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 Number of Volumes      3
 Number of Issues      10
 Number of Articles      66
 Time to Accept (Days)      27
 Number of Reviewers      162
 Article View     35,876
 PDF Download     28,398

 

 

 

Scientific Rank (Iran Ministry of Science, Research, and Technology): B

 

Greenhouse Plant Production Journal (GPPJ) is an international, peer-reviewed, open access journal publishing research related to horticultural crops. Articles in the journal deal with protected production of vegetablesfruitsornamentals and medicinal plants. Papers in related areas (plant physiology, plant nutrition, biochemistry, micropropagation, soil science, plant breeding, phytopathology, etc.) are considered, if they contain information of direct significance to protected horticulture. Basic molecular studies without any direct application in protected horticulture will not be considered for this journal.

  • Types of paper:
    1. Original full papers (regular papers)
    2. Review articles (should cover a part of the subject of active current interest)

    Original papers should report the results of original research and should be of international and not only regional interest. The material should not have been previously published elsewhere. Reviews should cover a part of the subject active current interest. They may be submitted or invited.

Publisher: Arak University

Language: English

Frequency: Quarterly 

Journal format: Electronic

Review Time: 4-8 Weeks (In average)

The type of arbitration: Double Blind Peer Review

The cost of reviewing, judging, accepting and publishing : Free

Access to the articles of this site and downloading the articles from this journal: Free   

Creative Commons License  This journal is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

This journal is following of Committee on Publication Ethics (COPE) and complies with the highest ethical standards in accordance with ethical laws.

To prevent plagiarism, articles received through the Ithenticate are identified.

 

Optimized 24-Epibrassinolide Application Enhances morpho-physiological traits and Yield in Eggplant (Solanum melongena L. var Aretussa)

Optimized 24-Epibrassinolide Application Enhances morpho-physiological traits and Yield in Eggplant (Solanum melongena L. var Aretussa)

Pages 1-16

https://doi.org/10.66224/gppj.3.3.1

Seyed Mohammad Javad Arvin, Ehsan Salari, Hamid Reza Soufi

Abstract Epibrassinolide (EBL) regulate plant development and environmental stress responses through complex signaling networks, yet optimization of exogenous 24-Epibrassinolide (EBL) application for commercial vegetable production remains underexplored. We investigated dose- and frequency-dependent effects of foliar 24-epibrassinolide (0, 0.5, and 0.75 μM) applied once (AR1) or twice (AR2) on eggplant (Solanum melongena L.) physiological performance, growth, and yield in a 3 × 2 factorial completely randomized design. Eggplant seeds were sown in a cocopeat and perlite growing medium at a ratio of 3:1 and the seedlings were watered daily in greenhouse. Foliar spraying was done in two stages before transplanting (four-leaf stage) in greenhouse and before flowering in farm. After the first foliar spray, the Eggplant seedlings were transplanted to the field and the plants were irrigated every three days throughout the growth period. Optimal EBL treatment (0.75 μM × AR2) elicited coordinated enhancement of photosynthetic capacity and membrane integrity. Chlorophyll metabolism was substantially upregulated, with SPAD values increasing 43%, total chlorophyll content rising 33.3%, and carotenoid accumulation elevated 82.7% compared to controls. Concurrently, cellular membrane stability improved markedly, evidenced by 43% reduction in electrolyte leakage. These physiological modifications translated into accelerated developmental progression 20.7–32.9% increase in vegetative growth and 17.8–21.7% advancement in flowering time culminating in approximately a two-fold increase in yield under the optimal regimen. Our findings demonstrate that strategic EBL application synchronously increased photosynthetic capacity and cellular homeostasis, establishing dual-spray 24-epibrassinolide treatment as an efficacious biostimulant strategy for Solanaceae crop intensification. Elucidating the underlying molecular pathways particularly EBL receptor dynamics and downstream transcriptional cascades—represents a critical next step for optimizing this approach across diverse genotypes and environmental conditions.

