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We assume that the region assigned to a family has over the time influenced the different generations at multiple levels including social, cultural and genetic inheritance, so that transitivity and assortativity may further intensify the cultural and genetic density.
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The relative genetic map density of expressed genes has major implications for plant breeding efforts.
The merged SNP-STR map has a mean genetic locus density of 2.0 cM, and largest gap of 16.0 cM.
This illustrates the gain in location accuracy obtained by a 10-fold increase in genetic marker density.
Recent advances in genotyping capabilities, especially in crops, mean that genetic marker density is no longer the limiting factor for QTL studies in plants.
The average genetic marker density was about seven markers per cM, i.e. about 700 kb in physical distance between each marker on average.
We thus identify more fundamental differences between models, including their treatment of genetic basis, density-dependent demography, and stochasticity.
High density genetic maps of crosses of different genetic backgrounds are indispensable tools for investigating oil palm genetics.
At lower marker densities, genetic gain decreased with decreasing marker density.
Therefore, our QTL mapping by IM and ICIM methods using ultra-high density genetic map is robust and informative.
Genomic resources for cucurbits are scarce, and high density genetic linkage maps have not been reported for cucurbit species.
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