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Genomic selection performs as effectively as phenotypic selection for increasing seed yield in soybean.
Nonoy B Bandillo1,2, Diego Jarquin1,3, Luis G Posadas1
1Dep. of Agronomy and Horticulture, Univ. of Nebraska, 363 Keim Hall, Lincoln, NE, 68583, USA.
Genomic selection (GS) effectively accelerates genetic gain in soybean seed yield, matching phenotypic selection (PS) performance. While GS offers advantages, consider measures to preserve genetic diversity during its implementation.
Area of Science:
- Plant breeding
- Genetics
- Agricultural science
Background:
- Increasing genetic gain for soybean seed yield is a primary objective in breeding programs.
- Genomic selection (GS) shows potential for accelerating genetic gain in soybean.
- Limited studies have validated GS accuracy and compared it with phenotypic selection (PS) in soybean.
Purpose of the Study:
- To empirically validate genomic selection (GS) for increasing soybean seed yield.
- To compare the effectiveness of GS against phenotypic selection (PS) and random selection (RS).
- To assess GS prediction accuracy in diverse validation sets within a real-world breeding program.
Main Methods:
- Utilized over 1,500 soybean lines and 7 years of replicated experimental data (2010-2016).
- Trained the genomic selection model on a large population and validated it on three distinct sets: two biparental populations and one advanced line population.
- Compared prediction accuracy from validation experiments with cross-validation results.
Main Results:
- Realized prediction accuracy in validation experiments (.54) was comparable to cross-validation accuracy (.64).
- Both GS and PS improved population mean performance over random selection (RS).
- GS demonstrated a selection advantage over PS, maximizing genetic gain and top-line identification at 10-20% selection intensity.
- GS resulted in minor increases in genetic similarity compared to PS and RS, potentially shifting allelic frequencies.
Conclusions:
- Genomic selection (GS) can be as effective as phenotypic selection (PS) for improving soybean seed yield.
- GS may accelerate genetic gain and identify superior lines more efficiently.
- Consideration must be given to potential erosion of genetic diversity when implementing GS, necessitating protective measures.
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