September 2026
June 2026
March 2026

Journal Metrics: 

           -

Number of Volumes 9

Number of Issues 35

Number of Articles 301

Number of Contributors 803

Article View 353,151

PDF Download 285,586

PDF Download Per Article 948.79

           

Acceptance Rate (%) 44

Number of Indexing Databases 38

h-index Google = 20

i-10 index = 63

Citations = 1944

ISC (2024) = Q1 

MSRT (2023) = International

Scopus CiteScore (2025) = 1.9

Scopus Rank (2025) = Q3

Peer Review Policy: Double Blind Peer Review

Submission to First Post-review Decision: 3-4 months

Frequency: Quarterly in March, June, September, and December

Open Access Journal Support - APC: Foreign Authors (No Publication Charge)

Since March 2025 JHPR also has offered a fast-track review and publication option. If the final paper is accepted, your paper will be published within 3-4 weeks after acceptance and payment. Fast-track should be requested within 2 days after submission to jhpr2018@gmail.com and jhpr2024@gmail.com   

   

Journal of Horticulture and Postharvest Research aims to provide a forum for original investigations in horticulture. The journal publishes original research, short communication and review articles which cover applied and theoretical aspects in all areas of horticulture - fruit growing, vegetable growing, ornamental and medicinal plants. Papers on biotechnology, breeding, plant stress and nutrition, postharvest physiology and technology are also welcome (Journal Scope).


Original Article Medicinal Plants

Essential oil components, antioxidant capacity, and fatty acid profile of water mint (Mentha aquatica L.) as affected by various drying methods

Pages 377-392

https://doi.org/10.22077/jhpr.2025.9331.1513

Mozhgan Shoghi Jamil, Ali Mehrafarin, Vahid Abdossi, Kambiz Larijani, Raheleh Ebrahimi

Abstract Purpose: The drying process is an outstanding factor influencing secondary metabolites in medicinal plants. Although the impact of drying techniques has been addressed in some medicinal plants, there is limited data to describe the essential oils (EO) and fatty acids (FA) profiles in aerial parts of medicinal plants using traditional and modern drying techniques. Research method: This research compared the EO content and composition, antioxidant capacity, and FA profile of aerial parts of water mint (Mentha aquatica L.) dried using various techniques, including sun, shade, conventional oven and vacuum oven (each of them at 40, 45, and 50 °C), and microwave (200, 400, and 600 W). Findings: The results showed that the minimum antioxidant potential (with maximum IC50: 113 µg mL⁻¹) was reported in sun-exposed samples. At the same time, the highest EO content was found in shade-dried samples, followed by oven at 40 °C and vacuum at 40 °C. The primary EO compounds were 1,8-cineole, menthol-furan, trans-caryophyllene, germacrene D, and viridiflorol. Shade and oven drying resulted in higher monoterpenes, while vacuum and microwave drying led to elevated sesquiterpenes. Vacuum drying at 40 °C produced the highest levels of saturated fatty acids, but microwave drying, specifically at 600 W, had the highest levels of polyunsaturated fatty acids compared to other drying methods. According to agglomerative hierarchy clustering (AHC) results, fresh samples were grouped with shade-drying. Research limitations: There was no limitations. Originality/Value: The current study shows that, after suggesting shade conditions, we may use the oven at low temperature and vacuum to produce water mint products of excellent quality.

Original Article Medicinal Plants

Additive effects of Trichoderma harzianum and TiO2 nanoparticles on growth, cadmium stabilization and macroelements absorption of Mentha piperita L. under cadmium stress

