大豆种子萌发试验用有机基质试验评价

M. Milivojević, Dragana Brankovic-Radojcic, R. Vukadinović, J. Kojić, Z. Dumanović, T. Petrović
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引用次数: 0

摘要

种子的高发芽率和幼苗的建立对大豆生产至关重要,因为它决定了作物密度并最终影响产量。准确评估播种材料的发芽势,以及对新收获种子的初步质量评估是有价值的。ISTA规则规定了大豆种子发芽的替代方法:沙子,纸张之间,覆盖沙子的纸张顶部以及自2020年起的有机生长介质。在玉米研究所种子检测实验室,大豆在2030°C的沙子中发芽。本研究的目的是评估几种可用的有机培养基,并与标准实验室方法得到的结果进行比较。在25°C和2030°C两种温度条件下,在4种萌发培养基(3种有机培养基和沙子)上对5个不同品质的大豆种子进行了试验。统计分析表明,所有类型的有机培养基质量相同。在2030℃条件下,有机培养基的发芽率略高于砂土,但差异无统计学意义。当在25°C的萌发器中进行测试时,确定了有机生长介质的积极影响,这种影响是显著的,特别是对于低质量的种子批次。实验结果是继续常规做法,并使用有机生长介质作为替代基质重新测试萌发率较低的种子批次。
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Experimental evaluation of organic substrates for germination testing of soybean seed
High germination of seeds and seedling establishment are critical for soybean production since it determines crop density and eventually affects the yield . Accurate evaluation of the germination potential of sowing material is valuable, as well as initial quality assessment of newly harvested seed . ISTA Rules prescribe alternative methods for soybean seed germination: sand, between paper, top of paper covered with sand and since 2020 organic growing media . In the Seed Testing Laboratory at the Maize Research Institute soybean germination is conducted in the sand at 20<=>30°C . The objective of this study was to evaluate several available organic growing media and compare results obtained with the standard laboratory method . Five soybean seed lots of different quality were tested in four germination growing media (3 organic and sand), at two temperature regimes (25 °C and 20<=>30°C) . Statistical analyses showed that all types of organic growing media were of the same quality . Slightly higher germination in organic growing media was obtained in the experiment at 20<=>30°C compared to sand, but those differences were not statistically significant . When testing was done in germinator with 25°C positive effects of organic growing media were identified and this impact was significant, especially for low-quality seed lots . The experimental outcome was to continue with routine practice and use organic growing media for retesting of seed lots with lower germination as an alternative substrate .
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