Hoppe Andreas, Du Manuel, Bernstein Richard, Tiesler Friedrich-Karl, Kärcher Martin, Bienefeld Kaspar
Institute for Bee Research Hohen Neuendorf, Friedrich-Engels Str. 32, 16540 Hohen Neuendorf, Germany.
Albrecht Daniel Thaer-Institute for Agricultural and Horticultural Sciences, Humboldt University of Berlin, 10099 Berlin, Germany.
Insects. 2020 Nov 7;11(11):768. doi: 10.3390/insects11110768.
The subspecies of the honeybee has long been praised for its gentleness and good honey yield before systematic breeding efforts began in the early 20th century. However, before the introduction of modern techniques of genetic evaluation (best linear unbiased prediction, BLUP) and a computerized data management in the mid 1990s, genetic progress was slow. Here, the results of the official breeding value estimation in BeeBreed.eu are analyzed to characterize breeding progress and inbreeding. From about the year 2000 onward, the genetic progression accelerated and resulted in a considerable gain in honey yield and desirable properties without increased inbreeding coefficients. The prognostic quality of breeding values is demonstrated by a retrospective analysis. The success of breeding shows the potential of BLUP-based breeding values and serves as an example for a large-scale breeding program.
在20世纪初开始系统育种工作之前,蜜蜂的亚种长期以来因其温顺的性情和高产蜂蜜而备受赞誉。然而,在20世纪90年代中期引入现代遗传评估技术(最佳线性无偏预测,BLUP)和计算机化数据管理之前,遗传进展缓慢。在此,对BeeBreed.eu官方育种值估计的结果进行分析,以描述育种进展和近亲繁殖情况。从大约2000年起,遗传进展加速,蜂蜜产量和优良特性有了显著提高,同时近亲繁殖系数并未增加。通过回顾性分析证明了育种值的预测质量。育种的成功展示了基于BLUP的育种值的潜力,并为大规模育种计划提供了一个范例。