How Greenhouse Construction Type Modulates the Chemical Control Efficacy Against Two-Spotted Spider Mite (Tetranychus urticae)

How Greenhouse Construction Type Modulates the Chemical Control Efficacy Against Two-Spotted Spider Mite (Tetranychus urticae)

Pages 17-28

https://doi.org/10.66224/gppj.3.3.17

Mehran Rezaei

Abstract Greenhouse cultivation in Iran has expanded significantly, yet the influence of greenhouse structural characteristics on the efficacy of pest management remains poorly understood. This study evaluated the efficacy of four commonly used acaricides, abamectin, bifenazate, hexythiazox, and spirodiclofen, against the two-spotted spider mite (Tetranychus urticae Koch) in two distinct greenhouse structural types: gothic multispan (height: 600 cm, fan-and-pad ventilation) and wood-framed (height: 223-245 cm, hand-operated ventilation). The experiments were conducted in four cucumber greenhouses in Isfahan Province, Iran, during July 2022. Acaricides were applied at recommended concentrations, and mite mortality was assessed at 3, 7, and 14 days after treatment (DAT) using the Henderson-Tilton formula. Results revealed significantly higher acaricide efficacy in gothic multispan greenhouses compared with wood-framed structures across all sampling intervals. At 14 DAT, the highest efficacy recorded in gothic greenhouses (bifenazate: 85.22%) was nearly double that observed in wood-framed structures (43.27%). Bifenazate and hexythiazox demonstrated superior residual activity (85.22% and 79.10% at 14 DAT in gothic greenhouses, respectively), while abamectin and spirodiclofen exhibited the lowest persistence, particularly in wood-framed structures (33.95% and 30.98% at 14 DAT, respectively). The reduced efficacy observed in wood-framed greenhouses may be associated with suboptimal environmental conditions, including inadequate ventilation, poor air circulation, and limited spray coverage due to lower height. The findings suggest that investing in modern greenhouse infrastructure can substantially improve acaricide performance, potentially reducing spray frequency and delaying resistance development. However, as this study focused exclusively on chemical control, future research should investigate the compatibility of these findings with biological control agents within integrated pest management programs.

Predictive-Adaptive Coordinated Optimization for Multi-Greenhouse Energy Management

Predictive-Adaptive Coordinated Optimization for Multi-Greenhouse Energy Management

Pages 26-50

https://doi.org/10.66224/gppj.3.3.26

Peyman Bayat, Pezhman Bayat

Abstract Rising food demand and the push for decarbonization have made controlled-environment agriculture essential. However, its energy intensity, especially in arid regions, hinders sustainability. This paper introduces the predictive-adaptive coordinated optimization (PACO) framework, a novel control architecture for demand-side energy management in networks of grid-interfaced greenhouses. Departing from population-based metaheuristics, PACO is rigorously grounded in adaptive control theory, recursive online estimation, and distributed optimization. Each greenhouse agent employs an adaptive autoregressive exogenous model with recursive least-squares parameter updating, enabling continuous tracking of seasonal variations, equipment degradation, and sensor drift. A novel correction mechanism, with gains dynamically scheduled based on prediction error and battery state-of-charge, provides robust compensation for forecast mismatches and unforeseen disturbances. An attention-based coordination unit computes lightweight scalar signals that promote global demand flattening without imposing centralized optimization during execution. The framework explicitly enforces physical constraints through penalty-augmented objectives and entropy regularization. Extended simulations, including 30-day horizon, multi-seasonal assessments, and ablation studies on a 10-greenhouse network in a semi-arid climate, demonstrate that PACO reduces total grid import by 29.8%, shaves peak demand by 31.1%, cuts operational costs by 32.9%, and lowers CO₂ emissions by 29.7% compared to benchmark methods, while confirming the synergistic contributions of its three core components. PACO offers a transparent, scalable, and computationally efficient solution for coordinated multi-greenhouses, bridging the gap between physical modeling and online adaptation.

