Agriculture and Agri-Food Canada, Potato Research Centre, Fredericton, NB, Canada.
FEMS Microbiol Ecol. 2011 Jul;77(1):69-82. doi: 10.1111/j.1574-6941.2011.01084.x. Epub 2011 Mar 25.
Lands under riparian and agricultural management differ in soil properties, water content, plant species and nutrient content and are therefore expected to influence denitrifier communities, denitrification and nitrous oxide (N(2) O) emissions. Denitrifier community abundance, denitrifier community structure, denitrification gene expression and activity were quantified on three dates in a maize field and adjacent riparian zone. N(2) O emissions were greater in the agricultural zone, whereas complete denitrification to N(2) was greater in the riparian zone. In general, the targeted denitrifier community abundance did not change between agricultural and riparian zones. However, nosZ gene expression was greater in the riparian zone than the agricultural zone. The community structure of nirS-gene-bearing denitrifiers differed in June only, whereas the nirK-gene-bearing community structure differed significantly between the riparian and the agricultural zones at all dates. The nirK-gene-bearing community structure was correlated with soil pH, while no significant correlations were found between nirS-gene-bearing community structure and soil environmental variables or N(2) O emissions, denitrification or denitrifier enzyme activity. The results suggested for the nirK and nirS-gene-bearing communities different factors control abundance vs. community structure. The nirK-gene-bearing community structure was also more responsive than the nirS-gene-bearing community structure to change between the two ecosystems.
受河岸和农业管理影响的土地在土壤特性、含水量、植物物种和养分含量方面存在差异,因此预计会影响反硝化菌群落、反硝化作用和氧化亚氮(N2O)排放。在玉米田和相邻河岸带的三个日期对反硝化菌群落丰度、反硝化菌群落结构、反硝化基因表达和活性进行了定量分析。农业区的 N2O 排放量较大,而河岸带的完全反硝化作用到 N2 较大。一般来说,农业区和河岸带之间的目标反硝化菌群落丰度没有变化。然而,nosZ 基因表达在河岸带比农业区更高。nirS 基因携带的反硝化菌群落结构仅在 6 月有所不同,而 nirK 基因携带的群落结构在所有日期都在河岸带和农业区之间存在显著差异。nirK 基因携带的群落结构与土壤 pH 相关,而 nirS 基因携带的群落结构与土壤环境变量或 N2O 排放、反硝化作用或反硝化酶活性之间没有显著相关性。结果表明,nirK 和 nirS 基因携带的群落受到不同因素的控制,丰度与群落结构有关。nirK 基因携带的群落结构对两个生态系统之间的变化也比 nirS 基因携带的群落结构更敏感。