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Genetic Identification and Phylogenic Analysis of New Varieties and 149 Korean Cultivars using 27 InDel Markers Selected from Dense Variation Blocks in Soybean (Glycine max (L.) Merrill)
Author(s) -
Jae-Buhm Chun,
Mina Jin,
Namhee Jeong,
Chuloh Cho,
MiSuk Seo,
Man Soo Choi,
Dool-Yi Kim,
Hwang-Bae Sohn,
Yul Ho Kim
Publication year - 2019
Publication title -
korean journal of plant resources
Language(s) - English
Resource type - Journals
eISSN - 2287-8203
pISSN - 1226-3591
DOI - 10.7732/kjpr.2019.32.5.519
Subject(s) - indel , cultivar , biology , phylogenetic tree , glycine , identification (biology) , botany , genetics , genotype , gene , single nucleotide polymorphism , amino acid
Twenty soybean cultivars developed recently were assessed using 27 insertion and deletion (InDel) markers derived from dense variation blocks (dVBs) of soybean genome. The objective of this study is to identify the distinctness and genetic relationships among a total of 169 soybean accessions including new cultivars. The genetic homology between 149 accessions in the soybean barcode system and 20 new cultivars was 61.3% on average with the range from 25.9% to 96.3%, demonstrating the versatile application of these markers for cultivars identification. The phylogenic analysis revealed four subgroups related to their usage. The 80% of cultivars for vegetable and early maturity and the 65.9% of cultivars for bean sprouts were clustered in subgroup I-2 and II-2, respectively, indicating of the limited gene pools of their crossing parents in breeding. On the other hands, the cultivars for soy sauce and tofu with considerable gene flow by genome reshuffling were distributed evenly to several subgroups, I-1 (44.4%), I-2 (26.4%) and II-2 (23.6%). We believe that the 27 InDel markers specific to dVBs can be used not only for cultivar identification and genetic diversity, but also in breeding purposes such as introduction of genetic resources and selection of breeding lines with target traits.

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