By employing the modified procedures from other plant species, corresponding isolating protocols were established in peanut for development of microsatellites through this study.
Only a few molecular markers have been identified to link with resistance genes in peanut and thus genetic improvement through marker assisted breeding is limited.
The second part consists of eight chapters describing breeding of eight crops: wheat, maize, rice, sorghum, soybean, peanut, potato and cotton.
Later instar larvae feed on developing peanut pods, prior to overwintering deep in the soil.
Expression of the mutated peanut allergen construct will result in the production of hypoallergenic variants that can be used for immunotherapy.
In peanutallergic individuals, subsequent exposure to peanut allergens induces inflammatory reactions largely governed by mast cells, basophils and eosinophils.
Conventional immunotherapy for peanut allergy using crude peanut extracts is therefore not recommended currently because of the unacceptably high risk of anaphylaxis.
Even though peanut is known to be an important agricultural commodity, genomic and molecular studies have lagged behind those on other legumes such as soybean.
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