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1.
Plants (Basel) ; 12(19)2023 Sep 29.
Article in English | MEDLINE | ID: mdl-37836172

ABSTRACT

The judicious use of crop input is of prime importance for achieving a considerable output with a low-cost input. A two-year field experimentation was executed to assess the effect of varying polymer-coated single super phosphate (SSP) regimes on the yield and quality of sugarcane under differential water regimes. A two-factor study was executed under a randomized complete block design with a split-plot arrangement. The CPF-249 sugarcane variety was planted during the 2019-2020 period and the 2020-2021 period. The experiment consisted of four levels of polymer-coated SSP, i.e., control, 90, 110, and 130 kg ha-1, and three water regimes, which consisted of a number of irrigations, i.e., 18 irrigations, 15 irrigations, and 12 irrigations. Moreover, the water regimes were kept in the main plot, whereas the polymer-coated supplement was allocated in a subplot and replicated thrice. The data on the yield components and sugar-related traits were recorded during both years of study, and the treatment means were differentiated using an LSD test at a 95% confidence interval. Summating the findings of this study, a significant variation was revealed under the subject levels of both factors. Statistically, a 110 kg ha-1 polymer-coated SSP dose, along with 18 irrigations, declared the highest millable canes, stripped cane yield, and unstripped cane yield, followed by the 130 kg ha-1 treatment. Additionally, the highest pol% and cane sugar recovery % were recorded under 12 irrigations along with 130 kg ha-1 during both years. Similarly, the °Brix value was also significantly affected by 12 irrigations when 110 kg ha-1 of polymer-coated SSP was used. The unstripped cane yield had a strong positive correlation with the stripped cane yield, millable canes, and the number of internodes. Moreover, the commercial cane sugar % resulted in a strong positive correlation with the pol%, whereas the cane sugar recovery % revealed a strong positive correlation with the pol% and commercial cane sugar %.

2.
Plants (Basel) ; 12(15)2023 Jul 25.
Article in English | MEDLINE | ID: mdl-37570912

ABSTRACT

Stumpy irrigation water availability is extremely important for sugarcane production in Pakistan today. This issue is rising inversely to river flow due to inadequate water distribution and an uneven rainfall pattern. Sugarcane growth faces a shortage of available water for plant uptake due to the low water-holding capacity of sandy loam soil, particularly under conventional flood irrigation methods. To address this problem, sugarcane clones were evaluated for their agronomic and physiological traits under conditions of low water availability in sandy loam soil. Ten cane genotypes, HSF-240, SPF-213, CPF-249, CP 77-400, S2008-FD-19, S2006-US-469, S2007-AUS-384, S2003-US-633, S2003-US-127, and S2006-US-658, were exposed to four levels of water deficit created through skip irrigations. These deficit levels occurred during the 9th, 11th, 13th, and 16th irrigations at alternate deficit levels between 2020 and 2022. Physiological data were collected during the tillering and grand growth stages (elongation) in response to the water deficit. The sugarcane clones S2006-US-658, S2007-AUS-384, and HSF-240 exhibited resistance to low water availability at both the tillering and grand growth stages. Following them, genotypes S2006-US-658, S2007-AUS-384, and HSF-240 performed better and were also found to be statistically significant. Clones susceptible to water deficit in terms of growth and development were identified as CP 77-400, S2008-FD-19, S2006-US-469, and S2003-US-633. These genotypes showed reduced photosynthetic rate, transpiration rate, stomatal conductance, relative water content, cane yield, and proline content under stressed conditions. Therefore, genotypes S2006-US-658, S2007-AUS-384, and HSF-240 were better performers concerning physiological traits under water deficit and sandy loam soil in both years. Moreover, a significant positive correlation was assessed between agronomic traits and photosynthetic rats. This study highlights that sugarcane can sustain its growth and development even with less irrigation frequency or moisture availability, albeit with certain specific variations.

3.
Animals (Basel) ; 13(2)2023 Jan 13.
Article in English | MEDLINE | ID: mdl-36670817

ABSTRACT

The current study was conducted to evaluate the effects of stored wheat-based diet (1.5 and 2.5 years stored wheat) with and without the supplementation of xylanase and phytase enzymes in combination or individually on performance parameters, digestibility, digesta viscosity and carcass characteristics of broilers. For this purpose, a total of 640-day-old male broilers were randomly distributed to the 64 pens, and each pen had 10 birds. Two basal isocaloric and isonitrogenous diets contained 1.5 and 2.5 years stored wheat were formulated in this experiment. In the current study, experimental feeds were prepared by supplementing exogenous enzymes in both basal diets with xylanase (500 XU), phytase (500 FTU) alone or in a combination of phytase and xylanase. Performance parameters data represents that both in starter phase and finisher phase, inclusion of exogenous enzymes xylanase and phytase in both basal diets alone or in combination enhance the feed intake, and body weight gain (p < 0.05) and improve the feed conversion ratio in overall phase (p < 0.05). Similarly, supplementation of exogenous xylanase and phytase alone or in combination enhance the nutrient digestibility and reduce the digesta viscosity (p < 0.05). Based on the results of this experiment, it is concluded that supplementation of exogenous xylanase and phytase enzymes alone or in combination in wheat-based diets (stored wheat 1.5 and 2.5 years) enhance and improves the performance of birds.

