Li Hongzhe, Ding Jiazhi, Zhu Longji, Xu Fei, Li Wenjing, Yao Yanpo, Cui Li
Key Lab of Urban Environment and Health Institute of Urban Environment, Chinese Academy of Sciences Xiamen China.
College of Life Sciences Fujian Agriculture and Forestry University Fuzhou China.
mLife. 2023 Jun 14;2(2):190-200. doi: 10.1002/mlf2.12053. eCollection 2023 Jun.
Application of agricultural waste such as rapeseed meal (RM) is regarded as a sustainable way to improve soil phosphorus (P) availability by direct nutrient supply and stimulation of native phosphate-solubilizing microorganisms (PSMs) in soils. However, exploration of the in situ microbial P solubilizing function in soils remains a challenge. Here, by applying both phenotype-based single-cell Raman with DO labeling (Raman-DO) and genotype-based high-throughput chips targeting carbon, nitrogen and P (CNP) functional genes, the effect of RM application on microbial P solubilization in three typical farmland soils was investigated. The abundances of PSMs increased in two alkaline soils after RM application identified by single-cell Raman DO. RM application reduced the diversity of bacterial communities and increased the abundance of a few bacteria with reported P solubilization function. Genotypic analysis indicated that RM addition generally increased the relative abundance of CNP functional genes. A correlation analysis of the abundance of active PSMs with the abundance of soil microbes or functional genes was carried out to decipher the linkage between the phenotype and genotype of PSMs. and C degradation genes were found to potentially contribute to the enhanced microbial P release following RM application. This work provides important new insights into the in situ function of soil PSMs. It will lead to better harnessing of agricultural waste to mobilize soil legacy P and mitigate the P crisis.
施用菜籽粕(RM)等农业废弃物被视为一种可持续的方式,可通过直接提供养分和刺激土壤中天然的解磷微生物(PSM)来提高土壤磷(P)的有效性。然而,探索土壤中微生物原位解磷功能仍然是一项挑战。在此,通过应用基于表型的带有DO标记的单细胞拉曼光谱(拉曼-DO)和基于基因型的针对碳、氮和磷(CNP)功能基因的高通量芯片,研究了施用RM对三种典型农田土壤中微生物解磷的影响。通过单细胞拉曼DO鉴定,施用RM后两种碱性土壤中PSM的丰度增加。施用RM降低了细菌群落的多样性,并增加了一些具有报道的解磷功能的细菌的丰度。基因型分析表明,添加RM通常会增加CNP功能基因的相对丰度。对活性PSM的丰度与土壤微生物或功能基因的丰度进行了相关性分析,以解读PSM表型与基因型之间的联系。并且发现C降解基因可能有助于施用RM后微生物磷释放的增强。这项工作为土壤PSM的原位功能提供了重要的新见解。它将有助于更好地利用农业废弃物来活化土壤中残留的磷并缓解磷危机。