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Forskningsartikel2024Vetenskapligt granskadÖppen tillgång

Exploring Data Augmentation Algorithm to Improve Genomic Prediction of Top-Ranking Cultivars

Montesinos-Lopez, Osval A.; Sivakumar, Arvinth; Huerta Prado, Gloria Isabel; Salinas-Ruiz, Josafhat; Agbona, Afolabi; Ortiz Reyes, Axel Efrain; Alnowibet, Khalid; Ortiz, Rodomiro; Montesinos-Lopez, Abelardo; Crossa, Jose

Sammanfattning

Genomic selection (GS) is a groundbreaking statistical machine learning method for advancing plant and animal breeding. Nonetheless, its practical implementation remains challenging due to numerous factors affecting its predictive performance. This research explores the potential of data augmentation to enhance prediction accuracy across entire datasets and specifically within the top 20% of the testing set. Our findings indicate that, overall, the data augmentation method (method A), when compared to the conventional model (method C) and assessed using Mean Arctangent Absolute Prediction Error (MAAPE) and normalized root mean square error (NRMSE), did not improve the prediction accuracy for the unobserved cultivars. However, significant improvements in prediction accuracy (evidenced by reduced prediction error) were observed when data augmentation was applied exclusively to the top 20% of the testing set. Specifically, reductions in MAAPE_20 and NRMSE_20 by 52.86% and 41.05%, respectively, were noted across various datasets. Further investigation is needed to refine data augmentation techniques for effective use in genomic prediction.

Nyckelord

machine learning models for genomic prediction and selection; plant breeding; data augmentation

Publicerad i

Algorithms
2024, volym: 17, nummer: 6, artikelnummer: 260

SLU författare

Globala målen (SDG)

SDG2 Ingen hunger

UKÄ forskningsämne

Jordbruksvetenskap
Genetik och förädling

Publikationens identifierare

  • DOI: https://doi.org/10.3390/a17060260

Permanent länk till denna sida (URI)

https://res.slu.se/id/publ/130796