Effects of Urea-N Concentration on Growth, Physiological Traits, Nutrient Status, and Fruit Quality of Container-Grown Highbush Blueberry (Vaccinium corymbosum L. cv. Jewel) in Soilless Culture

Effects of Urea-N Concentration on Growth, Physiological Traits, Nutrient Status, and Fruit Quality of Container-Grown Highbush Blueberry (Vaccinium corymbosum L. cv. Jewel) in Soilless Culture

Pages 51-59

https://doi.org/10.66224/gppj.3.3.51

Razieh Manoochehri, Jamal-Ali Olfati, Yousef Hamidoghli, Mohammad Adibian, Maryam Navabian

Abstract This study was conducted to evaluate the effect of different urea concentrations on vegetative growth, leaf physiological traits, biochemical characteristics, and fruit quality of container-grown blueberry (Vaccinium corymbosum L. cv. Jewel). The experiment was arranged in a completely randomized design with four concentrations of added urea (5, 4, 3, and 2 mmol L⁻¹) supplied in a basal nutrient solution containing 1 mmol L⁻¹ KNO₃- Analysis of variance revealed that urea concentration significantly affected SPAD value, leaf nitrogen content, chlorophyll a, chlorophyll b, total chlorophyll, and carotenoids at p < 0.01, while total fruit fresh weight and antioxidant activity (%DPPH) were significant at p < 0.05. Although urea concentration significantly influenced flower number per bush, fruit number per inflorescence, total fruit weight, fruit number per bush, and yield per bush, the responses were not uniform across all reproductive traits and urea levels. These results indicate that blueberry responses to urea were expressed mainly through changes in leaf nitrogen status, pigment accumulation, and antioxidant capacity rather than through major alterations in plant architecture or basic fruit composition. Overall, the findings suggest that moderate variation in urea concentration can effectively influence physiological and biochemical performance in blueberry without adversely affecting fruit quality. Under the conditions of this experiment, added urea concentration affected growth, physiological traits, nutrient status, reproductive performance, and fruit-quality attributes of container-grown highbush blueberry cv. ‘Jewel’.

Spatial Variability of Greenhouse Crop Water Requirements in Alborz Province, Iran: A Comparison of the Almeria and Solar Radiation Methods

Spatial Variability of Greenhouse Crop Water Requirements in Alborz Province, Iran: A Comparison of the Almeria and Solar Radiation Methods

Pages 60-76

https://doi.org/10.66224/gppj.3.3.60

Saloome Sepehri, Ghasem Zarei

Abstract Greenhouse cultivation is recognized as an effective strategy for enhancing water productivity; however, its success depends on model-based estimation of crop water requirements under regional climatic conditions. To date, no comprehensive study has been conducted on water requirements of greenhouse crops in Alborz Province. This study estimated net water requirements for ten major greenhouse crops in Alborz Province (solanaceous crops, leafy vegetables, and strawberry) using long-term meteorological data from nine weather stations. Reference evapotranspiration was calculated using the Almeria radiation (AR) and solar radiation (SR) methods, with crop coefficients applied to determine net requirements. Spatial patterns and method agreement were evaluated using boxplots, heatmaps, and regression. The results indicated that annual water requirements ranged from 833.8 to 1,189.7 mm, with bell pepper exhibiting the highest and cucumber the lowest requirements. Among solanaceous crops, bell pepper and eggplant showed the highest values and cucumber the lowest, while among leafy vegetables, cabbage exhibited the highest requirement and basil the lowest. A clear spatial gradient was observed, with Eshtehard, Nazarabad, and Meshkin Dasht showing the highest requirements, and Asara, Taleqan, Payam Airport, and Zidasht the lowest. The AR method consistently produced higher estimates than SR, while both methods showed similar spatial patterns and strong correlation. This study provides the first comprehensive database of estimated water requirements for major greenhouse crops in Alborz Province, serving as a preliminary reference for irrigation planning, water allocation, greenhouse licensing, and sustainable development in the region.

Greenhouse Evaluation of Nitric Oxide-Mediated Responses of Yaghooti Grapevine Under Low-Temperature Stress

Greenhouse Evaluation of Nitric Oxide-Mediated Responses of Yaghooti Grapevine Under Low-Temperature Stress

Pages 77-88

https://doi.org/10.66224/gppj.3.3.77

Ehsan Totonchi, Hassan Sarikhani, Majid Rostami, Mohammad Abdoli, Rouhollah Karimi

