e-ISSN: Pending
Negative / Null Result ReportOpen accessBiochemistry, Genetics and Molecular Biology· cited by 17

Clonal diploid and autopolyploid breeding strategies to harness heterosis: insights from stochastic simulation

Marlee R. Labroo; Jeffrey B. Endelman; Dorcus C. Gemenet; Christian R. Werner; Robert Chris Gaynor; Giovanny Covarrubias‐Pazaran · 2023 · Theoretical and Applied Genetics

WASTE classifies this as Negative / Null Result Report · AI classification, approximate

The study found no significant effect — useful as a negative control or null benchmark for your own design.

Abstract

KEY MESSAGE: Reciprocal recurrent selection sometimes increases genetic gain per unit cost in clonal diploids with heterosis due to dominance, but it typically does not benefit autopolyploids. Breeding can change the dominance as well as additive genetic value of populations, thus utilizing heterosis. A common hybrid breeding strategy is reciprocal recurrent selection (RRS), in which parents of hybrids are typically recycled within pools based on general combining ability. However, the relative performances of RRS and other breeding strategies have not been thoroughly compared. RRS can have re

Abstract by Marlee R. Labroo; Jeffrey B. Endelman; Dorcus C. Gemenet; Christian R. Werner; Robert Chris Gaynor; Giovanny Covarrubias‐Pazaran, Theoretical and Applied Genetics (2023) — licensed CC BY 4.0.

About to run something similar?

Run an AI Precheck on your own design to catch failure modes like this one before you spend the time. Your first desk check is free.

WASTE indexes this work — it does not host or republish it. Failure-type classification is automated and approximate.

Metadata source: OpenAlex · DOI 10.1007/s00122-023-04377-z