Investigating the effect of urban sewage and industrial effluent on the morphological characteristics and amount of elements of plants in the green area of Ardakan Pellet Factory
https://doi.org/10.22034/NBR.12.3.2
Mehsa Arami, Jalal Gholamnezhad, Mostafa Shirmardi
Abstract The water crisis in desert areas, including Ardakan city, has caused some industries to use industrial effluents and urban sewage as water sources to irrigate green spaces for the development of green spaces. Chadormello Industrial Complex is one of the industries that, in line with the management of this crisis, irrigates the green space created there with the water resources available at the factory site, i.e. industrial effluent and purified urban sewage. The purpose of this research is to investigate some morphological and physiological traits of a number of plants cultivated in this complex, which are irrigated with the mentioned water sources or gray water. This research is in the form of a complete randomized block design with three water treatments including three types of urban sewage treatment water, industrial wastewater and a mixture of both types of water in three replications for six plant species: olive, eucalyptus, pomegranate, Tehran pine, Egyptian silk and bitter elder. Investigating the morphological characteristics of height and diameter of the trunk and measuring the physiological characteristics including the amount of some elements including iron, zinc, manganese, copper, cadmium and lead were done. The results showed that among the three applied treatments.
Study of ecological and environmental conditions of Talar river using epilithic and epipylic diatoms
https://doi.org/10.22034/NBR.12.3.3
Naser Jafari, Ali Taravati, Aref Sheikh Amiri
Abstract This study aimed to assess the ecological and environmental conditions of the Talar River using epilithic and epipelic diatoms. Sampling was conducted seasonally from summer 2023 to spring 2024 at three selected stations. Simultaneous with diatom sampling, one-liter water samples were collected to measure physical and chemical parameters. Diatom samples were prepared and identified based on standard protocols. In total, 84 species from 24 genera were identified. The most diverse genera were Navicula, Nitzschia, and Gomphonema. Navicula cryptotenella had the highest cell abundance, followed by Nitzschia palea and Navicula rhynchocephala. Diversity indices such as Shannon, Simpson, and species evenness showed no significant spatial difference. The results of the Canonical Correspondence Analysis (CCA) between environmental variables and epilithic species showed that the first and second axes explained 41.09 and 14.81% of the total variance, respectively, accounting for 55.9% of the constrained variance. For epipelic species, the first and second axes explained 37.37 and 14.40% of the total variance, respectively, and together accounted for 51.77% of the constrained variance. Moreover, the analysis revealed a strong correlation between environmental variables (especially pH and phosphate) and diatom community structure in both habitats, underscoring the role of environmental factors in shaping their distribution patterns.
Effect of fertilization and tuber age on morphological characteristics of Iranian black zira (Bunium persicum Boiss.)
https://doi.org/10.22034/NBR.12.3.4
seyedeh maryam mousavian kalat, latifeh pourakbar, majid azizi
Abstract Iranian black zira is an aromatic and medicinal plant from Apeaceae family. In order to investigate the effect of fertilization and tuber age on plant height, greening percentage, flowering percentage, and yield components, an experiment was conducted in field conditions in the form of 9 main plots including NPK fertilizer at three levels (control ), fertilizer 1(2.5 grams per liter), fertilizer 2 (with a concentration of 2 times and 5 grams per liter) and tuber age at two levels of three and four years (medium and three-year-old tubers ) was carried out in, fertilizer with 2 times concentration) and tuber age at two levels (three and four years old) was carried out in 1402-1403 in Kalat region of Khorasan Razavi.The results showed that tuber weight has a direct and positive effect on the percentage of germination, flowering, plant growth and yield. The highest percentage of greening (100%) and flowering (100%) was observed in large tubers and the lowest percentage of greening (51%) and flowering (16.93) was observed in medium tubers and 0 fertilizer (no fertilization).application of 20-20-20 fertilizer (NPK) and use of tubers with more age (weight) improved the growth and yield of Iranian black zira.
