Prediction of heterosis in the recent rapeseed (Brassica napus) polyploid by pairing parental nucleotide sequences

The utilization of heterosis is a successful strategy in increasing yield for many crops. However, it consumes tremendous manpower to test the combining ability of the parents in fields. Here, we applied the genomic-selection (GS) strategy and developed models that significantly increase the predict...

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Veröffentlicht in:PLoS genetics 2021-11, Vol.17 (11), p.e1009879-e1009879
Hauptverfasser: Wang, Qian, Yan, Tao, Long, Zhengbiao, Huang, Luna Yue, Zhu, Yang, Xu, Ying, Chen, Xiaoyang, Pak, Haksong, Li, Jiqiang, Wu, Dezhi, Xu, Yang, Hua, Shuijin, Jiang, Lixi
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Sprache:eng
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Zusammenfassung:The utilization of heterosis is a successful strategy in increasing yield for many crops. However, it consumes tremendous manpower to test the combining ability of the parents in fields. Here, we applied the genomic-selection (GS) strategy and developed models that significantly increase the predictability of heterosis by introducing the concept of a regional parental genetic-similarity index (PGSI) and reducing dimension in the calculation matrix in a machine-learning approach. Overall, PGSI negatively affected grain yield and several other traits but positively influenced the thousand-seed weight of the hybrids. It was found that the C subgenome of rapeseed had a greater impact on heterosis than the A subgenome. We drew maps with overviews of quantitative-trait loci that were responsible for the heterosis (h-QTLs) of various agronomic traits. Identifications and annotations of genes underlying high impacting h-QTLs were provided. Using models that we elaborated, combining abilities between an Ogu-CMS-pool member and a potential restorer can be simulated in silico, sidestepping laborious work, such as testing crosses in fields. The achievements here provide a case of heterosis prediction in polyploid genomes with relatively large genome sizes.
ISSN:1553-7404
1553-7390
1553-7404
DOI:10.1371/journal.pgen.1009879