A Modified Roger's Distance Algorithm for Mixed Quantitative-Qualitative Phenotypes to Establish a Core Collection for Taiwanese Vegetable Soybeans
- PMID: 33510755
- PMCID: PMC7835400
- DOI: 10.3389/fpls.2020.612106
A Modified Roger's Distance Algorithm for Mixed Quantitative-Qualitative Phenotypes to Establish a Core Collection for Taiwanese Vegetable Soybeans
Abstract
Vegetable soybeans [Glycine max (L.) Merr.] have characteristics of larger seeds, less beany flavor, tender texture, and green-colored pods and seeds. Rich in nutrients, vegetable soybeans are conducive to preventing neurological disease. Due to the change of dietary habits and increasing health awareness, the demand for vegetable soybeans has increased. To conserve vegetable soybean germplasms in Taiwan, we built a core collection of vegetable soybeans, with minimum accessions, minimum redundancy, and maximum representation. Initially, a total of 213 vegetable soybean germplasms and 29 morphological traits were used to construct the core collection. After redundant accessions were removed, 200 accessions were retained as the entire collection, which was grouped into nine clusters. Here, we developed a modified Roger's distance for mixed quantitative-qualitative phenotypes to select 30 accessions (denoted as the core collection) that had a maximum pairwise genetic distance. No significant differences were observed in all phenotypic traits (p-values > 0.05) between the entire and the core collections, except plant height. Compared to the entire collection, we found that most traits retained diversities, but seven traits were slightly lost (ranged from 2 to 9%) in the core collection. The core collection demonstrated a small percentage of significant mean difference (3.45%) and a large coincidence rate (97.70%), indicating representativeness of the entire collection. Furthermore, large values in variable rate (149.80%) and coverage (92.5%) were in line with high diversity retained in the core collection. The results suggested that phenotype-based core collection can retain diversity and genetic variability of vegetable soybeans, providing a basis for further research and breeding programs.
Keywords: core collection; diversity; edamame; germplasm; mixed quantitative-qualitative phenotypes; modified Roger’s distance; multiple imputation; vegetable soybean.
Copyright © 2021 Kao, He, Wang, Lai, Lin and Chen.
Conflict of interest statement
The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.
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References
-
- Aggarwal C. C., Hinneburg A., Keim D. A. (2001). “On the surprising behavior of distance metrics in high dimensional space,” in Database Theory — ICDT 2001. ICDT 2001. Lecture Notes in Computer Science, Vol. 1973 eds Van den Bussche J., Vianu V. (Berlin: Springer; ).
-
- Bravo J. A., Fehr W., de Cianzio S. R. (1980). Use of pod width for indirect selection of seed weight in soybeans. Crop Sci. 20 507–510. 10.2135/cropsci1980.0011183X002000040022x - DOI
-
- Carneiro R. C. V., Duncan S. E., O’Keefe S. F., Yin Y., Neill C. L., Zhang B. (2020). Sensory and consumer studies in plant breeding: a guidance for edamame development in the U.S. Front. Sustain. Food Syst. 4:124 10.3389/fsufs.2020.00124 - DOI
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