Effect of Compost on the Growth, Flowering Attributes, and Vase Life of Different Varieties of Zinnia (Zinnia elegans)

Authors

  • Muhammad Mazhar Qayyum Department of Horticulture, The University of Haripur, Khyber Pakhtunkhwa, Haripur Pakistan,
  • Iqbal Hussain National Institute of Genomics and Advance Biotechnology, NARC-45500, Park Road, Islamabad, Pakistan
  • Haider Ali National Institute of Genomics and Advance Biotechnology, NARC-45500, Park Road, Islamabad, Pakistan
  • Tariq Saeed Department of Agriculture, Muzaffarabad, Azad Jammu Kashmir
  • Muhammad Umar Horticulture Research Institute, National Agricultural Research Center, Islamabad, Pakistan
  • Amber Imtiaz National Institute of Genomics and Advance Biotechnology, NARC-45500, Park Road, Islamabad, Pakistan
  • Saima Noor National Institute of Genomics and Advance Biotechnology, NARC-45500, Park Road, Islamabad, Pakistan
  • Irfan Ali Department of Horticulture, Pir Mehr Ali Shah Arid Agriculture University, Rawalpindi, Pakistan
  • Raja Muhammad Mohib Naz Horticulture Research Institute, National Agricultural Research Center, Islamabad, Pakistan
  • Kazim Ali National Institute of Genomics and Advance Biotechnology, NARC-45500, Park Road, Islamabad, Pakistan

DOI:

https://doi.org/10.38211/joarps.2024.05.278

Keywords:

Floriculture market, Zinnia, Quality, Survival, Flowers

Abstract

Zinnias originates from Mexico and has high demand in the floriculture market. The need to reduce reliance on chemical fertilizers has highlighted the importance of sustainable alternatives like organic manures. Compost application in horticulture is gaining attention as a sustainable alternative to chemical fertilizers, aiming to enhance soil health and plant growth. However, there is a limited understanding of its effects on the growth. This study investigates the effects of compost on the growth, flowering attributes, and vase life of Zinnia elegans to improve cultivation techniques and promote sustainable horticultural practices. The experiment used an RCBD with two factors. When they reached 3-5 true leaves, plantlets were transplanted into 12-inch pots with compost varying concentrations, including Control, 25%, 50%, and 100% with garden soil. Changing compost concentrations and zinnia varieties affected numerous factors strongly. Plant height, for instance, varied significantly, with Benary's Giant cultivar reaching the tallest (72.04 cm) under 50% compost, mirroring the stem diameter's peak at 1.01 cm with the same compost level. Compost levels and zinnia varieties also notably impacted leaf count, lateral branches, leaf area, flower count, and flower attributes like diameter and stalk length. The study also found that 50% of compost extended petal senescence survival. Compost and zinnia interaction affected the flower’s fresh weight and vase life. The interaction cultivar Benary,s Giant with 50% compost in garden soil was optimal for zinnia growth and flowering. This study will provide the basics for floriculture.

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References

Ahmad, S., Aziz, A. U. R., Ullah, A., & Raza, M. A. (2022). Effect of vermicompost and organic matter in enhancing wheat tolerance against drought stress. International Journal of Agriculture and Biosciences, 11(3), 165-167. DOI: https://doi.org/10.47278/journal.ijab/2022.022

Ahmed, M., Khan, M. F., Hamid, A., & Hussain, A. (2004). Effect of urea, DAP and FYM on growth and flowering of dahlia (Dahlia variabilis). International Journal of Agriculture and Biology, 6(2), 393-395.

Ahouangninou, C., Hounmalon, G. A., Zandjanakou-Tachin, M., Mensah, A., Osse, R., Tanmakpi, J., . . . Edorh, P. (2022). Effect of compost and association (Solanum+ amaranth) on pests and productivity of Solanum macrocarpon.

Alidoust, M., Torkashvand, A. M., & Khomami, A. M. (2012). The effect of growth medium of peanut shelles compost and nutrient solution on the growth of Dracaena. Annals of Biological Research, 3(2), 789-794.