Abstract Low-temperature is one of the environmental stresses that affect the growth, development and performance of the grapevine. Nitric oxide (NO) is a relatively stable gas radical that prevents the production of reactive oxygen radicals at low concentrations. The present study aimed to investigate the physiological changes created in response to the foliar application of NO (0, 100 and 200 µM) in Yaghooti variety grape plants under two temperature treatments (24 ºC and 4ºC) in greenhouse conditions as a factorial experiment based on a completely randomized design. Based on the results, the application of NO increased the membrane stability in the leaf cells of the treated vines, which documented by lower ion leakage and malondialdehyde content in the vines sprayed with this growth regulator under low-temperature stress. On the other hand, in vines under low-temperature stress, the use of NO resulted in maintaining the concentration of chlorophyll, increasing the content of proline, total soluble sugar, total phenol, total flavonoid, soluble proteins and also caused a significant increase in the activity of antioxidant enzymes under low-temperature stress. By affecting compatible osmolytes, antioxidant enzymes, nutritional elements such as magnesium and iron, NO increased the tolerance of grape plants under low-temperature stress conditions. According to the results, foliar spray of NO especially at 200 µM is recommended to increase tolerance to low-temperature stress in grapes.

The roles of light in a plant factory: photosynthesis efficiency and gas exchange parameters of lettuce as a function of light spectra

The roles of light in a plant factory: photosynthesis efficiency and gas exchange parameters of lettuce as a function of light spectra

Volume 1, Issue 1, Winter 2024, Pages 1-26

https://doi.org/10.61186/gppj.1.1.1

Hamidreza Soufi, Hazem M. Kalaji, Mohsen Hamidpour, Khalil Malekzadeh

Abstract Artificial light source is one of the most important factors for high quality and quantity vegetable production in a plant factory. Aiming to investigate the role of light spectra on growth, chlorophyll fluorescence, photosynthesis and stomata parameters in lettuce plants grown in a plant factory, a factorial experiment was conducted based on a completely randomized design with two lettuce cultivars (Lollo Rossa and Lollo Bionda) and four spectra LED illumination red (656 nm), red/blue (3:1) (656 nm), blue (450 nm) and white (449 nm). The results showed that the combination of red and blue LED light had the greatest effect on stomatal conductance (gs), number of stomata, length and width of stomata in both lettuce cultivars. Also the maximum substomatal CO2 concentration (Ci) was observed in both lettuce cultivars when they were treated with red LED light. The results also showed that the maximum CO2 assimilation rate (PN) was observed in Rossa variety under white LED and in Bionda cultivar under blue LED light. Contrary to the results related to some of photosynthetic parameters, the highest values of vegetative traits (plant height, dry and fresh mass of shoots and roots, leaf number and leaf area) of plants were observed in the treatment of red and blue light combination. It is concluded that plant growth, chlorophyll fluorescence characteristics, photosynthetic and stomatal properties can be affected by different spectra and cultivars of lettuce, so that the choice of proper lighting is a fundamental requirement for the cultivation of this plant

Proper quality of LED light to produce high-quality ornamental plants in controlled environment agricultural systems: A review

Proper quality of LED light to produce high-quality ornamental plants in controlled environment agricultural systems: A review

Volume 1, Issue 2, Spring 2024, Pages 35-50

https://doi.org/10.61186/gppj.1.2.35

sahar azizi, Oksana V Lastochkina, Hanifeh Seyed Hajizadeh, sasan Aliniaeifard

Abstract Light plays a crucial role in plant growth and development, serving as both the main energy source for photosynthesis and an external signal. The use of artificial light (AL) for production of ornamental plants is growing nowadays. It is employed to enhance yield, prolonging the production season, improving product quality, and serve as photoperiodic light for regulating flowering in day length-sensitive species. Achieving successful plant growth with artificial lighting requires a careful balance of quality, intensity, and photoperiod. The numerous benefits of Light-emitting diodes (LED) technology make it an ideal choice for the ornamental industry, offering unparalleled energy efficiency, durability, compact size, long-lasting lifespan, and minimal heat emission. With the ability to carefully manipulate light quality to impact specific characteristics of plants such as architecture, pigmentation, and flowering, it is no wonder the industry is paying close attention to the potential of controlling the growing environment. By utilizing lighting technology, growers can gain various positive outcomes, such as strategic production (with options for early flowering, continuous production, and consistent yields), enhanced plant structure (improved root growth and size, stem elongation, etc), determination of leaf and flower color, and elevated product quality. When it comes to lowering energy and chemical usage (specifically pesticides and plant growth regulators), LED technology provides the floriculture industry with a solid and eco-friendly alternative. In this review paper the significance of ornamental flower production in controlled environment agriculture (CEA), together with the proper lighting strategies for production of ornamental plants are discussed.

