Reciprocal recurrent selection based on genetic complementation: An efficient way to build heterosis in diploids due to directional dominance

dc.creatorCovarrubias Pazaran, Giovanny Eduardo
dc.creatorWerner, Christian R.
dc.creatorGemenet, Dorcus C.
dc.date2023-07
dc.date2023-11-03T11:24:56Z
dc.date2023-11-03T11:24:56Z
dc.date.accessioned2026-06-27T04:15:55Z
dc.descriptionDepending on the trait architecture and reproduction system, selection strategies in plant breeding focus on the accumulation of additive, dominance effects, or both. Innovation in the exploitation of dominance‐effect‐based heterosis has been limited since the proposal of general combining ability (GCA)‐based approaches. We propose the use of a new surrogate of genetic complementation between genetic pools to increase accumulation of dominance effects and heterosis. We simulated breeding programs to show how reciprocal recurrent selection (RRS) by genetic complementation would build the dominance‐based heterosis cheaper than GCA‐based approaches and used real phenotypic data from hybrid maize (<jats:italic>Zea mays</jats:italic>) to demonstrate the underlying concepts. We found RRS by genetic complementation to be an attractive and viable strategy to exploit dominance, build de novo heterotic pools, and enhance the current GCA‐based approaches. If demonstrated in practice, we hypothesized that this approach would lower the cost of hybrid breeding drastically and contribute to food security.
dc.formatapplication/pdf
dc.identifierhttps://hdl.handle.net/10568/132702
dc.identifier.urihttp://hdl.handle.net/123456789/27041
dc.languageen
dc.publisherWiley
dc.rightsOpen Access
dc.sourceCovarrubias‐Pazaran, Giovanny, Christian Werner, and Dorcus Gemenet. "Reciprocal recurrent selection based on genetic complementation: An efficient way to build heterosis in diploids due to directional dominance." Crop Science (2023).
dc.subjectplant breeding
dc.subjectaccumulation
dc.subjectinnovation
dc.subjectexploitation
dc.subjectheterosis
dc.subjectfood security
dc.subjectzea mays
dc.subjectviability
dc.subjectcosts
dc.titleReciprocal recurrent selection based on genetic complementation: An efficient way to build heterosis in diploids due to directional dominance
dc.typeJournal Article

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