Pages 393-414

https://doi.org/10.22077/jhpr.2026.9382.1518

Tala Nikbin, Fatemeh Nejadhabibvash

Abstract Purpose: Nowadays, heavy metal pollution of soils has become a serious environmental concern and a potential threat to human health. Peppermint (Mentha piperita L.) is a medicinal and aromatic plant belonging to Lamiaceae family that its essential oil is used in different pharmaceutical industries. This study focused on the effects of arbuscular mycorrhizal fungi (AMF) and different concentrations of titanium dioxide nanoparticles (TiO2 NPs) addition on the growth, absorption of macronutrients, migration and bioaccumulation of cadmium in soil- peppermint system. Research Method: A factorial experiment was conducted in a completely randomized design with three factors. The first factor was TiO2 NPs (0, 200, and 300 mg/kg), the second factor included Cd-spiked soil (0 and 50 mg/kg soil) and third Trichoderma harzianum. Findings: Our results showed cadmium caused negative effects on the growth of peppermint except for shoot and root length. The concentration of all the nutrients assessed (nitrogen and phosphorus) decreased in the presence of cadmium. Mycorrhization under cadmium stress conditions significantly increased nitrogen concentration in roots and shoots by 15% and 3%, respectively, respect to Cd treatment group. Following mycorrhizal inoculation under cadmium stress conditions, phosphorus concentration significantly increased in roots and shoots by 33% and 12%, respectively, respect to Cd treatment group. Similarly, application of TiO2 nanoparticles at 200 mg/Kg and 300 mg/Kg concentrations alone and in combination with mycorrhizal soil amendments in stress as well as non-stress conditions effec­tively enhanced nutrient acquisition. With the addition of TiO2 NPs and mycorrhiza to soil, the phytoavailability and uptake of Cd by peppermint roots increased. Research limitations: There was no limitation. Originality/Value: Our research demonstrates that applying AMF and TiO2 NPs could be a sustainable approach to enhancing growth parameters of peppermint plants under Cd stress by improving nutrient acquisition and immobilizing the heavy metal Cd. The results obtained here can provide scientific data for the use of Mentha piperita L. in the remediation of Cd-contaminated soil.

Original Article Tropical Fruits

Phytochemical composition and antioxidant activities of king orange (Citrus reticulata × sinensis) cultivated in the Mekong Delta, Vietnam

Pages 415-426

https://doi.org/10.22077/jhpr.2026.9449.1522

Xuan Phong Huynh, Ngoc Thanh Nguyen, Minh Chau Luu, Thi Ngoc Bich Bui, Hoang Dang Long Bui, Bach Long Tran, Thi Kim Ngan Tran

Abstract Purpose: King orange (Citrus reticulata × sinensis) is a fruit spices native to tropical and subtropical regions that holds significant economic and nutritional value and is widely consumed in daily life. The primary chemical constituents of king orange include flavonoids (such as hesperidin and naringin), organic acids, vitamin C, and phenolic compounds. Due to its unique biological properties, nutritional benefits, and divers pharmacological effects, king orange is not only a widely consumed fruit but also a promising ingredient for developing natural functional foods, pharmaceuticals, and cosmetics. This study investigated the distribution of bioactive compounds and the antioxidant capacity in different tissues of king orange cultivated in four provinces of the Mekong Delta, Vietnam. Research Method: Physical characteristics of the fruit were analyzed, and phytochemical screening was performed identify  secondary metabolites. Flavonoid and phenolic contents were quantified, and antioxidant activity was assessed using the DPPH assay. Findings: The fruits had thick, juicy flesh (42.4-51.2% w/w) and thin peel (27.2-35.2% w/w). Alkaloids, flavonoids, phenolics, and saponins were detected in both juice and peel extracts, while terpenoids were found only in the peel. The juice had the highest flavonoid and phenolic content, followed by flavedo and albedo extracts. Antioxidant activity was highest in the juice from "Can Tho" and in the peel extracts from "Vinh Long". Research limitations: No limitations were encountered. Originality/Value: Orange juice and peel are rich in bioactive compounds with antioxidant properties, highlighting their potential for health-promoting applications. Citrus reticulata is not only a widely consumed  fruit but also a promising raw material for the development  of natural functional food, pharmaceutical, and cosmetic products.

Original Article Plant Nutrition

Effects of nitrogen levels on growth, photosynthesis, and nutrient interactions in sour orange seedlings grown in nutrient solution

