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Functional Traits Analysis and Competition Coexistence in Crops- Invasive Weeds Interaction Under Induced Salt Stress

Adili, IS, Aliero A A, Keta, J B, Atiku, M, Tambari, U, Danladi, G H, and, Bello, I M

Abstract

Weeds are an important component of agroecosystems that interact with crops and negatively affects food crop production through competition for light, soil nutrients and reduces yields of major crops by a global average of 34%. This study examines functional traits and competition analysis of Solanum lycopersicum and Capsicum annuum in mono and mixed culture with two invasive alien weeds (Euphorbia heterophylla and Acanthospermum hispidum) under different sodium chloride (NaCl) concentrations. Data for the study was obtained from field measurement and laboratory experiment. Results from the study showed that canopy height was significantly higher in monoculture at 5% NaCl concentration for both S. lycopersicum 88.23±1.12 and C. annuum 70.13±6.40, while the lowest values were recorded at higher salinity levels in mixed cultures. Leaf dry matter content and relative water content remained relatively stable across treatments, with the highest values observed in monoculture at 5% to 25% salinity. Specific leaf area exhibited variability, being highest in the mixture of S. lycopersicum and A. hispidum mixtures with 35.02±22.80 at 10% NaCl treatment and C. annuum and A. hispidum mixtures with 27.56±11.37 at 25% NaCl treatment. Yield was significantly higher in the S. lycopersicum and A. hispidum at 15% NaCl treatment with 1.41±0.01 and in C. annuum monoculture at 5% NaCl with 0.65±0.10. Relative yield and relative yield total followed similar trends, with the highest values recorded in optimal salinity. It is therefore concluded that the competitive balance between invasive weeds and crops is partially altered and also recommended that further studies should be carried out to identify the mechanism of intraspecific trait variation in weeds and the consequences of weed fitness.

Keywords

Functional traits Competition Salt stress S. lycopersicum and A. hispidum

References

Aliyev, R. (2010). Physiological Parameters in Weed Control Studies. Journal of Weed Science, 38(2), 89-97. Bertness, M. D. and Callaway, R. (1994). Positive Interactions in Communities. Trends Ecology Evolution. 9, 191–193. doi: 10.1016/0169-5347(94)90088-4 Bianchi, A. and Sattin, M. (2010). Dynamics of Weed Infestation in Crops. Weed Research, 50(4), 345- Bollen, A., Pammenter, N. and Naidoo, G. (2016). Salinity Impacts on The Replacement of Crops by Invasive Weeds. Environmental Weeds Journal, 24(3), 345-359. Ceccon, F. (2007). Integrated Management Practices for Weed Control. Journal of Agricultural Science, 45(3), 123-135. De Wit, C. T. (1960). On competition. Verslagen van Landbouwkundige Onderzoekingen, 66(8), 1-82. Gumi, A.M., Aliero, A.A., K. Shehu and Danbaba, A. (2013). Salinity Stress: Effects on Growth, Biochemical Parameters and Ion Homeostasis in Solanum lycospersicum L. (Cv. Dan eka) Journal of Experimental Biology, 2 (3):20-25 ISSN: 2278–7364 Guo, X., Ma, J. Y., Liu, L. L., Li, M. Y., Wang, H., Sun, Y. K., Wang, T., Wang, K. L. and Meyerson, L. A. (2023). Effects of Salt Stress on Interspecific Competition Between an Invasive Alien Plant Oenothera Biennis and Three Native Species. Front. Plant Sci. 14:1144511. doi: 10.3389/fpls.2023.1144511 Jia, J., Dai, Z., Li, F. and Liu, Y. (2016). How Will Global Environmental Changes Affect the Growth of Alien Plants? Front. Plant Sci. 7, 1623. Khedir, A. and Roeth, F. W. (1981). Enhancing Weed Seed Germination through Pre-Soaking Treatments. Weed Science, 29(3), 490-499. Legault, S., Watson, L. and Johnson, P. (2018). Invasive Weed Species and Their Interaction with Salinity. Plant Ecology Reports, 36(2), 221-235. Liu, M., Liao, H., and Peng, S. (2019). Salt-Tolerant Native Plants Have Greater Responses to Other Environments When Compared to Salt-Tolerant Invasive Plants. Ecol. Evol. 9, 7808–7818. doi: 10.1002/ece3.5368 Lockwood, J.L., Hoopes, M.F. and Marchetti, M.P. (2013) Invasion Ecology; Wiley: New York, NY, USA, p. 444. Moles, A. T., Gruber, M. A. M. and Bonser, S. P. (2012). A New Framework for Predicting Invasive Plant Species. Journal of Ecology, 100(4), 841-850. Oerke. E. C. (2006). Crop losses to pests. J Agric Sci 144:31–43 Perejitei, E., Bekewe, G., Miguel Castillo, S. and Rivera, R. (2019). Harvest Management Effects on Canopy Height and Light Interception of ‘Performer’ Switchgrass and its Relationship with Weed Infestation. Crop Science, vol. 59, 1–8 (2019). doi: 10.2135/cropsci2018.10.0612 Pimentel, D., Zuniga, R. and Morrison, D. (2005). Update on the Environmental and Economic Costs Associated with Alien-Invasive Species in the United States. Ecological Economics, 52(3), 273-288. Qi, S., Zhang, Y. and Huang, W. (2017). Salinity’s Dual Role in Weed Invasion Dynamics. International Weed Science, 18(1), 88-99. Schonfeld, M. A., Johnson, R. C., Carver, B. F. and Mornhinweg, D. W. (1988). Water Relations in Winter Wheat as Drought Resistance Indicators. Crop Science, 28(3), 526-531. SERC. (2015). Geographical and Ecological Details of Kebbi state, Nigeria. Sudan Ecological Research Center, Annual Report Siefert, A., Violle, C., Chalmandrier, L., Albert, C.H., Taudiere, A. and Fajardo, A. (2015). A Global Meta-Analysis of The Relative Extent of Intraspecific Trait Variation in Plant Communities. Ecology Letters, 18 1406–1419. Singh, J., Sastry, E.V.D. and Singh, V. (2012). Effect of Salinity on Tomato (Lycopersicon esculentum Mill.) During the Seed Germination Stage. Physiology Molecular Biology Plants 18,45–50 https://doi.org/10.1007/s12298-011-0097-z Sumalan, R. and Ciobanu, I. (2010). The Effects of Salinity Stress on the Growing Rates and Physiological Characteristics of Tomato (Lycopersicum esculentum) Species. Bulletin UASVM Horticulture, 66(2), 1295-1760.