Potential of Phosphorus Solubilizing Purple Nonsulfur Bacteria Isolated from Acid Sulfate Soil in Improving Soil Property, Nutrient Uptake, and Yield of Pineapple (Ananas comosus L. Merrill) under Acidic Stress

IF 2.1 Q3 SOIL SCIENCE
T. Hữu, Tran Ngoc Giau, Phan Le Ngoc Ngan, T. Van, N. Khuong
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引用次数: 4

Abstract

This study aimed to (i) evaluate purple nonsulfur bacteria (PNSB) strains possessing the highest phosphorus (P) solubilizing capacity in field and (ii) determine the efficacy of PNSB biofertilizers in improving soil quality, P uptake, growth, and yield of pineapple cultivated in acid sulfate soil (ASS). A field experiment was conducted in a completely randomized block design with two factors, including the first factor as P fertilizer levels (0, 50, 75, and 100% P) based on recommended fertilizer formula (RFF) and the second factor as supplementation of biofertilizers containing P solubilizing PNSB (no inoculated PNSB, Rhodobacter sphaeroides W48, R. sphaeroides W42, and a mixture of R. sphaeroides W48 and W42). The results indicated that the supplementation of PNSB biofertilizers led to an increase of 25.3–33.9% in soluble P concentration in soil compared to control treatment. Among the selected PNSB strains, R. sphaeroides W42 and a mixture of the PNSB in biofertilizers solubilized all insoluble P fractions (Fe-P, Al-P, and Ca-P) and strain W48 in biofertilizers for Fe-P and Al-P. Furthermore, the supplementation of biofertilizers from R. sphaeroides W48 and W42 individually and their mixture raised plant height by 3.56–4.10% and available P concentration by 25.3–33.9%. Total P uptake in pineapple treatments with biofertilizers from mixed PNSB was 42.9% higher than that in the control treatment ( p < 0.05 ). Application of mixed PNSB strains can reduce 25% P of chemical fertilizer, but the pineapple yield rose over 12.1%. Both R. sphaeroides W48 and W42 are potent for use as crop yield enhancers to obtain the sustainable pineapple cultivation under acidic stress.
酸性硫酸盐土壤中溶磷紫色非硫细菌对酸性胁迫下菠萝(Ananas comosus L.Merrill)改良土壤性质、养分吸收和产量的潜力
本研究旨在(i)评估在田间具有最高溶解磷能力的紫色非硫细菌(PNSB)菌株,以及(ii)确定PNSB生物肥料在改善酸性硫酸盐土壤(ASS)中种植的菠萝的土壤质量、磷吸收、生长和产量方面的效果。在具有两个因素的完全随机区组设计中进行现场实验,包括第一个因素作为基于推荐肥料配方(RFF)的磷肥料水平(0、50、75和100%P),以及第二个因素作为补充含有溶解磷的PNSB的生物肥料(未接种PNSB、球形红杆菌W48、球形红菌W42以及球形红杆菌的W48和W42的混合物)。结果表明,与对照处理相比,添加PNSB生物肥料可使土壤中可溶性磷浓度增加25.3–33.9%。在所选择的PNSB菌株中,球形假单胞菌W42和PNSB在生物肥料中的混合物溶解了所有不溶性P组分(Fe-P、Al-P和Ca-P),菌株W48在用于Fe-P和Al-P的生物肥料中。此外,单独添加球藻W48和W42生物肥料及其混合物可使株高提高3.56–4.10%,有效磷浓度提高25.3–33.9%。使用混合PNSB生物肥料处理的菠萝总磷吸收量比对照处理高42.9%(P<0.05)。施用PNSB混合菌株可以减少25%的化肥,但菠萝产量提高了12.1%以上。球形假单胞菌W48和W42均可作为作物增产剂,在酸性胁迫下获得可持续的菠萝栽培。
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来源期刊
Applied and Environmental Soil Science
Applied and Environmental Soil Science Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.00
自引率
4.50%
发文量
55
审稿时长
18 weeks
期刊介绍: Applied and Environmental Soil Science is a peer-reviewed, Open Access journal that publishes research and review articles in the field of soil science. Its coverage reflects the multidisciplinary nature of soil science, and focuses on studies that take account of the dynamics and spatial heterogeneity of processes in soil. Basic studies of the physical, chemical, biochemical, and biological properties of soil, innovations in soil analysis, and the development of statistical tools will be published. Among the major environmental issues addressed will be: -Pollution by trace elements and nutrients in excess- Climate change and global warming- Soil stability and erosion- Water quality- Quality of agricultural crops- Plant nutrition- Soil hydrology- Biodiversity of soils- Role of micro- and mesofauna in soil
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