抗蚜虫和抗植物病原体种植材料的农业技术

Q3 Economics, Econometrics and Finance
Evgenia Dyukova, E. Ulyanova, M. Osintseva, Victoria Kryuk
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引用次数: 0

摘要

许多树苗在植树造林过程中过早死亡。传统的裸根技术在西西伯利亚经常失败。因此,容器栽培技术在恶劣的气候条件下具有更高的成活率,因此变得非常重要。 这项研究追踪了在克麦罗沃地区容器苗圃中培育的苏格兰松树(Pinus sylvestris L.)幼苗的生长过程。碾碎的高湿度泥炭分解度≤15%。种子在播种前经过杀菌剂处理。秧苗在生长期间接受了植物噬菌体和植物病原体的双重处理。 文章介绍了一种抗噬菌体和植物病原体的球根种植新农业技术。研究揭示了松树幼苗的发育阶段以及农药对病原体数量的影响。在进行植物检疫监测和预防性处理后,作为播种前种子处理的一部分,对幼苗进行了杀虫剂、杀真菌剂和杀虫剂效果测试。Fitoverm(0.4%)、Decis Pro、Previkur Energy 和 Fitosporin 等生化制剂提高了试验秧苗的成活率。试验处理的生物有效性分别为 49-53%和 44-50%。 该技术能够提高西西伯利亚恶劣气候条件下森林容器苗圃中松树幼苗的成活率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agricultural Technology for Phytophage and Phytopathogen Resistant Planting Material
Many seedlings die early during reforestation. Traditional bareroot technologies often fail in Western Siberia. As a result, containerized technologies have become relevant as they provide higher survival rate in the harsh climatic conditions. The study traced the development of Scots pine (Pinus sylvestris L.) seedlings grown in a container nursery in the Kemerovo Region. The milled high-moor peat had a degree of decomposition of ≤ 15%. The seeds were treated with fungicides before planting. The seedlings underwent a double treatment against phytophages and phytopathogens during growth. The article introduces a new agricultural technology for ball-rooted planting stock resistant to phytophages and phytopathogens. The study revealed the developmental stages of pine seedlings and the effect of pesticides on pathogen count. After phytosanitary monitoring and preventive treatments, the seedlings were tested for the effectiveness of pesticides, fungicides, and insecticides as part of pre-planting seed treatment. Such biochemical preparations as Fitoverm (0.4%), Decis Pro, Previkur Energy, and Fitosporin increased the survival rate of the test seedlings. The biological effectiveness of the experimental treatment was 49–53 and 44–50%. The technology was able to improve the survival rate of pine seedlings in forest container nurseries in the harsh climate of West Siberia.
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来源期刊
Food Processing: Techniques and Technology
Food Processing: Techniques and Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
1.40
自引率
0.00%
发文量
82
审稿时长
12 weeks
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