LUAN Xiao-yan,LIU Xin-lei,MA Yan-song,et al.Innovating Soybean Heinong 84 with High Quality and Multi-resistance by Molecular Marker Gene Polymerization [J].Soybean Science,2018,37(06):839-842.[doi:1011861/jissn1000-98412018060839]
多抗高产大豆新品种黑农84的选育研究
- Title:
-
Innovating Soybean Heinong 84 with High Quality and Multi-resistance by Molecular Marker Gene Polymerization
- Keywords:
-
Molecular marker; Gene polymerization; Soybean cultivars; Heinong 84
- 文献标志码:
- A
- 摘要:
- 黑龙江省农业科学院大豆研究所根据育种目标构建具有大豆病毒病、灰斑病、胞囊线虫病目标基因的抗性F2灰布支黑豆(抗SCN)。针对不同病害,筛选与目的基因紧密连锁的SSR标记,定位QTL。利用已有标记在黑农51的回交转育后代群体中直接针对抗病基因进行精准选择,聚合目标基因,创造多抗高产大豆新品种黑农84。凝练技术方法建立多基因聚合的大豆育种体系,为大豆分子设计育种提供有益参考。
- Abstract:
- To the breeding objective, the Soybean Research Institute of Heilongjiang Academy of Agricultural Sciences constructed F2 isolation population with target genes of soybean virus disease, gray spot disease and cyst nematode disease: Heinong 41 (susceptible to SMV3) ×Ha91R3-301 (susceptible to SMV3), Heinong 39 (susceptible to FLS), ×Dongnong 9674 (resistant to SMV3), Heinong 33 (susceptible to SCN) × Black Soybean (resistant to SCN). For different diseases, we screened the SSR markers closely linked to the target gene and located the QTL. In order to create a new soybean variety Heinong 84 with multi-resistance and high yield, the target genes were aggregated by precise selection of disease-resistant genes in the backcross progeny population of Heinong 51. The technique of molecular marker gene polymerization was used to establish a polygenic soybean breeding system, which could provide a useful reference for molecular design breeding of soybean.
参考文献/References:
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备注/Memo
收稿日期:2018-09-04