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1.
J Sci Food Agric ; 101(9): 3551-3563, 2021 Jul.
Article in English | MEDLINE | ID: mdl-33417241

ABSTRACT

Biofortification refers to an approach to increase micronutrient concentrations in the edible parts of plants with increased bioavailability to the human population. Conventional, agronomic and transgenic breeding methods can be used to develop these biofortified crops, offering sustainable and cost-effective strategies. Pea has long been recognized as a valuable, nutritious food for the human diet, but there is a limited amount of information about it, which prevents the full micronutrient enrichment potential of this pulse crop to be reached. Considerations must include not only micronutrient concentrations but also the amount of the nutrient that can be absorbed by the consumer, after processing and cooking. Development of biofortified pea that retains nutrients during cooking and processing is not only essential for fighting micronutrient malnutrition, but also necessary to improve agricultural productivity. © 2021 Society of Chemical Industry.


Subject(s)
Food, Fortified/analysis , Pisum sativum/chemistry , Animals , Biofortification , Humans , Micronutrients/analysis , Micronutrients/metabolism , Pisum sativum/metabolism , Seeds/chemistry , Seeds/metabolism
2.
Genet Mol Res ; 4(1): 67-73, 2005 Mar 31.
Article in English | MEDLINE | ID: mdl-15841437

ABSTRACT

Despite the continuous breeding that has been conducted with asparagus (Asparagus officinalis L.) since the beginning of the last century, there is little information on parameters for predicting direct and indirect selection response. Yield traits for blanched asparagus production were studied along a two-year period in a half-sib family population planted in Zavalla, Argentina. Half-sib family mean heritability values were low for total yield and marketable spear number (0.31 and 0.35), intermediate for marketable yield and total spear number (0.55 and 0.64), and relatively high for spear diameter and spear weight (0.75 and 0.74). An average increase in marketable yield of 15.9% is expected after each cycle of selection of the top 5% of the families. Total yield failed to express significant genetic correlations with any of the yield components; meanwhile marketable yield showed highly significant relations with market spear number (0.96) and spear weight (0.89). Indirect selection response over yield components (CRx) failed to be advantageous over direct selection (Rx), since the ratio CRx/Rx was always equal or below unity.


Subject(s)
Asparagus Plant/genetics , Breeding , Quantitative Trait, Heritable , Selection, Genetic , Asparagus Plant/physiology , Models, Genetic , Phenotype
3.
Genet Mol Res ; 1(1): 90-5, 2002 Mar 31.
Article in English | MEDLINE | ID: mdl-14963817

ABSTRACT

To estimate the heritability values of characters frequently used as selective criteria, 32 half-sib families obtained from selected plants of three populations of the asparagus variety Argenteüil were evaluated in a randomized complete block design. The following characters were measured: days to emergence of the first spear, number and diameter of spears, number of stalks, plant height and average weight. The values of realized heritability were estimated and were compared with those obtained by the parent-offspring regression method. Phenotypic correlation coefficients between the different variables were significant. The values of realized heritability for most of the variables were moderate to high (between 0.18 and 0.68), except for days to emergence; lower values were obtained by the regression method. As there was a high degree of heritability, additive genetic factors contributed significantly to the genetic variance, which would allow the selection of phenotypically superior plants for asparagus improvement projects.


Subject(s)
Asparagus Plant/genetics , Genetic Variation/genetics , Quantitative Trait, Heritable , Asparagus Plant/physiology , Models, Genetic , Phenotype , Selection, Genetic
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