Recent advances in soil organic carbon (SOC) formation indicate that labile plant C is disproportionately important for stable SOC pool because it is utilized more efficiently by soil microbes. Rhizodeposited C, accounting for 5-20% of photosynthates, are highly bioavailable and readily metabolized substrates for soil microbes. However, it remains poorly understood how different microbial functional groups contribute to transforming rhizodeposited C to SOC. Here, we synthesized 23 studies performing (CO2)-C-13 pulse labelling of plants in conjunction with stable isotope probing of microbial phospholipid fatty acids, and explored the fate of rhizodeposited C in different soil microbial functional groups. Among microbial groups, fungi (25.3%)...
Using a pulse chase 13CO2 plant labeling experiment we compared the flow of plant carbon into macrom...
Rice rhizodeposition plays an important role in carbon sequestration in paddy soils. However, the pa...
Microorganisms regulate the carbon (C) cycle in soil, controlling the utilization and recycling of o...
A substantial amount of photosynthesized plant-C is allocated belowground in grassland ecosystems wh...
It is well established that soil microorganisms play an important role in respiration of newly fixed...
Microbial contribution to the maintenance and turnover of soil organic matter is significant. Yet, w...
This paper investigated the flow of carbon into different groups of soil microorganisms isolated fro...
Rhizodeposits act as major carbon (C) source for microbial communities and rhizosphere-driven effect...
Carbon (C) cycling in the atmosphere-plant-soil-microorganism system has been the focus of much rece...
In this study we used compound specific C-13 and C-14 isotopic signatures to determine the degree to...
Microbial sequestration of Carbon in soil can be compared to a microbial carnival. Each microbe have...
AbstractBeing low molecular weight carbon (LMW-C) compounds, phytosiderophores (PS) released by stra...
A deeper understanding of the contribution of carbon (C) released by plant roots (rhizodeposition) t...
Strategies for mitigating soil organic carbon (SOC) losses in intensively managed agricultural syste...
This study investigates how carbon sources of soil microbial communities vary with soil depth. Micro...
Using a pulse chase 13CO2 plant labeling experiment we compared the flow of plant carbon into macrom...
Rice rhizodeposition plays an important role in carbon sequestration in paddy soils. However, the pa...
Microorganisms regulate the carbon (C) cycle in soil, controlling the utilization and recycling of o...
A substantial amount of photosynthesized plant-C is allocated belowground in grassland ecosystems wh...
It is well established that soil microorganisms play an important role in respiration of newly fixed...
Microbial contribution to the maintenance and turnover of soil organic matter is significant. Yet, w...
This paper investigated the flow of carbon into different groups of soil microorganisms isolated fro...
Rhizodeposits act as major carbon (C) source for microbial communities and rhizosphere-driven effect...
Carbon (C) cycling in the atmosphere-plant-soil-microorganism system has been the focus of much rece...
In this study we used compound specific C-13 and C-14 isotopic signatures to determine the degree to...
Microbial sequestration of Carbon in soil can be compared to a microbial carnival. Each microbe have...
AbstractBeing low molecular weight carbon (LMW-C) compounds, phytosiderophores (PS) released by stra...
A deeper understanding of the contribution of carbon (C) released by plant roots (rhizodeposition) t...
Strategies for mitigating soil organic carbon (SOC) losses in intensively managed agricultural syste...
This study investigates how carbon sources of soil microbial communities vary with soil depth. Micro...
Using a pulse chase 13CO2 plant labeling experiment we compared the flow of plant carbon into macrom...
Rice rhizodeposition plays an important role in carbon sequestration in paddy soils. However, the pa...
Microorganisms regulate the carbon (C) cycle in soil, controlling the utilization and recycling of o...