Substrate availability affects the partitioning of C and N in glycine between plants and soil microorganisms

氨基酸 硫酸铵 氮气 微生物 甘氨酸 化学 农学 生物化学 生物 食品科学 细菌 有机化学 遗传学
作者
Lijie Yang,Chunxiao Yu,Lili Zhang,Wei Bai,Wentao Li,Dongpo Li,Yalan Cui,Yuchao Song,Ping Gong,Xue Yan,Wu Zhi
出处
期刊:Archives of Agronomy and Soil Science [Taylor & Francis]
卷期号:67 (1): 109-121 被引量:5
标识
DOI:10.1080/03650340.2020.1714034
摘要

Amino acids are important components of the soil organic nitrogen pool. There is, however, a current lack of knowledge concerning how exogenous C and N regulate amino acid uptake in the soil microorganism/plant system. We used a 13C,15N-glycine injection method to examine glycine-derived 13C and 15N partitioning in a planted or unplanted spring wheat pot experiment. Four treatments were used: control (CK), ammonium sulfate (N), glucose (C), and ammonium sulfate with glucose (NC). The results showed that amino acids were absorbed intact by soil microorganisms and plants at 4 h. An exogenous excess of C, rather than N, resulted in a reduced uptake of intact glycine by soil microorganisms, indicating that glycine was taken up primarily to fulfill their C requirement. Wheat was more effective in competing for glycine-C and N at 24 h. 13C and 15N partitioning in wheat was significantly influenced by exogenous C and N availability; uptake of 13C and 15N by wheat increased with increasing C and N availability. We concluded that amino acids are important not only for N but also for C to soil microorganisms and plants, which are able to respond quickly to exogenous C and N source application.

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