Evaluation of the effect of salinity stress and different planting methods on root characteristics, allometric coefficient and grain yield of Galega officinalis
https://doi.org/https://doi.org/10.22034/NBR.12.3.1
Naser Samsami, Jalal Jalilian, Esmaeil Gholinezhad, Raheleh Tahmasebi
Abstract This study was conducted in a randomized complete block design with three replications with aimed to investigate the effects of different levels of salinity stress on root traits, allometric coefficient, and grain yield of Galega in three cultivation conditions (greenhouse, outdoor pots, and field) during 2024 cropping year. The results of variance analysis in greenhouse conditions showed that salinity stress had a significant effect on root diameter, root dry weight, and leaf dry weight. Specifically, salinity stress of 10 and 5 dS/m caused a 49 and 16 percent reduction in root diameter, 27 and 8 percent in root dry weight, and 49 and 10 percent in leaf dry weight, respectively. In outdoor pots, salinity stress had a significant effect on stem length, root volume, root diameter, root dry weight, stem dry weight and grain yield, and significant reductions were observed in these traits, reaching a maximum of 69% in stem dry weight. In field conditions, similar results were obtained, and salinity stress of 10 and 5 dS/m, respectively, caused a 78 and 67% reduction in grain yield and significant changes in other traits. Therefore, field cultivation conditions and lower salinity stress levels (below 5 dS/m) were superior for planting Galega.
Evaluation of morphophysiological and biochemical traits of stevia plants treated with glycine betaine nanoparticles and fish waste fertilizer in response to salinity stress.
https://doi.org/10.22034/NBR.12.3.5
zahra mahdavi, behrooz esmailpoor, rasoul azarmi
Abstract The different treatments in this experiment were foliar spraying of salinity reducer at five levels (control, 15 and 30 mgL-1 glycine betaine without liquid fish waste fertilizer, 15 and 30 mgL-1 glycine betaine with 15% (v/v) liquid fish waste fertilizer) on stevia plants grown under salt stress conditions (0, 30, 60, 90 mM of NaCl). results showed that salinity negatively affected growth parameters, relative water content, a* and b* color and increased the activity of total phenol, hydrogen peroxide (H2O2), malondialdehyde (MDA), proline, and total carbohydrates compared with control samples. Salinity at 90 mM decreased the relative water content by 44.7% compared to the not stress. Salinity 90 mM salinity stress increased 70.46% total carbohydrates, 66.66% in H2O2 , MDA by 66.66% , Electrolyte leakage (EL) by 67.04 and 47.21% proline content by compared to the control. On the other hand, simultaneous application of glycine betaine and fish waste bio-fertilizer mitigated the effects of salinity stress by enhancing growth parameters especially at the highest salinity level (90 mM).
The floristic study of Basiran Protected Area, Eqlid (Fars Province)
https://doi.org/10.22034/NBR.12.3.6
Mojgan Habibi, Saeed Afsharzadeh, Shabnam Abbasi
Abstract The flora of a region is a key indicator of various ecosystem factors across geological periods, and plant identification is crucial for assessing natural capacity and land use. This study aimed to conduct a floristic survey of the Basiran Protected Area in Eqlid County, Fars Province. Plant samples were collected using a survey method and linear transects. From 250 collected samples, 94 species across 70 genera and 34 families were identified. Dicotyledons constituted the majority, with 82 species and 59 genera, while monocotyledons included 12 species from 11 genera. Fabaceae was the largest family (13 species), and Astragalus the largest genus (7 species). Significantly, 16 species (17%) were endemic to Iran. Phytoecological analysis revealed that 47 species (50%) were hemicryptophytes, and 59 species (63%) belonged to the Irano-Turanian phytogeographic region. The findings also highlight the adverse impacts of recent droughts, rising temperatures, and grazing pressure on the area's flora. Consequently, the study emphasizes the urgent need to reconsider current management and conservation policies, particularly concerning livestock grazing, medicinal plant harvesting, and wood collection, to ensure the long-term sustainability of this protected ecosystem.
