Formation of seedlings of white lupin, Lupinus albus L. and blue lupin, Lupinus angustifolius L. in laboratory and field experiments

Q3 Agricultural and Biological Sciences caspian journal of environmental sciences Pub Date : 2021-09-17 DOI:10.22124/CJES.2021.5014
G. Gataulina, Natalia V. Medvedeva, Sofia Evgenievna Pilipenko, A. Shitikova
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Abstract

Modern varieties of white lupin can be an alternative to soy in overcoming vegetable protein deficiency: to produce or import? Unlike soybeans, lupin seeds do not contain trypsin inhibitors; they don’t need heat treatment to be used in feed. Lupin has a high attachment of beans. It is drought-resistant, adapted to environmental conditions with insufficient moisture. The formation of seedlings is a critical period in the ontogeny of lupin, preceding sprouting. At this time, parameters of seedlings such as the speed and vigor, density, distribution uniformity on the soil surface are determined. The objective is to determine the dynamic characteristics of seedlings of white and blue lupin seeds by alterations in the wet and dry weight of the seedling and its individual organs in laboratory and field experiments. In the laboratory experiments, seeds of white and blue lupins were germinated on sifted and calcined sand, moistened to 80% of the total moisture capacity at 20 oC. On the 4th and 7th days, the wet and dry weight per 100 seedlings, morphological alterations in the seedling bodies and their mass were determined, as well as the expenditure of seed reserve nutrients for the formation of seedlings was calculated. In field experiment, the same parameters of seedlings were determined, considering their laboratory germination (according to the number of viable seeds per 1 m row). The formation features of seedlings of white and blue lupins in laboratory and field experiments have been studied. The certain features influencing the parameters of seedlings in field during the critical "sowing-seedlings” period have been determined.
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白羽扇豆和蓝羽扇豆的室内和田间成苗试验
在克服植物蛋白缺乏方面,现代品种的白羽扇豆可以替代大豆:生产还是进口?与大豆不同,羽扇豆种子不含胰蛋白酶抑制剂;它们不需要热处理就可以用于饲料中。羽扇豆对豆子有很高的依恋。它耐旱,适应水分不足的环境条件。羽扇豆幼苗的形成是羽扇豆个体发育的关键时期,先于羽扇豆发芽。此时,确定了幼苗的速度和活力、密度、在土壤表面的分布均匀性等参数。目的是通过实验室和田间实验中幼苗及其单个器官的湿重和干重的变化来确定白色和蓝色羽扇豆种子幼苗的动态特性。在实验室实验中,白羽扇豆和蓝羽扇豆的种子在经过筛选和煅烧的沙子上发芽,在20℃下润湿至总含水量的80%。在第4天和第7天,测定了每100株幼苗的湿重和干重、幼苗体的形态变化及其质量,并计算了形成幼苗所需的种子储备营养素的消耗。在田间试验中,考虑到幼苗的实验室发芽(根据每1m行的活种子数量),确定了幼苗的相同参数。通过室内和田间试验,研究了白羽扇豆和蓝羽扇豆幼苗的形成特点。确定了在关键的“播种期”影响田间幼苗参数的某些特征。
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来源期刊
caspian journal of environmental sciences
caspian journal of environmental sciences Environmental Science-Environmental Science (all)
CiteScore
2.30
自引率
0.00%
发文量
0
审稿时长
5 weeks
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