Hydroponic fodder for livestock production and productivity: a Review

Hydroponic fodder for livestock production and productivity: a Review

Volume 1, Issue 3, Summer 2024, Pages 1-12

https://doi.org/10.61186/gppj.1.3.1

Mohammad Yahyaei, Baharesadat Talebi

Abstract Green fodder plants serve as a vital source of nutrition for livestock. However, ensuring an adequate supply of these plants for livestock faces with challenges such as limited agricultural areas, water scarcity, and negative impacts from environmental and climatic factors. To address these challenges, various strategies can be employed. Hydroponic fodder production system is new technology that can be used to produce fodder for livestock feed without using land and soil. Hydroponic fodder production has gained significant attention and is a prominent area of research in the field of agriculture. Many countries are actively working towards developing and implementing this technology to enhance livestock feed production. The purpose of this study is to focuses on the chemical composition and nutritional value of hydroponic fodder in livestock production. Also, the effect of feeding hydroponic fodder on livestock production and productivity has been reviewed. This review helps determine the potential benefits and practical implications of incorporating hydroponic fodder into livestock feeding programs.

Optimization of plant growth regulators for in vitro mass propagation of Philodendron cv. Birkin through shoot tip culture

Optimization of plant growth regulators for in vitro mass propagation of Philodendron cv. Birkin through shoot tip culture

Volume 1, Issue 1, Winter 2024, Pages 55-62

https://doi.org/10.61186/gppj.1.1.55

Morteza Akramian, Alireza Khaleghi, Hossein Salehi Arjmand

Abstract In vitro cultures provide a promising tool for large-scale multiplication of valuable plant species with an important role in the global ornamentals industry. In the current investigation, a rapid and efficient protocol was described for in vitro mass propagation of attractive ornamental plant Philodendron cv. Birkin through shoot tip culture. In shoot proliferation stage, 11 treatments of plant growth regulators were evaluated. The highest shoot multiplication was achieved by culturing explants in MS medium containing 3 mg/l benzyladenine (BA) and 0.5 mg/lit indole-3-butyric acid (IBA), resulting in average of 16.65 shoots per explant over a four weeks period. To induce adventitious root formation, the regenerated shoots were subsequently transferred to MS media supplemented with various concentrations of IBA and naphthalene acetic acid (NAA) (0.5-2 mg/l). In this regard, the superior performance of IBA compared with NAA was observed with the best response achieved using 1 mg/l IBA (resulting in a 95% rooting rate) with an average of 6.13 roots per shoot and the root length of 2.59 cm. Finally, the obtained plantlets were successfully acclimatized in a greenhouse, with 100% ex vitro survival rate. This established protocol can serve as an effective alternative to classical propagation methods for mass multiplication of this valuable decorative plant.

The impact of various nitrogen sources and levels on the quantitative and qualitative characteristics of parsley

The impact of various nitrogen sources and levels on the quantitative and qualitative characteristics of parsley

Volume 1, Issue 2, Spring 2024, Pages 61-76

https://doi.org/10.61186/gppj.1.2.61

Reza Abolghasemi, Hossein Saeidi Goraganib

Abstract Parsley possesses a high nutritional content, which includes vitamins A, B, and C, as well as essential mineral nutrients. The purity and chemical composition of fertilizers containing the same element can vary significantly. This difference has an important effect related to the method of usage, time of application, and the effectivity of fertilizers. Nitrate, ammonium, and urea are the primary sources of mineral nitrogen for higher plants, each with distinct chemical properties and varying impacts on plant growth. Hence, to examine the impact of various nitrogen sources on parsley, a study was carried out using a factorial combination of three nitrogen forms (calcium nitrate, ammonium sulfate, and urea) and four nitrogen levels (0, 100, 125, and 150 kilograms per hectare). The study employed a completely randomized basic design with three replications. The findings indicated that all measured parameters were significantly influenced by the nitrogen (N) sources. The greatest fresh weight of shoots, fresh weight of roots, vitamin C concentration in the leaves, and concentration of calcium (Ca) in the leaves were achieved with an application of 150 kg/ha of calcium nitrate. The highest dry weight of shoots, plant height, length of leaves, and iron (Fe) concentration in the leaves were observed with an application of 150 kg/ha of ammonium sulfate. The highest levels of total chlorophyll (a+b) were recorded with an application of 150 kg/ha of urea.

