Comparative nutritional analysis of newly developed interspecific citrus hybrids: multivariate insights for crop
Dhrumeshkumar Chavda1, Narendra Singh2, Nimisha Sharma3
1ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.
Abstract:
Enhancing the quality and nutrient composition of citrus fruits is essential for ensuring food and nutritional security. In the present study, twenty-four newly developed interspecific citrus scion hybrids (16 Orangelos and 8 Tangelos) from 'Pummelo' × 'Mosambi' sweet orange and 'Pummelo' × 'Dancy' tangerine crosses, along with their parental genotypes, were evaluated for fruit physico-chemical attributes, bioactive composition, and mineral nutrient profiles. Significant variation was observed due to heterozygosity-driven transgressive segregation in the interspecific hybrid progenies. Fruit physico-chemical parameters ranged as follows: juice recovery (6.20-49.52%), juice pH (3.30-4.73), juice TA (0.65-3.42%), juice TSS (7.90-13.33), ascorbic acid (26.00-52.00 mg 100 ml- 1 juice), total phenols (35.33-199.83 mg GAE 100 ml- 1 juice), total flavonoids (17.67-85.33 mg QE 100 ml- 1 juice), and antioxidant activity (1.21-5.20 µmol TE ml- 1 juice). Juice mineral nutrient levels were in the following descending order: potassium (94.87-1467.13 mg L- 1) > calcium (290.20-561.07 mg L- 1) > phosphorus (43.41-171.29 mg L- 1) > magnesium (29.76-82.02 mg L- 1) > iron (1.33-7.08 mg L- 1) > zinc (1.34-2.32 mg L- 1) > manganese (0.56-1.29 mg L- 1) > copper (0.54-0.86 mg L- 1), suggesting considerable genotypic variation following interspecific hybridization. Higher estimates of genetic variability and heritability for juice mineral nutrients and bioactive compounds indicate strong potential for trait-based selection and efficient genetic improvement of citrus fruits. Multivariate analysis and the MGIDI-based approach identified four interspecific scion hybrids, namely 'Orangelo 2-3', 'Tangelo 8-19', 'Orangelo 13 - 6', and 'Orangelo 7 - 4', as the most promising.
Related Concept Videos
Key Elements for Plant Nutrition
Light Acquisition
The Calvin Benson Cycle
Plant Breeding and Biotechnology
Fruit Development, Structure, and Function

