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Article

Major QTLs for Trunk Height and Correlated Agronomic Traits Provide Insights into Multiple Trait Integration in Oil Palm Breeding

1
Biotechnology & Breeding Department, Sime Darby Plantation R&D Centre, Serdang 43400, Selangor State, Malaysia
2
School of Biosciences, University of Nottingham Malaysia, Semenyih 43500, Selangor State, Malaysia
3
School of Biosciences, University of Nottingham, Sutton Bonington Campus, Leicestershire LE12 5RD, UK
*
Author to whom correspondence should be addressed.
Genes 2020, 11(7), 826; https://doi.org/10.3390/genes11070826
Submission received: 7 May 2020 / Revised: 16 June 2020 / Accepted: 16 June 2020 / Published: 21 July 2020
(This article belongs to the Special Issue Selection Methods in Plant Breeding: From Visual Phenotyping to NGS)

Abstract

Superior oil yield is always the top priority of the oil palm industry. Short trunk height (THT) and compactness traits have become increasingly important to improve harvesting efficiency since the industry started to suffer yield losses due to labor shortages. Breeding populations with low THT and short frond length (FL) are actually available, such as Dumpy AVROS pisifera (DAV) and Gunung Melayu dura (GM). However, multiple trait stacking still remains a challenge for oil palm breeding, which usually requires 12–20 years to complete a breeding cycle. In this study, yield and height increment in the GM × GM (GM-3341) and the GM × DAV (GM-DAV-3461) crossing programs were evaluated and palms with good yield and smaller height increment were identified. In the GM-3341 family, non-linear THT growth between THT_2008 (seven years old) and THT_2014 (13 years old) was revealed by a moderate correlation, suggesting that inter-palm competition becomes increasingly important. In total, 19 quantitative trait loci (QTLs) for THT_2008 (8), oil per palm (O/P) (7) and FL (4) were localized on the GM-3341 linkage map, with an average mapping interval of 2.01 cM. Three major QTLs for THT_2008, O/P and FL are co-located on chromosome 11 and reflect the correlation of THT_2008 with O/P and FL. Multiple trait selection for high O/P and low THT (based on the cumulative effects of positive alleles per trait) identified one palm from 100 palms, but with a large starting population of 1000–1500 seedling per cross, this low frequency could be easily compensated for during breeding selection.
Keywords: compact palms; marker-assisted selection; Elaeis guineensis; linkage maps; dwarfism compact palms; marker-assisted selection; Elaeis guineensis; linkage maps; dwarfism

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MDPI and ACS Style

Teh, C.-K.; Ong, A.-L.; Mayes, S.; Massawe, F.; Appleton, D.R. Major QTLs for Trunk Height and Correlated Agronomic Traits Provide Insights into Multiple Trait Integration in Oil Palm Breeding. Genes 2020, 11, 826. https://doi.org/10.3390/genes11070826

AMA Style

Teh C-K, Ong A-L, Mayes S, Massawe F, Appleton DR. Major QTLs for Trunk Height and Correlated Agronomic Traits Provide Insights into Multiple Trait Integration in Oil Palm Breeding. Genes. 2020; 11(7):826. https://doi.org/10.3390/genes11070826

Chicago/Turabian Style

Teh, Chee-Keng, Ai-Ling Ong, Sean Mayes, Festo Massawe, and David Ross Appleton. 2020. "Major QTLs for Trunk Height and Correlated Agronomic Traits Provide Insights into Multiple Trait Integration in Oil Palm Breeding" Genes 11, no. 7: 826. https://doi.org/10.3390/genes11070826

APA Style

Teh, C.-K., Ong, A.-L., Mayes, S., Massawe, F., & Appleton, D. R. (2020). Major QTLs for Trunk Height and Correlated Agronomic Traits Provide Insights into Multiple Trait Integration in Oil Palm Breeding. Genes, 11(7), 826. https://doi.org/10.3390/genes11070826

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