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基于模拟的冬油菜杂种制种基地群的建立。

Simulation-based establishment of base pools for a hybrid breeding program in winter rapeseed.

机构信息

Department of Biometry and Population Genetics, Justus Liebig University, Giessen, Germany.

NPZ Innovation GmbH, Hohenlieth-Hof, Holtsee, Germany.

出版信息

Theor Appl Genet. 2024 Jan 8;137(1):16. doi: 10.1007/s00122-023-04519-3.

Abstract

Simulation planned pre-breeding can increase the efficiency of starting a hybrid breeding program. Starting a hybrid breeding program commonly comprises a grouping of the initial germplasm in two pools and subsequent selection on general combining ability. Investigations on pre-breeding steps before starting the selection on general combining ability are not available. Our goals were (1) to use computer simulations on the basis of DNA markers and testcross data to plan crosses that separate genetically two initial germplasm pools of rapeseed, (2) to carry out the planned crosses, and (3) to verify experimentally the pool separation as well as the increase in testcross performance. We designed a crossing program consisting of four cycles of recombination. In each cycle, the experimentally generated material was used to plan the subsequent crossing cycle with computer simulations. After finishing the crossing program, the initially overlapping pools were clearly separated in principal coordinate plots. Doubled haploid lines derived from the material of crossing cycles 1 and 2 showed an increase in relative testcross performance for yield of about 5% per cycle. We conclude that simulation-designed pre-breeding crossing schemes, that were carried out before the general combining ability-based selection of a newly started hybrid breeding program, can save time and resources, and in addition conserve more of the initial genetic variation than a direct start of a hybrid breeding program with general combining ability-based selection.

摘要

模拟预先繁殖可以提高启动杂交种繁殖计划的效率。启动杂交种繁殖计划通常包括将初始种质资源分组到两个池中,然后进行一般配合力的选择。在开始进行一般配合力选择之前,预先繁殖步骤的研究尚不多见。我们的目标是:(1)利用基于 DNA 标记和测交数据的计算机模拟来规划可以在遗传上分离油菜初始两个种质资源库的杂交,(2)实施计划的杂交,(3)通过实验验证库的分离以及测交性能的提高。我们设计了一个由四个重组周期组成的杂交计划。在每个周期中,使用实验生成的材料来通过计算机模拟规划后续的杂交周期。完成杂交计划后,在主坐标图中,最初重叠的库明显分离。来自杂交周期 1 和 2 的材料衍生的双单倍体系显示出相对测交性能提高约 5%/周期。我们的结论是,在新启动的杂交种繁殖计划中基于一般配合力的选择之前进行模拟设计的预先繁殖杂交方案,可以节省时间和资源,并且与直接开始基于一般配合力的杂交种繁殖计划相比,可以保留更多的初始遗传变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7e3/10774156/0fe7aa7e7c8c/122_2023_4519_Fig1_HTML.jpg

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