transferring atmospheric...