Abstract
Abstract
Genomic selection holds the potential to serve as a strategic tool to enhance the genetic gain of complex traits in Miscanthus breeding programs. The development of improved cultivars requires their assessment for various traits across diverse environments to ensure suitable overall performance. Hence, the multi-trait multi-environment (MTME) genomic prediction (GP) models offer an opportunity to improve selection accuracy. This study aims to evaluate the potential of five GP models: (1) three MTME models including genotype-by-trait-by-environment interaction (G×E×T) and (2) two single-trait multi-environment (STME) models (with and without G×E interaction). A Miscanthus sacchariflorus population comprising 336 genotypes evaluated in three environments and scored for four traits (biomass yield YDY, total culm number TCM, average internode length AIL, and culm node number CNN) was analyzed. The predictive ability of the models was evaluated considering three cross-validation schemes resembling realistic scenarios (CV1: predicting new genotypes, CVP: predicting missing traits in a given environment, and CV2: predicting partially observed genotypes). On average, in all cross-validation schemes compared to the STME the predictive ability of the MTME models was 10% to 70% higher for TCM and AIL. On the other hand, for YDY and CNN, both STME models performed similarly or slightly better (between 5 to 64%) than the MTME models in most environments. While the MTME models were not successful for all traits when compared to their STME counterparts, MTME models improved the prediction of the performance of genotypes that were untested across environments or lacked trait information in a specific environment. Overall, our study suggests that MTME GP models can be implemented in Miscanthus breeding programs to improve the predictive ability of the complex traits, shorten breeding cycles, and accelerate selection decisions.
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@article{Proma2026Multi,
title = {Multi-trait multi-environment genomic prediction strategies for Miscanthus sacchariflorus},
author = {Shatabdi Proma and Garcia-Abadillo Julian and Vitor Sagae and Erik Sacks and Andrew D. B. Leakey and Hua Zhao and Bimal Kumar Ghimire and Alexander E. Lipka and Joyce N. Njuguna and Chang Yeon Yu and Eun Soo Seong and Ji Hye Yoo and Hironori Nagano and Kossonou G. Anzoua and Toshihiko Yamada and Pavel Chebukin and Xiaoli Jin and Lindsay V. Clark and Karen Koefoed Petersen and 彭俊华 and Andrey Sabitov and Elena Dzyubenko and Nicolay Dzyubenko and Katarzyna Glowacka and Moysés Nascimento and Ana Carolina Nascimento and Maria S. Dwiyanti and Larisa Bagment and Ansari Shaik and Diego Jarquin},
journal = {Frontiers in Plant Science},
year = {2026},
doi = {10.3389/fpls.2026.1835247},
url = {https://doi.org/10.3389/fpls.2026.1835247}
}
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