A Comprehensive Review on Biofortification in Vegetable Crops
Baddigam Kasi Reddy, Dumpapenchala Vijayreddy, K Bharath Chandra, Shridhar Ramesh Emmi, Suneel Subray Hegde, Barnali Majumder, Dara Prasanth Kumar
Journal of Advances in Biology & Biotechnology · pp. 1448–1458 · Published 16 Aug 2024
10.9734/jabb/2024/v27i81267Abstract
Biofortification is an approach that combines biotechnology and fortification to improve the nutritional profile of staple crops, combating human malnutrition caused by essential vitamin and mineral deficiencies. It involves conventional breeding, biotechnology and agronomic strategies to increase the concentration of plant-derived nutrients and vitamins in edible parts during growth. While not as nutrient-dense as supplements or fortified foods, biofortified crops enhance daily micronutrient intake for all age groups. This sustainable, affordable approach is crucial for addressing micronutrient malnutrition, affecting around two billion people, particularly those with iron deficiency anaemia. Strategies include agronomic biofortification, involving micronutrient fertilizers and conventional breeding and hybridizing varieties for increased micronutrient levels. Genetic engineering enhances nutrient synthesis, while agronomic biofortification improves nutrient absorption and distribution. However, acceptance challenges and regulatory complexities persist. Future efforts should involve collaboration between plant breeders, molecular scientists and nutrition experts to enhance crop nutrition and receive increased funding from various organisations to combat global malnutrition effectively.
References (37)
- 1 Improving nutrition through biofortification: A review of evidence from HarvestPlus, 2003 through 2016 [DOI]
- 2 Biofortification: A New Tool to Reduce Micronutrient Malnutrition [DOI]
- 3 Biofortified Crops Generated by Breeding, Agronomy, and Transgenic Approaches Are Improving Lives of Millions of People around the World [DOI]
- 4 Genetic and genomic approaches to develop rice germplasm for problem soils [DOI]
- 5 How Cost-Effective is Biofortification in Combating Micronutrient Malnutrition? An Ex ante Assessment [DOI]
- 6 Genetic Engineering of a Zeaxanthin-rich Potato by Antisense Inactivation and Co-suppression of Carotenoid Epoxidation [DOI]
- 7 Metabolic engineering of potato tuber carotenoids through tuber-specific silencing of lycopene epsilon cyclase [DOI]
- 8 Variation of quality traits in cassava roots evaluated in landraces and improved clones [DOI]
- 9 Selenium concentration in wheat grain: Is there sufficient genotypic variation to use in breeding? [DOI]
- 10 Genetic diversity, structure and marker-trait associations in a collection of Italian tomato (Solanum lycopersicum L.) landraces [DOI]
- 11 Selenium biofortification of broccoli and carrots grown in soil amended with Se-enriched hyperaccumulator Stanleya pinnata [DOI]
- 12 UTILIZATION OF RELATED WILD SPECIES FOR TOMATO IMPROVEMENT [DOI]
- 13 Molecular interaction between plants and Trichoderma species against soil-borne plant pathogens [DOI]
- 14 Enhancing beta-carotene content in potato by rnai-mediated silencing of the beta-carotene hydroxylase gene [DOI]
- 15 Iron and zinc concentration of native Andean potato cultivars from a human nutrition perspective [DOI]
- 16 Advances in Omics Approaches for Abiotic Stress Tolerance in Tomato [DOI]
- 17 Micronutrients throughout the Life Cycle: Needs and Functions in Health and Disease [DOI]
- 18 Enhanced accumulation of carotenoids in sweetpotato plants overexpressing IbOr-Ins gene in purple-fleshed sweetpotato cultivar [DOI]
- 19 Enhancement of the Primary Flavor Compound Methional in Potato by Increasing the Level of Soluble Methionine [DOI]
- 20 Assessment of carotenoids in pumpkins after different home cooking conditions [DOI]
- 21 Can Biofortified Crops Help Attain Food Security? [DOI]
- 22 Genetic Variation for Potato Tuber Micronutrient Content and Implications for Biofortification of Potatoes to Reduce Micronutrient Malnutrition [DOI]
- 23 Application of GM crops in Sub-Saharan Africa: Lessons learned from Green Revolution [DOI]
- 24 Biofortification of Vegetables [DOI]
- 25 Introduction to Plant Mutation Breeding: Different Approaches and Mutagenic Agents [DOI]
- 26 Biofortification and the involved modern approaches [DOI]
- 27 Policy, Regulation and Attitudes towards Agricultural Biotechnology in Japan [DOI]
- 28 Agronomic Biofortification with Selenium in Tomato Crops (Solanum lycopersicon L. Mill) [DOI]
- 29 Gene expression of beta carotene genes in transgenic biofortified cassava [DOI]
- 30 Targeted mutation breeding of horticultural plants [DOI]
- 31 Soil and foliar zinc biofortification of broccolini: effects on plant growth and mineral accumulation [DOI]
- 32 Accumulation of PrLeg, a perilla legumin protein in potato tuber results in enhanced level of sulphur-containing amino acids [DOI]
- 33 Biofortification of vegetables for the developed world [DOI]
- 34 Study of Zinc Content in Biofortified Tomato [DOI]
- 35 Sweet potato biofortification priority index – a strategic tool for scaling up of biofortified varieties [DOI]
- 36 Enrichment of food staples through plant breeding: a new strategy for fighting micronutrient malnutrition [DOI]
- 37 Glossary of genetics: classical and molecular [DOI]
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