Genetic mapping populations for conducting high-resolution trait mapping in plants

J Cockram, I Mackay - Plant genetics and molecular biology, 2018 - Springer
Fine mapping of quantitative trait loci (QTL) is the route to more detailed molecular
characterization and functional studies of the relationship between polymorphism and trait …

Genomics-assisted breeding for ear rot resistances and reduced mycotoxin contamination in maize: methods, advances and prospects

DS Gaikpa, T Miedaner - Theoretical and Applied Genetics, 2019 - Springer
Key message Genetic mapping, genomic profiling and bioinformatic approaches were used
to identify putative resistance genes for ear rots and low mycotoxin contamination in maize …

[HTML][HTML] Genomics-assisted breeding for quantitative disease resistances in small-grain cereals and maize

T Miedaner, ALGC Boeven, DS Gaikpa… - International Journal of …, 2020 - mdpi.com
Generating genomics-driven knowledge opens a way to accelerate the resistance breeding
process by family or population mapping and genomic selection. Important prerequisites are …

[HTML][HTML] Insights into the genetic basis of blueberry fruit-related traits using diploid and polyploid models in a GWAS context

LFV Ferrão, J Benevenuto, IB Oliveira… - Frontiers in Ecology …, 2018 - frontiersin.org
Polyploidization is an ancient and recurrent process in plant evolution, impacting the
diversification of natural populations and plant breeding strategies. Polyploidization occurs …

Accuracy of within-and among-family genomic prediction for Fusarium head blight and Septoria tritici blotch in winter wheat

CP Herter, E Ebmeyer, S Kollers, V Korzun… - Theoretical and Applied …, 2019 - Springer
Genomic selection is an approach that uses whole-genome marker data to predict breeding
values of genotypes and holds the potential to improve the genetic gain in breeding …

[HTML][HTML] Meta-analysis and co-expression analysis revealed stable QTL and candidate genes conferring resistances to Fusarium and Gibberella ear rots while …

F Akohoue, T Miedaner - Frontiers in Plant Science, 2022 - frontiersin.org
Fusarium (FER) and Gibberella ear rots (GER) are the two most devastating diseases of
maize (Zea mays L.) which reduce yield and affect grain quality worldwide, especially by …

Reciprocal Genetics: Identifying QTL for General and Specific Combining Abilities in Hybrids Between Multiparental Populations from Two Maize (Zea mays L.) …

H Giraud, C Bauland, M Falque, D Madur, V Combes… - Genetics, 2017 - academic.oup.com
Understanding genetic architecture of hybrid performances is important for species showing
heterosis. Giraud et al. evaluated an... Several plant and animal species of agricultural …

[HTML][HTML] Exploiting genetic diversity in two European maize landraces for improving Gibberella ear rot resistance using genomic tools

DS Gaikpa, B Kessel, T Presterl, M Ouzunova… - Theoretical and Applied …, 2021 - Springer
Key message High genetic variation in two European maize landraces can be harnessed to
improve Gibberella ear rot resistance by integrated genomic tools. Abstract Fusarium …

Genomic prediction and GWAS of Gibberella ear rot resistance traits in dent and flint lines of a public maize breeding program

S Han, T Miedaner, HF Utz, W Schipprack, TA Schrag… - Euphytica, 2018 - Springer
Gibberella ear rot (GER) is a serious threat to maize cultivation, causing grain yield losses
and contamination with mycotoxins. Genomic prediction (GP) has great potential to …

[HTML][HTML] Multi-parent QTL mapping reveals stable QTL conferring resistance to Gibberella ear rot in maize

AL Galiano-Carneiro, B Kessel, T Presterl, DS Gaikpa… - Euphytica, 2021 - Springer
Maize production is on risk by Gibberella ear rot (GER) caused by Fusarium graminearum.
This is one of the most important ear rot diseases in temperate zones as it leads to yield …