生物地球化学
营养循环
氮气循环
自行车
生态系统
菌根
生态学
共生
氮气
生物
营养物
丛枝菌根
农学
外生菌根
环境科学
土壤生物学
陆地生态系统
生产力
菌根真菌
化学
环境化学
林业
地理
有机化学
细菌
遗传学
作者
Stavros D. Veresoglou,Baodong Chen,Matthias C. Rillig
标识
DOI:10.1016/j.soilbio.2011.11.018
摘要
Nitrogen is a major nutrient that frequently limits primary productivity in terrestrial ecosystems. Therefore, the physiological responses of plants to soil nitrogen (N) availability have been extensively investigated, and the study of the soil N-cycle has become an important component of ecosystem ecology and biogeochemistry. The bulk of the literature in these areas has, however, overlooked the fact that most plants form mycorrhizal associations, and that nutrient uptake is therefore mediated by mycorrhizal fungi. It is well established that ecto- and ericoid mycorrhizas influence N nutrition of plants, but roles of arbuscular mycorrhizas in N nutrition are less well established; perhaps even more importantly, current conceptual models ignore possible influences of arbuscular mycorrhizal (AM) fungi on N-cycling processes. We review evidence for the interaction between the AM symbiosis with microbes and processes involved in soil N-cycling. We show that to date investigations have rather poorly addressed such interactions and discuss possible reasons for this. We outline mechanisms that could potentially operate with regards to AM fungal – N-cycling interactions, discuss experimental designs aimed at studying these, and conclude by pointing out priorities for future research.
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