玉米-小麦种植系统中各种管理措施对作物产量和土壤生物的影响

Alesh Kumar, K. K. Bandyopadhyay, Shiv Prasad, S. N. Kumar, Renu Singh, Ravinder Kaur, Manoj Shrivastava
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摘要

目的:考虑耕作、残留物和氮肥管理之间的协同作用和权衡的综合方法对于优化农业可持续发展至关重要,可突出农艺、环境和生物因素之间复杂的相互作用。我们的目的是评估耕作、秸秆和氮肥管理对玉米-小麦种植系统下作物生长和土壤生物特性的影响:研究地点和时间:新德里,ICAR-IARI 研究农场:研究地点和时间:新德里 ICAR-IARI 研究农场,2014 年开始:我们在小麦作物的开花期和玉米作物的抽丝期分别采集了 0-5、5-15 和 15-30 厘米深的土壤样本。采用标准程序检测土壤特性,即土壤有机碳、脱氢酶、酸性和碱性磷酸酶、土壤微生物生物量碳、土壤微生物生物量磷和胶霉素含量:我们观察到,在免耕和残留处理下,0-5 厘米和 5-15 厘米土层深度的土壤有机碳、酶活性、微生物生物量碳和磷以及胶霉素含量显著增加(P<0.05)。在 0-5 厘米和 5-15 厘米土层深度施用 100%和 150%的 RDN,酶活性和微生物生物量碳(MBC)分别显著提高。氮处理对生物量产量的影响是显著的(P<0.05),并且发现氮的推荐剂量(RDN)为 150%时生物量产量更高。玉米的生物量产量分别为 15.3% 和 44.5%,小麦的生物量产量分别为 7.8% 和 20.4%:结论:在玉米-小麦种植系统中,农民可以成功地采用 5 吨/公顷的作物残茬覆盖物和 150% 的 RDN,以获得更好的土壤健康和更高的生物量产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts on Various Management Practices on Crops Yield and Soil Biology in Maize-Wheat Cropping System
Aims: Integrated approaches that consider the synergies and trade-offs among tillage, residue, and nitrogen management are essential for optimizing agricultural sustainability to highlight the complex interplay between agronomic, environmental, and biological factors. We intended to evaluate the impact of tillage, residue, and nitrogen management on crop growth and soil biological properties under a maize-wheat cropping system in an inceptisol. Study Design: Split-split plot design. Place and Duration of Study: ICAR-IARI research farm, New Delhi, since 2014. Methodology: We collected soil samples at the anthesis stage of wheat crop and silking stage of maize crop at 0-5, 5-15, and 15-30 cm soil depth. Soil properties, namely soil organic carbon, dehydrogenase, acid, and alkaline phosphatase, soil microbial biomass carbon, soil microbial biomass phosphorus, and glomalin content by using standard procedures. Results: We observed that the soil organic carbon, enzyme activities, microbial biomass carbon and phosphorus, and glomalin content were significantly (P<0.05) higher under no-tillage and residue treatment at 0-5 and 5-15 cm soil depth. Enzyme activity and microbial biomass carbon (MBC) were significantly higher by application of 100 and 150% RDN, respectively, at 0-5 and 5-15 cm soil depth. The effect of nitrogen treatment on biomass yield was significant (P<0.05) and found to be higher at 150% Recommended dose of Nitrogen (RDN). The biomass yield of maize was 15.3% and 44.5%, and wheat was 7.8% and 20.4%, significantly increased by applying 150% RDN over the 100% and 50% RDN respectively. Conclusion: Farmers can successfully adopt NT with 5 t ha-1 crop residue mulch with 150% RDN to attain better soil health and higher biomass yield under the maize-wheat cropping system.
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