Altaf, K., Younis, A., Ramzan, Y., & Ramzan, F. (2021). Effect of composition of agricultural wastes and biochar as a growing media on the growth of potted Stock (Matthiola incana) and Geranium (Pelargonium spp). Journal of Plant Nutrition, 44(7), 919-930. DOI: https://doi.org/10.1080/01904167.2020.1862205

Aydinsakir, K., Unlu, A., Yilmaz, S., & Ari, N. (2009). The effects of compost applications on yield and quality characteristics of Anemone coronaria L. cv.'Red Meron'. Acta Horticulturae, 807, 359-364. DOI: https://doi.org/10.17660/ActaHortic.2009.807.50

Dole, H. (1999). Zinnias: Colorful, butterfly-approved. Butterfly Gardeners Quarterly. BGQ, PO Box, 30931.

Dorgham, A. H. (2019). Vegetative growth, flower quality and seed production of Zinnia elegans cultivars in response to foliar application of potassium from different sources. Middle East Journal of Agriculture Research, 8(4), 1306-1318.

El-Naggar, A., & El-Nasharty, A. (2009). Effect of growing media and mineral fertilization on growth, flowering, bulbs productivity and chemical constituents of Hippeastrum vittatum, Herb. Agric. & Environ. Sci, 6(3), 360-371.

Epstein, E. (2017). The science of composting: CRC press.

Filipović, V., Ugrenović, V., Popović, V., Dimitrijević, S., Popović, S., Aćimović, M., .Pezo, L. (2023). Productivity and flower quality of different pot marigold (Calendula officinalis L.) varieties on the compost produced from medicinal plant waste. Industrial Crops and Products, 192, 116093. DOI: https://doi.org/10.1016/j.indcrop.2022.116093

Gola, A. Q., Jakhro, M. I., Habib, M., Ahmed, S., Badini, M. A., Shahwani, M. W., . . . Shah, S. I. A. (2018). 2. Influence of various growing media on growth and flowering of zinnia (Zinnia elegans) Dreamland. Pure and Applied Biology (PAB), 7(3), 946-954. DOI: https://doi.org/10.19045/bspab.2018.700113

Gupta, J., & Dubey, R. K. (2018). Factors affecting post-harvest life of flower crops. International Journal of Current Microbiology and Applied Sciences, 7(1), 548-557. DOI: https://doi.org/10.20546/ijcmas.2018.701.065

Ho, T. T. K., Le, T. H., Tran, C.-S., Nguyen, P.-T., Thai, V.-N., & Bui, X.-T. (2022). Compost to improve sustainable soil cultivation and crop productivity. Case Studies in Chemical and Environmental Engineering, 6, 100211. DOI: https://doi.org/10.1016/j.cscee.2022.100211

Karimian, N., Nazari, F., & Samadi, S. (2021). Morphological and biochemical properties, leaf nutrient content, and vase life of tuberose (Polianthes tuberosa L.) affected by root or foliar applications of silicon (Si) and silicon nanoparticles (SiNPs). Journal of Plant Growth Regulation, 40, 2221-2235. DOI: https://doi.org/10.1007/s00344-020-10272-4

Kishimoto, K. (2022). Effect of Temperature on Scent Emission from Carnation Cut Flowers. Japan Agricultural Research Quarterly: JARQ, 56(2), 163-170. DOI: https://doi.org/10.6090/jarq.56.163

Kumar, R., Singh, A. K., Tomar, K., & Gupta, A. K. (2022). Effects of Different Media on Growth and Flowering Traits of Calendula Officinalis L. Bangladesh Journal of Botany, 51(3), 417-424. DOI: https://doi.org/10.3329/bjb.v51i3.61986

Kumar, R., Yadav, M. K., Shankar, B. A., Sharma, S., & Rani, R. (2022). Effect of different chemicals to enhance vase life of tuberose (Polianthes tuberosa L.) cut flowers. International Journal of Agricultural and Statistical Sciences, 18(1), 995-1002.

Levy, A. V., & Gómez, S. (1985). The tunneling method applied to global optimization. Numerical optimization, 1981, 213-244.

