俄罗斯蜜蜂的生物多样性及其保护

A. Gulov, Z. Sayfutdinova, A. Brandorf
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引用次数: 1

摘要

蜜蜂的生物多样性——俄罗斯的遗传资源,通过传粉昆虫植物维持生态系统的稳态。蜜蜂的生物多样性在人类生活中具有生态、社会、经济和美学意义。对生物多样性的保护特别感兴趣的是分类上孤立的物种和种群,它们与其他物种不相似,因此在遗传结构上是独特的。这些物种通常是地方性的,即局限于一个地区的传播。它们的灭绝将意味着生物多样性的丧失。不加控制地引进不同种类、品种和种群的蜜蜂会导致疾病的传播和隐藏的遗传缺陷。在大规模引进不适应的蜜蜂品种的过程中,地方性种群的品种多样性丧失,伴随着繁殖机会的缩小和传粉媒介的减少。利用现代监测方法,结合微卫星分析,提高蜜蜂基因库研究的效率。蜂王人工授精和雄蜂精子液氮冷冻保存的生物技术方法可以保护濒危本土蜜蜂品种的基因库。使用这些方法可以避免一妻多夫制,并在育种和遗传研究中进行控制交配。获得蜜蜂细胞的培养有希望更深入地研究与细胞内感染因子的相互作用,这一独特对象的变异的基因组和表观遗传机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The honey bee Apis mellifera L. biodiversity in Russia and its preservation
Biological diversity of bee - the genetic resource in Russia, which enables maintaining homeostasis of ecosystems through pollination entomophilies plants. The biodiversity of bees in human life has ecological, social, economic and aesthetic significance. Of particular interest in the preservation of biodiversity are taxonomically isolated species and populations, not resemble others and therefore unique in their genetic constitution. These species are often endemic, that is limited to the dissemination of one area. Their extinction of will mean the loss of biodiversity. Uncontrolled introduction of bees of different species breeds and populations leads to the spread of diseases and hidden genetic defects. In the process of mass introduction of not adapted breeds of honey bees there is a loss of breed diversity of endemic populations, accompanied by a narrowing of breeding opportunities and a reduction in pollinators. Using modern methods of monitoring with the use of microsatellite analysis to improve the efficiency study of the gene pool of honeybees. Biotechnological methods of artificial insemination of Queens and cryopreservation of drone sperm in liquid nitrogen allow preserving the gene pool of endangered native breeds of honeybees. The use of these methods makes it possible to avoid polyandry and conduct controlled mating in breeding and genetic studies. Obtaining a culture of honeybee cells is promising for a more in-depth study of the interaction with intracellular infectious agents, genomic and epigenetic mechanisms of variability of this unique object.
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