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用硫氰甲基杆菌培养的生物硫颗粒促进了缺硫石灰性变性土中黑豆的生长和产量。

Bio sulfur granules developed with Methylobacterium thiocyanatum promoted black gram growth and yield in sulfur-deficient calcareous vertisol.

作者信息

Akila G, Thiyageshwari S, Krishnamoorthy R, Selvi D, Manikandan A, Anandham R, Djanaguirman M

机构信息

Department of Soil Science and Agricultural Chemistry, Tamil Nadu Agricultural University, Coimbatore, 641003, India.

Department of Crop Management, Vanavarayar Institute of Agriculture, Manakkadavu, 642103, India.

出版信息

Folia Microbiol (Praha). 2025 Jun;70(3):559-574. doi: 10.1007/s12223-024-01199-4. Epub 2024 Oct 5.

Abstract

High soil pH and excess CaCO are major contributors to calcareous soil limitations on crops' access to essential nutrients, especially phosphorus (P) and micronutrients, which in turn impact pulses yields and growth. The purpose of this study was to determine the effect of bio sulfur granules (BSG) on the growth of black gram and the availability of nutrients in calcareous vertisols deficient in sulfur. BSG was developed by using sulfur-oxidizing bacteria (SOB) and elemental sulfur (ES) through an incubation study. Developed BSG was tested in a pot and field conditions to evaluate their effectiveness on black gram growth and yield. In the incubation study, soil treated with Methylobacterium thiocyanatum VRI7-A4 and ES (40 kg S/ha) significantly decreased pH and increased available S (SO) in calcareous soils. After 40 days of incubation, the solubility of P, Fe, and Zn was greatly increased by the addition of ES @ 40 kg S/ ha in combination with M. thiocyanatum VRI7-A4 or Pandoraea thiooxydans ATSB16. Black gram in S-deficient calcareous soil was improved by the application of BSG (ES @ 40 kg S/ ha with M. thiocyanatum VRI7-A7) in terms of root and shoot lengths, nodule number, plant biomass, pod yield, and biological yield as compared to control. The same treatment greatly increased plant nutrient intake as well as the concentrations of P, Fe, and Zn in the soil. The results showed that the addition of BSG granules (ES @ 40 kg S/ha + M. thiocyanatum VRI7-A4) to calcareous vertisol deficient in S enhanced the nutrient solubility through S oxidation. The developed bio sulfur granules may be added to the fertilizer schedule of the pulses growers to get improved crop growth and yield of black gram in calcareous soil.

摘要

高土壤pH值和过量的碳酸钙是石灰性土壤限制作物获取必需养分(尤其是磷(P)和微量营养素)的主要因素,进而影响豆类产量和生长。本研究的目的是确定生物硫颗粒(BSG)对黑豆生长以及缺硫石灰性变性土中养分有效性的影响。通过一项培养研究,利用硫氧化细菌(SOB)和元素硫(ES)研制出了BSG。对研制出的BSG在盆栽和田间条件下进行测试,以评估其对黑豆生长和产量的有效性。在培养研究中,用硫氰酸甲基杆菌VRI7 - A4和ES(40千克硫/公顷)处理的土壤显著降低了石灰性土壤的pH值,并增加了有效硫(SO)。培养40天后,添加40千克硫/公顷的ES并结合硫氰酸甲基杆菌VRI7 - A4或硫氧化潘多拉菌ATSB16,大大提高了P、Fe和Zn的溶解度。与对照相比,在缺硫石灰性土壤中施用BSG(40千克硫/公顷的ES与硫氰酸甲基杆菌VRI7 - A7)可改善黑豆的根长、茎长、根瘤数、植株生物量、荚果产量和生物产量。相同处理还大大增加了植物养分吸收以及土壤中P、Fe和Zn的浓度。结果表明,向缺硫的石灰性变性土中添加BSG颗粒(40千克硫/公顷的ES + 硫氰酸甲基杆菌VRI7 - A4)可通过硫氧化提高养分溶解度。可将研制出的生物硫颗粒添加到豆类种植者的施肥方案中,以提高石灰性土壤中黑豆的作物生长和产量。

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