Yield and economics of carrot [Daucus carota (L.)] genotypes as affected by water management and Gibberellic Acid in a changing climate
DOI:
https://doi.org/10.36108/adanja/5202.60.0111Keywords:
Irrigation scheduling, Carrot production, Economic profitability, Genotypic performance, Growth regulatorsAbstract
Carrot is a high-value crop, but its productivity and profitability depend on water management, genotype
selection, and plant growth regulators like gibberellic acid (GA₃ ). This study examined the interactive
effects of these factors on carrot yield and economic returns at two locations: Research and Teaching farm
of Bayero University Kano (BUK) and a community demonstration farm at Maida during the 2019/2020 and
2020/2021 cold dry seasons. A split-plot design was used, testing four irrigation intervals (farmer’s
practice, 5, 7, and 9 days), two genotypes (Touchon Mega and Griffaton), and four GA₃ application rates
(100 ppm applied once, twice, or three times, and a control). Results showed that frequent irrigation
(farmer’s practice, W1) and the 5-day interval (W2) significantly improved yield, net income, and benefitcost
ratio (BCR) at both locations (P < 0.001). The highest yield was recorded under W1V1G1 at BUK
(23,417 kg/ha) and Maida (23,183 kg/ha), with net incomes of ₦6,161,001 and ₦6,183,732, respectively,
and a BCR exceeding 6.0. In contrast, the 9-day interval (W4) led to severe yield reductions and financial
losses, with the lowest net income observed under W4V2G4 at Maida (₦227,900, BCR 0.18) and BUK
(₦277,000, BCR 0.24). Touchon Mega (V1) consistently outperformed Griffaton (V2), confirming its
suitability for high-yield, high-profitability carrot farming. Similarly, GA₃ application (100 ppm × 3)
significantly enhanced yield and economic returns, while the control (no GA₃) had the lowest profitability.
The study concluded that integrating optimized irrigation, superior genotype selection, and GA₃ application
maximizes both productivity and financial sustainability in carrot production.
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