4.
Environ Sci Pollut Res Int ; 29(32): 48869-48879, 2022 Jul.
Article in English | MEDLINE | ID: mdl-35199269

ABSTRACT

Exploring extractable phytochemicals from locally adapted sisal plant vegetation vary seasonally at different locations. This study elaborated proximate composition and phytochemical heterogeneity in sisal due to varying environmental conditions analyzed from five districts, i.e., Chakwal, Khushab, Rawalpindi, Faisalabad, and Layyah in Punjab, Pakistan. Extensive surveying and plant sampling across 2 years 2017-2018 and 2018-2019, during mid-spring, summer, autumn, and winter seasons were carried out for understanding the seasonal impact on sisal. The present study was designed in a randomized complete block design (RCBD) and analyzed considering seasonal, yearly, and locational impact. The spatial differences in phytochemicals concentration were strongly associated with environmental conditions prevailing in different seasons. Autumn season reflected saponins, tannins, and flavonoids in higher concentrations during 2018-2019 while steroids and terpenoids were higher during spring 2018-2019. Spatio-temporal variations in the proximate analysis were more apparent in different samples collected from different districts. Data recorded for the Khushab district and autumn season reflected the higher composition of a proximate analysis and phytochemical contents as compared to other seasons. Overall, the spatial differences in phytochemicals concentration were strongly associated with soils and environmental conditions prevailing in different seasons in selected districts.


Subject(s)
Agave , Agave/chemistry , Pakistan , Phytochemicals , Seasons , Soil
5.
Sci Rep ; 11(1): 1677, 2021 01 18.
Article in English | MEDLINE | ID: mdl-33462271

ABSTRACT

Hydroponic systems are known to provide a platform for uniform growth conditions until the reproductive stage. However, many plant species, including sunflower, show poor growth and survivability under conventional hydroponic systems due to poor nutrient availability, hypoxia and algal contamination. Thus, we tested various hydroponic systems to select a hydroponic system suitable for screening of sunflower germplasm. Sunflower accessions showed better growth and leaf gas exchange in newly-designed over conventional hydroponic systems. Selected hydroponic systems were further engaged in sunflower accession screening under heat and osmotic stress in a two-pan system (210 cm × 60 cm). Heat stress treatment was applied by growing sunflower germplasm at 42 °C and osmotic stress by adding polyethylene glycol 8000 which decreased the osmotic potential to - 0.6 MPa. There was significant variability among the sunflower accessions for their ability to survive under stress. Accessions such as C-2721 (43%), C-291 (46%) and D-14 (43%) had lower cell membrane injury percentage under osmotic stress and high seedling survivability (60‒80%) under heat stress when compared with susceptible accessions. Moreover, resistant accessions exhibited greater cuticular waxes and root length but lower transpiration losses. The newly designed hydroponic platform proved reliable for the selection of resistant sunflower accessions. Selected parental lines were validated by assessing their hybrids under field trials across two seasons under water and temperature stress during the reproductive phase (autumn). Hybrid H3 obtained by crossing drought and heat resistant parents had the highest seed yield and water use efficiency.


Subject(s)
Helianthus/physiology , Hydroponics/methods , Adaptation, Physiological , Crops, Agricultural/growth & development , Crops, Agricultural/physiology , Heat-Shock Response , Helianthus/growth & development , Osmotic Pressure , Plant Leaves/growth & development , Plant Leaves/physiology , Seedlings/growth & development , Seedlings/physiology
6.
Environ Sci Pollut Res Int ; 24(27): 21797-21806, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28770508

ABSTRACT

No-till wheat is gaining popularity in rice-based cropping system as it provides a better chance for timely planting of wheat, management of crop residues, as well as environmental and soil sustainability. However, fertilizer application in no-tillage requires careful attention in order to optimize efficiency of fertilizer use by crops. The present study was conducted to develop the most favorable and economical no-till technique along with best blend of nitrogen for successful wheat production in residue-based cropping system. The experiment was composed of five no-till techniques viz., (1) even spreading of loose rice residue and wheat sowing with turbo seeder, (2) even spreading of loose rice residue and wheat sowing with happy seeder, (3) even spreading of loose rice residue and wheat sowing with zone disc tiller, (4) wheat sowing with conventional zero tillage drill after manual removal of rice residues, and (5) wheat sowing with conventional zero tillage drill after burning of rice residues. There were five blends of nitrogen (N) including (1) 100% N from urea, (2) 75% N from urea and 25% N from ammonium sulfate (AS), (3) 50% N from urea and 50% N from AS, (4) 25% N from urea and 75% N from AS, and (5) 100% N from AS. Different no-till techniques and N treatments significantly affected the stand establishment and yield-related traits of wheat during both growing seasons. Soil physical condition was improved by turbo seeder treatment, while it remained poor in residue burned field sown by conventional zero tillage drill. The results over the years revealed that turbo-seeded wheat with N fertilization in the form of 50% urea + 50% AS performed better in terms of productive tillers, grain yield and benefit cost ratio than other no-till techniques along different blends of nitrogen during both years of study. In crux, wheat sowing by turbo seeder along N fertilization in the form of 50% urea + 50% AS treatment is a viable and economical option to increase the wheat production in rice-based production system.


Subject(s)
Agriculture/methods , Oryza , Triticum/growth & development , Crops, Agricultural/growth & development , Fertilizers , Nitrogen/analysis , Seasons , Soil/chemistry , Urea/chemistry
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