College of Life Science and Technology, Guangxi University, Nanning, 530004, China.
Key Laboratory of Crop Cultivation and Farming Systems College of Agriculture, Guangxi University, Nanning, 530004, China.
Sci Rep. 2021 May 11;11(1):10048. doi: 10.1038/s41598-021-89246-9.
The combined use of organic manure and chemical fertilizer (CF) is considered to be a good method for sustaining high crop yields and improving soil quality. We performed a field experiment in 2019 at the research station of Guanxi University, to investigate the effects of cattle manure (CM) and poultry manure (PM) combined with CF on soil physical and biochemical properties, rice dry matter (DM) and nitrogen (N) accumulation and grain yield. We also evaluated differences in pre-and post-anthesis DM and N accumulation and their contributions to grain yield. The experiment consisted of six treatments: no N fertilizer (T), 100% CF (T), 60% CM + 40% CF (T), 30% CM + 70% CF (T), 60% PM + 40% CF (T), and 30% PM + 70% CF (T). All CF and organic manure treatments provided a total N of 150 kg ha. Results showed that the treatment T increased leaf net photosynthetic rate (Pn) by 11% and 13%, chlorophyll content by 13% and 15%, total biomass by 9% and 11% and grain yield by 11% and 17% in the early and late season, respectively, compared with T. Similarly, the integrated manure and CF treatments improved post-antheis DM accumulation and soil properties, such as bulk density, organic carbon, total N, microbial biomass carbon (MBC) and microbial biomass nitrogen (MBN) relative to the CF-only treatments. Interestingly, increases in post-anthesis DM and N accumulation were further supported by enhanced leaf Pn and activity of N-metabolizing enzyme during the grain-filling period. Improvement in Pn and N-metabolizing enzyme activity were due to mainly improved soil quality in the combined manure and synthetic fertilizer treatments. Redundancy analysis (RDA) showed a strong relationship between grain yield and soil properties, and a stronger relationship was noted with soil MBC and MBN. Conclusively, a combination of 30% N from PM or CM with 70% N from CF is a promising option for improving soil quality and rice yield.
有机肥和化肥(CF)的联合使用被认为是维持高作物产量和改善土壤质量的一种好方法。我们于 2019 年在广西大学研究站进行了田间试验,以研究牛粪(CM)和禽粪(PM)与 CF 结合对土壤物理和生化特性、水稻干物质(DM)和氮(N)积累以及籽粒产量的影响。我们还评估了花前和花后 DM 和 N 积累的差异及其对籽粒产量的贡献。试验包括 6 个处理:不施氮肥(T)、100%CF(T)、60%CM+40%CF(T)、30%CM+70%CF(T)、60%PM+40%CF(T)和 30%PM+70%CF(T)。所有 CF 和有机肥料处理均提供了 150 kg ha 的总氮。结果表明,与 T 相比,T 处理分别使叶片净光合速率(Pn)增加了 11%和 13%、叶绿素含量增加了 13%和 15%、总生物量增加了 9%和 11%、籽粒产量增加了 11%和 17%,分别在早季和晚季。同样,综合粪肥和 CF 处理改善了花后 DM 积累和土壤性质,如容重、有机碳、总氮、微生物生物量碳(MBC)和微生物生物量氮(MBN),与仅施用 CF 的处理相比。有趣的是,在灌浆期,增强叶片 Pn 和氮代谢酶活性进一步支持了花后 DM 和 N 积累的增加。Pn 和氮代谢酶活性的提高主要归因于综合粪肥和合成肥料处理中土壤质量的提高。冗余分析(RDA)表明,籽粒产量与土壤性质之间存在很强的关系,与土壤 MBC 和 MBN 之间的关系更强。总之,将 30%来自 PM 或 CM 的 N 与 70%来自 CF 的 N 结合使用是提高土壤质量和水稻产量的一种很有前景的选择。