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The nitrification inhibitor nitrapyrin has non-target effects on the soil microbial community structure, composition, and functions

硝化作用 微生物种群生物学 根际 蛋白质细菌 群落结构 塔玛丘塔 氮气循环 农学 大块土 生物 土壤生物学 土壤水分 植物 化学 氮气 生态学 土壤有机质 古细菌 16S核糖体RNA 细菌 有机化学 遗传学
作者
Ruth Schmidt,Xiao-Bo Wang,Paolina Garbeva,Etienne Yergeau
出处
期刊:Applied Soil Ecology [Elsevier BV]
卷期号:171: 104350-104350
标识
DOI:10.1016/j.apsoil.2021.104350
摘要

Nitrapyrin is a nitrification inhibitor used to retain ammonia-N in soil to improve crop yields and quality. Nitrapyrin targets specifically the ammonia oxidizers, but it is not known if it has non-target effects on the soil microbial communities. Here, we tested the hypothesis that nitrapyrin also leads to large shifts in soil microbial community structure, composition, diversity and functions. To test this hypothesis, we set-up a field experiment where wheat ( Triticum aestivum cv. AC Walton) was fertilized with ammonium nitrate (NH 4 NO 3 ) and supplemented or not with nitrapyrin. Rhizosphere and bulk soils were sampled twice (at grain filling and harvest), the 16S rRNA gene and ITS region were amplified and sequenced to follow the changes in archaeal, bacterial and fungal community structure, composition and diversity. To assess microbial functions, several genes involved in the nitrogen cycle were quantified by real-time qPCR, and volatile organic compounds (VOCs) were trapped in the rhizosphere at the moment of sampling. Sampling dates and soil compartments had overwhelming effects on the microbial communities. However, nitrapyrin still significantly affected the relative abundance of Thaumarchaeota, Proteobacteria, Nitrospirae and Basidiomycota, and several genera. Nitrapyrin also significantly affected bacterial and fungal community structure, and the abundance of all the N-cycle gene tested, but always in interaction with the sampling date. In contrast, nitrapyrin had no significant effect on the emission of VOCs, where only sampling dates significantly influenced the profiles observed. Our results show that nitrapyrin influences non-target soil- and plant-associated microbial communities. In the longer term, these shifts might counteract the positive effect of nitrapyrin on crop nutrition and greenhouse gas emissions. • Nitrapyrin significantly altered bacterial, archaeal and fungal taxonomic abundance. • Nitrapyrin had an interact effect with time on N-cycle gene abundance and VOCs. • We showed an overriding impact of time on soil microbial structure and function. • An exceptional nitrapyrin effect on soil microbiome beyond ammonia-oxidizers.
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