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In centres of crop origin and regions where sexually compatible plants occur, transfer of HR genes to wild relatives can be expected.
In centres of crop origin and regions where interfertile weeds, which can hybridize with crops, are present, gene flow from crop to weeds should be taken into account.
These effects become particularly relevant in centers of crop origin and diversity [1].
Further research is needed on the interactions between formal and informal seed systems and grain markets in centers of crop origin and diversification.
Current models of transgene dispersal focus on gene flow via pollen while neglecting seed, a vital vehicle for gene flow in centers of crop origin and diversity.
If this is the case, the upper limit of heterozygosity will be largely determined by the least-cost distance from the crop origin.
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A spatially explicit model would be needed to integrate archaeobotanical and genetic evidence of crop origins and dispersal routes.
This provides greater computational speed, allowing for the evaluation of alternative locations of crop origins and of different variables of potential influence on crop dispersal.
However, the archaeological findings associated with crop origins are limited.
Our work thus contributes to a growing body of literature showing that crop origins are genetically more complex than once thought.
Safflower (Carthamus tinctorius L). is a diploid oilseed crop whose origin is largely unknown.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com