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#mass selection

2 public questions tagged with this topic.

Mass selection is more effective in:

Effectiveness hinges on population structure and genetic variance. Cross-pollinated species such as maize, pearl millet, and sunflower maintain high heterozygosity, large additive genetic variance, and expose extensive segregation each generation due to allogamy and random mating mediated by wind or insects. Mass selection in such highly variable base populations can shift allele frequencies rapidly because selected individuals outcross, recombining favorable alleles through pollen mixing. In self-pollinated wheat or rice, landraces already consist of homozygous pure lines; selecting best phen

Ref: Frey KJ. Iowa State – Mass selection in open-pollinated crops. Hallauer & Miranda Quantitative Genetics in Maize

Mass selection is based primarily on:

Mass selection operates directly on visible phenotypic values of individual plants in a population. Breeder walks field, visually scores traits such as plant height, earliness, seed color, or disease-free appearance, and harvests seeds from best looking individuals to constitute next generation bulk. Underlying genotype is not tested through progeny rows, molecular markers, or combining ability assays. Success depends on high heritability where phenotype mirrors additive genetic value, correlation between observable character and breeding value, and low environmental noise. It is simplest bree

Ref: Gardner CO. Mass selection genetics; Acquaah Chapter 10 – Phenotypic selection basis