Pages 427-444

https://doi.org/10.22077/jhpr.2026.9539.1527

Farnaz Kargar, Abbas Mirsoleimani, Mahdi Najafi-Ghiri

Abstract Purpose: Nitrogen (N) plays a crucial role in citrus growth, but its deficiency or excess can disrupt nutrient balance and physiological functions in plant. This study investigated how varying N levels (2, 4, 8, 16, and 32 mM) affect growth, photosynthesis, root morphology and nutrient interactions in sour orange (Citrus aurantium L.) seedlings. Research Method: Seedlings were grown in nutrient solutions with different N concentrations. Biomass, photosynthetic efficiency (Fv/Fm, PI), chlorophyll content, nutrient uptake, and nitrate reductase activity were analyzed. Findings: Maximum and significant plant dry weight (4.95 g), root length (51.5 cm), chlorophyll content (8.6 mg g⁻¹ FW), and photosynthetic efficiency (Fv/Fm = 0.73; PI = 4.2) occurred at 16 mM N compared to 2 mM N. In contrast, N deficiency (2–8 mM) reduced growth and photosynthetic performance, while N toxicity (32 mM) decreased plant biomass by 50%, impaired chlorophyll synthesis, and disrupted photosystem II efficiency (Fv/Fm = 0.55). Excessive N (32 mM) altered nutrient homeostasis, increasing root Ca and K concentration by 0.82% and 2.49% respectively but reducing their translocation to shoots, elevating the Ca/K ratio a key indicator of K deficiency risk in calcareous soils. Nitrate reductase activity declined under toxicity, reflecting suppressed N assimilation. Root N/Ca ratio decreased with increasing in N concentration and Ca/K ratio of root in N16 and N32 treatments was higher than that in other N treatments. Phenolic compounds accumulated in roots under high N, suggesting oxidative stress mitigation. Research limitations: No limitations were found. Originality/Value: Excessive N disrupts nutrient balance, photosynthetic inhibition, and growth suppression while 16 mM N optimizes sour orange growth.

Original Article Olericulture

Influence of ‘developmental stage’ and ‘variety’ on physicochemical characteristics, total phenolics, and antioxidant activity of melon fruits cultivated in Iran

Pages 445-464

https://doi.org/10.22077/jhpr.2025.9657.1543

Elnaz Soleimanyfard, Kambiz Mashayekhi, Seyed Javad Mousavizadeh, Mehdi Zarei

Abstract Purpose: A study was carried out to investigate the influence of different fruit development stages on the physicochemical attributes, total phenolics, and antioxidant activity of two Iranian melon varieties for optimal harvest time. Research method: The research was conducted two times i.e. in 2023 and in 2024. It was a factorial experiment in a Completely Randomized Design (CRD) with four replications. The factors were developmental stage harvest (three stages, viz., 30, 40, and 50 days after fruit set) and variety (two varieties, viz., ‘Chaghercheh’ and ‘Zamcheh’). Findings: There were significant differences among the different harvest times in all parameters evaluated for both varieties. The fresh weight and related dimensions, and thickness and percentage of pulp of the fruits increased throughout the developmental stages, while fruit firmness, peel thickness, percentages of peel and seed showed a descending trend in the same period. At 50 days after fruit set, both melon varieties exhibited high levels of total soluble solids and pH, but low titratable acidity, resulting in high maturity index. As the fruits developed and matured, levels of ascorbic acid, total phenolics, and antioxidant activity reduced dramatically in both varieties. Also, statistically significant differences were detected between the two melon varieties in all factors measured. The antioxidant activity positively correlated with total phenolics (r = 0.910) and ascorbic acid (r = 0.891). Research limitations: No limitations were found. Originality/Value: Overall, the data of this research revealed that the degree of maturity and the variety are main parameters controlling the physicochemical characteristics, total phenolics, and antioxidant activity of melon. Also, the study provides basis for optimal harvest time for ‘Chaghercheh’ and ‘Zamcheh’ melon varieties.

Original Article Plant Stress

The effect of seed priming with allantoin and serotonin on germination and growth indices of bitter melon under salt stress

Pages 465-480

https://doi.org/10.22077/jhpr.2026.9896.1560

Masoomeh Amerian, Gholamreza Gohari, Saeid Jalali-Honarmand, Sima Panahirad, Georgia Ntatsi

Abstract Purpose: Salinity stress is one of the most important limiting factors affecting all plant processes, from seed germination to seedling development and plant growth. Seed priming is the most promising seed technique which quickens the germination process and enhances stand establishment. Therefore, seed priming with allantoin and serotonin was performed to investigate their effects on germination and growth of bitter melon seeds under salt. Research method: The experiment was conducted as a factorial experiment in a completely randomized design with three replications. The first factor consisted of three concentrations of salinity (0, 50 and 100 mM NaCl) and the second factor included seed priming (48 h) with modulators: control (distilled water), allantoin (1000 μM), serotonin (100 µM) and allantoin + serotonin. After 48 h of applying the priming treatments, the seeds were dried and placed in 9 cm diameter petri dishes lined with filter paper, moistened with the prepared salt solutions, and allowed to germinate at 25 °C. Germination percentage, seed vigor and selected growth characteristics including length, fresh and dry weight of seedling, shoot and root of bitter melon were evaluated. Findings: The results revealed that seed germination and seedling growth of bitter melon decreased in line with increasing salt concentrations: on the other hand, seed priming with allantoin (1000 μM) and serotonin (100 µM) alleviated this negative effect of salt stress. It was concluded that allantoin and serotonin, as seed priming agents, positively influenced bitter melon germination under salt stress. These findings may also be applicable to other plants and probably the observed stress tolerance might occur throughout the plant growth period. Research limitations: No limitations were identified. Originality/Value: Given the medicinal value of bitter melon, solving its germination problem, especially under salt stress conditions, will be of great help to those interested in cultivating this plant.

