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开发用于国内大豆品种基因分型的标记面板,这些基因控制着营养生长持续时间和对光周期的反应。

Development of a marker panel for genotyping of domestic soybean cultivars for genes controlling the duration of vegetation and response to photoperiod.

作者信息

Perfil'ev R N, Shcherban A B, Salina E A

机构信息

Institute of Cytology and Genetics of the Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russia.

出版信息

Vavilovskii Zhurnal Genet Selektsii. 2021 Nov;25(7):761-769. doi: 10.18699/VJ21.087.

Abstract

Soybean, Glycine max L., is one of the most important agricultural crops grown in a wide range of latitude. In this regard, in soybean breeding, it is necessary to pay attention to the set of genes that control the transition to the f lowering stage, which will make it possible to adapt genotypes to local growing conditions as accurately as possible. The possibilities of soybean breeding for this trait have now signif icantly expanded due to identif ication of the main genes (E1-E4, GmFT2a, GmFT5a) that control the processes of f lowering and maturation in soybean, depending on the day length. The aim of this work was to develop a panel of markers for these genes, which could be used for a rapid and eff icient genotyping of domestic soybean cultivars and selection of plant material based on sensitivity to photoperiod and the duration of vegetation. Combinations of 10 primers, both previously developed and our own, were tested to identify different alleles of the E1-E4, GmFT2a, and GmFT5a genes using 10 soybean cultivars from different maturity groups. As a result, 5 combinations of dominant and recessive alleles for the E1-E4 genes were identif ied: (1) e1-nl(e1-as)/ e2-ns/e3-tr(e3-fs)/e4; (2) e1-as/e2-ns/e3-tr/E4; (3) e1-as/e2-ns/E3-Ha/e4; (4) E1/e2-ns/e3-tr/E4; (5) e1-nl/e2-ns/E3-Ha/E4. The studied cultivars contained the most common alleles of the GmFT2a and GmFT5a genes, with the exception of the 'Cassidi' cultivar having a rare dominant allele GmFT5a-H4. The degree of earliness of cultivars positively correlated with the number of recessive genes E1-E4, which is consistent with the data of foreign authors on different sets of cultivars from Japan and North China. Thus, the developed panel of markers can be successfully used in the selection of soybean for earliness and sensitivity to photoperiod.

摘要

大豆,即大豆属的大豆(Glycine max L.),是在广泛纬度范围内种植的最重要的农作物之一。在这方面,在大豆育种中,有必要关注控制向开花阶段转变的基因组合,这将使基因型尽可能准确地适应当地生长条件。由于确定了控制大豆开花和成熟过程的主要基因(E1 - E4、GmFT2a、GmFT5a),大豆针对这一性状的育种可能性现在已显著扩大,这些基因取决于日长。这项工作的目的是开发一组针对这些基因的标记,可用于对国内大豆品种进行快速有效的基因分型,并根据对光周期的敏感性和生育期选择植物材料。使用来自不同成熟组的10个大豆品种,测试了10种引物组合(包括先前开发的和我们自己设计的),以鉴定E1 - E4、GmFT2a和GmFT5a基因的不同等位基因。结果,鉴定出了E1 - E4基因的5种显性和隐性等位基因组合:(1) e1 - nl(e1 - as)/e2 - ns/e3 - tr(e3 - fs)/e4;(2) e1 - as/e2 - ns/e3 - tr/E4;(3) e1 - as/e2 - ns/E3 - Ha/e4;(4) E1/e2 - ns/e3 - tr/E4;(5) e1 - nl/e2 - ns/E3 - Ha/E4。所研究的品种包含GmFT2a和GmFT5a基因最常见的等位基因,但‘Cassidi’品种具有罕见的显性等位基因GmFT5a - H4除外。品种的早熟程度与隐性基因E1 - E4的数量呈正相关,这与国外作者关于来自日本和中国北方不同品种组的数据一致。因此,所开发的标记组可成功用于大豆早熟性和光周期敏感性的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/095a/8654678/16e62001b21c/VJGB-25-21087-Tab.1.jpg

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