Vertical migration of nutrients and water-soluble organic matter in the soil profile under pre-sowing seed treatment with plant growth promoting rhizobacteria

IF 3.7 2区 农林科学 Q2 FOOD SCIENCE & TECHNOLOGY Frontiers in Sustainable Food Systems Pub Date : 2023-01-10 DOI:10.3389/fsufs.2022.1054113
V. Volkogon, Lyudmyla V. Potapenko, M. Volkogon
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引用次数: 1

Abstract

Studies conducted in a stationary lysimeter experiment in the conditions of the washing water regime have shown that the use of PGPR for pre-sowing seed inoculation of agricultural crops reduces vertical migration of biogenic nutrients and water-soluble organic matter down the soil profile. The effect of seed inoculation with PGPR on the reduction of nutrient losses was not specific to the type of rhizobacteria and was similar for crops grown on different mineral fertilizers backgrounds (spring barley and winter rye seeds were inoculated with the nitrogen-fixing bacteria—Azospirillum brasilense 410 and A. brasilense 18-2, respectively, while maize seeds were inoculated with the phosphate-mobilizing Paenibacillus polymyxa KB). Seed inoculation has decreased nitrogen leaching down the soil profile by 4–9 kg/ha, phosphorus compounds—by 0.5–3.0 kg/ha, potassium—by 0.6–3.0 kg/ha, calcium—by 6–42 kg/ha, magnesium—by 3.0–6.0 kg/ha, water-soluble organic matter—by 0.8–8.0 kg/ha, subject to crop and norms of mineral fertilizers. Maize seeds inoculated with phosphorous-mobilizing P. polymyxa KB under crop cultivation on the cattle manure background did not affect the intensity of nutrient migration. On the other hand, the combination of green manure (narrow-leaved lupine as an intermediate crop) with pre-sowing seed inoculation had significantly reduced nutrient losses beyond the root zone soil layer. It is concluded that the use of PGPR in crop production on mineral and green manure backgrounds contributes to the preservation of soil fertility by limiting biogenic nutrients and water-soluble organic matter leaching with the water drainage down the soil profile. Pre-sowing seed inoculation had no significant effect on the vertical migration of nutrients in the soil on the background of cattle manure, due to the highly competitive environment created with the introduction of microorganisms from organic fertilizer, preventing the establishment of close interactions between PGPR and plants.
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促进植物生长的根际细菌预播种子处理土壤剖面中养分和水溶性有机物的垂直迁移
在冲洗水条件下进行的固定式蒸渗仪实验研究表明,使用PGPR进行农作物播种前种子接种减少了生物营养物质和水溶性有机物沿土壤剖面的垂直迁移。PGPR种子接种对减少营养损失的影响并不是根际细菌类型特有的,在不同矿物肥料背景下生长的作物中也是相似的(春大麦和冬黑麦种子分别接种固氮菌-巴西固氮螺菌410和巴西固氮菌18-2,而玉米种子接种动员磷酸盐的多粘菌Paenibacillus polymyxa KB)。根据作物和矿物肥料的标准,种子接种使土壤剖面中的氮浸出量减少了4-9公斤/公顷,磷化合物减少了0.5-3.0公斤/公顷、钾减少了0.6-3.0公斤/ha、钙减少了6-42公斤/ha,镁减少了3.0-6.0公斤/ha和水溶性有机物减少了0.8-8.0公斤/公顷。在牛粪背景下种植的玉米种子接种聚磷多粘菌KB对养分迁移强度没有影响。另一方面,绿肥(窄叶羽扇豆作为中间作物)与播种前种子接种相结合,显著减少了根区土层以外的营养损失。得出的结论是,在矿物和绿肥背景下的作物生产中使用PGPR有助于保持土壤肥力,因为它限制了生物营养和水溶性有机物的浸出,并将水排向土壤剖面。播种前种子接种对牛粪背景下土壤中营养物质的垂直迁移没有显著影响,因为从有机肥料中引入微生物会产生高度竞争的环境,阻止PGPR与植物之间建立密切的相互作用。
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来源期刊
Frontiers in Sustainable Food Systems
Frontiers in Sustainable Food Systems Agricultural and Biological Sciences-Horticulture
CiteScore
5.60
自引率
6.40%
发文量
575
审稿时长
14 weeks
期刊最新文献
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