Postharvest Biology and Technology

Breadnut (Artocarpus camansi Blanco): A review of postharvest physiology, quality management, processing and utilization

Volume 4, Issue 2, Spring 2021, Pages 199-218

https://doi.org/10.22077/jhpr.2020.3673.1164

Majeed Mohammed, Lynda Wickham

Breadnut (Artocarpus camansi Blanco): A review of postharvest physiology, quality management, processing and utilization

Abstract Purpose: This paper provides an in-depth critical review and analysis of recent research undertaken to optimize quality during harvesting, postharvest handling, processing and utilization of breadnut (Artocarpus camansi Blanco). Findings: This treatise provided a comprehensive review on the significance of breadnut as an ideal staple and famine food due to its abundance, processing options, high percentage of complex carbohydrates, unique flavor and culinary qualities. Market potential for this fruit across the globe and its projection to multiply is reviewed as related to increasing demand for fiber rich fruits, utilization in ethnic cuisine and in traditional medicine. The fruit is highly perishable with a shelf life of not more than 2-3 days under ambient conditions. Breadnut rapidly transforms when harvested mature green after 2-3 days to a soft texture and the outer skin of the milky white seeds change to a brown, brittle, tough netlike rind while the flesh changes from a white colour to a light yellow colour. The combined effects of rapid softening and high susceptibility to chilling injury contribute immensely to its short shelf life. Limitations: There were no significant limitations as the literature was available and access to communicate with authors were easily facilitated by the internet. Directions for future research:This istheonly review which collated the findings on postharvest physiology and utilization of breadnut. This information will be useful for tree breeding programs, in order to popularize breadnut as a commercial crop and promote food security at the household and community levels.

Plant Nutrition

Effects of organic and inorganic fertilizers, and mulching on growth and yield of cabbage (Brassica oleracea var. capitata L.)

Volume 2, Issue 2, September 2019, Pages 95-104

https://doi.org/10.22077/jhpr.2019.2119.1042

Saleha Farjana, Md Ashraful Islam, Tamanna Haque

Abstract Purpose: Cabbage is important fresh vegetable crop in most of the countries of the world. The experiment was conducted to evaluate the growth and yield of cabbage (Brassica oleracea var. capitata L. cv. Atlas-70) as influenced by organic and inorganic fertilizers, and mulching. Research methods: The experiment comprised of two different factors such as, factor-A; four different types of fertilizers viz. F0 (control, no fertilizer), F1 (vermicompost), F2 (inorganic fertilizer), and F3 (mixed of organic and inorganic fertilizer) and factor-B; types of mulches viz. M0 (control, no mulch), M1 (water hyacinth), M2 (rice straw), M3 (black polythene). This two factors experiment was conducted in Randomized Complete Block Design (RCBD) with three replications. Findings: Significant variation was found among the treatments. Result showed F3M3 (combination organic and inorganic fertilizer with black polythene) had the highest growth (plant height, stem length, root length, number of roots etc.) and yield (105.93 t/ha) in cabbage. The yield was 63.92% higher from the combined effect of fertilizer and mulch as black polythene (F3M3) compared to control (F0M0). So, mineral fertilizer and vermicompost with black polythene had the best performance considering the growth and yield of cabbage. Research limitations: Evaluation of different ratios of organic and inorganic fertilizers with mulching could have better outcome or findings of this work. Originality/Value: Combination of organic and inorganic fertilizers with black polythene as mulch have showed the highest growth and yield outcome of cabbage compared to other treatments combinations.This work has the opportunity to reduce the application of inorganic fertilizer to improve the soil health and environment in long run.

