生物肥料和渗透胁迫对春大麦幼苗形态参数的影响

Alexander L Panfilov, Rinat R. Abdrashitov
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引用次数: 1

摘要

提高农业植物对非生物胁迫抗性的方法之一是使用具有抗胁迫和生长调节特性的生物肥料。它们提高了对有机肥料和土壤中氮和磷的吸收。本研究旨在研究在充分湿润和渗透胁迫条件下,用生物肥料预处理春大麦种子后,种子的播种品质、幼苗的形态指标。采用室内试验方法,研究了生物肥料在充分和不充分加湿条件下对春大麦幼苗生长的影响。大麦种子按照以下方案处理一次:1。对照(蒸馏水)10L/t;2.Gumi 20 M钾肥(0.4升/吨);3.Borogum-M复合物(0.2L/t);4.PEG 6000(100g/L);5.Gumi 20M(0.4L/t)+PEG 6000(100g/L);6.Borogum-M复合物(0.2L/t)+PEG6000(100g/L)。用生物肥料处理春大麦种子,发芽率和发芽率分别提高了35%和2%。使用PEG-6000模拟干旱时,种子的播种质量下降了4%。在充分增湿的条件下,所研究的生物肥料对大麦幼苗的地上部和根系重量具有复杂的正效应。此外,根、芽的平均长度和总根长都有所增加。根系数量变化不大。水分缺乏降低了Borogum-M复合生物肥料的有效性,而Gumi 20M钾生物肥料在水分胁迫条件下对大麦幼苗的参数有积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of biofertilizers and osmotic stress on morphological parameters of spring barley seedlings
One of ways to increase resistance of agricultural plants to abiotic stresses is the use of biofertilizers with anti-stress and growth-regulating properties. They improve absorption of nitrogen and phosphorus from organic fertilizers and soil. The purpose of the research was to study sowing qualities of seeds, morphological indicators of spring barley seedlings after presowing seed treatment with biofertilizers under conditions of sufficient humidification and osmotic stress. The laboratory experiment was carried out to study the effect of biofertilizers on seedlings of spring barley ( Hordeum vulgare L.) cv. Gubernatorsky under conditions of sufficient and insufficient humidification. The barley seeds were treated once according to the following scheme: 1. control (distilled water) 10 L/t; 2. Gumi 20 M potash (0.4 L/t); 3. Borogum-M complex (0.2 L/t); 4. PEG 6000 (100 g/L); 5. Gumi 20 M (0.4 L/t) + PEG 6000 (100 g/L); 6. Borogum-M complex (0.2 L/t) + PEG 6000 (100 g/L). Treatment of spring barley seeds with biofertilizers increased the germination rate and germination capacity by 35 and 2 %, respectively. When modeling drought using PEG-6000, the sowing qualities of seeds decreased by 4 %. Under conditions of sufficient humidification, the studied biofertilizers had a complex positive effect on shoot and root weight of barley seedlings. In addition, the average length of roots, shoots and the total root length increased. The number of roots did not change significantly. Lack of moisture decreased the effectiveness of Borogum-M complex biofertilizer, while Gumi 20 M potassium biofertilizer had a positive effect on the parameters of barley seedlings under water stress conditions.
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