Nutrient management and bioaugmentation interactively shape plant–microbe interactions inMiscanthus × giganteus

芒属 生物强化 农学 营养物 生物能源 生物量(生态学) 营养循环 环境科学 生物 生态学 生物燃料 生物修复 污染
作者
Jennifer Kane,Marshall C. Robinson,Ronald G. Schartiger,Zachary B. Freedman,Louis M. McDonald,Jeff Skousen,Ember M. Morrissey
出处
期刊:Gcb Bioenergy [Wiley]
卷期号:14 (11): 1235-1249 被引量:9
标识
DOI:10.1111/gcbb.13000
摘要

Abstract Marginal lands are an untapped source of agricultural potential, particularly regarding high‐yielding, low‐input bioenergy crops like Miscanthus × giganteus ( Miscanthus ). Miscanthus is of specific interest because it can be productive and sequester carbon in soil even under the stressful conditions present on some degraded lands. A key component of these abilities is the interaction of Miscanthus with its soil and root microbiome. Microbial functions depend on the nutrient status of soil, and hence are sensitive to fertilization regimes. Nevertheless, little is known about how fertilization strategies affect the partnership of Miscanthus with its microbial associates. Here, we tested the individual and interactive effects of nutrient addition and bioaugmentation (i.e., the addition of microbial communities) on Miscanthus performance and microbiome function in marginal soil. We found that the effect of nutrient addition on Miscanthus biomass yield depended on nutrient addition type (i.e., organic or inorganic nutrients) and whether bioaugmentation was also applied. Some microbial functions, like free‐living nitrogen fixation and carbon use efficiency, were sensitive to nutrient addition depending on whether bioaugmentation was also applied. On the other hand, arbuscular mycorrhizal fungus colonization of roots decreased with fertilization regardless of bioaugmentation. These results imply that managing microbial communities may regulate the effect of nutrient addition on plant–microbe interactions that in part determine system productivity and environmental impact.
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