Comparison of the growth, fruit quality, and physiological characteristics of tomato nourished by three different nutrient solutions in soil and soilless culture systems

Comparison of the growth, fruit quality, and physiological characteristics of tomato nourished by three different nutrient solutions in soil and soilless culture systems

Volume 1, Issue 2, Spring 2024, Pages 1-11

https://doi.org/10.61186/gppj.1.2.1

Alireza Khaleghi, Hossein Sharifi Azad, Seyed Hossein Mirdehghan

Abstract To evaluate the effect of different nutrient solutions on growth and yield characteristics of tomato plants, as well as to evaluate the quantitative and qualitative characteristics of fruit in soil- and soilless-cultivation, factorial experiment was carried out with two factors of cultivation system at two levels (soil cultivation and soilless cultivation) and three levels of nutrient solution (Hoagland, Hochmat and Shan) in a completely randomized design with three replications in greenhouse conditions. The results showed that soilless culture medium (cocopeat-perlite) increased vegetative and reproductive characteristics, such as plant height, number of nodes, flowers and fruits, internode distance, number of leaves, leaf area, fresh and dry weight of shoots, fresh and dry weight of roots, stem diameter, and fruit diameter in tomato plants. Many growth and morphological traits, such as leaf area, stem length, stem fresh weight, root dry weight, fruit diameter, leaf number, fruit number and yield were influenced by the interaction effect of nutrient solution and cultivation system. The photosynthetic pigments, and fruit quality traits including fruit appearance color (three components a*, b* and L*), Hue angle, chroma, total soluble solids (TSS), and vitamin C increased in soilless system compared with soil-based system. Hoagland nutrient solution had higher significant effect on increasing quantitative and qualitative traits than other nutrient solutions. In general, soilless cultivation with Hoagland nutrient solution had a significant positive effect on growth and yield characteristics, as well as the quantitative and qualitative characteristics of fruit compared with the other treatments.

The effect of perlite particle size and deficiency of some essential nutrients on growth and physiological characteristics of radish

The effect of perlite particle size and deficiency of some essential nutrients on growth and physiological characteristics of radish

Volume 1, Issue 1, Winter 2024, Pages 63-80

https://doi.org/10.61186/gppj.1.1.63

Mehdi Moradi, Farzaneh Pazoki, Hossein Nastari-Nasrabadi

Abstract This experiment aims to compare the effect of deficiency of macro and micro nutrients and perlite particles size on radish, in the factorial experiment was conducted in a completely randomized design with three replications. Factors include deficiency of nutrient elements (control, nitrogen, phosphorus, potassium, calcium, magnesium, sulfur, iron, boron, and zinc) and growing media tested were small, medium and large perlite particles size. The results indicated that dry and fresh weight of the taproot, dry and fresh weight of the root, dry and fresh weight of shoot, leaf area, numbers of leaves decreased under nutritional deficiencies as among the high consumption nutrients, the nitrogen deficiency had the greatest effect on reducing vegetative traits. The results also showed that the amount of total soluble sugars of leaves in nitrogen and boron deficiency respectively had the highest and lowest increase. Chlorophyll content and chlorophyll fluorescence indices also had the highest and lowest decrease under nitrogen and boron deficiency conditions respectively. The amount of vitamin C in the taproot also decreased under conditions of nitrogen, potassium, phosphorus, magnesium, calcium and iron deficiency. The results also showed that perlite particles size had a significant effect on the value of these indices and the big size of perlite particles caused a significant decrease in growth indices, mineral elements concentration and photosynthetic pigments. According to the results of this study, it seems that the small size of perlite in substrate was better to absorb the nutrients and therefore suitable for proper growth of radish.

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