Postharvest Biology and Technology

Post-harvest losses in different fresh produces and vegetables in Pakistan with particular focus on tomatoes

Volume 4, Issue 1, Winter 2021, Pages 71-86

https://doi.org/10.22077/jhpr.2020.3168.1125

Nida Firdous

Abstract Purpose: International agencies have advocated that monitoring food security and world food resources are necessary to meet the needs of growing populations and to minimize postharvest losses. This paper focuses on the biochemical and physiological bases of changes that causes post-harvest losses and ways to mitigate them. By controlling these metabolic changes, some degree of preservation is possible. Findings: Postharvest losses are 30-50% in developing countries due to energy crisis and lack of proper handling procedures and refrigeration; in contrast to less than 15% in developed countries. Highly perishable commodities like fruits and vegetables are living entities which are characterized by life evolving activities like respiration, transpiration, ripening and metabolic changes. Various compositional changes, such as chlorophyll degradation, softening, and ascorbic acid losses can result in short shelf life. Total 63 species of vegetables are grown in Pakistan but onions, potatoes, tomatoes, garlic, green chilies, coriander, spinach, pumpkin and okra are mostly grown and consumed. Limitations: In Pakistan due to energy crisis and economic constraints no cold food chains/transport is available as a result of which fresh produce endured post-harvest losses.  There is a need to use production technologies supplemented with postharvest techniques to mitigate postharvest losses.Directions for Future Research: Many new technologically viable preservation techniques like modified atmosphere packaging and controlled atmosphere storage should come into existence due to increased health consciousness, increased purchasing power and an increase in percentage of postharvest losses (25-80% fresh produce) which could be applied with such economic constraints.

Medicinal Plants

Environmental and physiological determinants of growth and phytochemical variation in Kratom (Mitragyna speciosa): A review

Volume 8, Issue 4, Autumn 2025, Pages 561-580

https://doi.org/10.22077/jhpr.2025.9870.1557

Bujaningrum Ega Agustina, Berna Elya, Roshamur Cahyan Forestrani

Abstract Purpose: Kratom (Mitragyna speciosa) is a tropical plant native to Southeast Asia, widely used for traditional and emerging therapeutic purposes. This review investigates the environmental and physiological determinants of phytochemical variation in Mitragyna speciosa (kratom), with a focus on optimizing alkaloid yield and raw material quality. As kratom gains commercial traction, particularly in Western markets, the need for standardizing cultivation practices becomes increasingly urgent. Findings: Geographic origin significantly influences mitragynine content, with native Southeast Asian samples displaying higher and more consistent levels than those cultivated elsewhere. Environmental factors such as light exposure, temperature, soil acidity, and nutrient composition play crucial roles in modulating both plant morphology and secondary metabolite biosynthesis. Internally, leaf maturity, organ specificity, and vein color are linked to variable alkaloid profiles, reflecting genetic and developmental influences. Alkaloid biosynthesis is regulated not only by climate and geography but also at the molecular level through gene–environment interactions.  Studies across continents and related species further underscore the diversity and adaptability of the genus. These findings suggest that integrated, site-specific agronomic strategies are essential to support kratom’s evolution as a standardized phytopharmaceutical. Limitations: Most existing studies are regionally constrained, lack standardized methodology, and rarely incorporate multi-site or molecular validation, limiting their broader applicability. Directions for future research: Future work should prioritize field-based, multi-environment trials to validate the effects of environmental variables on alkaloid biosynthesis and biomass traits. In addition, controlled environment experiments, genetic profiling, and enzyme-specific biosynthetic studies are essential to refine cultivation protocols and support regulatory frameworks. Integrative agronomic and phytochemical modeling is also needed to guide the development of standardized and high-quality kratom production systems.

Plant Growth Regulators

Effect of plant growth regulators on control of saffron (Crocus sativus L.) corm dormancy

