Effects of Chemical Mutagen (Sodium Azide) on Onion Grown in Organic and Inorganic Fertilized Soil

IF 2.1 3区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Requirements Engineering Pub Date : 2021-05-21 DOI:10.30564/RE.V3I2.2908
O. Adeoti, O. SodiqZainab, Adeoye K.A
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引用次数: 1

Abstract

The effects of chemical agent (Sodium Azide) on Onion growing in organic and inorganic fertile soil was to be examined during this study. The analysis work was carried out within the green house of the research laboratory technology of the Oke Ogun Science Laboratory Technology, Saki, Oyo State. Onion seeds were soaked inside different beakers containing the mixture of Sodium Azide and water mixed with 10 ml of Phosphate solution for 4 hours. Also, the control was soaked with normal water and 10 ml of Phosphate buffer solution. The treated seeds of onions was planted in plastic containers containing 4.2 g of weighed humus soil within the green house at the Department of research lab Technology of The Oke Ogun polytechnic school, Saki Oyo State. The samples parameter were taken daily for six consecutive months. The result obtained was additionally subjected to statistical analysis by using DMRT techniques. The results showed that the stem length was ranged from 11.39±0.62 and 9.98±0.52 with sample of onion without sodium Azide and inorganic had the highest stem length values and samples of onion with Sodium Azide and inorganic had very cheap stem length. However, the leave length ranged from 29.63±0.12 and 22.45±0.10 with the Onion samples with inorganic and Organic fertilizers which had the highest leave length and sample of onion without Sodium Azide was very low leave length. The results of this study showed that each one the parameters studied within the plant were low with Sodium Azide treatment. The decrease in plant growth, plant heights, root lengths, and Phaonerogam survival, fruit yield per plant and height at maturity with agent concentration. It is hereof suggested that Sodium Azide (NaN3) was expected to produce mutation in onion that area unit extremely liable to harmful pathogens and making them cheap to be useful for farmers.
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化学诱变剂叠氮化钠对有机和无机施肥土壤中洋葱生长的影响
研究了化学药剂叠氮化钠对洋葱在有机和无机肥沃土壤中生长的影响。分析工作是在奥约州萨基奥肯奥贡科学实验室技术研究实验室技术的温室内进行的。将洋葱籽浸泡在含有叠氮化钠和与10ml磷酸盐溶液混合的水的混合物的不同烧杯中4小时。此外,对照品用普通水和10ml磷酸盐缓冲溶液浸泡。处理过的洋葱种子被种植在萨基奥约州奥肯奥贡理工学校研究实验室技术系的温室内的装有4.2克称重腐殖质土壤的塑料容器中。连续六个月每天采集样本参数。通过使用DMRT技术对所获得的结果进行额外的统计分析。结果表明,茎长在11.39±0.62和9.98±0.52之间,其中不含叠氮钠和无机物的洋葱茎长值最高,含叠氮盐和无机物洋葱茎长非常便宜。然而,施用无机和有机肥料的洋葱样品的叶片长度最高,而不施用叠氮化钠的洋葱样品叶片长度很低,叶片长度在29.63±0.12和22.45±0.10之间。这项研究的结果表明,在叠氮化钠处理的情况下,工厂内研究的每个参数都很低。随着药剂浓度的增加,植物生长、株高、根长、Phaonerogam存活率、单株产量和成熟时高度的降低。这表明,叠氮化钠(NaN3)预计会在洋葱中产生突变,该面积单位极易感染有害病原体,并使其价格低廉,对农民有用。
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来源期刊
Requirements Engineering
Requirements Engineering 工程技术-计算机:软件工程
CiteScore
7.10
自引率
10.70%
发文量
27
审稿时长
>12 weeks
期刊介绍: The journal provides a focus for the dissemination of new results about the elicitation, representation and validation of requirements of software intensive information systems or applications. Theoretical and applied submissions are welcome, but all papers must explicitly address: -the practical consequences of the ideas for the design of complex systems -how the ideas should be evaluated by the reflective practitioner The journal is motivated by a multi-disciplinary view that considers requirements not only in terms of software components specification but also in terms of activities for their elicitation, representation and agreement, carried out within an organisational and social context. To this end, contributions are sought from fields such as software engineering, information systems, occupational sociology, cognitive and organisational psychology, human-computer interaction, computer-supported cooperative work, linguistics and philosophy for work addressing specifically requirements engineering issues.
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