Hydroponics is one of the widely adopted technologies for fodder production in arid and semi-arid regions. In addition to the benefits such as shorter growth period and minimal water and land use, it also produces nutritious fodder that contains essential nutrients required for the growth and reproduction of livestock. This study was conducted to evaluate the effect of feeding hydroponic maize fodder on the reproductive performance of buck kids. Twenty-four Tellicherry buck kids aged around 3 months were randomly selected and allocated into three treatment groups, namely, control, treatment 1 (T1), and treatment 2 (T2). Experimental diets were formulated by replacing the concentrate with hydroponic maize fodder at 0% (control), 25% (T1), and 50% (T2) level. The buck kids supplemented with hydroponic maize fodder attained puberty earlier (T1, 246.50 ± 2.61 days; T2, 241.00 ± 2.06 days) (P < 0.05); had higher (P < 0.05) scrotal circumference, testicular volume, and fresh semen characteristics; and exhibited intense sexual behaviors than the non-supplemented kids. Furthermore, hydroponic maize fodder supplementation improved the digestibility of dry matter (DM) (P < 0.01), organic matter (OM) (P < 0.01), crude fiber (CF) (P < 0.05), ether extract (EE) (P < 0.01), and nitrogen-free extract (NFE) (P < 0.01) in the kids. In conclusion, hydroponic maize fodder feeding did not have any negative impact on the reproductive performance of kids. Furthermore, the hydroponic maize fodder supplementation enhanced the kids' nutrient digestibility and reproductive performance.
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http://dx.doi.org/10.1007/s11250-021-02761-9 | DOI Listing |
J Plant Physiol
December 2024
University of Science and Technology Beijing, School of Chemistry and Biological Engineering, Department of Biological Science and Engineering, China.
To explore variation patterns of uptake, translocation, and accumulation processes responding to organophosphate esters (OPEs) among Poaceae plants, hydroponic and computer simulation experiments were executed. Plant growth, OPEs' concentration, and bioinformation and transcript of lipid transporters in the three terrestrial barley, wheat, and maize and aquatic rice seedlings were studied after exposure to seven OPE congeners. Four types of plants could accumulate seven OPE congeners.
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January 2025
Institute of Chemistry, Slovak Academy of Sciences, Dúbravská cesta 9, Bratislava 845 38, Slovakia. Electronic address:
We tested the effects of galactoglucomannan oligosaccharides (GGMOs) and/or cadmium (Cd) on peroxidase activity and the proteome in maize (Zea mays L.) roots and leaves. Our previous work confirmed that GGMOs ameliorate the symptoms of Cd stress in seedlings.
View Article and Find Full Text PDFSci Rep
January 2025
Department of Applied Plant Biology, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Debrecen, Hungary.
Sweet corn is highly susceptible to water deprivation, making it crucial to identify effective strategies for enhancing its tolerance to water deficit conditions. This study investigates the novel application of Spermine as a bio-stimulant to improve sweet corn (Zea mays L. var.
View Article and Find Full Text PDFPlants (Basel)
December 2024
Laboratory of Plant Biochemistry, Department of Biochemistry, State University of Maringá, Maringá 87020-900, Brazil.
Chemical weed control is a significant agricultural concern, and reliance on a limited range of herbicide action modes has increased resistant weed species, many of which use C4 metabolism. As a result, the identification of novel herbicidal agents with low toxicity targeting C4 plants becomes imperative. An assessment was conducted on the impact of 3-cyanobenzoic acid on the growth and photosynthetic processes of maize (), a representative C4 plant, cultivated hydroponically over 14 days.
View Article and Find Full Text PDFBMC Plant Biol
January 2025
Department of Applied Plant Biology, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Debrecen, Hungary.
Background: Water deficits, exacerbated by climate change and unpredictable weather, have become a significant global challenge to agricultural productivity. In this context, exogenous melatonin treatment is well documented as a stress alleviator; however, its effects on various biological processes, particularly in less-explored genotypes, remain understudied. This study aimed to enhance water deficit resilience in sweet corn by applying foliar melatonin to four genotypes-Messenger, Dessert, Royalty, and Tyson under two levels of water deprivation induced by polyethylene glycol at 8% and 12% concentrations in a hydroponic, controlled environment.
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