Morales, A. B., Bustamante, M. A., Marhuenda-Egea, F. C., Moral, R., Ros, M., & Pascual, J. A. (2016). Agri-food sludge management using different co-composting strategies: study of the added value of the composts obtained. Journal of cleaner production, 121, 186-197. DOI: https://doi.org/10.1016/j.jclepro.2016.02.012

Nair, S. A., & Bharathi, T. U. (2015). Influence of potting media composition on pot mum production. The Bioscan, 10(1), 73-76.

Ojo, J. A., Olowoake, A. A., & Obembe, A. (2014). Efficacy of organomineral fertilizer and un-amended compost on the growth and yield of watermelon (Citrullus lanatus Thumb) in Ilorin Southern Guinea Savanna zone of Nigeria. International Journal of Recycling of Organic Waste in Agriculture, 3, 121-125. DOI: https://doi.org/10.1007/s40093-014-0073-z

Ouni, Y., Ghnaya, T., Montemurro, F., Abdelly, C., & Lakhdar, A. (2014). The role of humic substances in mitigating the harmful effects of soil salinity and improve plant productivity. International Journal of Plant Production, 8(3), 353-374.

Padhiyar, B., Bhatt, D. S., Desai, K., Patel, V., & Chavda, J. (2017). Influence of different potting media on growth and flowering of pot chrysanthem var. ajina purple. Int. J. Chem. Stud, 5, 1667-1669.

Pane, C., Palese, A. M., Celano, G., & Zaccardelli, M. (2014). Effects of compost tea treatments on productivity of lettuce and kohlrabi systems under organic cropping management. Italian Journal of Agronomy, 9(3), 153-156. DOI: https://doi.org/10.4081/ija.2014.596

Rafique, E., Rashid, A., & Yasin, M. (1990). Extent and severity of micronutrient status in soils of Jhelum district. unpublished) National Agriculture Research Centre (NARC), Islamabad, Pakistan.

Rahmani, F., Karimi, M., & Moradi, H. (2020). Effect of Wood Chips Compost and Humic Acid on Growth, Flowering and Vase Life of Lily (Longiflorum× Asiatic) Cv. Nashville. Journal of Agricultural Science and Sustainable Production, 30(3), 185-202.

Saleem, B., Nafees, M., Farooq, M., & Sadaqat, H. (2003). Genetic variability estimation for growth characteristics in Zinnia elegans Jacq Across different population densities. International Journal of Agriculture & Biology, 5(4), 496-498.

Sultana, S., Kashem, M. A., & Mollah, A. K. (2015). Comparative assessment of cow manure vermicompost and NPK fertilizers and on the growth and production of zinnia (Zinnia elegans) flower. Open Journal of Soil Science, 5(09), 193. DOI: https://doi.org/10.4236/ojss.2015.59019

Turhan, H., Kahriman, F., Egesel, C. O., & Gul, M. K. (2007). The effects of different growing media on flowering and corm formation of saffron (Crocus sativus L.). African Journal of Biotechnology, 6(20). DOI: https://doi.org/10.5897/AJB2007.000-2365

Viaene, J., Agneessens, L., Capito, C., Ameloot, N., Reubens, B., Willekens, K., De Neve, S. (2017). Co-ensiling, co-composting and anaerobic co-digestion of vegetable crop residues: Product stability and effect on soil carbon and nitrogen dynamics. Scientia Horticulturae, 220, 214-225. DOI: https://doi.org/10.1016/j.scienta.2017.03.015

Younis, A., Riaz, A., Javaid, F., Ahsan, M., Tariq, U., Aslam, S., & Majeed, N. (2015). Influence of various growing substrates on growth and flowering of potted miniature rose cultivar ‘‘Baby Boomer’’. Curr Sci Perspect, 1, 16-21.

Yusef, S. (1997). Influence of organic and inorganic fertilization on the growth of some annual flowers. Agric Res Center King Saud Univ, 70, 5-2.1.

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Published

2024-06-19

How to Cite

Qayyum, M. M., Hussain, I., Ali, H., Saeed, T., Umar, M., Imtiaz, A., … Ali, K. (2024). Effect of Compost on the Growth, Flowering Attributes, and Vase Life of Different Varieties of Zinnia (Zinnia elegans). Journal of Applied Research in Plant Sciences , 5(02), 259–268. https://doi.org/10.38211/joarps.2024.05.278

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