Forest canopy structure controls the timing, amount and chemical character of precipitation supply to soils through interception and drainage along crown surfaces. Yet, few studies have examined forest canopy structural connections to soil microbial communities (SMCs), and none have measured how this affects SMC Nitrogen functions. The maritime Quercus virginiana Mill. (southern live oak) forests of St Catherine’s Island, GA, USA provide an ideal opportunity to examine canopy structural alterations to SMCs and their functioning, as their throughfall varies substantially across space due to dense Tillandsia usneoides L. (spanish moss) mats bestrewn throughout. To examine the impact of throughfall variability on SMC N functions, we examined p...
Diversity and structure of the soil microbial community (SMC) significantly affects soil ecosystem s...
1. Microbial activity plays a central role in nitrogen (N) cycling, with effects on forest productiv...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Forest canopy structure controls the timing, amount and chemical character of precipitation supply t...
Forest canopy structure controls the timing, amount and chemical character of precipitation supply t...
Forest canopy structure controls the timing, amount, and chemical character of precipitation supply ...
Forest canopy structure controls the timing, amount, and chemical character of precipitation supply ...
Identifying spatiotemporal influences on soil microbial community (SMC) structure is critical to our...
Identifying spatiotemporal influences on soil microbial community (SMC) structure is critical to our...
Diversity and structure of the symbiotic soil microbial community significantly influences essential...
Many forest ecosystems have been receiving elevated nitrogen (N) deposition due to human activity. I...
Little is known about how above-ground vegetation may differentially influence the below-ground micr...
Soil microbial community (SMC) structure affects several ecosystem services (soil-carbon mineralizat...
Abstract Deciduous and evergreen trees differ in their responses to drought and nitrogen (N) demand....
Due to forest fragmentation, forest edges have become dominant features in landscapes around the wor...
Diversity and structure of the soil microbial community (SMC) significantly affects soil ecosystem s...
1. Microbial activity plays a central role in nitrogen (N) cycling, with effects on forest productiv...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Forest canopy structure controls the timing, amount and chemical character of precipitation supply t...
Forest canopy structure controls the timing, amount and chemical character of precipitation supply t...
Forest canopy structure controls the timing, amount, and chemical character of precipitation supply ...
Forest canopy structure controls the timing, amount, and chemical character of precipitation supply ...
Identifying spatiotemporal influences on soil microbial community (SMC) structure is critical to our...
Identifying spatiotemporal influences on soil microbial community (SMC) structure is critical to our...
Diversity and structure of the symbiotic soil microbial community significantly influences essential...
Many forest ecosystems have been receiving elevated nitrogen (N) deposition due to human activity. I...
Little is known about how above-ground vegetation may differentially influence the below-ground micr...
Soil microbial community (SMC) structure affects several ecosystem services (soil-carbon mineralizat...
Abstract Deciduous and evergreen trees differ in their responses to drought and nitrogen (N) demand....
Due to forest fragmentation, forest edges have become dominant features in landscapes around the wor...
Diversity and structure of the soil microbial community (SMC) significantly affects soil ecosystem s...
1. Microbial activity plays a central role in nitrogen (N) cycling, with effects on forest productiv...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...