Volume 2, Issue 2, September 2019, Pages 167-176

https://doi.org/10.22077/jhpr.2019.2383.1050

Somaye Amini, Seyed Mahdi Ziaratnia

Abstract Purpose: Saffron (Crocus sativus L.) is a valuable medicinal plant with a short flowering period. Its flowering management can be useful for the production of saffron in a farm or controlled condition. The objective of this study was to determine the effect of plant growth regulators (PGRs) on saffron corms sprouting. Research method: For this purpose, corms were treated with different PGRs including α-naphthaleneacetic acid (NAA) (0, 100, 200, 300 ppm), chlorocholine chloride (CCC) (0, 100, 200, 300 ppm) and gibberellic acid (GA3) (0, 5, 10, 20 ppm) for two hours and incubated at 20-22 °C for eight weeks. Findings: The results revealed that the effect of PGRs on corms sprouting was significant. It has been shown that treatment of corms with auxin at all concentrations reduced sprouting compared to the control. To prolong dormancy for five weeks, NAA at 200 mg L-1 was the best choice. While for the fifth week onwards, the most effective treatment was NAA at 100 ppm. Treatment with GA3 (20 ppm) has shown a stimulatory effect on corm sprouting. Research limitations: No limitations were founded. Originality/Value: Sprouting acceleration can keep flowering away from early autumn frosting in farm conditions, while prolongation of corms dormancy provides the possibility of harvesting saffron flowers in several times in a hydroponic system. The results of this study suggested two kinds of chemical for different purposes, inhibition and stimulation of sprouting of saffron corms that can be applicable for saffron hydroponic or farm production, respectively.

Biotechnology and Tissue culture

In vitro propagation of Tunisian local garlic (Allium sativum L.) from shoot tip culture

Volume 1, Issue 2, September 2018, Pages 75-86

https://doi.org/10.22077/jhpr.2018.1457.1016

Chadha Ayed, Chokri Bayoudh, Awatef Rhimi, Najla Mezghani, Faouzi Haouala, Bouthaina AL Mohandes Dridi

Abstract Purpose: Tunisian garlic is widely threatened by the attack of several viruses genus. For this purpose, a reliable protocol was established for rapid in vitro propagation of local garlic (Allium sativum L.) cultivars for large-scale production of virus-free plants and high quality bulblets. Research method: Well disinfected shoot-tips of 1 mm were used as explants and cultivated on MS basal solid media enriched with various growth regulators: 6-Benzylaminopurine, α-Naphthaleneacetic acid, Kinetin, Indole-3-butyric acid and 2-isopentenyladenine for assessment of shoot formation, shoot proliferation and bulb formation. Findings: Among the different phytohormone concentrations and combinations, MS basal medium without any growth regulators (M0) was found optimal for shoot-tip initiation (96% explants development) and plantlets elongation (56.26 mm). For shoot proliferation, the Mculture medium containing 1 mg L-1 BAP and 0.25 mg L-1 NAA was the best, giving a multiplication rate of 1.7 plantlets/explant. Shoots on Mculture medium formed bulblets earlier. Multiple bulblets per explants were obtained on medium M22 containing 2 mg L-1 Kin and 0.1 mg L-1 NAA. Separated bulblets were transferred individually on bulbification media. Non-dividable bulblet was developed in various sizes. Research limitations: Bulblet acclimatization step needs to be well studied for high quality cloves production. Originality/value: This efficient optimized in vitro protocol will be successfully applied for large multiplication of virus-free garlic cultivars.

Postharvest Biology and Technology

Enhancing the shelf life of tomato fruits using plant material during storage

Volume 3, Issue 2, September 2020, Pages 347-354

https://doi.org/10.22077/jhpr.2020.2946.1109

Muhammad Ahmad, Musa Mohammed Abubakar, Sani Sale

Abstract Purpose: Postharvest losses of fruits and vegetables are major problem for countries that agriculture is one of the source economy and that losses in tomato have reported from 20 to 50%. It is one of the very perishable fruit and it changes continuously after harvesting. The aim was to evaluate the effect of guava (Psidium guajava) and physic nut (Jatropha curcas) leaf extract on fresh ripe tomato fruits. Research method: Two tomato varieties obtained (UTC and Tandilo) from Gombe Main Market and were then treated with aqueous and ethanolic extract of Psidium guajava and Jatropha curcas leaves to extend their shelf life and maintain the quality of tomato fruits during storage. The experiment was laid out using completely randomized block design, (CRBD). Number of days to deterioration was recorded on visual eating quality. The recorded data were analyzed using analysis of variance. Findings: Ethanolic extracts of P. guajava and J. curcas was highly effective on UTC variety. The postharvest decay that was the main quality factor in this experiment significantly reduced in Tandilo and UTC tomato fruits after using 2.5g/1000ml ethanolic J. curcas leaves extract by 24 and 25 days respectively; and 22 and 23 days after using 2.5g/1000ml ethanolic P. guajava leaves extract. Limitations: No limitations were founded. Originality/Value: These findings indicate that application of leaves extracts proved to be effective in extending the shelf life of test tomato fruits.

Keywords Cloud