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硫肥施用提高了L.的产量、硫吸收量、利用效率和经济效益。

Sulphur fertilization enhanced yield, its uptake, use efficiency and economic returns of L.

作者信息

Chowdhury Md Akhter Hossain, Sultana Taslima, Rahman Md Arifur, Saha Biplob Kumar, Chowdhury Tanzin, Tarafder Subrata

机构信息

Department of Agricultural Chemistry, Bangladesh Agricultural University, Mymensingh 2202, Bangladesh.

Department of Agricultural Chemistry, Khulna Agricultural University, Khulna 9100, Bangladesh.

出版信息

Heliyon. 2020 Dec 18;6(12):e05726. doi: 10.1016/j.heliyon.2020.e05726. eCollection 2020 Dec.

Abstract

Sulphur plays a vital role in the formation and biosynthesis of protein, chlorophyll, and few amino acids. To investigate the effect of sulphur fertilizer on leaf biomass yield, critical sulphur concentration, sulphur requirement and uptake by L., a pot experiment was carried out following completely randomized design with six levels of sulphur viz., 0, 15, 30, 45, 60 and 80 kg ha with three replications. The results of the study revealed that the growth attributes, leaf and gel yield, and sulphur uptake significantly improved with sulphur application and the best results were obtained from the application of 45 kg sulphur ha. On average, addition of sulphur enhanced the leaf biomass yield by 47.5% and sulphur use efficiency by 38% compared to control. The effect of sulphur on the growth parameters and their significant and positive correlations with yield signifies the importance of sulphur on the yield and quality of . The calculated minimum amount of sulphur for 80% leaf biomass production was 21.1 kg sulphur ha with a critical leaf sulphur concentration of 0.23% in Moreover, sulphur addition to soil substantially enhanced the economic returns of . Therefore, addition of 45 kg sulphur ha could be a better option for obtaining higher yield and economic return of .

摘要

硫在蛋白质、叶绿素和少数氨基酸的形成及生物合成过程中起着至关重要的作用。为了研究硫肥对[植物名称]叶片生物量产量、临界硫浓度、硫需求量及吸收量的影响,采用完全随机设计进行了盆栽试验,设置了六个硫水平,即0、15、30、45、60和80千克/公顷,每个水平重复三次。研究结果表明,施用硫肥显著提高了生长性状、叶片和凝胶产量以及硫吸收量,施用45千克硫/公顷时效果最佳。与对照相比,平均而言,施硫使叶片生物量产量提高了47.5%,硫利用效率提高了38%。硫对生长参数的影响及其与产量的显著正相关表明硫对[植物名称]产量和品质的重要性。计算得出,80%叶片生物量生产所需的最低硫量为21.1千克硫/公顷,[植物名称]叶片临界硫浓度为0.23%。此外,向土壤中添加硫显著提高了[植物名称]的经济收益。因此,施用45千克硫/公顷可能是获得[植物名称]更高产量和经济收益的更好选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/799e/7753130/789c92d69525/gr1.jpg

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