Impact of Auxin and Gibberellin on Vegetable Crops: A Review
Mohd. Faruk, Mashetty Rakesh Kumar, Dhaneshvari Arya, Monalisa Panda, Rakesh Kumar, Pooja Fartiyal, Agnivesh Yadav
International Journal of Environment and Climate Change · pp. 791–798 · Published 22 Aug 2023
10.9734/ijecc/2023/v13i102717Abstract
Plant growth regulators, also known as phytohormones, are a class of organic chemicals, either naturally occurring or artificially synthesised, that exert control over specific physiological processes in plants. The application of these substances elicits a range of effects on vegetables, encompassing seed germination, the disruption of seed dormancy, the commencement of flowering, the induction of gametocidal effects, the promotion of fruit set, the stimulation of parthenocarpy, and the facilitation of fruit ripening, among others. Auxin plays crucial factor in the development of several vegetable crops, including cucurbits. Notably, the application of Naphthalene acetic acid at a concentration of 10 ppm has been observed to exert a significant influence on sex expression, fruit set, and overall production in cucumber plants. The application of 4-CPA resulted in the greatest quantity of commercially viable fruit in tomato plants. The application of Naphthalene acetic acid at a concentration of 40 ppm exhibited the most substantial enhancements in leaf area, percentage of fruit set, total fruit production, as well as the quantity and weight of seeds per fruit in chilli plants. The treatment involving the application of 80 ppm Naphthalene acetic acid in brinjal resulted in the observation of increased fruit length, average weight of fruit per plant, and greatest fruit diameter. Gibberellin is also of significant importance, since it participates in using the gibberellic acid route to produce tomato plants that exhibit enhanced performance in both irrigated and water-limited environments, hence increasing their drought tolerance. The application of GA3 at a concentration of 75 ppm has been found to be highly beneficial in improving vegetative growth and yield characteristics in brinjal, as well as in several other vegetable crops as detailed in the present study. Additionally, they serve a crucial function in augmenting the output and productivity of many vegetables breeding programmes, and ensuring food safety.
Cited by 4
Juliana Chaura, Gabriel Esteban Velez, Diana Carolina Clavijo-Buriticá · ACS Nutrition Science · 2026
Xijie Wang, Zijia Zhao, Shulan Qi · RSC Advances · 2024
Mashael M. Alotaibi, Mohamed M. M. El Nagy, Makhdora Almuziny · Agronomy · 2024
Tabita Queren Pérez-Reyes, Santos Gerado Leyva-Mir, Mario Pérez-Grajales · Revista Fitotecnia Mexicana · 2024
Related research
- Supplemental Pollination with Different Sources of Pollen in Olive (Olea europaea) ‘Manzanilla’ under Hot and Arid Environment — shares topic coverage
- Increasing Fruit Set, Yield and Fruit Quality of "Canino" Apricot Trees under Two Different Soil Conditions — shares topic coverage
- Flowering Phenology and Mating System of a Red Skin Pitaya (Hylocereus spp.) Germplasm Collection in Taiwan — shares topic coverage
- The Effect of Foliar Application of Zinc, Potassium, and Boron on Fruit Set and Retention in Kinnow Mandarin — shares topic coverage
- Agents of Pollination on Fruit Set of Piper nigrum L. — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.