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在中纬度地区的水稻种植系统中,用有机投入物部分替代无机肥料,以提高氮素利用效率、粮食产量并减少氮素损失。

Partial replacement of inorganic fertilizer with organic inputs for enhanced nitrogen use efficiency, grain yield, and decreased nitrogen losses under rice-based systems of mid-latitudes.

作者信息

Farooq Muhammad Shahbaz, Majeed Abid, Ghazy Abdel-Halim, Fatima Hira, Uzair Muhammad, Ahmed Shafiq, Murtaza Maryam, Fiaz Sajid, Khan Muhammad Ramzan, Al-Doss Abdullah A, Attia Kotb A

机构信息

Rice Research Program, Crop Sciences Institute (CSI), National Agricultural Research Centre (NARC), Park Road, Islamabad, 44000, Pakistan.

Food Science and Biological Engineering, Jiangsu University, Zhenjiang, Jiangsu, 212013, China.

出版信息

BMC Plant Biol. 2024 Oct 1;24(1):919. doi: 10.1186/s12870-024-05629-w.

Abstract

In the rice-based system of mid-latitudes, mineral nitrogen (N) fertilizer serves as the largest source of the N cycle due to an insufficient supply of N from organic sources causing higher N losses due to varying soil and environmental factors. However, aiming to improve soil organic matter (OM) and nutrients availability using the best environmentally, socially, and economically sustainable cultural and agronomic management practices are necessary. This study aimed to enhance nitrogen use efficiency (NUE) and grain yield in rice-based systems of mid-latitudes by partially replacing inorganic N fertilizer with organic inputs. A randomized complete block design (RCBD) was employed to evaluate the effects of sole mineral N fertilizer (urea) and its combinations with organic sources-farmyard manure (FYM) and poultry compost-on different elite green super rice (GSR) genotypes and were named as NUYT-1, NUYT-2, NUYT-3, NUYT-4, NUYT-5, and NUYT-6. The study was conducted during the 2022 and 2023 rice growing seasons at the Rice Research Program, Crop Sciences Institute (CSI), National Agricultural Research Centre (NARC), Islamabad, one of the mid-latitudes of Pakistan. The key objective was to determine the most effective N management strategy for optimizing plant growth, N content in soil and plants, and overall crop productivity. The results revealed that the combined application of poultry compost and mineral urea significantly enhanced soil and leaf N content (1.36 g kg and 3.06 mg cm, respectively) and plant morphophysiological traits compared to sole urea application. Maximum shoot dry weight (SDW) and root dry weight (RDW) were observed in compost-applied treatment with the values of 77.62 g hill and 8.36 g hill, respectively. The two-year mean data indicated that applying 150 kg N ha⁻, with half provided by organic sources (10 tons ha⁻ FYM or poultry compost) and the remainder by mineral urea, resulted in the highest N uptake, utilization, and plant productivity. Thus, integrated management of organic carbon sources and inorganic fertilizers may sustain the productivity of rice-based systems more eco-efficiently. Further research is recommended to explore root and shoot morphophysiological, molecular, and biochemical responses under varying N regimes, aiming to develop N-efficient rice varieties through advanced breeding programs.

摘要

在中纬度地区以水稻为主的种植系统中,由于有机源氮供应不足,且土壤和环境因素多变导致氮损失较高,矿物氮肥成为氮循环的最大来源。然而,采用环境、社会和经济上最可持续的栽培及农艺管理措施来提高土壤有机质(OM)和养分有效性是必要的。本研究旨在通过用有机投入物部分替代无机氮肥,提高中纬度地区以水稻为主的种植系统中的氮利用效率(NUE)和谷物产量。采用随机完全区组设计(RCBD)来评估单一矿物氮肥(尿素)及其与有机源——农家肥(FYM)和家禽堆肥——的组合对不同优良绿色超级稻(GSR)基因型的影响,这些基因型分别命名为NUYT - 1、NUYT - 2、NUYT - 3、NUYT - 4、NUYT - 5和NUYT - 6。该研究于2022年和2023年水稻生长季在巴基斯坦中纬度地区之一伊斯兰堡的国家农业研究中心(NARC)作物科学研究所(CSI)的水稻研究项目中进行。关键目标是确定最有效的氮管理策略,以优化植物生长、土壤和植物中的氮含量以及整体作物生产力。结果表明,与单独施用尿素相比,家禽堆肥和矿物尿素的联合施用显著提高了土壤和叶片氮含量(分别为1.36 g/kg和3.06 mg/cm)以及植物形态生理性状。在施用堆肥的处理中观察到最大地上部干重(SDW)和根干重(RDW),分别为77.62 g/穴和8.36 g/穴。两年的平均数据表明,施用150 kg N/ha,其中一半由有机源提供(10吨/公顷FYM或家禽堆肥),其余由矿物尿素提供,导致最高的氮吸收、利用和植物生产力。因此,有机碳源和无机肥料的综合管理可能更生态高效地维持以水稻为主的种植系统的生产力。建议进一步开展研究,探索在不同氮素管理模式下根和地上部的形态生理、分子和生化反应,旨在通过先进的育种计划培育氮高效水稻品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d20/11443697/5b11289e8871/12870_2024_5629_Fig1_HTML.jpg

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